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Related Experiment Video

Updated: Jun 30, 2026

A Decentralized (Ex Vivo) Murine Bladder Model with the Detrusor Muscle Removed for Direct Access to the Suburothelium during Bladder Filling
06:36

A Decentralized (Ex Vivo) Murine Bladder Model with the Detrusor Muscle Removed for Direct Access to the Suburothelium during Bladder Filling

Published on: November 28, 2019

Bladder Digital Twins for Neuromodulation: Current Platforms and a Roadmap to Closed-Loop Therapy.

Thar Htet Nyan1, Suhyeok Kim1, Eunkyoung Park2

  • 1Department of Biomedical Engineering, Soonchunhyang University, Asan, Korea.

International Neurourology Journal
|June 29, 2026
PubMed
Summary

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Digital twins for bladder disorders offer personalized neuromodulation. This review synthesizes technologies and outlines a roadmap for closed-loop bladder digital twins, addressing sensing and control challenges for improved patient therapy.

Area of Science:

  • Biomedical Engineering
  • Computational Physiology
  • Digital Health

Background:

  • Bladder disorders like overactive bladder cause significant symptoms.
  • Current neuromodulation therapies use fixed settings, lacking adaptation to changing bladder states.
  • Bladder digital twins, computational models linked to sensing, promise personalized, closed-loop therapy.

Purpose of the Study:

  • To review digital twin technologies for bladder physiology, sensing, and neuromodulation.
  • To translate lessons from mature organ digital twins to bladder requirements for closed-loop control.
  • To identify barriers and propose a roadmap for developing closed-loop bladder digital twins.

Main Methods:

  • Conducted targeted literature searches (PubMed, Web of Science, IEEE Xplore, Google Scholar, 2013-2025).
Keywords:
Computer SimulationElectrical StimulationFeedbackPatient-Specific ModelingPhysiologicPhysiological; MonitoringUrinary Bladder

Related Experiment Videos

Last Updated: Jun 30, 2026

A Decentralized (Ex Vivo) Murine Bladder Model with the Detrusor Muscle Removed for Direct Access to the Suburothelium during Bladder Filling
06:36

A Decentralized (Ex Vivo) Murine Bladder Model with the Detrusor Muscle Removed for Direct Access to the Suburothelium during Bladder Filling

Published on: November 28, 2019

  • Reviewed digital twin paradigms for heart, brain, lungs, liver, and kidney.
  • Summarized bladder-specific approaches including finite-element mechanics, bioimpedance, stretchable sensors, and closed-loop control.
  • Main Results:

    • Digital twins integrate mechanistic models with data streams for state estimation.
    • Bladder applications show feasibility for state estimation and model-guided design.
    • Key barriers include motion artifacts, impedance drift, sparse personalization data, limited validation, and safety engineering.

    Conclusions:

    • A roadmap for closed-loop bladder digital twins requires ambulatory-grade sensing, artifact handling, and recalibration.
    • Prioritize uncertainty-aware state estimation, model-informed stimulation optimization, and fail-safe control.
    • Standardized reporting of accuracy, latency, uptime, and drift is crucial for clinical deployment.