Design and Evaluation of a Wrist Wearable Joint Acoustic Emission Monitoring System

Daniel M Hochman, G. Ozmen, L. Ponder, S. Prahalad, O. Inan
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Abstract

Joint acoustic emission (JAE) sensing is emerging as a potential modality for quantitative at-home joint health assessment. We designed and validated a low-profile, easy-to-use wearable system for JAE sensing at the wrist. An embedded microcontroller on a wrist-worn printed circuit board is used to record multi-microphone (mic) joint acoustics sampled at 46.875 kHz using an on-board analog-to-digital converter. A flex sensor and a force sensitive resistor (FSR) are sampled at 300 Hz to capture kinematics and mic backing force. Custom sensor casing solutions and real-time user feedback systems enhance audio sensing capabilities at locations both proximal and distal to the wrist. An experiment extracting wrist JAEs from healthy adults (n=6) allowed for comparison to a previously established benchtop JAE sensing system. The acoustic data were bandpass filtered (150 Hz-5.5 kHz). Qualitative observations reveal the wearable system mics successfully capture JAEs. Signal-to-noise ratio (SNR), intraclass correlation coefficient (model 3, k), and coefficients of variability were calculated to evaluate acoustic signal strength and repeatability in both systems' recordings. SNR reveals that JAE acoustic signal strength is higher when recorded using the wearable system than with the benchtop system (p<0.01). Reliability measures show that the wearable system records JAEs with similar levels of reliability to the benchtop system. Initial recordings in clinical wrist JAE research studies demonstrate high quality JAE measurements from children with Juvenile Idiopathic Arthritis (JIA) and healthy controls (HCs) (4 JIA, 3 HC). Eventually, this system may be developed into a tool for at-home wrist joint health monitoring.
腕部可穿戴关节声发射监测系统的设计与评价
关节声发射(JAE)传感正在成为定量家庭关节健康评估的潜在方式。我们设计并验证了一种低调,易于使用的可穿戴系统,用于手腕上的JAE传感。采用腕带印刷电路板上的嵌入式微控制器,利用板载模数转换器记录以46.875 kHz采样的多麦克风(mic)接头声学。弯曲传感器和力敏电阻(FSR)在300 Hz采样,以捕获运动学和麦克风背作用力。定制传感器外壳解决方案和实时用户反馈系统增强了手腕近端和远端位置的音频传感能力。从健康成人(n=6)中提取腕部JAE的实验允许与先前建立的台式JAE传感系统进行比较。声学数据经过带通滤波(150 Hz-5.5 kHz)。定性观察表明,可穿戴系统麦克风成功捕获了JAEs。计算了信噪比(SNR)、类内相关系数(模型3,k)和变异性系数,以评估两个系统录音中的声信号强度和可重复性。信噪比显示,使用可穿戴系统记录的JAE声信号强度高于台式系统(p<0.01)。可靠性测量表明,可穿戴系统记录的JAEs具有与台式系统相似的可靠性水平。临床腕部JAE研究的初步记录显示,患有幼年特发性关节炎(JIA)的儿童和健康对照(HC)的JAE测量具有高质量(4 JIA, 3 HC)。最终,该系统可能会发展成为一种家庭腕关节健康监测工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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