自行车测力仪运动和步行时腰肌的肌电图和血流动力学活动。

T Suzuki, J Hirata, K Ohtsuki, S Watanabe
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引用次数: 0

摘要

虽然自行车测力仪运动和步行被推荐作为腰痛患者的有氧运动,但很少有研究对这些运动中的肌肉活动和循环动力学进行研究。在这项研究中,我们旨在通过调查腰痛患者在自行车测力仪运动和步行时腰肌的活动和循环动力学,获得有氧运动对腰痛患者有效的基本信息。作为研究对象,我们选择了10名健康成人(23.7±3.4岁),无腰痛遗忘史。测量条件为4种运动类型:步行(4.0 km/h);25W, 50W和75W自行车测力仪练习。通过表面肌电图测量运动过程中腰肌的活动,并从最大自愿收缩(MVC)计算MVC的百分比。关于腰部肌肉的循环动力学,我们用近红外光谱(NIRS)测量了运动前后的氧合血红蛋白(Oxy-Hb)和脱氧血红蛋白(Deoxy-Hb)。在练习期间的变化率是根据练习前的值计算的。采用配对t检验分析运动前后和运动中腰肌肉循环动力学的比较。对于每种运动中肌肉活动和循环动力学的变化率的比较,我们采用单因素方差分析(ANOVA) (p < 0.05)。在各负荷水平下,步行组腰肌活动量均显著高于自行车测力器组。与锻炼前相比,在25W和50W自行车测力仪锻炼期间,Oxy-Hb显著增加。在75W自行车测力仪运动和步行期间,其呈下降趋势,但不显著。在25W自行车测力仪运动中,氧合血红蛋白的变化率高于其他运动。另一方面,Deoxy-Hb在每次练习中都明显下降,与练习前相比,每次练习之间的变化率没有显著差异。自行车测力器运动被认为是一种有氧运动,可以像步行一样吸收大量的氧气,腰部肌肉的负荷更少,腰部肌肉引起缺氧状态的可能性更小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electromyographic and haemodynamic activities in lumbar muscles during bicycle ergometer exercise and walking.

Although bicycle ergometer exercise and walking are recommended as aerobic exercise for patients with lumbago, little research has been done to examine the muscular activities and circulatory dynamics during these exercises. In this study, we aimed at obtaining basic information on aerobic exercises effective for patients with lumbago by investigating the activities and circulatory dynamics of their lumbar muscles during bicycle ergometer exercise and walking. As subjects, we selected 10 healthy adults (23.7 +/- 3.4 years old) with no anamnestic history of lumbago. The measurement conditions were 4 types of exercise: walking (4.0 km/h); 25W, 50W and 75W bicycle ergometer exercises. The activities of the lumbar muscles during the exercises were measured by a surface electromyograph, and percent of MVC was calculated from the maximal voluntary contraction (MVC). With regard to the circulatory dynamics of the lumbar muscles, we measured oxygenated hemoglobin (Oxy-Hb) and deoxygenated hemoglobin (Deoxy-Hb) before and after the exercises with near infrared spectroscopy (NIRS). The change rates during the exercises were calculated based on the values before the exercises. Paired t test was employed to analyse the comparison of the circulatory dynamics of the lumbar muscles between, before and during the exercises. With respect to the comparison of the change rates of the muscular activities and circulatory dynamics among each of the exercises, we employed the one-way analysis of variance (ANOVA) (p < .05). The lumbar muscular activities during the walking were significantly higher than those during the bicycle ergometer exercise were at each load level. The Oxy-Hb increased significantly during the 25W and 50W bicycle ergometer exercises, as opposed to before the exercises. It showed a tendency to decrease during the 75W bicycle ergometer exercise and walking, but not significant. The change rate of the Oxy-Hb during the 25W bicycle ergometer exercise indicated a higher value than that of the other exercises. The Deoxy-Hb, on the other hand, declined significantly in every exercise compared with those before the exercises, with no significant differences in the change rates between each of the exercises. Bicycle ergometer exercise has been suggested as an aerobic exercise permitting as much oxygen uptake as walking does, with fewer loads on lumbar muscles and less likelihood of inducing a hypoxic state on lumbar muscles.

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