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D H Markowitz

Publications and source records attributed to D H Markowitz.

2 recordsLinked to original sources

Systemic oxygen extraction during incremental exercise in patients with severe chronic obstructive pulmonary disease.

To determine if decreased systemic oxygen (O2) extraction contributes to the exercise limit in severe chronic obstructive pulmonary disease (COPD), 40 consecutive incremental cycle ergometer exercise tests performed by such patients, from which a "log-log" lactate threshold (LT) was identified, were compared to those of 8 patients with left ventricular failure (LVF) and 10 normal controls. Pulmonary gas exchange and minute ventilation were measured continuously and arterial blood gas tensions, pH, and lactate concentrations were sampled each minute. Cardiac output (Qc) was measured by first-pass radionuclide ventriculography. The systemic O2 extraction ratio (O2ER) was calculated as arterial - mixed venous O2 content difference (CaO2 - CvO2)/CaO2. Peak exercise O2 uptake (VO2peak) was markedly reduced in both COPD and LVF [41 (3) and 42 (3)% predicted, respectively], compared to controls [89 (2)% predicted, P < 0.0001 for each]. Similarly, the LT occurred at a low percentage of predicted maximal oxygen consumption in both COPD and LVF [25 (2) and 27 (3)%] compared to normals [46 (3)%, P < 0.0001 for each]. The systemic O2ER at peak exercise was severely reduced in COPD [0.36 (0.02)] compared to the other groups [P < 0.0001 for each], for whom it was nearly identical [0.58 (0.03) vs 0.63 (0.04), LVF vs control, P > 0.05]. In the COPD group, an early LT correlated with reduced systemic O2ER at peak exercise (r = 0.64, P < 0.0001), but not with any index of systemic O2 delivery. These data suggest that lactic acidemia during exercise in patients with severe COPD is better related to abnormal systemic O2 extraction than to its delivery and contributes to the exercise limit.

Acidosis, Lactic↗

Exercise performance in cystic fibrosis before and after bilateral lung transplantation.

BACKGROUND: Lung transplantation improves pulmonary function and quality of life for patients with end-stage cystic fibrosis; however, a systematic evaluation of exercise performance in lung transplant recipients with cystic fibrosis has not been reported. METHODS: Ten patients with end-stage cystic fibrosis performed incremental exercise testing before and after bilateral lung transplantation; their results were compared with those of 10 age-similar healthy volunteers. Breath-by-breath measurements of gas exchange and ventilation were obtained, arterial blood was sampled each minute, and cardiac output determined at rest and peak exercise by radionuclide ventriculography. The arterial-venous O2 content difference was derived by the Fick principle. RESULTS: After transplantation, peak O2 uptake improved (31% +/- 3% vs 45% +/- 4% predicted, P = .03) but was still reduced versus normal (100% +/- 8% predicted, p < .0001). Exercise was limited by pulmonary mechanics in all patients before transplantation but in only 2 after transplantation. Compared with control subjects, the lactate threshold occurred early, both before and after transplantation. Peak exercise cardiac output and arterial O2 content were not different from normal, either before or after transplantation. In contrast, the peak exercise arterial-venous O2 content difference was markedly reduced before and after transplantation versus normal (7.1 +/- 1.2 and 9.3 +/- 0.9 vs 17.1 +/- 1.2 mL/dL, p < or = .0001 for each) and without significant improvement. CONCLUSIONS: Exercise performance in patients with end-stage cystic fibrosis improves after lung transplantation but remains well below normal. Reduced systemic O2 extraction is an important factor limiting exercise in patients with cystic fibrosis after transplantation and may also contribute to the exercise limit before transplantation.

Adolescent↗