Background: Epiretinal implants based on microelectro-mechanical system (MEMS) technology with a polyimide (PI) material are being proposed for application. Many kinds of non-photosensitive PIs have good biocompatibility and stability as typical MEMS materials for implantable electrodes. However, the effects of MEMS microfabrication, sterilization and implantation using a photosensitive polyimide (PSPI) microelectrode array for epiretinal electrical stimulation has not been extensively examined. Methods: A novel PSPI (Durimide 7510) microelectrode array for epiretinal electrical stimulation was designed, fabricated based on MEMS processing and microfabrication techniques. The biocompatibility of our new microelectrode was tested in vitro...
[[abstract]]Purpose: To extend previous technologies available for artificial retina implementation ...
A method of fabricating flexible neural microelectrodes based on non-photosensitive polyimide PI-5J ...
A polyimide-based, biocompatible microelectrode device has been designed, fabricated, and tested. Th...
The electric stimulation (ES) of the cornea is a novel therapeutic approach to the treatment of dege...
A double metal-layer thin-film platinum microelectrode array was fabricated for implantation between...
Different research groups are focusing their work on the development of a neural prostheses to aid p...
This paper describes a photoelectric device that is intended to serve as a replacement for degenerat...
Micromachining technologies were established to fabricate microelectrode arrays and devices for inte...
Purpose: The photosensitive polyimide film, Durimide, is a common component of retinal prostheses; h...
We have described the development of a flexible microelectrode array with potential applications in ...
Modern microfabrication techniques make it possible to develop microelectrode arrays that may be uti...
Millions of people suffer from retinal diseases worldwide. Retinal diseases can either be cured or t...
Purpose: To develop a liquid crystal polymer (LCP) based, long-term implantable, retinal stimulation...
Polyimide has been widely applied to neural prosthetic devices, such as the retinal implants, due to...
We present the concept of a novel epiretinal prosthesis, consisting of a foil-based, miniaturized el...
[[abstract]]Purpose: To extend previous technologies available for artificial retina implementation ...
A method of fabricating flexible neural microelectrodes based on non-photosensitive polyimide PI-5J ...
A polyimide-based, biocompatible microelectrode device has been designed, fabricated, and tested. Th...
The electric stimulation (ES) of the cornea is a novel therapeutic approach to the treatment of dege...
A double metal-layer thin-film platinum microelectrode array was fabricated for implantation between...
Different research groups are focusing their work on the development of a neural prostheses to aid p...
This paper describes a photoelectric device that is intended to serve as a replacement for degenerat...
Micromachining technologies were established to fabricate microelectrode arrays and devices for inte...
Purpose: The photosensitive polyimide film, Durimide, is a common component of retinal prostheses; h...
We have described the development of a flexible microelectrode array with potential applications in ...
Modern microfabrication techniques make it possible to develop microelectrode arrays that may be uti...
Millions of people suffer from retinal diseases worldwide. Retinal diseases can either be cured or t...
Purpose: To develop a liquid crystal polymer (LCP) based, long-term implantable, retinal stimulation...
Polyimide has been widely applied to neural prosthetic devices, such as the retinal implants, due to...
We present the concept of a novel epiretinal prosthesis, consisting of a foil-based, miniaturized el...
[[abstract]]Purpose: To extend previous technologies available for artificial retina implementation ...
A method of fabricating flexible neural microelectrodes based on non-photosensitive polyimide PI-5J ...
A polyimide-based, biocompatible microelectrode device has been designed, fabricated, and tested. Th...