International audienceThe stability of polymer-based sensors in a biological environment remains a challenge, as delamination and swelling often compromise mechanical and electrical capability. We have developed a neural implant based on Parylene C, a biocompatible flexible polymer, with PEDOT-nanostructured gold patterns to record the brain electrical activity. Here, we show first evidence of device biostability through in vitro soaking tests in artificial brain environment and in vivo recording in mice. Our results indicate that after over the six months trial, more than 75% of the in vitro electrodes have stable impedance, and the implanted sensors in mice were able to accurately record signals from mice hippocampi. None of the implants ...
Over more than half a century, neural interfaces enabled various breakthroughs to treat patients suf...
Transient bioelectronics has grown fast, opening possibilities never thought before. In medicine, tr...
Transient bioelectronics has grown fast, opening possibilities never thought before. In medicine, tr...
International audienceThe stability of polymer-based sensors in a biological environment remains a c...
International audienceParylene C has rapidly gained attention as a exible biomaterial for a new gene...
International audienceImplantable neural prosthetics devices offer a promising opportunity for the r...
Abstract—This work presents the first parylene-insulated silicon probes, which are used for neural p...
Abstract-This work presents the first parylene-insulated silicon probes, which are used for neural p...
Neural probes are important tools in detecting and studying neuron activities. Although people have ...
This research presents new designs and materials for neural recording and stimulation technology. Gr...
International audienceThis paper describes the fabrication and the packaging of a flexible parylene-...
Parylene C is a highly flexible polymer used in several biomedical implants. Since previous studies ...
International audienceOBJECTIVE: The goal of this study was to evaluate the long-term behavior of th...
We present the fabrication, characterization, use in cortical recording and histological results of ...
A Parylene C neural probe with a three dimensional sheath structure was designed, fabricated, and ch...
Over more than half a century, neural interfaces enabled various breakthroughs to treat patients suf...
Transient bioelectronics has grown fast, opening possibilities never thought before. In medicine, tr...
Transient bioelectronics has grown fast, opening possibilities never thought before. In medicine, tr...
International audienceThe stability of polymer-based sensors in a biological environment remains a c...
International audienceParylene C has rapidly gained attention as a exible biomaterial for a new gene...
International audienceImplantable neural prosthetics devices offer a promising opportunity for the r...
Abstract—This work presents the first parylene-insulated silicon probes, which are used for neural p...
Abstract-This work presents the first parylene-insulated silicon probes, which are used for neural p...
Neural probes are important tools in detecting and studying neuron activities. Although people have ...
This research presents new designs and materials for neural recording and stimulation technology. Gr...
International audienceThis paper describes the fabrication and the packaging of a flexible parylene-...
Parylene C is a highly flexible polymer used in several biomedical implants. Since previous studies ...
International audienceOBJECTIVE: The goal of this study was to evaluate the long-term behavior of th...
We present the fabrication, characterization, use in cortical recording and histological results of ...
A Parylene C neural probe with a three dimensional sheath structure was designed, fabricated, and ch...
Over more than half a century, neural interfaces enabled various breakthroughs to treat patients suf...
Transient bioelectronics has grown fast, opening possibilities never thought before. In medicine, tr...
Transient bioelectronics has grown fast, opening possibilities never thought before. In medicine, tr...