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首页> 外文期刊>Journal of Biomechanics >Force depression following muscle shortening in sub-maximal voluntary contractions of human adductor pollicis
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Force depression following muscle shortening in sub-maximal voluntary contractions of human adductor pollicis

机译:内收肌Policis亚最大自愿收缩中肌肉缩短后的力量降低

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Mechanical properties of skeletal muscles are often studied for controlled, electrically induced, maximal, or supra-maximal contractions. However, many mechanical properties, such as the force-length relationship and force enhancement following active muscle stretching, are quite different for maximal and sub-maximal, or electrically induced and voluntary contractions. Force depression.. the loss of force observed following active muscle shortening, has been observed and is well documented for electrically induced and maximal voluntary contractions. Since sub-maximal voluntary contractions are arguably the most important for everyday movement analysis and for biomechanical models of skeletal muscle function, it is important to study force depression properties under these conditions. Therefore, the purpose of this study was to examine force depression following sub-maximal, voluntary contractions. Sets of isometric reference and isometric-shortening-isometric test contractions at 30% of maximal voluntary effort were performed with the adductor pollicis muscle. All reference and test contractions were executed by controlling force or activation using a feedback system. Test contractions included adductor pollicis shortening over 10 degrees, 20 degrees, and 30 degrees of thumb adduction. Force depression was assessed by comparing the steady-state isometric forces (activation control) or average electromyograms (EMGs) (force control) following active muscle shortening with those obtained in the corresponding isometric reference contractions. Force was decreased by 20% and average EMG was increased by 18% in the shortening test contractions compared to the isometric reference contractions. Furthermore, force depression was increased with increasing shortening amplitudes, and the relative magnitudes of force depression were similar to those found in electrically stimulated and maximal contractions. We conclude from these results that force depression occurs in sub-maximal voluntary contractions, and that force depression may play a role in the mechanics of everyday movements, and therefore may have to be considered in biornechanical models of human movement. (c) 2006 Elsevier Ltd. All rights reserved.
机译:经常研究骨骼肌的机械特性,以控制,电诱发,最大或超最大收缩。但是,对于最大和次最大或电动和自发性收缩,许多机械性能(例如,力-长度关系和主动肌肉拉伸后的力增强)都大不相同。压迫力下降..主动肌肉缩短后观察到的力的损失已被观察到,并已充分记录了电诱发的和最大的自愿性收缩。由于亚最大自愿收缩在日常运动分析和骨骼肌功能的生物力学模型中可以说是最重要的,因此研究在这种情况下的力量抑制特性非常重要。因此,本研究的目的是检查次最大自愿收缩后的力量下降。对内收肌形成了一组最大的自愿努力的30%的等距参考和等距缩短-等距测试收缩。所有参考收缩和测试收缩均通过使用反馈系统控制力或激活来执行。测试收缩包括收起者足缩缩短拇指内收超过10度,20度和30度。通过比较活动性肌肉缩短后的稳态等轴测力(激活控制)或平均肌电图(EMG)(力控制)与在相应等轴测参考收缩中获得的平均肌电图进行评估。与等轴测参考收缩相比,缩短的测试收缩力降低了20%,平均EMG增加了18%。此外,随着减小幅度的增加,压力下降也增加,并且压力下降的相对大小类似于在电刺激和最大收缩中发现的大小。我们从这些结果中得出结论,力量压抑发生在次最大的自愿收缩中,并且力量压抑可能在日常运动的机制中起作用,因此可能必须在人体运动的生物力学模型中加以考虑。 (c)2006 Elsevier Ltd.保留所有权利。

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