Several recent studies have reported improved histological and electrophysiological outcomes with soft neural interfaces that have elastic moduli ranging from 10 s of kPa to hundreds of MPa. However, many of these soft interfaces use custom fabrication processes. We test the hypothesis that a readily adoptable fabrication process for only coating the tips of microelectrodes with soft brain-like (elastic modulus of ~5 kPa) material improves the long-term electrical performance of neural interfaces. Conventional tungsten microelectrodes (n = 9 with soft coatings and n = 6 uncoated controls) and Pt/Ir microelectrodes (n = 16 with soft coatings) were implanted in six animals for durations ranging from 5 weeks to over 1 year in a subset of rats....
Microelectrode arrays (MEAs) are designed to monitor and/or stimulate extracellularly neuronal activ...
The mechanical mismatch between implantable interfaces and neural tissues may be reduced by employin...
Active implantable neurological devices like deep brain stimulators have been used over the past few...
Interfacing with the nervous system holds immense therapeutic potential for the treatment of debilit...
Implantable nerve electrodes, as a bridge between the brain and external devices, have been widely u...
Neural recording and stimulation have great potential for clinical applications, such as treating ne...
The mechanical mismatch between implantable interfaces and neural tissues may be reduced by employin...
Conductive polymer coatings can be used to modify traditional electrode recording sites with the int...
Intracranial electrodes are a vital component of implantable neurodevices, both for acute diagnostic...
The acquisition of high-fidelity, long-term neural recordings in vivo is critically important to adv...
The mechanical mismatch between implantable interfaces and neural tissues may be reduced by employin...
The mechanical mismatch between implantable interfaces and neural tissues may be reduced by employin...
The acquisition of high-fidelity, long-term neural recordings in vivo is critically important to adv...
Intracranial electrodes are a vital component of implantable neurodevices, both for acute diagnostic...
The use of implants that allow chronic electrical stimulation and recording in the brain of human pa...
Microelectrode arrays (MEAs) are designed to monitor and/or stimulate extracellularly neuronal activ...
The mechanical mismatch between implantable interfaces and neural tissues may be reduced by employin...
Active implantable neurological devices like deep brain stimulators have been used over the past few...
Interfacing with the nervous system holds immense therapeutic potential for the treatment of debilit...
Implantable nerve electrodes, as a bridge between the brain and external devices, have been widely u...
Neural recording and stimulation have great potential for clinical applications, such as treating ne...
The mechanical mismatch between implantable interfaces and neural tissues may be reduced by employin...
Conductive polymer coatings can be used to modify traditional electrode recording sites with the int...
Intracranial electrodes are a vital component of implantable neurodevices, both for acute diagnostic...
The acquisition of high-fidelity, long-term neural recordings in vivo is critically important to adv...
The mechanical mismatch between implantable interfaces and neural tissues may be reduced by employin...
The mechanical mismatch between implantable interfaces and neural tissues may be reduced by employin...
The acquisition of high-fidelity, long-term neural recordings in vivo is critically important to adv...
Intracranial electrodes are a vital component of implantable neurodevices, both for acute diagnostic...
The use of implants that allow chronic electrical stimulation and recording in the brain of human pa...
Microelectrode arrays (MEAs) are designed to monitor and/or stimulate extracellularly neuronal activ...
The mechanical mismatch between implantable interfaces and neural tissues may be reduced by employin...
Active implantable neurological devices like deep brain stimulators have been used over the past few...