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This article explores the transformative potential of in vivo photopolymerization, a groundbreaking technique for creating soft, conductive bioelectronic interfaces directly within living tissue.
This article comprehensively explores the burgeoning field of mixed ionic-electronic conduction (MIEC) in biomaterials, a key technology enabling seamless communication between biological ionic signals and electronic devices.
This article provides a comprehensive overview of biocompatibility in organic bioelectronics, a field poised to revolutionize medical implants and wearable devices.
This article explores the pivotal advancements and emerging trends in bioelectronics for 2025, tailored for researchers, scientists, and drug development professionals.
This article provides a comprehensive review of poly(3,4-ethylenedioxythiophene):polystyrene sulfonate (PEDOT:PSS) as a transformative material for bioelectronic applications.
This article synthesizes current advancements and challenges in bioelectronic medicine for neurodegenerative disease (ND) research and therapy.
This article explores bioelectronic medicine, an innovative field using targeted electrical signals to interface with the nervous system and treat disease.