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1.
Clinics ; 70(1): 46-51, 1/2015. tab, graf
Article in English | LILACS | ID: lil-735867

ABSTRACT

OBJECTIVE: To test the hypotheses that 1) coronary artery disease patients with lower aerobic fitness exhibit a lower ventilatory efficiency and 2) coronary artery disease patients with lower initial aerobic fitness exhibit greater improvements in ventilatory efficiency with aerobic exercise training. METHOD: A total of 123 patients (61.0±0.7 years) with coronary artery disease were divided according to aerobic fitness status into 3 groups: group 1 (n = 34, peak VO2<17.5 ml/kg/min), group 2 (n = 67, peak VO2>17.5 and <24.5 ml/kg/min) and group 3 (n = 22, peak VO2>24.5 ml/kg/min). All patients performed a cardiorespiratory exercise test on a treadmill. Ventilatory efficiency was determined by the lowest VE/VCO2 ratio observed. The exercise training program comprised moderate-intensity aerobic exercise performed 3 times per week for 3 months. Clinicaltrials.gov: NCT02106533 RESULTS: Before intervention, group 1 exhibited both lower peak VO2 and lower ventilatory efficiency compared with the other 2 groups (p<0.05). After the exercise training program, group 1 exhibited greater improvements in aerobic fitness and ventilatory efficiency compared with the 2 other groups (group 1: ▵ = -2.5±0.5 units; group 2: ▵ = -0.8±0.3 units; and group 3: ▵ = -1.4±0.6 units, respectively; p<0.05). CONCLUSIONS: Coronary artery disease patients with lower aerobic fitness status exhibited lower ventilatory efficiency during a graded exercise test. In addition, after 3 months of aerobic exercise training, only the patients with initially lower levels of aerobic fitness exhibited greater improvements in ventilatory efficiency. .


Subject(s)
Female , Humans , Male , Middle Aged , Coronary Artery Disease/physiopathology , Coronary Artery Disease/rehabilitation , Exercise Therapy/methods , Physical Fitness/physiology , Pulmonary Ventilation/physiology , Analysis of Variance , Exercise Test , Longitudinal Studies , Oxygen Consumption/physiology , Reference Values , Retrospective Studies , Time Factors , Treatment Outcome
2.
Clinics ; 67(6): 623-628, 2012. graf, tab
Article in English | LILACS | ID: lil-640213

ABSTRACT

OBJECTIVE: The purpose of this study was to evaluate the following: 1) the effects of continuous exercise training and interval exercise training on the end-tidal carbon dioxide pressure (PETCO2) response during a graded exercise test in patients with coronary artery disease; and 2) the effects of exercise training modalities on the association between PETCO2 at the ventilatory anaerobic threshold (VAT) and indicators of ventilatory efficiency and cardiorespiratory fitness in patients with coronary artery disease. METHODS: Thirty-seven patients (59.7 + 1.7 years) with coronary artery disease were randomly divided into two groups: continuous exercise training (n = 20) and interval exercise training (n = 17). 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, respiratory compensation point (RCP) and peak oxygen consumption. RESULTS: After the interventions, both groups exhibited increased cardiorespiratory fitness. Indeed, the continuous exercise and interval exercise training groups demonstrated increases in both ventilatory efficiency and PETCO2 values at VAT, RCP, and peak of exercise. Significant associations were observed in both groups: 1) continuous exercise training (PETCO2VAT and cardiorespiratory fitness r = 0.49; PETCO2VAT and ventilatory efficiency r = -0.80) and 2) interval exercise training (PETCO2VAT and cardiorespiratory fitness r = 0.39; PETCO2VAT and ventilatory efficiency r = -0.45). CONCLUSIONS: Both exercise training modalities showed similar increases in PETCO2 levels during a graded exercise test in patients with coronary artery disease, which may be associated with an improvement in ventilatory efficiency and cardiorespiratory fitness.


Subject(s)
Female , Humans , Male , Middle Aged , Carbon Dioxide/analysis , Coronary Artery Disease/physiopathology , Exercise/physiology , Respiratory Function Tests/methods , Exercise Therapy/methods , Oxygen Consumption/physiology , Reference Values , Time Factors
3.
Arq. bras. endocrinol. metab ; 50(3): 499-504, jun. 2006. tab
Article in Portuguese | LILACS | ID: lil-433744

ABSTRACT

Dieta hipocalórica e atividade física aeróbia promovem perda de peso e melhora do perfil lipídico de adultos obesos, entretanto pouco se conhece em crianças obesas, sendo este o objetivo do trabalho. Estudamos cinqüenta crianças obesas e dividimos em dois grupos pareados: Grupo D (dieta com 55 por cento de carboidrato, 30 por cento de gordura e 15 por cento de proteína - 1.500 e 1.800 kcal) e Grupo DE (mesma dieta + atividade física aeróbia 1 hora por dia, três vezes por semana). Após cinco meses, avaliamos: índice de massa corpórea (IMC), triglicerídeos, colesterol total (CT) e frações. Nenhuma modificação foi observada nos triglicerídeos, CT e lipoproteína de baixa-densidade colesterol (LDL-C) em ambos os grupos. Houve, porém, aumento da lipoproteína de alta-densidade colesterol (HDL-C) apenas no grupo DE (+10,3 por cento, p< 0,01). Selecionando pacientes com CT > 170 mg/dL, LDL-C > 110 mg/dL e HDL-C < 35 mg/dL, observou-se redução semelhante do CT nos dois grupos (-6,0 por cento x -6,0 por cento; p= ns), assim como da LDL-C de ambos (-14,2 por cento x -13,5 por cento; p= ns), e um acréscimo da HDL-C apenas no grupo DE (+10,0 por cento; p< 0,05). Conclusões: 1) Dieta hipocalórica (DH) e atividade física aeróbia promovem aumento da HDL-C, independente do valor basal, em crianças obesas quando comparado à DH isoladamente; 2) DH isoladamente ou associada a exercício aeróbio reduz CT e LDL-C, quando estes estão em níveis acima do valor normal, em crianças obesas.


Subject(s)
Adolescent , Child , Female , Humans , Male , Cholesterol/blood , Diet, Fat-Restricted , Exercise , Lipids/blood , Obesity/therapy , Analysis of Variance , Body Composition , Body Mass Index , Cardiovascular Diseases , Dietary Fats , Lipoproteins, VLDL/blood , Obesity/blood , Risk Factors , Triglycerides/blood , Weight Loss
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