In Vivo Organic Bioelectronics for Neuromodulation
The nervous system poses a grand challenge for integration with modern electronics and
the subsequent advances in neurobiology, neuroprosthetics, and therapy which would …
the subsequent advances in neurobiology, neuroprosthetics, and therapy which would …
Microfluidics for drug development: from synthesis to evaluation
Drug development is a long process whose main content includes drug synthesis, drug
delivery, and drug evaluation. Compared with conventional drug development procedures …
delivery, and drug evaluation. Compared with conventional drug development procedures …
Self-powered, light-controlled, bioresorbable platforms for programmed drug delivery
Degradable polymer matrices and porous scaffolds provide powerful mechanisms for
passive, sustained release of drugs relevant to the treatment of a broad range of diseases …
passive, sustained release of drugs relevant to the treatment of a broad range of diseases …
Wearable and implantable devices for drug delivery: Applications and challenges
Poor adherence to drug dosing schedule is responsible for∼ 50% of hospitalization cases.
Most patients fail to adhere to a strict dosing schedule due to invasive drug administration …
Most patients fail to adhere to a strict dosing schedule due to invasive drug administration …
PEDOT: PSS‐based bioelectronic devices for recording and modulation of electrophysiological and biochemical cell signals
To understand the physiology and pathology of electrogenic cells and the corresponding
tissue in their full complexity, the quantitative investigation of the transmission of ions as well …
tissue in their full complexity, the quantitative investigation of the transmission of ions as well …
Organic bioelectronics: from functional materials to next‐generation devices and power sources
Conjugated polymers (CPs) possess a unique set of features setting them apart from other
materials. These properties make them ideal when interfacing the biological world …
materials. These properties make them ideal when interfacing the biological world …
Poly (3, 4‐ethylenedioxythiophene)‐based neural interfaces for recording and stimulation: fundamental aspects and in vivo applications
Next‐generation neural interfaces for bidirectional communication with the central nervous
system aim to achieve the intimate integration with the neural tissue with minimal …
system aim to achieve the intimate integration with the neural tissue with minimal …
Mass and charge transport kinetics in an organic mixed ionic–electronic conductor
Understanding the mass uptake, morphological changes, and charge transport in organic
mixed ionic–electronic conductors (OMIECs) during device operation is crucial for …
mixed ionic–electronic conductors (OMIECs) during device operation is crucial for …
Bioelectronic applications of intrinsically conductive polymers
X Gao, Y Bao, Z Chen, J Lu, T Su… - Advanced Electronic …, 2023 - Wiley Online Library
Since the discovery of conducting polyacetylene in the 1970s, intrinsically conducting
polymers (ICPs) have attracted great attention because of their interesting structure …
polymers (ICPs) have attracted great attention because of their interesting structure …
Conductive polymer‐based bioelectronic platforms toward sustainable and biointegrated devices: a journey from skin to brain across human body interfaces
O Bettucci, GM Matrone… - Advanced Materials …, 2022 - Wiley Online Library
Over the last few years, organic bioelectronics has experienced an exponential growth with
applications encompassing platforms for tissue engineering, drug delivery systems …
applications encompassing platforms for tissue engineering, drug delivery systems …