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比较站立和仰卧姿势下体内三维肩部抬高运动学。

Comparing in vivo three-dimensional shoulder elevation kinematics between standing and supine postures.

作者信息

Sugi Akira, Matsuki Keisuke, Fukushi Ryunosuke, Shimoto Takeshi, Hirose Toshiaki, Shibayama Yuji, Nishinaka Naoya, Iba Kousuke, Yamashita Toshihiko, Banks Scott A

机构信息

Department of Orthopaedic Surgery, Sapporo Medical University School of Medicine, Sapporo, Hokkaido, Japan.

Department of Mechanical and Aerospace Engineering, University of Florida, Gainesville, FL, USA.

出版信息

JSES Int. 2021 Sep 4;5(6):1001-1007. doi: 10.1016/j.jseint.2021.07.005. eCollection 2021 Nov.

Abstract

BACKGROUND

It is often assumed that body posture, standing vs. supine, changes shoulder muscle activation and range of motion, but these altered shoulder mechanics have not been objectively assessed. We expected the supine posture might facilitate scapular rotation and change subacromial pressure. The purpose of this study is to evaluate the influence of body posture on shoulder kinematics during arm elevation.

METHODS

Ten males and eight females with a mean age of 33 years participated in this study. Shoulder kinematics were assessed during scapular plane elevation in the standing and supine postures by using single-plane fluoroscopic images. Kinematics were measured using 3-dimensional to 2-dimensional model-image registration techniques: matching the 3-dimensional bone model derived from computed tomography onto each fluoroscopic image. Glenohumeral superior/inferior translation, acromiohumeral distance, and scapular rotations were compared between the postures. The effect of sex also was evaluated.

RESULTS

With the arm at the side position, the humeral head in the supine posture was located 0.5 mm superior compared to the standing posture ( < .001). During humeral elevation, the humeral head significantly shifted more inferiorly in the supine posture than in standing; the biggest mean difference was 0.6 mm,  = .003. But acromiohumeral distance during elevation was not significantly affected by the body posture ( = .05). Scapular upward rotation and posterior tilt were significantly different between the postures ( < .001). Sex had statistically significant, but quantitatively small, effects on shoulder kinematics.

CONCLUSIONS

Body postures affect shoulder kinematics during humeral elevation. This knowledge will be useful to optimize rehabilitation exercises and for diagnostic insight.

摘要

背景

人们通常认为身体姿势,即站立与仰卧,会改变肩部肌肉的激活和活动范围,但这些改变的肩部力学尚未得到客观评估。我们预计仰卧姿势可能会促进肩胛骨旋转并改变肩峰下压力。本研究的目的是评估身体姿势对手臂抬高过程中肩部运动学的影响。

方法

10名男性和8名女性参与了本研究,平均年龄为33岁。通过使用单平面荧光透视图像,在站立和仰卧姿势下肩胛骨平面抬高过程中评估肩部运动学。使用三维到二维模型 - 图像配准技术测量运动学:将从计算机断层扫描获得的三维骨骼模型与每个荧光透视图像进行匹配。比较两种姿势之间的盂肱关节上下平移、肩峰肱骨头距离和肩胛骨旋转。还评估了性别的影响。

结果

手臂处于体侧位置时,仰卧姿势下的肱骨头比站立姿势高0.5毫米(<0.001)。在肱骨抬高过程中,仰卧姿势下的肱骨头比站立姿势明显更向下移位;最大平均差异为0.6毫米,P = 0.003。但抬高过程中的肩峰肱骨头距离不受身体姿势的显著影响(P = 0.05)。两种姿势之间肩胛骨向上旋转和向后倾斜有显著差异(<0.001)。性别对肩部运动学有统计学上显著但数量上较小的影响。

结论

身体姿势会影响肱骨抬高过程中的肩部运动学。这一知识将有助于优化康复锻炼和提供诊断见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3868/8568990/5e7d51920129/gr1.jpg

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