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使用基于折纸的肩部贴片识别肩部内旋和外旋。

Identifying internal and external shoulder rotation using a kirigami-based shoulder patch.

作者信息

Alkayyali Amani A, Cowan Conrad P F, Owen Callum J, Giannas Emmanuel, Wolfram Susann, Hansen Ulrich, Sample Alanson P, Emery Roger J H, Shtein Max, Lipps David B

机构信息

College of Engineering, University of Michigan, Ann Arbor, MI, USA.

Medical School, University of Exeter, Exeter, UK.

出版信息

Wearable Technol. 2024 Dec 16;5:e23. doi: 10.1017/wtc.2024.20. eCollection 2024.

Abstract

Internal and external rotation of the shoulder is often challenging to quantify in the clinic. Existing technologies, such as motion capture, can be expensive or require significant time to setup, collect data, and process and analyze the data. Other methods may rely on surveys or analog tools, which are subject to interpretation. The current study evaluates a novel, engineered, wearable sensor system for improved internal and external shoulder rotation monitoring, and applies it in healthy individuals. Using the design principles of the Japanese art of (folding and cutting of paper to design 3D shapes), the sensor platform conforms to the shape of the shoulder with four on-board strain gauges to measure movement. Our objective was to examine how well this -inspired shoulder patch could identify differences in shoulder kinematics between internal and external rotation as individuals moved their humerus through movement patterns defined by Codman's paradox. Seventeen participants donned the sensor while the strain gauges measured skin deformation patterns during the participants' movement. One-dimensional statistical parametric mapping explored differences in strain voltage between the rotations. The sensor detected distinct differences between the internal and external shoulder rotation movements. Three of the four strain gauges detected significant temporal differences between internal and external rotation (all  < .047), particularly for the strain gauges placed distal or posterior to the acromion. These results are clinically significant, as they suggest a new class of wearable sensors conforming to the shoulder can measure differences in skin surface deformation corresponding to the underlying humerus rotation.

摘要

在临床上,肩部的内旋和外旋常常难以进行量化。现有的技术,如动作捕捉,可能成本高昂,或者需要花费大量时间来设置、收集数据以及处理和分析数据。其他方法可能依赖于问卷调查或模拟工具,这些方法容易受到主观解读的影响。本研究评估了一种新型的、经过设计的可穿戴传感器系统,用于改进肩部内旋和外旋监测,并将其应用于健康个体。该传感器平台运用了日本折纸艺术(通过折纸和剪纸来设计三维形状)的设计原理,通过四个内置应变片贴合肩部形状来测量运动。我们的目标是研究这种受折纸启发的肩部贴片在个体按照Codman悖论所定义的运动模式移动肱骨时,能够多好地识别肩部内旋和外旋之间的运动学差异。17名参与者佩戴该传感器,在他们运动过程中,应变片测量皮肤变形模式。一维统计参数映射探索了两种旋转之间应变电压的差异。该传感器检测到了肩部内旋和外旋运动之间的明显差异。四个应变片中的三个检测到内旋和外旋之间存在显著的时间差异(所有P值均<0.047),特别是对于置于肩峰远端或后方的应变片。这些结果具有临床意义,因为它们表明一类新型的贴合肩部的可穿戴传感器能够测量与肱骨潜在旋转相对应的皮肤表面变形差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b2f8/11729485/bc3b68dff692/S2631717624000203_fig1.jpg

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