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wearable 生物阻抗在终末期肾病纵向液体监测中的潜力。

On the potential of wearable bioimpedance for longitudinal fluid monitoring in end-stage kidney disease.

机构信息

IMEC The Netherlands/Holst Centre, Health Research, Eindhoven, The Netherlands.

Department of Nephrology, University Medical Center Utrecht, Utrecht, The Netherlands.

出版信息

Nephrol Dial Transplant. 2022 Oct 19;37(11):2048-2054. doi: 10.1093/ndt/gfab025.

Abstract

Bioimpedance spectroscopy (BIS) has proven to be a promising non-invasive technique for fluid monitoring in haemodialysis (HD) patients. While current BIS-based monitoring of pre- and post-dialysis fluid status utilizes benchtop devices, designed for intramural use, advancements in micro-electronics have enabled the development of wearable bioimpedance systems. Wearable systems meanwhile can offer a similar frequency range for current injection as commercially available benchtop devices. This opens opportunities for unobtrusive longitudinal fluid status monitoring, including transcellular fluid shifts, with the ultimate goal of improving fluid management, thereby lowering mortality and improving quality of life for HD patients. Ultra-miniaturized wearable devices can also offer simultaneous acquisition of multiple other parameters, including haemodynamic parameters. Combination of wearable BIS and additional longitudinal multiparametric data may aid in the prevention of both haemodynamic instability as well as fluid overload. The opportunity to also acquire data during interdialytic periods using wearable devices likely will give novel pathophysiological insights and the development of smart (predicting) algorithms could contribute to personalizing dialysis schemes and ultimately to autonomous (nocturnal) home dialysis. This review provides an overview of current research regarding wearable bioimpedance, with special attention to applications in end-stage kidney disease patients. Furthermore, we present an outlook on the future use of wearable bioimpedance within dialysis practice.

摘要

生物阻抗谱(BIS)已被证明是一种有前途的非侵入性技术,可用于血液透析(HD)患者的液体监测。虽然目前基于 BIS 的透析前和透析后液体状态监测使用的是专为室内使用而设计的台式设备,但微电子技术的进步使可穿戴生物阻抗系统得以发展。与此同时,可穿戴系统可以为当前的注入电流提供类似于市售台式设备的相似频率范围。这为非侵入性纵向液体状态监测提供了机会,包括细胞间液体转移,最终目标是改善液体管理,从而降低 HD 患者的死亡率并提高生活质量。超小型可穿戴设备还可以同时获取多个其他参数,包括血液动力学参数。可穿戴 BIS 与其他纵向多参数数据的组合可能有助于预防血液动力学不稳定和液体过载。使用可穿戴设备在透析间隔期间获取数据的机会可能会提供新的病理生理学见解,而智能(预测)算法的开发可能有助于个性化透析方案,并最终实现自主(夜间)家庭透析。本文综述了可穿戴生物阻抗的当前研究进展,特别关注其在终末期肾病患者中的应用。此外,我们还展望了可穿戴生物阻抗在透析实践中的未来应用。

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