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肩部伸展反射增益的变化与协同肌的活动有关。

Stretch reflex gain scaling at the shoulder varies with synergistic muscle activity.

机构信息

Department of Biomedical Engineering, Northwestern University, Evanston, Illinois.

Shirley Ryan AbilityLab, Chicago, Illinois.

出版信息

J Neurophysiol. 2022 Nov 1;128(5):1244-1257. doi: 10.1152/jn.00259.2022. Epub 2022 Oct 12.

Abstract

The unique anatomy of the shoulder allows for expansive mobility but also sometimes precarious stability. It has long been suggested that stretch-sensitive reflexes contribute to maintaining joint stability through feedback control, but little is known about how stretch-sensitive reflexes are coordinated between the muscles of the shoulder. The purpose of this study was to investigate the coordination of stretch reflexes in shoulder muscles elicited by rotations of the glenohumeral joint. We hypothesized that stretch reflexes are sensitive to not only a given muscle's background activity but also the aggregate activity of all muscles crossing the shoulder based on the different groupings of muscles required to actuate the shoulder in three rotational degrees of freedom. We examined the relationship between a muscle's background activity and its reflex response in eight shoulder muscles by applying rotational perturbations while participants produced voluntary isometric torques. We found that this relationship, defined as gain scaling, differed at both short and long latencies based on the direction of voluntary torque generated by the participant. Therefore, gain scaling differed based on the aggregate of muscles that were active, not just the background activity in the muscle within which the reflex was measured. Across all muscles, the consideration of torque-dependent gain scaling improved model fits (Δ) by 0.17 ± 0.12. Modulation was most evident when volitional torques and perturbation directions were aligned along the same measurement axis, suggesting a functional role in resisting perturbations among synergists while maintaining task performance. Careful coordination of muscles crossing the shoulder is needed to maintain the delicate balance between the joint's mobility and stability. We provide experimental evidence that stretch reflexes within shoulder muscles are modulated based on the aggregate activity of muscles crossing the joint, not just the activity of the muscle in which the reflex is elicited. Our results reflect coordination through neural coupling that may help maintain shoulder stability during encounters with environmental perturbations.

摘要

肩部独特的解剖结构使其具有广泛的活动度,但有时也会导致不稳定。长期以来,人们一直认为拉伸敏感反射通过反馈控制有助于维持关节稳定性,但对于拉伸敏感反射如何在肩部肌肉之间协调知之甚少。本研究旨在研究由盂肱关节旋转引起的肩部肌肉拉伸反射的协调。我们假设,拉伸反射不仅对给定肌肉的背景活动敏感,而且还对跨越肩部的所有肌肉的总活动敏感,这是基于在三个自由度的旋转中激活肩部所需的不同肌肉分组。我们通过在参与者产生等长转矩时施加旋转扰动,研究了 8 个肩部肌肉中肌肉的背景活动与其反射反应之间的关系。我们发现,这种关系,定义为增益缩放,基于参与者产生的自愿转矩的方向,在短潜伏期和长潜伏期都有所不同。因此,增益缩放不仅基于反射测量肌肉的背景活动,还基于活动肌肉的总和。在所有肌肉中,考虑到依赖于转矩的增益缩放,模型拟合(Δ)提高了 0.17±0.12。当自愿转矩和扰动方向沿着相同的测量轴对齐时,调制最为明显,这表明在保持任务性能的同时,在协同肌之间抵抗扰动方面具有功能作用。需要仔细协调跨越肩部的肌肉,以维持关节活动度和稳定性之间的微妙平衡。我们提供了实验证据,表明肩部肌肉内的拉伸反射是根据跨越关节的肌肉的总活动而不是反射引起的肌肉的活动来调节的。我们的结果反映了通过神经耦合进行的协调,这可能有助于在遇到环境扰动时维持肩部稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0149/9662809/f2b19f0e7fe3/jn-00259-2022r01.jpg

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