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1.
Braz. j. med. biol. res ; 45(3): 256-263, Mar. 2012. ilus, tab
Article in English | LILACS | ID: lil-618050

ABSTRACT

Cardiopulmonary exercise testing (CPET) plays an important role in the assessment of functional capacity in patients with interstitial lung disease. The aim of this study was to identify CPET measures that might be helpful in predicting the vital capacity and diffusion capacity outcomes of patients with thoracic sarcoidosis. A longitudinal study was conducted on 42 nonsmoking patients with thoracic sarcoidosis (median age = 46.5 years, 22 females). At the first evaluation, spirometry, the measurement of single-breath carbon monoxide diffusing capacity (D LCOsb) and CPET were performed. Five years later, the patients underwent a second evaluation consisting of spirometry and D LCOsb measurement. After 5 years, forced vital capacity (FVC) percent and D LCOsb percent had decreased significantly [95.5 (82-105) vs 87.5 (58-103) and 93.5 (79-103) vs 84.5 (44-102), respectively; P < 0.0001 for both]. In CPET, the peak oxygen uptake, maximum respiratory rate, breathing reserve, alveolar-arterial oxygen pressure gradient at peak exercise (P(A-a)O2), and Δ SpO2 values showed a strong correlation with the relative differences for FVC percent and D LCOsb percent (P < 0.0001 for all). P(A-a)O2 ≥22 mmHg and breathing reserve ≤40 percent were identified as significant independent variables for the decline in pulmonary function. Patients with thoracic sarcoidosis showed a significant reduction in FVC percent and D LCOsb percent after 5 years of follow-up. These data show that the outcome measures of CPET are predictors of the decline of pulmonary function.


Subject(s)
Adult , Female , Humans , Male , Middle Aged , Exercise Test , Oxygen Consumption/physiology , Sarcoidosis, Pulmonary/physiopathology , Vital Capacity/physiology , Exercise Tolerance , Forced Expiratory Volume/physiology , Longitudinal Studies , Severity of Illness Index , Spirometry
2.
Braz. j. med. biol. res ; 43(11): 1095-1101, Nov. 2010. ilus, tab
Article in English | LILACS | ID: lil-564136

ABSTRACT

Subclinical hypothyroidism (SH) patients present cardiopulmonary, vascular and muscle dysfunction, but there is no consensus about the benefits of levothyroxine (L-T4) intervention on cardiopulmonary performance during exercise. The aim of the present study was to investigate the effects of L-T4 on cardiopulmonary exercise reserve and recovery in SH patients. Twenty-three SH women, 44 (40-50) years old, were submitted to two ergospirometry tests, with an interval of 6 months of normalization of thyroid-stimulating hormone (TSH) levels (L-T4 replacement group) or simple observation (TSH = 6.90 μIU/mL; L-T4 = 1.02 ng/dL). Patients with TSH >10 μIU/mL were excluded from the study to assure that they would receive treatment in this later stage of SH. Twenty 30- to 57-year-old women with no thyroid dysfunction (TSH = 1.38 μIU/mL; L-T4 = 1.18 ng/dL) were also evaluated. At baseline, lower values of gas exchange ratio reserve (0.24 vs 0.30; P < 0.05) were found for SH patients. The treated group presented greater variation than the untreated group for pulmonary ventilation reserve (20.45 to 21.60 L/min; median variation = 5.2 vs 25.09 to 22.45 L/min; median variation = -4.75, respectively) and for gas exchange ratio reserve (0.19 to 0.27; median variation = 0.06 vs 0.28 to 0.18; median variation = -0.08, respectively). There were no relevant differences in cardiopulmonary recovery for either group at baseline or after follow-up. In the sample studied, L-T4 replacement improved exercise cardiopulmonary reserve, but no modification was found in recovery performance after exercise during this period of analysis.


Subject(s)
Adult , Female , Humans , Middle Aged , Exercise Test/methods , Hormone Replacement Therapy , Hypothyroidism/physiopathology , Inspiratory Reserve Volume/physiology , Oxygen Consumption/physiology , Pulmonary Ventilation/physiology , Thyroxine/therapeutic use , Cross-Sectional Studies , Spirometry
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