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小的、与姿势相关的预动之后,肌肉拉伸的历史依赖性阻力仍然很高。

History-dependent muscle resistance to stretch remains high after small, posturally relevant pre-movements.

机构信息

Department of Kinesiology and Health Sciences, University of Waterloo, Waterloo, ON, Canada, N2L 3G1.

Wallace H. Coulter Department of Biomedical Engineering, Emory University and The Georgia Institute of Technology, Atlanta, GA 30332, USA.

出版信息

J Exp Biol. 2023 Sep 15;226(18). doi: 10.1242/jeb.245456. Epub 2023 Sep 27.

Abstract

The contributions of intrinsic muscle fiber resistance during mechanical perturbations to standing and other postural behaviors are unclear. Muscle short-range stiffness is known to vary depending on the current level and history of the muscle's activation, as well as the muscle's recent movement history; this property has been referred to as history dependence or muscle thixotropy. However, we currently lack sufficient data about the degree to which muscle stiffness is modulated across posturally relevant characteristics of muscle stretch and activation. We characterized the history dependence of muscle's resistance to stretch in single, permeabilized, activated, muscle fibers in posturally relevant stretch conditions and activation levels. We used a classic paired muscle stretch paradigm, varying the amplitude of a 'conditioning' triangular stretch-shorten cycle followed by a 'test' ramp-and-hold imposed after a variable inter-stretch interval. We tested low (<15%), intermediate (15-50%) and high (>50%) muscle fiber activation levels, evaluating short-range stiffness and total impulse in the test stretch. Muscle fiber resistance to stretch remained high at conditioning amplitudes of <1% optimal fiber length, L0, and inter-stretch intervals of >1 s, characteristic of healthy standing postural sway. An ∼70% attenuation of muscle resistance to stretch was reached at conditioning amplitudes of >3% L0 and inter-stretch intervals of <0.1 s, characteristic of larger, faster postural sway in balance-impaired individuals. The thixotropic changes cannot be predicted solely on muscle force at the time of stretch. Consistent with the disruption of muscle cross-bridges, muscle resistance to stretch during behavior can be substantially attenuated if the prior motion is large enough and/or frequent enough.

摘要

在机械扰动下,内在肌纤维阻力对站立和其他姿势行为的贡献尚不清楚。众所周知,肌肉短程刚度会根据肌肉当前的激活水平和历史,以及肌肉最近的运动历史而变化;这种特性被称为历史依赖性或肌肉触变性。然而,我们目前缺乏足够的数据来了解肌肉刚度在与肌肉伸展和激活相关的姿势特征方面的调节程度。我们在与姿势相关的伸展条件和激活水平下,对单个、通透、激活的肌纤维的伸展阻力的历史依赖性进行了特征描述。我们使用了经典的成对肌肉伸展范式,改变了“条件”三角形伸展-缩短循环的幅度,然后在可变的伸展间隔后施加“测试”斜坡和保持。我们测试了低(<15%)、中(15-50%)和高(>50%)的肌纤维激活水平,评估了测试伸展中的短程刚度和总脉冲。在<1%最佳纤维长度(L0)的条件幅度和>1 s 的伸展间隔的情况下,肌肉纤维对伸展的阻力仍然很高,这是健康站立姿势摆动的特征。在>3%L0 的条件幅度和<0.1 s 的伸展间隔的情况下,肌肉纤维对伸展的阻力降低了约 70%,这是平衡受损个体较大、较快的姿势摆动的特征。触变性变化不能仅根据伸展时的肌肉力来预测。与肌肉横桥的破坏一致,如果先前的运动足够大和/或足够频繁,肌肉对伸展的阻力可以大大降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3531/10560558/8df9a4e10713/jexbio-226-245456-g1.jpg

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