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July 8, 2024Advanced Functional Materials89 citationsOpen Access

Bioelectronic Implantable Devices for Physiological Signal Recording and Closed‐Loop Neuromodulation

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SOSaehyuck OhJJJanghwan JekalJLJia Liu

Key Points

  • Bioelectronic implantable devices enable continuous monitoring of physiological conditions and deliver targeted neuromodulation directly to organs.
  • Closed-loop systems provide dynamic treatment adjustments using real-time physiological feedback, bolstered by artificial intelligence and edge computing.
  • Comprehensive review evaluates current engineering challenges and future directions for implantable devices, supporting next-generation therapeutic tools.

Abstract

Abstract Bioelectronic implantable devices are adept at facilitating continuous monitoring of health and enabling the early detection of diseases, offering insights into the physiological conditions of various bodily organs. Furthermore, these advanced systems have therapeutic capabilities in neuromodulation, demonstrating their efficacy in addressing diverse medical conditions through the precise delivery of stimuli directly to specific targets. This comprehensive review explores developments and applications of bioelectronic devices within the biomedical field. Special emphasis is placed on the evolution of closed‐loop systems, which stand out for their dynamic treatment adjustments based on real‐time physiological feedback. The integration of Artificial Intelligence (AI) and edge computing technologies is discussed, which significantly bolster the diagnostic and therapeutic functions of these devices. By addressing elemental analyses, current challenges, and future directions in implantable devices, the review aims to guide the pathway for advances in bioelectronic devices.

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Cite This Study

Oh et al. (2024) studied this question.

synapsesocial.com/papers/68e60f70b6db6435875a2ad2https://doi.org/10.1002/adfm.202403562
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