We present a flexible and fully-implantable coil designed for use as a power and data transfer component in retinal prosthesis applications. Compared with traditional hand-made intraocular coils, this microfabricated coil is flexible, with a 9.5 mm outer diameter and 10-mum-thick parylene C as the primary structural and packaging material. A post-fabrication heat treatment was used to improve the parylene package in order to protect the device in harsh corrosive environments such as the human eye. Long-term accelerated-lifetime soak testing in heated saline has been performed, and the mean time to failure (MTTF) of the parylene package extrapolated to 37°C was estimated using the Arrhenius relationship. The electrical failure of this device...
The first flexible parylene-based multielectrode arrays (MEAs) designed for functional electrical st...
A micro-fabricated parylene-packaged flexible pentacene thin film transistor is presented. Different...
Novel flexible parylene-based high-density electrode arrays have been developed for functional elect...
We present a flexible and fully-implantable coil designed for use as a power and data transfer compo...
A microfabricated and fully-implantable coil for use as a power and data transfer component for reti...
We present the first single metal layer flexible microelectrode arrays designed for intraocular impl...
This paper presents an embedded chip integration technology that incorporates silicon housings and ...
The first flexible parylene-based multielectrode arrays (MEAs) designed for functional electrical st...
Novel flexible parylene-based high-density electrode arrays have been developed for functional elect...
The problems of outer retinal degeneration and spinal cord injury affect millions of people worldwid...
The degeneration of the outer retina usually causes blindness by affecting the photoreceptor cells. ...
MEMS technology has been used more and more in biomedical application for neural prosthetic implanta...
In this paper, we present an embedded chip integration technology that utilizes silicon housings an...
This work presents an implantable wireless passive pressure sensor for long-range continuous intraoc...
This work presents a MEMS intraocular coil which is designed to be flexible, biocompatible and elect...
The first flexible parylene-based multielectrode arrays (MEAs) designed for functional electrical st...
A micro-fabricated parylene-packaged flexible pentacene thin film transistor is presented. Different...
Novel flexible parylene-based high-density electrode arrays have been developed for functional elect...
We present a flexible and fully-implantable coil designed for use as a power and data transfer compo...
A microfabricated and fully-implantable coil for use as a power and data transfer component for reti...
We present the first single metal layer flexible microelectrode arrays designed for intraocular impl...
This paper presents an embedded chip integration technology that incorporates silicon housings and ...
The first flexible parylene-based multielectrode arrays (MEAs) designed for functional electrical st...
Novel flexible parylene-based high-density electrode arrays have been developed for functional elect...
The problems of outer retinal degeneration and spinal cord injury affect millions of people worldwid...
The degeneration of the outer retina usually causes blindness by affecting the photoreceptor cells. ...
MEMS technology has been used more and more in biomedical application for neural prosthetic implanta...
In this paper, we present an embedded chip integration technology that utilizes silicon housings an...
This work presents an implantable wireless passive pressure sensor for long-range continuous intraoc...
This work presents a MEMS intraocular coil which is designed to be flexible, biocompatible and elect...
The first flexible parylene-based multielectrode arrays (MEAs) designed for functional electrical st...
A micro-fabricated parylene-packaged flexible pentacene thin film transistor is presented. Different...
Novel flexible parylene-based high-density electrode arrays have been developed for functional elect...