Sensorizing a Compression Sleeve for Continuous Pressure Monitoring and Lymphedema Treatment Using Pneumatic or Resistive Sensors

Joseph DelPreto, C. Brunelle, A. Taghian, Daniela Rus
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引用次数: 1

Abstract

Smart soft wearable devices have great potential to change how technology is integrated into daily life. A particularly impactful and growing application is continuous medical monitoring; being able to stream physiological and behavioral information creates personalized datasets that can lead to more tailored treatments, diagnoses, and research. An area that can greatly benefit from these developments is lymphedema management, which aims to prevent a potentially irreversible swelling of limbs due to causes such as breast cancer surgeries. Compression sleeves are the state of the art for treatment, but many open questions remain regarding effective pressure and usage prescriptions. To help address these, this work presents a soft pressure sensor, a way to integrate it into wearable devices, and sensorized compression sleeves that continuously monitor pressure and usage. There are significant challenges to developing sensors for high-pressure applications on the human body, including operating between soft compliant interfaces, being safe and unobtrusive, and reducing calibration for new users. This work compares two sensing approaches for wearable applications: a custom pouch-based pneumatic sensor, and a commercially available resistive sensor. Experiments systematically explore design considerations including sensitivity to ambient temperature and pressure, characterize sensor response curves, and evaluate expected accuracies and required calibrations. Sensors are then integrated into compression sleeves and worn for over 115 hours spanning 10 days.
用气动或电阻式传感器感应连续压力监测和淋巴水肿治疗的压缩套筒
智能软可穿戴设备在改变科技融入日常生活的方式方面具有巨大潜力。一个特别有影响力和不断增长的应用是持续医疗监测;生理和行为信息流能够创建个性化的数据集,从而导致更有针对性的治疗、诊断和研究。淋巴水肿管理是一个可以从这些发展中获益良多的领域,其目的是防止由于乳腺癌手术等原因导致的潜在的不可逆转的肢体肿胀。压缩套管是目前最先进的治疗方法,但关于有效压力和使用处方仍有许多悬而未决的问题。为了解决这些问题,这项工作提出了一种软压力传感器,一种将其集成到可穿戴设备中的方法,以及连续监测压力和使用情况的传感器压缩套管。开发用于人体高压应用的传感器存在重大挑战,包括在软兼容接口之间操作,安全且不引人注目,以及减少新用户的校准。这项工作比较了两种可穿戴应用的传感方法:一种定制的基于袋的气动传感器和一种市售的电阻传感器。实验系统地探索设计考虑因素,包括对环境温度和压力的敏感性,表征传感器响应曲线,并评估预期的精度和所需的校准。然后将传感器集成到压缩套筒中,并在10天内佩戴超过115小时。
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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