This article synthesizes the latest advancements and persistent challenges in achieving high-fidelity long-term neural recordings, a cornerstone for progress in neuroscience research, drug development, and clinical brain-computer interfaces.
This article provides a comprehensive analysis of the critical factors influencing the long-term stability and performance of implantable electrodes for neural interfaces.
This article provides a detailed comparative analysis of rigid and soft bioelectronics, targeting researchers and professionals in biomedical science and drug development.
This article provides a comprehensive exploration of the strategies and challenges in optimizing electrical stimulation waveforms to achieve selective neural activation.
This article provides a comprehensive analysis of innovative strategies to mitigate the foreign body response (FBR) against implantable bioelectronic devices.
This article provides a comprehensive overview of cutting-edge encapsulation technologies designed to prevent water and ion permeation in implantable and wearable bioelectronics.
This article comprehensively reviews the critical challenge of fatigue resistance in soft bioelectronic materials, a paramount property for the reliability of long-term implantable and wearable devices.
This article provides a comprehensive analysis of the latest strategies to overcome the critical challenge of signal degradation in chronically implanted neural interfaces.
This article provides a comprehensive analysis of strategies to prevent inflammatory responses to bioelectronic implants, a critical challenge limiting their long-term reliability and clinical adoption.
This article provides a comprehensive analysis of the latest advancements in graphene and two-dimensional (2D) materials for bioelectronic devices.