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短程刚度的弹性极限取决于关节速度。

Short range stiffness elastic limit depends on joint velocity.

机构信息

Department of Biomechanical Engineering, Faculty of Mechanical Engineering, Laboratory for Neuromuscular Control, Delft University of Technology, Mekelweg 2, 2628 CD Delft, The Netherlands.

出版信息

J Biomech. 2011 Jul 28;44(11):2106-12. doi: 10.1016/j.jbiomech.2011.05.022.

Abstract

Muscles behave as elastic springs during the initial strain phase, indicated as short range stiffness (SRS). Beyond a certain amount of strain the muscle demonstrates a more viscous behavior. The strain at which the muscle transits from elastic- to viscous-like behavior is called the elastic limit and is believed to be the result of breakage of cross-bridges between the contractile filaments. The aim of this study was to test whether the elastic limit, measured in vivo at the wrist joint, depended on the speed of lengthening. Brief extension rotations were imposed to the wrist joint (n=8) at four different speeds and at three different levels of voluntary torque using a servo controlled electrical motor. Using a recently published identification scheme, we quantified the elastic limit from measured joint angle and torque. The results showed that the elastic limit significantly increased with speed in a linear way, indicating to a constant time of approximately 30 ms before cross-bridges break. The implications for movement control of the joint are discussed.

摘要

肌肉在初始应变阶段表现为弹性弹簧,这一阶段被称为短程刚度(SRS)。超过一定的应变,肌肉表现出更粘滞的行为。肌肉从弹性到粘性行为转变的应变称为弹性极限,据信这是由于收缩丝之间的交联断裂造成的。本研究的目的是测试在活体腕关节处测量的弹性极限是否取决于伸长速度。使用伺服控制电机,在三个不同的自愿扭矩水平下,以四种不同的速度对腕关节施加短暂的伸展旋转。使用最近发表的识别方案,我们从测量的关节角度和扭矩中量化了弹性极限。结果表明,弹性极限随速度呈线性增加,表明交联断裂前的时间约为 30 毫秒。讨论了对关节运动控制的影响。

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