The brain machine interface BMI describes a group of technologies capable of communicating with excitable nervous tissue within the central nervous system (CNS). BMI’s have seen major advances in recent years, but these advances have been impeded due to a deterioration in the signal to noise ratio of recording electrodes over time. This deterioration has been attributed to an intrinsic host tissue response, namely reactive gliosis. Gliosis results in implant encapsulation via the synthesis of pro-inflammatory signalling molecules and the recruitment of glial cells. Thus, there is a clinical need to reduce tissue encapsulation in situ and improve long-term neuroelectrode functionality. Physical modification at the neuroelectrode active site ...
Neural prostheses such as deep brain stimulation and cochlear implants are showing great promise for...
2013-10-29BioMEMS is uniquely positioned to impact the field of neuroscience by advancing neural int...
Neural probes with micron-scale electrodes are capable of recording action potential waveforms from ...
peer-reviewedThe brain machine interface (BMI) describes a group of technologies capable of communic...
The increasing expected lifespan is causing a higher prevalence of neurological diseases. These dise...
Optogenetics is a neuromodulation method that holds great potential for the realization of advanced ...
The functionality of cortical neurons depends on the strength of its local and long-range synapses a...
Brain‒machine interface (BMI) is a promising technology that looks set to contribute to the developm...
Neural electrodes are typically manufactured from inorganic materials, however, mechanical mismatch ...
The brain is a massively-interconnected and constantly-evolving network of specialized circuits; a s...
Understanding and modulating CNS function in physiological as well as pathophysiological contexts re...
The recent development of neural prosthetic technology has demonstrated a therapeutic potential for ...
This thesis describes for the very first time the development of a miniaturized neural interface whi...
Brain-machine interfaces (BMIs) aim to restore communication and control of prosthetic devices to in...
Optimization of methodologies toward engineering the life sciences and healthcare remains a grand ch...
Neural prostheses such as deep brain stimulation and cochlear implants are showing great promise for...
2013-10-29BioMEMS is uniquely positioned to impact the field of neuroscience by advancing neural int...
Neural probes with micron-scale electrodes are capable of recording action potential waveforms from ...
peer-reviewedThe brain machine interface (BMI) describes a group of technologies capable of communic...
The increasing expected lifespan is causing a higher prevalence of neurological diseases. These dise...
Optogenetics is a neuromodulation method that holds great potential for the realization of advanced ...
The functionality of cortical neurons depends on the strength of its local and long-range synapses a...
Brain‒machine interface (BMI) is a promising technology that looks set to contribute to the developm...
Neural electrodes are typically manufactured from inorganic materials, however, mechanical mismatch ...
The brain is a massively-interconnected and constantly-evolving network of specialized circuits; a s...
Understanding and modulating CNS function in physiological as well as pathophysiological contexts re...
The recent development of neural prosthetic technology has demonstrated a therapeutic potential for ...
This thesis describes for the very first time the development of a miniaturized neural interface whi...
Brain-machine interfaces (BMIs) aim to restore communication and control of prosthetic devices to in...
Optimization of methodologies toward engineering the life sciences and healthcare remains a grand ch...
Neural prostheses such as deep brain stimulation and cochlear implants are showing great promise for...
2013-10-29BioMEMS is uniquely positioned to impact the field of neuroscience by advancing neural int...
Neural probes with micron-scale electrodes are capable of recording action potential waveforms from ...