Neural interfaces hold great promise to become invaluable clinical and diagnostic tools in the near future. However, the biocompatibility and the long-term stability of the implanted interfaces are far from optimized. There are several factors that need to be addressed and standardized when improving the long-term success of an implanted electrode. We have chosen to focus on three key factors when evaluating the evoked tissue responses after electrode implantation into the brain: implant size, fixation mode, and evaluation period. Further, we show results from an ultrathin multichannel wire electrode that has been implanted in the rat cerebral cortex for 1 year. To improve biocompatibility of implanted electrodes, we would like to suggest t...
Neural interfaces which allow long-term recordings in deep brain structures in awake freely moving a...
The development of electronics capable of interfacing with the nervous system is a rapidly advancing...
Neural interfaces which allow long-term recordings in deep brain structures in awake freely moving a...
Summary: Brain Computer interfaces (BCIs) are stable inside the brain over long periods of time and ...
Summary: Brain Computer interfaces (BCIs) are stable inside the brain over long periods of time and ...
Neural recording and stimulation have great potential for clinical applications, such as treating ne...
The development of implantable neuroelectrodes is advancing rapidly as these tools are becoming incr...
In the last decades, the clinical applications of neural devices have increased exponentially. Accom...
Neurological diseases are a prevalent cause of global mortality and are of growing concern when cons...
The brain is a massively-interconnected and constantly-evolving network of specialized circuits; a s...
The recent development of neural prosthetic technology has demonstrated a therapeutic potential for ...
The brain is a massively-interconnected and constantly-evolving network of specialized circuits; a s...
The development of electronics capable of interfacing with the nervous system is a rapidly advancing...
Neural interfaces which allow long-term recordings in deep brain structures in awake freely moving a...
Brain-implantable microelectrode arrays have the potential to provide reliable, direct interfaces wi...
Neural interfaces which allow long-term recordings in deep brain structures in awake freely moving a...
The development of electronics capable of interfacing with the nervous system is a rapidly advancing...
Neural interfaces which allow long-term recordings in deep brain structures in awake freely moving a...
Summary: Brain Computer interfaces (BCIs) are stable inside the brain over long periods of time and ...
Summary: Brain Computer interfaces (BCIs) are stable inside the brain over long periods of time and ...
Neural recording and stimulation have great potential for clinical applications, such as treating ne...
The development of implantable neuroelectrodes is advancing rapidly as these tools are becoming incr...
In the last decades, the clinical applications of neural devices have increased exponentially. Accom...
Neurological diseases are a prevalent cause of global mortality and are of growing concern when cons...
The brain is a massively-interconnected and constantly-evolving network of specialized circuits; a s...
The recent development of neural prosthetic technology has demonstrated a therapeutic potential for ...
The brain is a massively-interconnected and constantly-evolving network of specialized circuits; a s...
The development of electronics capable of interfacing with the nervous system is a rapidly advancing...
Neural interfaces which allow long-term recordings in deep brain structures in awake freely moving a...
Brain-implantable microelectrode arrays have the potential to provide reliable, direct interfaces wi...
Neural interfaces which allow long-term recordings in deep brain structures in awake freely moving a...
The development of electronics capable of interfacing with the nervous system is a rapidly advancing...
Neural interfaces which allow long-term recordings in deep brain structures in awake freely moving a...