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利用近红外光谱法测定膝关节伸肌等长收缩过程中膝关节角度依赖性耗氧量。

Knee angle-dependent oxygen consumption during isometric contractions of the knee extensors determined with near-infrared spectroscopy.

作者信息

de Ruiter C J, de Boer M D, Spanjaard M, de Haan A

机构信息

Institute for Fundamental and Clinical Human Movement Sciences, Vrije Universiteit, Van der Boechorststraat 9, 1081 BT Amsterdam, The Netherlands.

出版信息

J Appl Physiol (1985). 2005 Aug;99(2):579-86. doi: 10.1152/japplphysiol.01420.2004. Epub 2005 Mar 17.

Abstract

Fatigue resistance of knee extensor muscles is higher during voluntary isometric contractions at short compared with longer muscle lengths. In the present study we hypothesized that this would be due to lower energy consumption at short muscle lengths. Ten healthy male subjects performed isometric contractions with the knee extensor muscles at a 30, 60, and 90 degrees knee angle (full extension = 0 degrees ). At each angle, muscle oxygen consumption (m.VO2) of the rectus femoris, vastus lateralis, and vastus medialis muscle was obtained with near-infrared spectroscopy. m.VO2 was measured during maximal isometric contractions and during contractions at 10, 30, and 50% of maximal torque capacity. During all contractions, blood flow to the muscle was occluded with a pressure cuff (450 mmHg). m.VO2 significantly (P < 0.05) increased with torque and at all torque levels, and for each of the three muscles. m.VO2 was significantly lower at 30 degrees compared with 60 degrees and 90 degrees and m.VO2 was similar (P > 0.05) at 60 degrees and 90 degrees . Across all torque levels, average (+/- SD) m.VO2 at the 30 degrees angle for vastus medialis, rectus femoris, and vastus lateralis, respectively, was 70.0 +/- 10.4, 72.2 +/- 12.7, and 75.9 +/- 8.0% of the average m.VO2 obtained for each torque at 60 and 90 degrees . In conclusion, oxygen consumption of the knee extensors was significantly lower during isometric contractions at the 30 degrees than at the 60 degrees and 90 degrees knee angle, which probably contributes to the previously reported longer duration of sustained isometric contractions at relatively short muscle lengths.

摘要

与较长肌肉长度相比,在较短长度下进行自主等长收缩时,膝伸肌的抗疲劳能力更高。在本研究中,我们假设这是由于较短肌肉长度下能量消耗较低所致。10名健康男性受试者在膝关节角度为30°、60°和90°(完全伸展 = 0°)时用膝伸肌进行等长收缩。在每个角度,通过近红外光谱法获取股直肌、股外侧肌和股内侧肌的肌肉耗氧量(m.VO2)。在最大等长收缩期间以及在最大扭矩能力的10%、30%和50%时的收缩期间测量m.VO2。在所有收缩过程中,用压力袖带(450 mmHg)阻断肌肉血流。m.VO2随扭矩以及在所有扭矩水平下均显著(P < 0.05)增加,并且在三块肌肉中的每一块都是如此。30°时的m.VO2显著低于60°和90°时,而60°和90°时的m.VO2相似(P > 0.05)。在所有扭矩水平下,股内侧肌、股直肌和股外侧肌在30°角度时的平均(±标准差)m.VO2分别为60°和90°时每个扭矩所获得平均m.VO2的70.0±10.4%、72.2±12.7%和75.9±8.0%。总之,在30°等长收缩期间,膝伸肌的耗氧量显著低于60°和90°膝关节角度时,这可能是之前报道的在相对较短肌肉长度下持续等长收缩持续时间更长的原因。

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