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A Handheld and Textile-Enabled Bioimpedance System for Ubiquitous Body Composition Analysis. An Initial Functional

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    IEEE Journal of Biomedical and Health Informatics
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    A new handheld bioimpedance system effectively monitors body fluid status for home-based chronic kidney disease (CKD) management. This technology supports proactive, patient-oriented care, improving quality of life and potentially reducing healthcare costs.

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    Area of Science:

    • Biomedical Engineering
    • Nephrology
    • Medical Devices

    Background:

    • Chronic kidney disease (CKD) management is a significant healthcare cost, necessitating a shift towards proactive, patient-centered, and home-based care.
    • Home-based renal replacement therapies like peritoneal dialysis and home hemodialysis offer improved lifestyle flexibility and comparable patient survival to in-center hemodialysis.
    • Accurate body fluid monitoring is crucial for managing CKD patients, particularly those on home dialysis, to optimize ultrafiltration and prevent complications.

    Purpose of the Study:

    • To validate a novel handheld bioimpedance system for assessing body fluid status in patients undergoing home-based CKD treatments.
    • To evaluate the system's performance against a commercial medical-grade bioimpedance spectrometer.
    • To determine the system's suitability for integration into e-healthcare dialysis solutions.

    Main Methods:

    • Development of a custom handheld tetrapolar bioimpedance spectrometer integrated with a textile electrode garment for total body fluid assessment.
    • Validation study involving voluntary subjects comparing measurements from the novel handheld system with a commercial bioimpedance spectrometer.
    • Comparative analysis of fluid estimations derived from both devices.

    Main Results:

    • The handheld bioimpedance system demonstrated equivalent measurement performance compared to the commercial medical-grade device.
    • Fluid estimations obtained from the novel system were comparable to those from the established device.
    • The system's validation supports its potential for reliable use in home-based CKD management.

    Conclusions:

    • The validated handheld bioimpedance system is a promising tool for empowering CKD patients with self-management of their fluid status at home.
    • This technology can facilitate proactive, patient-oriented healthcare, aligning with the paradigm shift towards sustainable and cost-effective chronic disease management.
    • The system's equivalence in performance suggests its viability for ubiquitous e-healthcare dialysis solutions, enhancing remote patient monitoring and care.