Kawahara Y, Saito Y, Kashimura K, Muraoka I
Graduate School of Human Sciences, Waseda University, Tokorozawa, Japan.
Int J Sports Med. 2008 May;29(5):379-83. doi: 10.1055/s-2007-965567. Epub 2007 Sep 18.
To investigate whether low FiO2 affects muscle oxygenation and the rate of decline in peak torque (DR) during isokinetic knee extension, subjects performed 50 isokinetic knee extensions at 180 degrees /s and at 0.5 Hz while inhaling low O2 gas (12 %O2; H) or air (N). Muscle oxygenation kinetics was assessed by near-infrared spectroscopy, and whole-body V.O2 and HR were measured. We calculated total-, oxy- and deoxy-hemoglobin/myoglobin concentrations (TotalHb/Mb, OxyHb/Mb, DeoxyHb/Mb), and the slopes of the change in OxyHb/Mb during exercise. SpO2 decreased in H while DR and V.O2 did not differ between the conditions. During exercise, OxyHb/Mb was lower in H than in N, and DeoxyHb/Mb was higher in H than in N. TotalHb/Mb began to increase from the resting level earlier in H. HR was higher during the latter half of the exercise in H. The slopes of the change in OxyHb/Mb were the same in the two conditions. Our results show that low FiO2 decreases SpO2 and muscle oxygenation during maximal isokinetic knee extension. However, low SpO2 and muscle oxygenation did not affect the rates of decline of peak torque. These results suggest that the decline in peak torque occurs for reasons other than O2 availability.
为了研究低氧分压是否会影响等速膝关节伸展过程中的肌肉氧合以及峰值扭矩下降率(DR),受试者在吸入低氧气体(12%氧气;H组)或空气(N组)的同时,以180度/秒和0.5赫兹的频率进行50次等速膝关节伸展。通过近红外光谱评估肌肉氧合动力学,并测量全身耗氧量(V.O2)和心率(HR)。我们计算了总血红蛋白/肌红蛋白、氧合血红蛋白/肌红蛋白、脱氧血红蛋白/肌红蛋白的浓度(TotalHb/Mb、OxyHb/Mb、DeoxyHb/Mb)以及运动过程中氧合血红蛋白/肌红蛋白变化的斜率。H组的血氧饱和度(SpO2)下降,而DR和V.O2在两种条件下无差异。运动过程中,H组的氧合血红蛋白/肌红蛋白低于N组,脱氧血红蛋白/肌红蛋白高于N组。H组总血红蛋白/肌红蛋白从静息水平开始升高的时间更早。H组运动后半程的心率更高。两种条件下氧合血红蛋白/肌红蛋白变化的斜率相同。我们的结果表明,在最大等速膝关节伸展过程中,低氧分压会降低SpO2和肌肉氧合。然而,低SpO2和肌肉氧合并未影响峰值扭矩的下降率。这些结果表明,峰值扭矩下降是由氧气供应以外的原因引起的。