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Kinetics away from Peripheral Muscles Oxygenation Throughout a training Shot

Kinetics away from Peripheral Muscles Oxygenation Throughout a training Shot

We also examined the relationships between V?Odos and the slopes of HR/V?O2, SpO2/V?O2, StO2/V?O2, and MOER/V?O2. The influence of V?O2 on the HR/V?O2 slope is partially expressed in the cardiac response, the SpO2/V?O2 slope in the respiratory response, and the StO2/V?O2 and MOER/V?O2 slopes in the muscle response. peak V?O2 did not correlate with any of the slopes (Fig. 3). In subject step one the HR/V?O2, SpO2/V?O2, and StO2/V?O2 slopes were high and the MOER/V?O2 slope was low, compared with most of the other subjects. However, in subject 2 the HR/V?O2, SpO2/V?O2, and StO2/V?O2 slopes were low and the MOER/V?O2 slope was high. Figure 4 displays the relationships between V?O2 and HR, SpO2, StO2, and MOER for the different types of subjects (subjects 1 and 2). We determined that the severity of air-flow limitation was similar in both subjects, but peak V?O2 was greater in subject 1 than in subject 2 (see Table 1). The slopes of HR/V?O2 and SpO2/V?O2 were lower, but MOER/V?O2 was relatively higher in subject 1 than in subject 2.

Relationships between peak oxygen uptake (V?O2) and the slope of heart rate/V?O2, SpO2/V?O2, StO2/V?O2, and MOER/V?O2. The muscle oxygen extraction rate (MOER) was calculated as (SpO2 ? StO2)/SpO2 ? 100(%). StO2 = tissue oxygen saturation. 0 Subject 1. ? Subject 2. ? Subject 3. ? Subject 4. ? Subject 5. ¦ Subject 6. ? Subject 7. ? Subject 8.

O2) and heart rate (HR), SpO2, tissue oxygen saturation (StO2), and muscle oxygen extraction rate (MOER) for typical subjects. 0 Subject 1: age 71 y, % predicted FVC 69.3%, % predicted FEV1 36.1%, peak V? ادامه خواندن

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