The first flexible parylene-based multielectrode arrays (MEAs) designed for functional electrical stimulation (FES) in retinal prostheses, and the extension of this technology toward enabling reflex-arc neuromodulation in cases of spinal cord damage or transection, are presented. A single metal layer 16 ×16 retinal electrode array of 125 μm-diameter thin-film Ti/Pt electrodes and lines of 12 μm-pitch has been fabricated as a demonstration of this technology. To allow for even higher density arrays, a novel dual-layer process has also been implemented that enables leads to pass under overlying electrodes without making electrical contact to them. A biomimetic parylene-based electrode array consisting of 1024 electrodes of highly variable spa...
We have described the development of a flexible microelectrode array with potential applications in ...
A Parylene C neural probe with a three dimensional sheath structure was designed, fabricated, and ch...
This work presents a new multi-site probe array applied with parylene technology, used for neural pr...
The first flexible parylene-based multielectrode arrays (MEAs) designed for functional electrical st...
Abstract: Novel flexible parylene-based high-density electrode arrays have been developed for functi...
Novel flexible parylene-based high-density electrode arrays have been developed for functional elect...
Novel flexible parylene-based high-density electrode arrays have been developed for functional elect...
Novel flexible parylene-based high-density electrode arrays have been developed for functional elect...
Parylene C, an emerging material in microelectromechanical systems (MEMS), is now widely applied to ...
Parylene C, an emerging material in microelectromechanical systems (MEMS), is now widely applied to ...
The problems of outer retinal degeneration and spinal cord injury affect millions of people worldwid...
This paper describes a new three-dimension (3D) flexible parylene-based microelectrode array (MEA) d...
We present the first single metal layer flexible microelectrode arrays designed for intraocular impl...
Flexible microelectrode array (MEA) has been widely used in neural prosthesis, such as artificial re...
This research presents new designs and materials for neural recording and stimulation technology. Gr...
We have described the development of a flexible microelectrode array with potential applications in ...
A Parylene C neural probe with a three dimensional sheath structure was designed, fabricated, and ch...
This work presents a new multi-site probe array applied with parylene technology, used for neural pr...
The first flexible parylene-based multielectrode arrays (MEAs) designed for functional electrical st...
Abstract: Novel flexible parylene-based high-density electrode arrays have been developed for functi...
Novel flexible parylene-based high-density electrode arrays have been developed for functional elect...
Novel flexible parylene-based high-density electrode arrays have been developed for functional elect...
Novel flexible parylene-based high-density electrode arrays have been developed for functional elect...
Parylene C, an emerging material in microelectromechanical systems (MEMS), is now widely applied to ...
Parylene C, an emerging material in microelectromechanical systems (MEMS), is now widely applied to ...
The problems of outer retinal degeneration and spinal cord injury affect millions of people worldwid...
This paper describes a new three-dimension (3D) flexible parylene-based microelectrode array (MEA) d...
We present the first single metal layer flexible microelectrode arrays designed for intraocular impl...
Flexible microelectrode array (MEA) has been widely used in neural prosthesis, such as artificial re...
This research presents new designs and materials for neural recording and stimulation technology. Gr...
We have described the development of a flexible microelectrode array with potential applications in ...
A Parylene C neural probe with a three dimensional sheath structure was designed, fabricated, and ch...
This work presents a new multi-site probe array applied with parylene technology, used for neural pr...