Organic neuroelectronics: from neural interfaces to neuroprosthetics
Requirements and recent advances in research on organic neuroelectronics are outlined
herein. Neuroelectronics such as neural interfaces and neuroprosthetics provide a …
herein. Neuroelectronics such as neural interfaces and neuroprosthetics provide a …
Two-Dimensional Materials in Biosensing and Healthcare: From In Vitro Diagnostics to Optogenetics and Beyond
Since the isolation of graphene in 2004, there has been an exponentially growing number of
reports on layered two-dimensional (2D) materials for applications ranging from protective …
reports on layered two-dimensional (2D) materials for applications ranging from protective …
3D spatiotemporally scalable in vivo neural probes based on fluorinated elastomers
Electronic devices for recording neural activity in the nervous system need to be scalable
across large spatial and temporal scales while also providing millisecond and single-cell …
across large spatial and temporal scales while also providing millisecond and single-cell …
Copper (I) phosphide nanocrystals for in situ self‐generation magnetic resonance imaging‐guided photothermal‐enhanced chemodynamic synergetic therapy …
Y Liu, J Wu, Y **, W Zhen, Y Wang… - Advanced Functional …, 2019 - Wiley Online Library
Fe‐based Fenton agents can generate highly reactive and toxic hydroxyl radicals (· OH) in
the tumor microenvironment (TME) for chemodynamic therapy (CDT) with high specificity …
the tumor microenvironment (TME) for chemodynamic therapy (CDT) with high specificity …
Highly stretchable hydrogels as wearable and implantable sensors for recording physiological and brain neural signals
Q Liang, X ** by simultaneous deep brain stimulation and fMRI with graphene fiber electrodes
S Zhao, G Li, C Tong, W Chen, P Wang, J Dai… - Nature …, 2020 - nature.com
Simultaneous deep brain stimulation (DBS) and functional magnetic resonance imaging
(fMRI) constitutes a powerful tool for elucidating brain functional connectivity, and exploring …
(fMRI) constitutes a powerful tool for elucidating brain functional connectivity, and exploring …
Highly stretchable, compliant, polymeric microelectrode arrays for in vivo electrophysiological interfacing
Polymeric microelectrode arrays (MEAs) are emerging as a new generation of biointegrated
microelectrodes to transduce original electrochemical signals in living tissues to external …
microelectrodes to transduce original electrochemical signals in living tissues to external …