Assessing the contribution of different upper limb degrees of freedom to an unconstrained shoulder proprioception task

IF 2 4区 医学 Q3 NEUROSCIENCES
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Abstract

For the purpose of testing shoulder joint proprioception while controlling for axioscapular muscle recruitment, a novel shoulder thoracohumeral (TH) rotation joint position sense (JPS) measurement device was designed. This device was intended to measure shoulder TH rotation, while also implicitly constraining other upper limb degrees of freedom (DOF) and minimizing cutaneous sensation. The purpose of this study was to determine whether joint motion aside from shoulder TH rotation is being captured by the shoulder JPS measurement device. Upper limb kinematics were collected from 32 participants during joint angle matching trials using the shoulder JPS measurement device. Step wise multiple regression revealed that shoulder TH rotation (β-Humeral Rotation = 0.409, p < 0.001), and wrist deviation (β-Wrist Deviation = 0.104, p = 0.008) both contributed a significant unique variance in the prediction of shoulder JPS measurement device rotation. Findings suggest that seated, unconstrained shoulder TH rotation JPS testing protocols in literature may be confounded by contributions from joints both proximal and distal to the shoulder. Researchers should be aware of the limitations of both constrained and unconstrained shoulder TH rotation JPS testing protocols.

评估不同上肢自由度对无约束肩部本体感觉任务的贡献
为了测试肩关节本体感觉,同时控制轴胛骨肌肉募集,我们设计了一种新型肩部胸肱骨(TH)旋转关节位置感(JPS)测量装置。该装置旨在测量肩部胸肱骨(TH)旋转,同时隐含地限制其他上肢自由度(DOF),并最大限度地减少皮肤感觉。本研究的目的是确定肩关节 JPS 测量装置是否能捕捉到肩关节 TH 旋转以外的关节运动。在使用肩关节 JPS 测量设备进行关节角度匹配试验时,收集了 32 名参与者的上肢运动学数据。分步多元回归显示,肩部 TH 旋转(β-肱骨旋转 = 0.409,p < 0.001)和腕关节偏差(β-腕关节偏差 = 0.104,p = 0.008)在预测肩关节 JPS 测量装置旋转方面都有显著的独特差异。研究结果表明,文献中的坐姿、无约束肩关节TH旋转JPS测试方案可能会受到肩关节近端和远端关节的影响。研究人员应了解约束和非约束肩关节TH旋转JPS测试方案的局限性。
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来源期刊
CiteScore
4.70
自引率
8.00%
发文量
70
审稿时长
74 days
期刊介绍: Journal of Electromyography & Kinesiology is the primary source for outstanding original articles on the study of human movement from muscle contraction via its motor units and sensory system to integrated motion through mechanical and electrical detection techniques. As the official publication of the International Society of Electrophysiology and Kinesiology, the journal is dedicated to publishing the best work in all areas of electromyography and kinesiology, including: control of movement, muscle fatigue, muscle and nerve properties, joint biomechanics and electrical stimulation. Applications in rehabilitation, sports & exercise, motion analysis, ergonomics, alternative & complimentary medicine, measures of human performance and technical articles on electromyographic signal processing are welcome.
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