Suppr超能文献

肱骨头平移引发的肩袖肌反射大于主要肩部运动肌的反射。

Translations of the Humeral Head Elicit Reflexes in Rotator Cuff Muscles That Are Larger Than Those in the Primary Shoulder Movers.

作者信息

Nicolozakes Constantine P, Coats-Thomas Margaret S, Ludvig Daniel, Seitz Amee L, Perreault Eric J

机构信息

Department of Biomedical Engineering, Northwestern University, Evanston, IL, United States.

Shirley Ryan AbilityLab, Chicago, IL, United States.

出版信息

Front Integr Neurosci. 2022 Feb 2;15:796472. doi: 10.3389/fnint.2021.796472. eCollection 2021.

Abstract

Muscle activation helps stabilize the glenohumeral joint and prevent dislocations, which are more common at the shoulder than at any other human joint. Feedforward control of shoulder muscles is important for protecting the glenohumeral joint from harm caused by anticipated external perturbations. However, dislocations are frequently caused by unexpected perturbations for which feedback control is essential. Stretch-evoked reflexes elicited by translations of the glenohumeral joint may therefore be an important mechanism for maintaining joint integrity, yet little is known about them. Specifically, reflexes elicited by glenohumeral translations have only been studied under passive conditions, and there have been no investigations of how responses are coordinated across the functional groupings of muscles found at the shoulder. Our objective was to characterize stretch-evoked reflexes elicited by translations of the glenohumeral joint while shoulder muscles are active. We aimed to determine how these responses differ between the rotator cuff muscles, which are essential for maintaining glenohumeral stability, and the primary shoulder movers, which are essential for the large mobility of this joint. We evoked reflexes using anterior and posterior translations of the humeral head while participants produced voluntary isometric torque in six directions spanning the three rotational degrees-of-freedom about the shoulder. Electromyograms were used to measure the stretch-evoked reflexes elicited in nine shoulder muscles. We found that reflex amplitudes were larger in the rotator cuff muscles than in the primary shoulder movers, in part due to increased background activation during torque generation but more so due to an increased scaling of reflex responses with background activation. The reflexes we observed likely arose from the diversity of proprioceptors within the muscles and in the passive structures surrounding the shoulder. The large reflexes observed in the rotator cuff muscles suggest that feedback control of the rotator cuff augments the feedforward control that serves to compress the humeral head into the glenoid. This coordination may serve to stabilize the shoulder rapidly when preparing for and responding to unexpected disturbances.

摘要

肌肉激活有助于稳定盂肱关节并防止脱位,肩关节脱位比人体其他任何关节都更常见。肩部肌肉的前馈控制对于保护盂肱关节免受预期外部扰动造成的伤害很重要。然而,脱位通常是由意外扰动引起的,对此反馈控制至关重要。因此,盂肱关节平移引发的牵张诱发反射可能是维持关节完整性的重要机制,但对此了解甚少。具体而言,仅在被动条件下研究了盂肱关节平移引发的反射,而且尚未对肩部不同功能肌群之间的反应协调方式进行研究。我们的目标是描述在肩部肌肉处于活动状态时,盂肱关节平移引发的牵张诱发反射。我们旨在确定这些反应在维持盂肱稳定性至关重要的肩袖肌群和实现该关节大活动度至关重要的主要肩部运动肌群之间有何不同。在参与者围绕肩部三个旋转自由度的六个方向上产生自愿等长扭矩时,我们通过肱骨头的前后平移诱发反射。肌电图用于测量九块肩部肌肉中诱发的牵张诱发反射。我们发现,肩袖肌群中的反射幅度大于主要肩部运动肌群,部分原因是扭矩产生期间背景激活增加,但更主要的原因是反射反应随背景激活的缩放比例增加。我们观察到的反射可能源于肌肉内以及肩部周围被动结构中本体感受器的多样性。在肩袖肌群中观察到的强烈反射表明,肩袖肌群的反馈控制增强了用于将肱骨头压入关节盂的前馈控制。这种协调可能有助于在为应对意外干扰做准备和做出反应时迅速稳定肩部。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5872/8847177/ad0d532a186c/fnint-15-796472-g0001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验