Flexible microelectrode array (MEA) has been widely used in neural prosthesis, such as artificial retinal chip. Specially, this sort of MEA for highly efficient electrical stimulation is more urgently required. In this work, a 3D flexible parylene-metal structure was fabricated by structure transfer technique. Silicon wafer was etched by Deep Reactive Ion Etching and isotropic wet etching sequentially. The so-etched 3D silicon structure was replicated by the parylene with/without metal depositions that followed. After releasing these functional films from the silicon mold, a 3D flexible parylene-metal structure was obtained. A numerical simulation was used to compare the stimulating performance of the 3D electrode and the planar one. The re...
A Parylene C neural probe with a three dimensional sheath structure was designed, fabricated, and ch...
We present the first single metal layer flexible microelectrode arrays designed for intraocular impl...
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...
The first flexible parylene-based multielectrode arrays (MEAs) designed for functional electrical st...
We propose a novel fabrication process to make flexible microneedle electrode array. The process inc...
We have developed and characterized a novel 3D flexible parylene-based microelectrode array (MEA) wi...
Parylene C, an emerging material in microelectromechanical systems (MEMS), is now widely applied to ...
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 ...
Abstract: Novel flexible parylene-based high-density electrode arrays have been developed for functi...
F2R is a generic IC fabrication based platform that allows for the fabrication of miniature and flex...
We present a parylene-based microneedle electrode array (MNEA). The silicon microneedle electrode ar...
Novel flexible parylene-based high-density electrode arrays have been developed for functional elect...
The first flexible parylene-based multielectrode arrays (MEAs) designed for functional electrical st...
A Parylene C neural probe with a three dimensional sheath structure was designed, fabricated, and ch...
We present the first single metal layer flexible microelectrode arrays designed for intraocular impl...
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...
The first flexible parylene-based multielectrode arrays (MEAs) designed for functional electrical st...
We propose a novel fabrication process to make flexible microneedle electrode array. The process inc...
We have developed and characterized a novel 3D flexible parylene-based microelectrode array (MEA) wi...
Parylene C, an emerging material in microelectromechanical systems (MEMS), is now widely applied to ...
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 ...
Abstract: Novel flexible parylene-based high-density electrode arrays have been developed for functi...
F2R is a generic IC fabrication based platform that allows for the fabrication of miniature and flex...
We present a parylene-based microneedle electrode array (MNEA). The silicon microneedle electrode ar...
Novel flexible parylene-based high-density electrode arrays have been developed for functional elect...
The first flexible parylene-based multielectrode arrays (MEAs) designed for functional electrical st...
A Parylene C neural probe with a three dimensional sheath structure was designed, fabricated, and ch...
We present the first single metal layer flexible microelectrode arrays designed for intraocular impl...
The problems of outer retinal degeneration and spinal cord injury affect millions of people worldwid...