Finding the most appropriate technology for building electrodes to be used for long term implants in humans is a challenging issue. What are the most appropriate technologies? How could one achieve robustness, stability, compatibility, efficacy, and versatility, for both recording and stimulation? There are no easy answers to these questions as even the most fundamental and apparently obvious factors to be taken into account, such as the necessary mechanical, electrical and biological properties, and their interplay, are under debate. We present here our approach along three fundamental parallel pathways: we reduced electrode invasiveness and size without impairing signal-to-noise ratio, we increased electrode active surface area by deposit...
This research presents new designs and materials for neural recording and stimulation technology. Gr...
In the last decades, the clinical applications of neural devices have increased exponentially. Accom...
Clinically viable and minimally invasive neural interfaces stand to revolutionize disease care for p...
Finding the most appropriate technology for building electrodes to be used for long term implants in...
Finding the most appropriate technology for building electrodes to be used for long term implants in...
Electrocorticography (ECoG) arrays are used in clinical mapping for neurosurgical resection and hold...
Electrocorticography (ECoG) arrays are used in clinical mapping for neurosurgical resection and hold...
Electrocorticography (ECoG) is becoming a common tool for clinical applications, such as preparing p...
Electrocorticography (ECoG) is becoming a common tool for clinical applications, such as preparing p...
The brain is a massively-interconnected and constantly-evolving network of specialized circuits; a s...
The brain is a massively-interconnected and constantly-evolving network of specialized circuits; a s...
Implantable nerve electrodes, as a bridge between the brain and external devices, have been widely u...
Ultra-flexible thin film microelectrode arrays were designed, fabricated and tested in vitro and in ...
Thesis (Master's)--University of Washington, 2015Current neural-prosthetic devices fail to provide h...
This research presents new designs and materials for neural recording and stimulation technology. Gr...
This research presents new designs and materials for neural recording and stimulation technology. Gr...
In the last decades, the clinical applications of neural devices have increased exponentially. Accom...
Clinically viable and minimally invasive neural interfaces stand to revolutionize disease care for p...
Finding the most appropriate technology for building electrodes to be used for long term implants in...
Finding the most appropriate technology for building electrodes to be used for long term implants in...
Electrocorticography (ECoG) arrays are used in clinical mapping for neurosurgical resection and hold...
Electrocorticography (ECoG) arrays are used in clinical mapping for neurosurgical resection and hold...
Electrocorticography (ECoG) is becoming a common tool for clinical applications, such as preparing p...
Electrocorticography (ECoG) is becoming a common tool for clinical applications, such as preparing p...
The brain is a massively-interconnected and constantly-evolving network of specialized circuits; a s...
The brain is a massively-interconnected and constantly-evolving network of specialized circuits; a s...
Implantable nerve electrodes, as a bridge between the brain and external devices, have been widely u...
Ultra-flexible thin film microelectrode arrays were designed, fabricated and tested in vitro and in ...
Thesis (Master's)--University of Washington, 2015Current neural-prosthetic devices fail to provide h...
This research presents new designs and materials for neural recording and stimulation technology. Gr...
This research presents new designs and materials for neural recording and stimulation technology. Gr...
In the last decades, the clinical applications of neural devices have increased exponentially. Accom...
Clinically viable and minimally invasive neural interfaces stand to revolutionize disease care for p...