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用于预防建筑行业肌肉骨骼疾病的可穿戴惯性测量单元传感系统

Wearable Inertial Measurement Unit Sensing System for Musculoskeletal Disorders Prevention in Construction.

作者信息

Zhao Junqi, Obonyo Esther, G Bilén Sven

机构信息

Department of Architectural Engineering, The Pennsylvania State University, State College, PA 16802, USA.

School of Engineering Design, Technology and Professional Programs, The Pennsylvania State University, State College, PA 16802, USA.

出版信息

Sensors (Basel). 2021 Feb 13;21(4):1324. doi: 10.3390/s21041324.

Abstract

Construction workers executing manual-intensive tasks are susceptible to musculoskeletal disorders (MSDs) due to overexposure to awkward postures. Automated posture recognition and assessment based on wearable sensor output can help reduce MSDs risks through early risk-factor detection. However, extant studies mainly focus on optimizing recognition models. There is a lack of studies exploring the design of a wearable sensing system that assesses the MSDs risks based on detected postures and then provides feedback for injury prevention. This study aims at investigating the design of an effective wearable MSDs prevention system. This study first proposes the design of a wearable inertial measurement unit (IMU) sensing system, then develops the prototype for end-user evaluation. Construction workers and managers evaluated a proposed system by interacting with wearable sensors and user interfaces (UIs), followed by an evaluation survey. The results suggest that wearable sensing is a promising approach for collecting motion data with low discomfort; posture-based MSDs risk assessment has a high potential in improving workers' safety awareness; and mobile- and cloud-based UIs can deliver the risk assessment information to end-users with ease. This research contributes to the design, development, and validation of wearable sensing-based injury prevention systems, which may be adapted to other labor-intensive occupations.

摘要

从事体力密集型任务的建筑工人由于过度暴露于不良姿势而容易患上肌肉骨骼疾病(MSD)。基于可穿戴传感器输出的自动姿势识别和评估可以通过早期检测风险因素来帮助降低MSD风险。然而,现有研究主要集中在优化识别模型。缺乏研究探索可穿戴传感系统的设计,该系统基于检测到的姿势评估MSD风险,然后提供预防伤害的反馈。本研究旨在调查一种有效的可穿戴MSD预防系统的设计。本研究首先提出了一种可穿戴惯性测量单元(IMU)传感系统的设计,然后开发了用于最终用户评估的原型。建筑工人和管理人员通过与可穿戴传感器和用户界面(UI)交互来评估所提出的系统,随后进行评估调查。结果表明,可穿戴传感是一种以低不适感收集运动数据的有前途的方法;基于姿势的MSD风险评估在提高工人安全意识方面具有很大潜力;基于移动和云的用户界面可以轻松地将风险评估信息传递给最终用户。本研究有助于基于可穿戴传感的伤害预防系统的设计、开发和验证,该系统可能适用于其他劳动密集型职业。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4128/7917635/27bf5699eeb8/sensors-21-01324-g0A1.jpg

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