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通过可穿戴磁惯性测量单元监测肩胛骨运动学:现状与新前沿。

Monitoring Scapular Kinematics through Wearable Magneto-Inertial Measurement Units: State of the Art and New Frontiers.

机构信息

Fondazione Policlinico Universitario Campus Bio-Medico, Via Álvaro del Portillo, 200, 00128 Roma, Italy.

Unit of Measurements and Biomedical Instrumentation, Università Campus Bio-Medico di Roma, Via Álvaro del Portillo, 21, 00128 Roma, Italy.

出版信息

Sensors (Basel). 2023 Aug 4;23(15):6940. doi: 10.3390/s23156940.

Abstract

Monitoring shoulder kinematics, including the scapular segment, is of great relevance in the orthopaedic field. Among wearable systems, magneto-inertial measurement units (M-IMUs) represent a valid alternative for applications in unstructured environments. The aim of this systematic literature review is to report and describe the existing methods to estimate 3D scapular movements through wearable systems integrating M-IMUs. A comprehensive search of PubMed, IEEE Xplore, and Web of Science was performed, and results were included up to May 2023. A total of 14 articles was included. The results showed high heterogeneity among studies regarding calibration procedures, tasks executed, and the population. Two different techniques were described, i.e., with the x-axis aligned with the cranial edge of the scapular spine or positioned on the flat surface of the acromion with the x-axis perpendicular to the scapular spine. Sensor placement affected the scapular motion and, also, the kinematic output. Further studies should be conducted to establish a universal protocol that reduces the variability among studies. Establishing a protocol that can be carried out without difficulty or pain by patients with shoulder musculoskeletal disorders could be of great clinical relevance for patients and clinicians to monitor 3D scapular kinematics in unstructured settings or during common clinical practice.

摘要

监测肩部运动学,包括肩胛节段,在矫形领域非常重要。在可穿戴系统中,磁惯性测量单元(M-IMU)代表了在非结构化环境中应用的一种有效替代方案。本系统文献综述旨在报告和描述通过集成 M-IMU 的可穿戴系统来估计 3D 肩胛运动的现有方法。对 PubMed、IEEE Xplore 和 Web of Science 进行了全面搜索,并将结果收录至 2023 年 5 月。共纳入 14 篇文章。结果表明,校准程序、执行的任务和人群方面,研究之间存在高度异质性。描述了两种不同的技术,即 X 轴与肩胛脊柱的颅侧边缘对齐,或置于肩峰的平坦表面上,X 轴垂直于肩胛脊柱。传感器的放置会影响肩胛运动和运动学输出。应该进行进一步的研究,以建立一个通用的协议,减少研究之间的变异性。为患有肩肌骨骼疾病的患者建立一个无需困难或疼痛即可进行的协议,对于患者和临床医生在非结构化环境或常规临床实践中监测 3D 肩胛运动学可能具有重要的临床意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e600/10422625/6f5265869caa/sensors-23-06940-g001.jpg

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