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两种新型技术在建立股二头肌机械和收缩反应中的有效性。

The effectiveness of two novel techniques in establishing the mechanical and contractile responses of biceps femoris.

机构信息

Institute for Sport and Health, University College Dublin, Ireland. TRIL (Technology Research for Independent Living) Centre, University College Dublin, Ireland.

出版信息

Physiol Meas. 2011 Aug;32(8):1315-26. doi: 10.1088/0967-3334/32/8/020. Epub 2011 Jul 15.

Abstract

Portable tensiomyography (TMG) and myotonometry (MMT) devices have been developed to measure mechanical and contractile properties of skeletal muscle. The aim of this study was to explore the sensitivity of the aforementioned techniques in detecting a change in passive mechanical properties of the biceps femoris (BF) muscle as a result of change in knee joint angle (i.e. muscle length). BF responses were assessed in 16 young participants (23.4 ± 4.9 years), at three knee joint angles (0°, 45° and 90°), for maximal isometric torque (MIT) along with myo-electrical activity. Contractile and mechanical properties were measured in a relaxed state. Inter-day reliability of the TMG and MMT was also assessed. MIT changed significantly (p < 0.01) across the three angles, so did stiffness and other parameters measured with MMT (p < 0.01). Conversely, TMG could detect changes only at two knee angles (0° and 45°, p < 0.01), when there is enough tension in the muscle. Reliability was overall insufficient for TMG whilst absolute reliability was excellent (coefficient of variation < 5%) for MMT. The ability of MMT more than TMG to detect an inherent change in stiffness can be conceivably exploited in a number of clinical/therapeutic applications that have to do with unnatural changes in passive muscle stiffness.

摘要

便携式张力肌动描记术(TMG)和肌音描记术(MMT)设备已经被开发出来,用于测量骨骼肌的机械和收缩特性。本研究的目的是探讨上述技术在检测由于膝关节角度(即肌肉长度)变化而导致的股二头肌(BF)肌肉被动机械特性变化方面的敏感性。在三个膝关节角度(0°、45°和 90°)下,16 名年轻参与者(23.4±4.9 岁)评估了 BF 的反应,以获得最大等长扭矩(MIT)以及肌电活动。在放松状态下测量收缩和机械特性。还评估了 TMG 和 MMT 的日内可靠性。MIT 在三个角度之间发生了显著变化(p<0.01),MMT 测量的刚度和其他参数也发生了显著变化(p<0.01)。相反,当肌肉有足够的张力时,TMG 只能在两个膝关节角度(0°和 45°,p<0.01)检测到变化。TMG 的可靠性总体上不足,而 MMT 的绝对可靠性极好(变异系数<5%)。MMT 比 TMG 更能检测到固有刚度变化,这在许多与被动肌肉刚度异常变化有关的临床/治疗应用中可能被利用。

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