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CLINICAL SCIENCE
Effect of continuous and interval exercise training on the PETCO2 response during a graded exercise test in patients with coronary artery disease
Enéas A RoccoI, Danilo M L PradoI,II,
Corresponding author
danilomprado@usp.br

Tel.: 55 11 3576-1049
, Alexandre G SilvaIII, Jaqueline M.A. LazzariI, Pedro C BortzI, Débora F.M. RoccoIII, Carla G RosaI, Valter FurlanI
I TotalCor Amil Hospital São Paulo, São Paulo/SP, Brazil
II Hospital das Clínicas da Faculdade de Medicina da Universidade de São Paulo, São Paulo/SP, Brazil
III Faculdade de Educação Física e Esporte da Universidade Santa Cecília, Santos/SP, Brazil
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          "en" => "<p id="spara10" class="elsevierStyleSimplePara elsevierViewall">PETCO<span class="elsevierStyleInf">2</span> response during a graded exercise test in patients with coronary artery disease subjected to either continuous exercise training or interval exercise training&#46; VAT &#61; ventilatory anaerobic threshold&#59; RCP &#61; respiratory compensation point&#46; &#8224; <span class="elsevierStyleItalic">p</span>&#60;0&#46;05 <span class="elsevierStyleItalic">vs&#46;</span> rest &#40;pre- and post-continuous&#41;&#59; &#8225; <span class="elsevierStyleItalic">p</span>&#60;0&#46;05 <span class="elsevierStyleItalic">vs&#46;</span> rest &#40;pre- and post-interval&#41;&#59; &#42; <span class="elsevierStyleItalic">p</span>&#60;0&#46;05 <span class="elsevierStyleItalic">vs&#46;</span> post-continuous&#59; &#167; <span class="elsevierStyleItalic">p</span>&#60;0&#46;05 <span class="elsevierStyleItalic">vs&#46;</span> post-interval&#46;</p>"
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    "textoCompleto" => "<span class="elsevierStyleSections"><span id="cesec10" class="elsevierStyleSection elsevierViewall"><span class="elsevierStyleSectionTitle" id="cestitle60">INTRODUCTION</span><p id="para10" class="elsevierStylePara elsevierViewall">End-tidal carbon dioxide pressure &#40;PETCO<span class="elsevierStyleInf">2</span>&#41; is a noninvasive index that is considered to be a good indicator for evaluating the ventilation&#47;perfusion relationship in patients over a wide range of conditions &#40;<a class="elsevierStyleCrossRef" href="#bib1">1</a>&#44;<a class="elsevierStyleCrossRef" href="#bib2">2</a>&#41;&#46; Variations in PETCO<span class="elsevierStyleInf">2</span> have been shown to reflect changes in both cardiac output and pulmonary blood flow in animals and humans under constant ventilation &#40;<a class="elsevierStyleCrossRef" href="#bib3">3</a>&#41;&#46; For example&#44; previous studies &#40;<a class="elsevierStyleCrossRef" href="#bib4">4</a>&#44;<a class="elsevierStyleCrossRef" href="#bib5">5</a>&#44;<a class="elsevierStyleCrossRef" href="#bib6">6</a>&#41; have demonstrated alterations in the distribution of ventilation and perfusion in the lungs &#40;ventilation-perfusion mismatch&#41; of cardiac patients&#46; This observation has led to an increased ratio of physiologic dead space to tidal volume&#46; In this regard&#44; patients with cardiac disease have been shown to have an abnormally low PETCO<span class="elsevierStyleInf">2</span> during exercise&#44; especially those with an impaired response of cardiac output during exercise &#40;<a class="elsevierStyleCrossRef" href="#bib5">5</a>&#41;&#46; Moreover&#44; recent investigations have shown that reduced PETCO<span class="elsevierStyleInf">2</span> is considered to be a strong predictor of adverse events in cardiac disease &#40;<a class="elsevierStyleCrossRef" href="#bib7">7</a>&#44;<a class="elsevierStyleCrossRef" href="#bib8">8</a>&#41;&#46;</p><p id="para20" class="elsevierStylePara elsevierViewall">Aerobic exercise training has been recommended as a non-pharmacological treatment for patients with coronary artery disease &#40;CAD&#41; &#40;<a class="elsevierStyleCrossRef" href="#bib9">9</a>&#44;<a class="elsevierStyleCrossRef" href="#bib10">10</a>&#41;&#46; In this context&#44; continuous exercise training &#40;CET&#41; promotes beneficial cardiorespiratory adaptations in CAD patients &#40;<a class="elsevierStyleCrossRef" href="#bib11">11</a>&#41;&#46; Interestingly&#44; previous investigations &#40;<a class="elsevierStyleCrossRef" href="#bib12">12</a>&#41; have also demonstrated the effectiveness of interval exercise training &#40;IET&#41; for improving cardiorespiratory fitness in CAD patients&#46; IET involves alternating brief &#40;2&#8211;5 min&#41; higher-intensity &#40;&#8805;75&#37; VO<span class="elsevierStyleInf">2peak</span>&#41; and moderate-intensity workloads throughout an exercise session&#46; However&#44; little is known regarding the impact of the exercise training modality on the PETCO<span class="elsevierStyleInf">2</span> response during a graded exercise test in CAD patients&#46; Thus&#44; the purpose of this study was to evaluate the following&#58; 1&#41; the effects of continuous exercise training and interval exercise training on the PETCO<span class="elsevierStyleInf">2</span> response during a graded exercise test in CAD patients&#59; and 2&#41; the effects of exercise modalities on the association between PETCO<span class="elsevierStyleInf">2</span> at the ventilatory anaerobic threshold &#40;VAT&#41; and indicators of ventilatory efficiency and cardiorespiratory fitness in CAD patients&#46;</p></span><span id="cesec20" class="elsevierStyleSection elsevierViewall"><span class="elsevierStyleSectionTitle" id="cestitle70">MATERIALS AND METHODS</span><span id="cesec30" class="elsevierStyleSection elsevierViewall"><span class="elsevierStyleSectionTitle" id="cestitle80">Population</span><p id="para30" class="elsevierStylePara elsevierViewall">The patients were admitted to the coronary care unit from the TotalCor Hospital for the diagnosis of coronary artery disease&#46; Forty-five CAD patients &#40;60&#46;0&#177;1&#46;7&#41; were initially enrolled into this study&#46; The inclusion criterion was stable coronary artery disease diagnosed by coronary angiography&#46; The exclusion criteria were unstable angina pectoris&#44; complex ventricular arrhythmias&#44; pulmonary congestion&#44; and orthopedic or neurological limitations to exercise&#46; Thirty-seven patients meeting the inclusion&#47;exclusion criteria were considered for this study&#46; The CAD patients were randomly divided into two groups&#58; CET &#40;n &#61; 20&#41; and IET &#40;n &#61; 17&#41;&#46; The patients remained on their standard medication throughout the study&#44; and no changes were reported&#46; The study participants read a detailed description of the protocol and completed a written informed consent &#40;<a class="elsevierStyleCrossRef" href="#tbl1">Table 1</a>&#41;&#46;</p><elsevierMultimedia ident="tbl1"></elsevierMultimedia></span><span id="cesec40" class="elsevierStyleSection elsevierViewall"><span class="elsevierStyleSectionTitle" id="cestitle90">Graded Exercise Test</span><p id="para40" class="elsevierStylePara elsevierViewall">A maximal graded exercise test was performed on a programmable treadmill &#40;DigiStress model pulsar&#44; Governador Valadares&#44; MG&#44; Brazil&#41;&#46; The gas exchange and ventilatory variables were measured continuously during the gas exchange tests&#44; breath by breath&#44; using an open-circuit spirometry procedure based on an exercise system &#40;SensorMedics - model Vmax 229 Pulmonary Function&#47;Cardiopulmonary Exercise Testing Instrument&#44; Yorba Linda&#44; CA&#44; USA&#41;&#46; The following variables were obtained breath by breath and were expressed as 30-s averages&#58; pulmonary oxygen uptake &#40;VO<span class="elsevierStyleInf">2</span> ml&#183;kg<span class="elsevierStyleSup">-1</span>&#183;min<span class="elsevierStyleSup">-1</span> STPD&#41;&#44; respiratory exchange ratio &#40;RER&#41;&#44; pulmonary ventilation &#40;VE l&#183;min<span class="elsevierStyleSup">-1</span> BTPS&#41;&#44; functional estimate of dead space &#40;VD&#47;VT&#41;&#44; ventilatory equivalents for oxygen and carbon dioxide &#40;VE&#47;VO<span class="elsevierStyleInf">2</span> and VE&#47;VCO<span class="elsevierStyleInf">2</span>&#41; and end-tidal pressures for oxygen and carbon dioxide &#40;PETO<span class="elsevierStyleInf">2</span> and PETCO<span class="elsevierStyleInf">2</span> mmHg&#41;&#46; Before each test&#44; the gas analyzers were calibrated using gases of known concentrations of carbon dioxide and oxygen balanced with nitrogen&#44; and the flow meter was calibrated using a 3-L syringe&#46; The heart rate was continuously recorded at rest&#44; during the graded exercise testing and during the recovery period using a 12-lead ECG &#40;HW Systems- HeartWare Ltd&#46;&#41;&#46; All tests in this study were performed in the same laboratory at the same room temperature &#40;20-23&#176;C&#41;&#46;</p><p id="para50" class="elsevierStylePara elsevierViewall">The subjects performed a ramp-like progressive exercise test until they were exhausted on the treadmill&#46; The exercise workload &#40;speed and&#47;or slope&#41; was increased every 1 minute&#59; the incremental part of the exercise test was completed between approximately 8 and 12 minutes&#46;</p></span><span id="cesec50" class="elsevierStyleSection elsevierViewall"><span class="elsevierStyleSectionTitle" id="cestitle100">Ventilatory Anaerobic Threshold</span><p id="para60" class="elsevierStylePara elsevierViewall">The ventilatory anaerobic threshold &#40;VAT&#41; was determined to occur at the break point between the increase in the carbon dioxide output and VO<span class="elsevierStyleInf">2</span> &#40;V-Slope&#41; or the point at which the VE&#47;VO<span class="elsevierStyleInf">2</span> reached the minimum value and began to rise without a concomitant rise in VE&#47;VCO<span class="elsevierStyleInf">2</span> &#40;<a class="elsevierStyleCrossRef" href="#bib13">13</a>&#41;&#46;</p></span><span id="cesec60" class="elsevierStyleSection elsevierViewall"><span class="elsevierStyleSectionTitle" id="cestitle110">Respiratory Compensation Point</span><p id="para70" class="elsevierStylePara elsevierViewall">The respiratory compensation point &#40;RCP&#41; was determined to be the point at which the VE&#47;VCO<span class="elsevierStyleInf">2</span> reached its minimum value and began to rise and the highest value of PETCO<span class="elsevierStyleInf">2</span> before its progressive fall &#40;<a class="elsevierStyleCrossRef" href="#bib14">14</a>&#41;&#46;</p></span><span id="cesec70" class="elsevierStyleSection elsevierViewall"><span class="elsevierStyleSectionTitle" id="cestitle120">Peak Oxygen Consumption</span><p id="para80" class="elsevierStylePara elsevierViewall">The peak oxygen consumption &#40;VO<span class="elsevierStyleInf">2peak</span>&#41; was defined as the maximum attained VO<span class="elsevierStyleInf">2</span> at the end of the exercise period&#44; when the subject is exhausted &#40;analog scale of the perceived exertion to the Borg scale&#41;&#46;</p></span><span id="cesec80" class="elsevierStyleSection elsevierViewall"><span class="elsevierStyleSectionTitle" id="cestitle130">Exercise Training Program</span><p id="para90" class="elsevierStylePara elsevierViewall">A supervised exercise training program was conducted at the cardiorespiratory rehabilitation center of the TotalCor Hospital&#46; The exercise training program consisted of three 60-minute exercise sessions per week over a 3-month period&#46; Each exercise session consisted of a 5 minute warm-up&#44; 50 minutes of aerobic exercise and 5 minutes of cool-down exercises&#46; The CET was performed on a treadmill with a 50-minute duration and intensity at VAT&#46; The IET consisted of seven sets of 3 minutes at RCP and seven sets of 3 minutes of exercise at moderate intensity corresponding to the VAT totaling 42 minutes&#46; Heart rate was monitored throughout the session to ensure that all patients exercised within the limits of intensity&#46;</p></span><span id="cesec90" class="elsevierStyleSection elsevierViewall"><span class="elsevierStyleSectionTitle" id="cestitle140">Statistical Analysis</span><p id="para100" class="elsevierStylePara elsevierViewall">The statistical procedures were performed using SPSS version 16&#46;0 &#40;SPSS Inc&#46;&#44; Chicago&#44; IL&#41;&#46; The normality of the distribution was checked for all variables using the Kolmogorov-Smirnov test&#46; A two-way analysis of variance &#40;ANOVA&#41; with repeated measures was performed to evaluate possible within-group and between-group differences for physical characteristics&#44; cardiorespiratory fitness&#44; ventilatory efficiency and PETCO<span class="elsevierStyleInf">2</span> response during GET in the CAD patients subjected to CET and IET&#46; When significance was identified&#44; a Tukey&#39;s post hoc comparison was performed&#46;</p><p id="para110" class="elsevierStylePara elsevierViewall">For both groups&#44; the relative difference &#40;&#916;&#37;&#41; was calculated for PETCO<span class="elsevierStyleInf">2</span> in the intervals from rest to VAT&#44; rest to RCP&#44; and rest to peak of exercise&#46;</p><p id="para120" class="elsevierStylePara elsevierViewall">The Pearson-product moment correlation was performed to examine the association between PETCO<span class="elsevierStyleInf">2</span> at VAT and the cardiorespiratory fitness and ventilatory efficiency after the interventions&#46; The data are presented as means&#177;SE&#46; A <span class="elsevierStyleItalic">p</span>-value of &#60;0&#46;05 was considered statistically significant&#46;</p></span></span><span id="cesec100" class="elsevierStyleSection elsevierViewall"><span class="elsevierStyleSectionTitle" id="cestitle150">RESULTS</span><span id="cesec110" class="elsevierStyleSection elsevierViewall"><span class="elsevierStyleSectionTitle" id="cestitle160">Effects of interventions</span><span id="cesec120" class="elsevierStyleSection elsevierViewall"><span class="elsevierStyleSectionTitle" id="cestitle170">Baseline measurements</span><p id="para130" class="elsevierStylePara elsevierViewall">Before the interventions&#44; no differences in the physical characteristics between the groups studied were noted &#40;<a class="elsevierStyleCrossRef" href="#tbl2">Table 2</a>&#41;&#46; In addition&#44; both groups exhibited similar levels of cardiorespiratory fitness and ventilatory efficiency &#40;<a class="elsevierStyleCrossRef" href="#tbl2">Table 2</a>&#41;&#46;</p><elsevierMultimedia ident="tbl2"></elsevierMultimedia></span><span id="cesec130" class="elsevierStyleSection elsevierViewall"><span class="elsevierStyleSectionTitle" id="cestitle180">Physical characteristics</span><p id="para140" class="elsevierStylePara elsevierViewall">After the interventions&#44; neither the CET nor IET showed a significant reduction in body weight &#40;<a class="elsevierStyleCrossRef" href="#tbl2">Table 2</a>&#41;&#46;</p></span><span id="cesec140" class="elsevierStyleSection elsevierViewall"><span class="elsevierStyleSectionTitle" id="cestitle190">Cardiorespiratory response</span><p id="para150" class="elsevierStylePara elsevierViewall">After the interventions&#44; both the CET and IET showed an increase in the VO<span class="elsevierStyleInf">2peak</span>&#46; A comparison between the groups revealed a similar increase in the cardiorespiratory fitness &#40;<a class="elsevierStyleCrossRef" href="#tbl2">Table 2</a>&#41;&#46;</p><p id="para160" class="elsevierStylePara elsevierViewall">The ventilatory efficiency was analyzed at the VAT&#46; After the exercise training program&#44; the CAD patients subjected to either CET or IET showed significantly lower values for VEVCO<span class="elsevierStyleInf">2</span> and VD&#47;VT&#46; In addition&#44; both exercise training modalities demonstrated an increase in the PETCO<span class="elsevierStyleInf">2</span> at VAT &#40;<a class="elsevierStyleCrossRef" href="#tbl2">Table 2</a>&#41;&#46; A comparison between the groups revealed a similar increase in the ventilatory efficiency &#40;<a class="elsevierStyleCrossRef" href="#tbl2">Table 2</a>&#41;&#46;</p><p id="para170" class="elsevierStylePara elsevierViewall">After the interventions&#44; both the CET and IET showed values significantly greater for the PETCO<span class="elsevierStyleInf">2</span> during the GET &#40;<a class="elsevierStyleCrossRef" href="#fig1">Figure 1</a>&#41;&#46;</p><elsevierMultimedia ident="fig1"></elsevierMultimedia><p id="para180" class="elsevierStylePara elsevierViewall">The changes in the PETCO<span class="elsevierStyleInf">2</span> response from rest to VAT&#44; rest to RCP&#44; and rest to peak of exercise are shown in <a class="elsevierStyleCrossRef" href="#fig2">Figure 2</a>&#46; The statistical analysis determined that the relative difference of the PETCO<span class="elsevierStyleInf">2</span> in all intervals analyzed were significantly higher after the interventions&#46;</p><elsevierMultimedia ident="fig2"></elsevierMultimedia><p id="para190" class="elsevierStylePara elsevierViewall">The results of the correlation analysis between PETCO<span class="elsevierStyleInf">2</span> at VAT and the cardiorespiratory parameters after either CET or IET are shown in <a class="elsevierStyleCrossRef" href="#tbl3">Table 3</a>&#46;</p><elsevierMultimedia ident="tbl3"></elsevierMultimedia><p id="para200" class="elsevierStylePara elsevierViewall">Positive associations were observed in both groups for cardiorespiratory fitness&#58; 1&#41; CET &#40;PetCO<span class="elsevierStyleInf">2</span>VAT and VO<span class="elsevierStyleInf">2peak</span> r &#61; 0&#46;49&#59; PetCO<span class="elsevierStyleInf">2</span>VAT and VO<span class="elsevierStyleInf">2</span>VAT r &#61; 0&#46;49&#59; <span class="elsevierStyleItalic">p</span>&#60;0&#46;05&#41; and 2&#41; IET &#40;PetCO<span class="elsevierStyleInf">2</span>VAT and VO<span class="elsevierStyleInf">2peak</span> r &#61; 0&#46;39&#59; PetCO<span class="elsevierStyleInf">2</span>VAT and VO<span class="elsevierStyleInf">2</span>VAT r &#61; 0&#46;33&#59; <span class="elsevierStyleItalic">p</span>&#60;0&#46;05&#41;&#46; However&#44; negative associations were observed in both groups for ventilatory efficiency&#58; 1&#41; CET &#40;PetCO<span class="elsevierStyleInf">2</span>VAT and VEVCO<span class="elsevierStyleInf">2</span>VAT r &#61; -0&#46;80&#59; PetCO<span class="elsevierStyleInf">2</span>VAT and VD&#47;VT VAT r &#61; -0&#46;57&#59; <span class="elsevierStyleItalic">p</span>&#60;0&#46;05&#41; and 2&#41; IET &#40;PetCO<span class="elsevierStyleInf">2</span>VAT and VEVCO<span class="elsevierStyleInf">2</span>VAT r &#61; -0&#46;45&#59; PetCO<span class="elsevierStyleInf">2</span>VAT and VD&#47;VT VAT r &#61; -0&#46;42&#59; <span class="elsevierStyleItalic">p</span>&#60;0&#46;05&#41;&#46;</p></span></span></span><span id="cesec150" class="elsevierStyleSection elsevierViewall"><span class="elsevierStyleSectionTitle" id="cestitle200">DISCUSSION</span><p id="para210" class="elsevierStylePara elsevierViewall">The main findings of this investigation were the following&#58; 1&#41; continuous exercise training and interval exercise training improved the PETCO<span class="elsevierStyleInf">2</span> response during a graded exercise test in CAD patients&#59; 2&#41; both exercise modalities resulted in similar increases in the values of PETCO<span class="elsevierStyleInf">2</span>&#59; and 3&#41; after exercise training&#44; the improvements in ventilatory efficiency and cardiorespiratory fitness in patients with CAD were associated with increased values of PETCO<span class="elsevierStyleInf">2</span>&#46;</p><p id="para220" class="elsevierStylePara elsevierViewall">The elucidation of the mechanisms involved in the improvement observed in the PETCO<span class="elsevierStyleInf">2</span> response after exercise training in the CAD patients are beyond the scope of this study&#46; However&#44; we suggest that factors related to the improvement of the ventilation-perfusion &#40;V&#47;Q&#41; mismatch may be responsible for the increase in the PETCO<span class="elsevierStyleInf">2</span> during a graded exercise test &#40;<a class="elsevierStyleCrossRef" href="#bib11">11</a>&#41;&#46;</p><p id="para230" class="elsevierStylePara elsevierViewall">In this regard&#44; previous investigations have shown that the failure of pulmonary blood flow &#40;cardiac output&#41; to increase appropriately during exercise and increased physiological dead space are the main factors leading to a decrease in PETCO<span class="elsevierStyleInf">2</span> in cardiac patients &#40;<a class="elsevierStyleCrossRef" href="#bib1">1</a>&#44;<a class="elsevierStyleCrossRef" href="#bib15">15</a>&#41;&#46; For example&#44; Matsumoto et al&#46; &#40;<a class="elsevierStyleCrossRef" href="#bib5">5</a>&#41; reported a positive association between cardiac output and PETCO<span class="elsevierStyleInf">2</span> during a graded exercise test in cardiac patients&#46; In addition&#44; ETO et al&#46; &#40;<a class="elsevierStyleCrossRef" href="#bib11">11</a>&#41; observed a close relationship between increased PETCO<span class="elsevierStyleInf">2</span> and cardiac output after aerobic exercise training in cardiac patients&#46; In contrast&#44; previous studies &#40;<a class="elsevierStyleCrossRef" href="#bib1">1</a>&#44;<a class="elsevierStyleCrossRef" href="#bib5">5</a>&#44;<a class="elsevierStyleCrossRef" href="#bib15">15</a>&#41; reported an association between low levels of PETCO<span class="elsevierStyleInf">2</span> during exercise with ventilatory inefficiency&#46; Accordingly&#44; our findings suggest that factors related to the increase in both ventilatory efficiency and cardiorespiratory fitness were mainly responsible for the increase in PETCO<span class="elsevierStyleInf">2</span> during the graded exercise test&#46; In fact&#44; after 12 weeks of either CET or interval exercise training&#44; the CAD patients had lower values for VEVCO<span class="elsevierStyleInf">2</span> and VD&#47;VT at VAT&#46; Moreover&#44; the CAD patients subjected to both exercise training modalities demonstrated increases in VO<span class="elsevierStyleInf">2peak</span>&#46; After the interventions&#44; we observed a positive association between PETCO<span class="elsevierStyleInf">2</span> at VAT and VO<span class="elsevierStyleInf">2peak</span> and a negative association between PETCO<span class="elsevierStyleInf">2</span> at VAT and VEVCO<span class="elsevierStyleInf">2</span> at VAT&#46; These findings suggest that the improvement in the V&#47;Q mismatch after exercise training may be associated with an increase in the PETCO<span class="elsevierStyleInf">2</span> at VAT&#46; Another possible explanation for the increased PETCO<span class="elsevierStyleInf">2</span> after exercise training would be raising the set point of PaCO<span class="elsevierStyleInf">2</span> modulation by peripheral chemoreceptors and&#47;or hypoventilation &#40;<a class="elsevierStyleCrossRef" href="#bib11">11</a>&#44;<a class="elsevierStyleCrossRef" href="#bib16">16</a>&#41;&#46;</p><p id="para240" class="elsevierStylePara elsevierViewall">With regard to cardiorespiratory fitness&#44; the CAD patients subjected to either CET or IET exhibited similar increases in VO<span class="elsevierStyleInf">2peak</span>&#46; In this context&#44; our findings are in agreement with previous studies that demonstrated the same effectiveness of both exercise training modalities to increase the cardiorespiratory fitness in CAD patients &#40;<a class="elsevierStyleCrossRef" href="#bib12">12</a>&#44;<a class="elsevierStyleCrossRef" href="#bib17">17</a>&#46; However&#44; other investigations <a class="elsevierStyleCrossRef" href="#bib18">18</a>&#44;<a class="elsevierStyleCrossRef" href="#bib19">19</a>&#44;<a class="elsevierStyleCrossRef" href="#bib20">20</a>&#41; observed greater responsiveness to interval exercise training compared with continuous exercise training&#46;</p><p id="para250" class="elsevierStylePara elsevierViewall">For example&#44; Rogmo et al&#46; &#40;<a class="elsevierStyleCrossRef" href="#bib18">18</a>&#41; observed a superior increase in VO<span class="elsevierStyleInf">2peak</span> in CAD patients subjected to IET&#44; in which 4 minutes at a higher intensity &#40;80-90&#37; VO<span class="elsevierStyleInf">2peak</span>&#41; and 3 minutes at a moderate intensity &#40;50-60&#37; VO<span class="elsevierStyleInf">2peak</span>&#41; were alternated throughout the exercise session&#46; In the same study &#40;<a class="elsevierStyleCrossRef" href="#bib18">18</a>&#41;&#44; the CAD patients subjected to CET performed 41 minutes at a moderate intensity &#40;50-60&#37; VO<span class="elsevierStyleInf">2peak</span>&#41; over 10 weeks&#46; In the same context&#44; Ciolac et al&#46; &#40;<a class="elsevierStyleCrossRef" href="#bib20">20</a>&#41; observed that interval exercise training &#40;80&#37; of reserve heart rate&#41; in hypertensive patients increased cardiorespiratory fitness to a higher degree than continuous exercise training &#40;60&#37; of reserve heart rate&#41;&#46;</p><p id="para260" class="elsevierStylePara elsevierViewall">In this investigation&#44; the CAD patients subjected to IET performed 3 minutes at RCP &#40;80-90&#37; VO<span class="elsevierStyleInf">2peak</span>&#41; and 3 minutes at moderate intensity corresponding to the VAT&#46; In contrast&#44; the patients subjected to CET performed 50 minutes at VAT &#40;70-80&#37; VO<span class="elsevierStyleInf">2peak</span>&#41; over 12 weeks&#46;</p><p id="para270" class="elsevierStylePara elsevierViewall">These results conflict with previous studies &#40;<a class="elsevierStyleCrossRef" href="#bib18">18</a>&#44;<a class="elsevierStyleCrossRef" href="#bib20">20</a>&#41; and may be associated with a greater relative intensity and higher training volume in the CET group of our study&#46;</p><p id="para280" class="elsevierStylePara elsevierViewall">In fact&#44; evidence has suggested that stroke volume is the main factor that limits cardiorespiratory fitness &#40;<a class="elsevierStyleCrossRef" href="#bib20">20</a>&#41;&#46; Moreover&#44; higher intensities of aerobic exercise promote an increase in central O<span class="elsevierStyleInf">2</span> delivery &#40;cardiac output&#41;&#44; thereby contributing to the training-induced improvements in VO<span class="elsevierStyleInf">2peak</span> &#40;<a class="elsevierStyleCrossRef" href="#bib20">20</a>&#41;&#46;</p><p id="para290" class="elsevierStylePara elsevierViewall">These findings demonstrate the need for a greater number of randomized trials to investigate the mode of aerobic exercise training that is more responsive in terms of increased cardiorespiratory fitness for patients with coronary artery disease&#46;</p><p id="para300" class="elsevierStylePara elsevierViewall">Interestingly&#44; after an exercise training program&#44; the CAD patients did not display any reduction in body weight&#46; Recent studies &#40;<a class="elsevierStyleCrossRef" href="#bib21">21</a>&#44;<a class="elsevierStyleCrossRef" href="#bib22">22</a>&#41; have indicated that exercise-related caloric expenditure for patients enrolled in cardiac rehabilitation programs was only modest&#46;</p><p id="para310" class="elsevierStylePara elsevierViewall">In both exercise training modalities&#44; we observed energy expenditures of approximately 230 kcal&#47;session&#46; For example&#44; Savage et al&#46; &#40;2000&#41; reported that a caloric expenditure of 270 kcal&#47;session during three months of a cardiac rehabilitation program had little impact on measures of obesity&#46;</p><p id="para320" class="elsevierStylePara elsevierViewall">This study has limitations&#44; such as the lack of evaluations of cardiac output and arterial blood gases during the graded exercise test&#46;</p><p id="para330" class="elsevierStylePara elsevierViewall">In summary&#44; these findings suggest that both continuous exercise training and interval exercise training promote an improved PETCO<span class="elsevierStyleInf">2</span> response during a graded exercise test in patients with coronary artery disease&#46; Taken together&#44; these results demonstrate that the application of different modalities of aerobic exercise training may be important in improving cardiorespiratory efficiency in patients with coronary artery disease&#46;</p></span><span id="cesec160" class="elsevierStyleSection elsevierViewall"><span class="elsevierStyleSectionTitle" id="cestitle210">AUTHOR CONTRIBUTIONS</span><p id="para340" class="elsevierStylePara elsevierViewall">Rocco EA wrote the manuscript&#46; Prado ML wrote the manuscript and was responsible for the statistical analyses&#46; Silva AG wrote the manuscript&#46; Lazzari JM and Bortz PC were responsible for the application of physical training in the patients&#46; Rocco DF wrote the manuscript and reviewed the English version&#46; Rosa CG was responsible for conducting the cardiopulmonary evaluation in the patients&#46; Furlan V was responsible for the statistical analyses&#46;</p></span></span>"
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              "titulo" => "Ventilatory Anaerobic Threshold"
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              "titulo" => "Respiratory Compensation Point"
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              "titulo" => "Peak Oxygen Consumption"
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              "titulo" => "Exercise Training Program"
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              "titulo" => "Effects of interventions"
              "secciones" => array:3 [
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                  "titulo" => "Baseline measurements"
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                1 => array:2 [
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                  "titulo" => "Physical characteristics"
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    "fechaRecibido" => "2012-01-28"
    "fechaAceptado" => "2012-02-15"
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          "palabras" => array:4 [
            0 => "Coronary Artery Disease"
            1 => "Exercise"
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        "resumen" => "<span id="ceabs10" class="elsevierStyleSection elsevierViewall"><span class="elsevierStyleSectionTitle" id="cestitle10">OBJECTIVE&#58;</span><p id="spara90" class="elsevierStyleSimplePara elsevierViewall">The purpose of this study was to evaluate the following&#58; 1&#41; the effects of continuous exercise training and interval exercise training on the end-tidal carbon dioxide pressure &#40;PETCO<span class="elsevierStyleInf">2</span>&#41; response during a graded exercise test in patients with coronary artery disease&#59; and 2&#41; the effects of exercise training modalities on the association between PETCO<span class="elsevierStyleInf">2</span> at the ventilatory anaerobic threshold &#40;VAT&#41; and indicators of ventilatory efficiency and cardiorespiratory fitness in patients with coronary artery disease&#46;</p></span> <span id="ceabs20" class="elsevierStyleSection elsevierViewall"><span class="elsevierStyleSectionTitle" id="cestitle20">METHODS&#58;</span><p id="spara100" class="elsevierStyleSimplePara elsevierViewall">Thirty-seven patients &#40;59&#46;7&#177;1&#46;7 years&#41; with coronary artery disease were randomly divided into two groups&#58; continuous exercise training &#40;n &#61; 20&#41; and interval exercise training &#40;n &#61; 17&#41;&#46; All patients performed a graded exercise test with respiratory gas analysis before and after three months of the exercise training program to determine the VAT&#44; respiratory compensation point &#40;RCP&#41; and peak oxygen consumption&#46;</p></span> <span id="ceabs30" class="elsevierStyleSection elsevierViewall"><span class="elsevierStyleSectionTitle" id="cestitle30">RESULTS&#58;</span><p id="spara110" class="elsevierStyleSimplePara elsevierViewall">After the interventions&#44; both groups exhibited increased cardiorespiratory fitness&#46; Indeed&#44; the continuous exercise and interval exercise training groups demonstrated increases in both ventilatory efficiency and PETCO<span class="elsevierStyleInf">2</span> values at VAT&#44; RCP&#44; and peak of exercise&#46; Significant associations were observed in both groups&#58; 1&#41; continuous exercise training &#40;PETCO<span class="elsevierStyleInf">2</span>VAT and cardiorespiratory fitness r &#61; 0&#46;49&#59; PETCO<span class="elsevierStyleInf">2</span>VAT and ventilatory efficiency r &#61; -0&#46;80&#41; and 2&#41; interval exercise training &#40;PETCO<span class="elsevierStyleInf">2</span>VAT and cardiorespiratory fitness r &#61; 0&#46;39&#59; PETCO<span class="elsevierStyleInf">2</span>VAT and ventilatory efficiency r &#61; -0&#46;45&#41;&#46;</p></span> <span id="ceabs40" class="elsevierStyleSection elsevierViewall"><span class="elsevierStyleSectionTitle" id="cestitle40">CONCLUSIONS&#58;</span><p id="spara120" class="elsevierStyleSimplePara elsevierViewall">Both exercise training modalities showed similar increases in PETCO<span class="elsevierStyleInf">2</span> levels during a graded exercise test in patients with coronary artery disease&#44; which may be associated with an improvement in ventilatory efficiency and cardiorespiratory fitness&#46;</p></span>"
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          "en" => "<p id="spara20" class="elsevierStyleSimplePara elsevierViewall">Percentage difference from rest to ventilatory anaerobic threshold &#40;rest&#47;VAT&#41;&#44; rest to respiratory compensation point &#40;rest&#47;RCP&#41; and rest to peak of exercise &#40;rest&#47;Peak&#41; in patients with coronary artery disease subjected to continuous exercise training &#40;panel A&#41; and interval exercise training &#40;panel B&#41;&#46; VAT &#61; ventilatory anaerobic threshold&#59; RCP &#61; respiratory compensation point&#46; &#42; <span class="elsevierStyleItalic">p</span>&#60;0&#46;05 <span class="elsevierStyleItalic">vs&#46;</span> post-intervention&#46;</p>"
        ]
      ]
      2 => array:7 [
        "identificador" => "tbl1"
        "etiqueta" => "Table 1"
        "tipo" => "MULTIMEDIATABLA"
        "mostrarFloat" => true
        "mostrarDisplay" => false
        "tabla" => array:2 [
          "leyenda" => "<p id="spara40" class="elsevierStyleSimplePara elsevierViewall">Values are means&#177;SE&#46; CET &#61; continuous exercise training&#59; IET &#61; interval exercise training&#59; BMI &#61; body mass index&#46; <span class="elsevierStyleItalic">p</span>&#62;0&#46;01 for all variables between groups&#46;</p>"
          "tablatextoimagen" => array:1 [
            0 => array:1 [
              "tabla" => array:1 [
                0 => """
                  <table border="0" frame="\n
                  \t\t\t\t\tvoid\n
                  \t\t\t\t" class=""><thead title="thead"><tr title="table-row"><th class="td" title="\n
                  \t\t\t\t\ttable-head\n
                  \t\t\t\t  " align="" valign="\n
                  \t\t\t\t\ttop\n
                  \t\t\t\t" scope="col" style="border-bottom: 2px solid black">&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t\t\t</th><th class="td" title="\n
                  \t\t\t\t\ttable-head\n
                  \t\t\t\t  " align="center" valign="top" scope="col" style="border-bottom: 2px solid black">All patients&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t\t\t</th><th class="td" title="\n
                  \t\t\t\t\ttable-head\n
                  \t\t\t\t  " align="center" valign="top" scope="col" style="border-bottom: 2px solid black">CET&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t\t\t</th><th class="td" title="\n
                  \t\t\t\t\ttable-head\n
                  \t\t\t\t  " align="center" valign="top" scope="col" style="border-bottom: 2px solid black">IET&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t\t\t</th></tr></thead><tbody title="tbody"><tr title="table-row"><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="left" valign="top">N&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">37&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">20&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">17&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td></tr><tr title="table-row"><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="left" valign="top">Age &#40;years&#41;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">59&#46;7&#177;1&#46;7&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">62&#46;5&#177;2&#46;0&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">56&#46;5&#177;3&#46;0&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td></tr><tr title="table-row"><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="left" valign="top">Weight &#40;kg&#41;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">79&#46;8&#177;2&#46;3&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">78&#46;2&#177;3&#46;1&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">81&#46;6&#177;3&#46;7&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td></tr><tr title="table-row"><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="left" valign="top">BMI &#40;kg&#47;m<span class="elsevierStyleSup">2</span>&#41;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">28&#46;3&#177;0&#46;6&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">28&#46;1&#177;1&#46;0&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">28&#46;5&#177;0&#46;9&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td></tr><tr title="table-row"><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="left" valign="top">Men&#47;women&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">28&#47;9&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">15&#47;5&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">14&#47;3&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td></tr><tr title="table-row"><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="left" valign="top"><span class="elsevierStyleHsp" style=""></span>Hypertension&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">35 &#40;84&#37;&#41;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">19 &#40;54&#37;&#41;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">16 &#40;46&#37;&#41;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td></tr><tr title="table-row"><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="left" valign="top"><span class="elsevierStyleHsp" style=""></span>Diabetes&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">11 &#40;30&#37;&#41;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">4 &#40;36&#37;&#41;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">7 &#40;64&#37;&#41;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td></tr><tr title="table-row"><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="left" valign="top"><span class="elsevierStyleHsp" style=""></span>Myocardial infarction&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">17 &#40;46&#37;&#41;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">11 &#40;65&#37;&#41;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">6 &#40;35&#37;&#41;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td></tr><tr title="table-row"><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="left" valign="top">Drugs&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="" valign="\n
                  \t\t\t\t\ttop\n
                  \t\t\t\t">&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="" valign="\n
                  \t\t\t\t\ttop\n
                  \t\t\t\t">&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="" valign="\n
                  \t\t\t\t\ttop\n
                  \t\t\t\t">&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td></tr><tr title="table-row"><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="left" valign="top"><span class="elsevierStyleHsp" style=""></span>Beta-blockers&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">27 &#40;72&#37;&#41;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">16 &#40;59&#37;&#41;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">11 &#40;41&#37;&#41;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td></tr><tr title="table-row"><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="left" valign="top"><span class="elsevierStyleHsp" style=""></span>ACE inhibitors&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">24 &#40;65&#37;&#41;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">10 &#40;42&#37;&#41;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">14 &#40;58&#37;&#41;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td></tr></tbody></table>
                  """
              ]
            ]
          ]
        ]
        "descripcion" => array:1 [
          "en" => "<p id="spara30" class="elsevierStyleSimplePara elsevierViewall">Patient characteristics&#46;</p>"
        ]
      ]
      3 => array:7 [
        "identificador" => "tbl2"
        "etiqueta" => "Table 2"
        "tipo" => "MULTIMEDIATABLA"
        "mostrarFloat" => true
        "mostrarDisplay" => false
        "tabla" => array:2 [
          "leyenda" => "<p id="spara60" class="elsevierStyleSimplePara elsevierViewall">Values are means<span class="elsevierStyleUnderline">&#43;</span>SE&#46; Pre&#44; pre-intervention&#59; Post&#44; post-intervention&#59; CET&#44; continuous exercise training&#59; IET&#44; interval exercise training&#59; BMI&#44; body mass index&#59; VAT&#44; ventilatory anaerobic threshold&#46; &#42;<span class="elsevierStyleItalic">p&#60;</span>0&#46;05 <span class="elsevierStyleItalic">vs</span>&#46; pre-intervention&#59; <span class="elsevierStyleBold">&#8224;</span><span class="elsevierStyleItalic">p&#60;</span>0&#46;01 <span class="elsevierStyleItalic">vs&#46;</span> pre-intervention&#46;</p>"
          "tablatextoimagen" => array:1 [
            0 => array:1 [
              "tabla" => array:1 [
                0 => """
                  <table border="0" frame="\n
                  \t\t\t\t\tvoid\n
                  \t\t\t\t" class=""><thead title="thead"><tr title="table-row"><th class="td" title="\n
                  \t\t\t\t\ttable-head\n
                  \t\t\t\t  " align="" valign="\n
                  \t\t\t\t\ttop\n
                  \t\t\t\t" scope="col">&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t\t\t</th><th class="td" title="\n
                  \t\t\t\t\ttable-head\n
                  \t\t\t\t  " colspan="2" align="center" valign="top" scope="col" style="border-bottom: 2px solid black">CET</th><th class="td" title="\n
                  \t\t\t\t\ttable-head\n
                  \t\t\t\t  " colspan="2" align="center" valign="top" scope="col" style="border-bottom: 2px solid black">IET</th></tr><tr title="table-row"><th class="td" title="\n
                  \t\t\t\t\ttable-head\n
                  \t\t\t\t  " align="" valign="\n
                  \t\t\t\t\ttop\n
                  \t\t\t\t" scope="col" style="border-bottom: 2px solid black">&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t\t\t</th><th class="td" title="\n
                  \t\t\t\t\ttable-head\n
                  \t\t\t\t  " align="center" valign="top" scope="col" style="border-bottom: 2px solid black">Pre&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t\t\t</th><th class="td" title="\n
                  \t\t\t\t\ttable-head\n
                  \t\t\t\t  " align="center" valign="top" scope="col" style="border-bottom: 2px solid black">Post&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t\t\t</th><th class="td" title="\n
                  \t\t\t\t\ttable-head\n
                  \t\t\t\t  " align="center" valign="top" scope="col" style="border-bottom: 2px solid black">Pre&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t\t\t</th><th class="td" title="\n
                  \t\t\t\t\ttable-head\n
                  \t\t\t\t  " align="center" valign="top" scope="col" style="border-bottom: 2px solid black">Post&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t\t\t</th></tr></thead><tbody title="tbody"><tr title="table-row"><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="left" valign="top"><span class="elsevierStyleItalic">Physical measurements</span>&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="" valign="\n
                  \t\t\t\t\ttop\n
                  \t\t\t\t">&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="" valign="\n
                  \t\t\t\t\ttop\n
                  \t\t\t\t">&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="" valign="\n
                  \t\t\t\t\ttop\n
                  \t\t\t\t">&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="" valign="\n
                  \t\t\t\t\ttop\n
                  \t\t\t\t">&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td></tr><tr title="table-row"><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="left" valign="top">Age &#40;years&#41;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">62&#46;5&#177;2&#46;1&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">62&#46;6&#177;2&#46;1&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">56&#46;5&#177;2&#46;7&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">56&#46;8&#177;2&#46;6&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td></tr><tr title="table-row"><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="left" valign="top">Weight &#40;kg&#41;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">78&#46;2&#177;3&#46;3&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">78&#46;1&#177;3&#46;3&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">81&#46;6&#177;3&#46;3&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">81&#46;9&#177;3&#46;0&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td></tr><tr title="table-row"><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="left" valign="top">BMI &#40;kg&#47;m<span class="elsevierStyleSup">2</span>&#41;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">28&#46;1&#177;1&#46;0&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">28&#46;1&#177;1&#46;0&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">28&#46;5&#177;0&#46;7&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">28&#46;5&#177;0&#46;7&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td></tr><tr title="table-row"><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="left" valign="top"><span class="elsevierStyleItalic">Cardiorespiratory measurements</span>&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="" valign="\n
                  \t\t\t\t\ttop\n
                  \t\t\t\t">&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="" valign="\n
                  \t\t\t\t\ttop\n
                  \t\t\t\t">&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="" valign="\n
                  \t\t\t\t\ttop\n
                  \t\t\t\t">&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="" valign="\n
                  \t\t\t\t\ttop\n
                  \t\t\t\t">&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td></tr><tr title="table-row"><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="left" valign="top">VO<span class="elsevierStyleInf">2peak</span> mL&#47;kg&#47;min&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">18&#46;0&#177;1&#46;2&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">22&#46;2&#177;1&#46;3&#42;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">17&#46;9&#177;1&#46;0&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">22&#46;3&#177;1&#46;1&#42;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td></tr><tr title="table-row"><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="left" valign="top">VO<span class="elsevierStyleInf">2</span> &#40;VAT&#41; mL&#47;kg&#47;min&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">12&#46;5&#177;0&#46;7&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">15&#46;0&#177;0&#46;7&#42;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">12&#46;3&#177;0&#46;6&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">14&#46;0&#177;0&#46;7&#42;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td></tr><tr title="table-row"><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="left" valign="top">VEVCO<span class="elsevierStyleInf">2</span> &#40;VAT&#41;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">33&#46;0&#177;0&#46;8&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">29&#46;7&#177;0&#46;6&#42;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">31&#46;8&#177;0&#46;4&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">29&#46;1&#177;0&#46;6&#42;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td></tr><tr title="table-row"><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="left" valign="top">VD&#47;VT &#40;VAT&#41;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">0&#46;20&#177;0&#46;0&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">0&#46;16&#177;0&#46;0<span class="elsevierStyleBold">&#42;&#8224;</span>&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">0&#46;20&#177;0&#46;0&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">0&#46;18&#177;0&#46;0&#42;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td></tr><tr title="table-row"><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="left" valign="top">PETCO<span class="elsevierStyleInf">2</span> &#40;VAT&#41; mmHg&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">37&#46;5&#177;0&#46;6&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">41&#46;0&#177;0&#46;4<span class="elsevierStyleBold">&#42;&#8224;</span>&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">38&#46;0&#177;0&#46;6&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">40&#46;2&#177;0&#46;3&#42;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td></tr></tbody></table>
                  """
              ]
            ]
          ]
        ]
        "descripcion" => array:1 [
          "en" => "<p id="spara50" class="elsevierStyleSimplePara elsevierViewall">Physical and cardiorespiratory measurements in the CAD patients subjected to continuous exercise training and interval exercise training&#46;</p>"
        ]
      ]
      4 => array:7 [
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            0 => array:1 [
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                0 => """
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                  \t\t\t\t" scope="col">&nbsp;\t\t\t\t\t\t\n
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                  \t\t\t\t  " colspan="2" align="center" valign="top" scope="col" style="border-bottom: 2px solid black">CET</th><th class="td" title="\n
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                  \t\t\t\t  " colspan="2" align="center" valign="top" scope="col" style="border-bottom: 2px solid black">IET</th></tr><tr title="table-row"><th class="td" title="\n
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                  \t\t\t\t  " align="center" valign="top" scope="col" style="border-bottom: 2px solid black"><span class="elsevierStyleItalic">p</span>-value&nbsp;\t\t\t\t\t\t\n
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                  \t\t\t\t  " align="center" valign="top" scope="col" style="border-bottom: 2px solid black"><span class="elsevierStyleItalic">p</span>-value&nbsp;\t\t\t\t\t\t\n
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                  \t\t\t\t  " align="left" valign="top">VO<span class="elsevierStyleInf">2peak</span> mL&#47;kg&#47;min&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
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                  \t\t\t\t  " align="center" valign="top">0&#46;49&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
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                  \t\t\t\t  " align="center" valign="top">0&#46;01&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
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                  \t\t\t\t  " align="center" valign="top">0&#46;39&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
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                  \t\t\t\t  " align="center" valign="top">0&#46;01&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td></tr><tr title="table-row"><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="left" valign="top">VO<span class="elsevierStyleInf">2</span> &#40;VAT&#41; mL&#47;kg&#47;min&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
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                  \t\t\t\t  " align="center" valign="top">0&#46;49&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">0&#46;01&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">0&#46;33&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
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                  \t\t\t\t  " align="center" valign="top">0&#46;05&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td></tr><tr title="table-row"><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="left" valign="top">VEVCO<span class="elsevierStyleInf">2</span> &#40;VAT&#41;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">-0&#46;80&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">0&#46;01&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">-0&#46;45&nbsp;\t\t\t\t\t\t\n
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                  \t\t\t\t  " align="center" valign="top">0&#46;01&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td></tr><tr title="table-row"><td class="td" title="\n
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                  \t\t\t\t  " align="left" valign="top">VD&#47;VT &#40;VAT&#41;&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">-0&#46;57&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">0&#46;01&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
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                  \t\t\t\t  " align="center" valign="top">-0&#46;42&nbsp;\t\t\t\t\t\t\n
                  \t\t\t\t</td><td class="td" title="\n
                  \t\t\t\t\ttable-entry\n
                  \t\t\t\t  " align="center" valign="top">0&#46;01&nbsp;\t\t\t\t\t\t\n
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          "en" => "<p id="spara70" class="elsevierStyleSimplePara elsevierViewall">Correlations between PETCO<span class="elsevierStyleInf">2</span> at ventilatory anaerobic threshold and the cardiorespiratory measurements in CAD patients after continuous exercise training and interval exercise training&#46;</p>"
        ]
      ]
    ]
    "bibliografia" => array:2 [
      "titulo" => "REFERENCES"
      "seccion" => array:1 [
        0 => array:2 [
          "identificador" => "cebibsec10"
          "bibliografiaReferencia" => array:22 [
            0 => array:3 [
              "identificador" => "bib1"
              "etiqueta" => "1"
              "referencia" => array:1 [
                0 => array:2 [
                  "contribucion" => array:1 [
                    0 => array:2 [
                      "titulo" => "Significance of end-tidal P&#40;CO&#40;2&#41;&#41; response to exercise and its relation to functional capacity in patients with chronic heart failure"
                      "autores" => array:1 [
                        0 => array:2 [
                          "etal" => false
                          "autores" => array:5 [
                            0 => """
                              Y Tanabe \n
                              \t\t\t\t\t\t\t\t
                              """
                            1 => """
                              Y Hosaka \n
                              \t\t\t\t\t\t\t\t
                              """
                            2 => """
                              M Ito \n
                              \t\t\t\t\t\t\t\t
                              """
                            3 => """
                              E Ito \n
                              \t\t\t\t\t\t\t\t
                              """
                            4 => """
                              K Suzuki \n
                              \t\t\t\t\t\t\t\t
                              """
                          ]
                        ]
                      ]
                    ]
                  ]
                  "host" => array:1 [
                    0 => array:2 [
                      "doi" => "10.1378/chest.119.3.811"
                      "Revista" => array:7 [
                        "tituloSerie" => "Chest"
                        "fecha" => "2001"
                        "volumen" => "119"
                        "numero" => "3"
                        "paginaInicial" => "811"
                        "paginaFinal" => "817"
                        "link" => array:1 [
                          0 => array:2 [
                            "url" => "https://www.ncbi.nlm.nih.gov/pubmed/11243962"
                            "web" => "Medline"
                          ]
                        ]
                      ]
                    ]
                  ]
                ]
              ]
            ]
            1 => array:3 [
              "identificador" => "bib2"
              "etiqueta" => "2"
              "referencia" => array:1 [
                0 => array:2 [
                  "contribucion" => array:1 [
                    0 => array:2 [
                      "titulo" => "Mixed-expired and end-tidal CO2 distinguish between ventilation and perfusion defects during exercise testing in patients with lung and heart diseases"
                      "autores" => array:1 [
                        0 => array:2 [
                          "etal" => false
                          "autores" => array:5 [
                            0 => """
                              JE Hansen \n
                              \t\t\t\t\t\t\t\t
                              """
                            1 => """
                              G Ulubay \n
                              \t\t\t\t\t\t\t\t
                              """
                            2 => """
                              BF Chow \n
                              \t\t\t\t\t\t\t\t
                              """
                            3 => """
                              XG Sun \n
                              \t\t\t\t\t\t\t\t
                              """
                            4 => """
                              K Wasserman \n
                              \t\t\t\t\t\t\t\t
                              """
                          ]
                        ]
                      ]
                    ]
                  ]
                  "host" => array:1 [
                    0 => array:2 [
                      "doi" => "10.1378/chest.07-0619"
                      "Revista" => array:7 [
                        "tituloSerie" => "Chest"
                        "fecha" => "2007"
                        "volumen" => "132"
                        "numero" => "3"
                        "paginaInicial" => "977"
                        "paginaFinal" => "983"
                        "link" => array:1 [
                          0 => array:2 [
                            "url" => "https://www.ncbi.nlm.nih.gov/pubmed/17573506"
                            "web" => "Medline"
                          ]
                        ]
                      ]
                    ]
                  ]
                ]
              ]
            ]
            2 => array:3 [
              "identificador" => "bib3"
              "etiqueta" => "3"
              "referencia" => array:1 [
                0 => array:2 [
                  "contribucion" => array:1 [
                    0 => array:2 [
                      "titulo" => "End-tidal carbon dioxide during extremely low cardiac output"
                      "autores" => array:1 [
                        0 => array:2 [
                          "etal" => true
                          "autores" => array:6 [
                            0 => """
                              AH Idris \n
                              \t\t\t\t\t\t\t\t
                              """
                            1 => """
                              ED Staples \n
                              \t\t\t\t\t\t\t\t
                              """
                            2 => """
                              DJ O&#39;Brien \n
                              \t\t\t\t\t\t\t\t
                              """
                            3 => """
                              RJ Melker \n
                              \t\t\t\t\t\t\t\t
                              """
                            4 => """
                              WJ Rush \n
                              \t\t\t\t\t\t\t\t
                              """
                            5 => """
                              KD Del Duca \n
                              \t\t\t\t\t\t\t\t
                              """
                          ]
                        ]
                      ]
                    ]
                  ]
                  "host" => array:1 [
                    0 => array:2 [
                      "doi" => "10.1016/s0196-0644(94)70080-x"
                      "Revista" => array:7 [
                        "tituloSerie" => "Annals of emergency medicine"
                        "fecha" => "1994"
                        "volumen" => "23"
                        "numero" => "3"
                        "paginaInicial" => "568"
                        "paginaFinal" => "572"
                        "link" => array:1 [
                          0 => array:2 [
                            "url" => "https://www.ncbi.nlm.nih.gov/pubmed/8135436"
                            "web" => "Medline"
                          ]
                        ]
                      ]
                    ]
                  ]
                ]
              ]
            ]
            3 => array:3 [
              "identificador" => "bib4"
              "etiqueta" => "4"
              "referencia" => array:1 [
                0 => array:2 [
                  "contribucion" => array:1 [
                    0 => array:2 [
                      "titulo" => "Lung function and exercise gas exchange in chronic heart failure"
                      "autores" => array:1 [
                        0 => array:2 [
                          "etal" => true
                          "autores" => array:6 [
                            0 => """
                              K Wasserman \n
                              \t\t\t\t\t\t\t\t
                              """
                            1 => """
                              YY Zhang \n
                              \t\t\t\t\t\t\t\t
                              """
                            2 => """
                              A Gitt \n
                              \t\t\t\t\t\t\t\t
                              """
                            3 => """
                              R Belardinelli \n
                              \t\t\t\t\t\t\t\t
                              """
                            4 => """
                              A Koike \n
                              \t\t\t\t\t\t\t\t
                              """
                            5 => """
                              L Lubarsky \n
                              \t\t\t\t\t\t\t\t
                              """
                          ]
                        ]
                      ]
                    ]
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es en pt

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