Improving the long-term performance of neural electrode interfaces requires overcoming severe biological reactions such as neuronal cell death, glial cell activation, and vascular damage in the presence of implanted intracortical devices. Past studies traditionally observe neurons, microglia, astrocytes, and blood-brain barrier (BBB) disruption around inserted microelectrode arrays. However, analysis of these factors alone yields poor correlation between tissue inflammation and device performance. Additionally, these studies often overlook significant biological responses that can occur during acute implantation injury. The current study employs additional histological markers that provide novel information about neglected tissue components...
Neuroelectronic devices play a crucial role in neuroscience research, diagnosis, treatment of neurol...
Penetrating neural probe technologies allow investigators to record electrical signals in the brain....
Thanks to pioneering scientists and clinicians, prosthetic devices that are controlled by intra-cort...
Implantable neural electrodes are promising technologies to restore motor, sensory, and cognitive fu...
Intracortical microelectrodes that can be implanted in the brain have demonstrated significant poten...
The success of neural electrode technology to understand brain function and restore lost motor or se...
<p>Chronically implanted recording electrode arrays linked to prosthetics have the potential to make...
Brain computer interfaces (BCI’s) and implantable cortical devices have recently emerged in research...
Brain computer interfaces (BCI’s) and implantable cortical devices have recently emerged in research...
The brain-electrode interface is arguably one of the most important areas of study in neuroscience t...
Neural interfacing devices interact with the central nervous system to alleviate functional deficits...
The influence of tethering silicon microelectrode arrays on the cortical brain tissue reaction was c...
Microelectrode arrays have been widely used to record and analyze neural signals and activity aiding...
pre-printThe emerging field of neuroprosthetics is focused on the development of new therapeutic int...
Thanks to pioneering scientists and clinicians, prosthetic devices that are controlled by intra-cort...
Neuroelectronic devices play a crucial role in neuroscience research, diagnosis, treatment of neurol...
Penetrating neural probe technologies allow investigators to record electrical signals in the brain....
Thanks to pioneering scientists and clinicians, prosthetic devices that are controlled by intra-cort...
Implantable neural electrodes are promising technologies to restore motor, sensory, and cognitive fu...
Intracortical microelectrodes that can be implanted in the brain have demonstrated significant poten...
The success of neural electrode technology to understand brain function and restore lost motor or se...
<p>Chronically implanted recording electrode arrays linked to prosthetics have the potential to make...
Brain computer interfaces (BCI’s) and implantable cortical devices have recently emerged in research...
Brain computer interfaces (BCI’s) and implantable cortical devices have recently emerged in research...
The brain-electrode interface is arguably one of the most important areas of study in neuroscience t...
Neural interfacing devices interact with the central nervous system to alleviate functional deficits...
The influence of tethering silicon microelectrode arrays on the cortical brain tissue reaction was c...
Microelectrode arrays have been widely used to record and analyze neural signals and activity aiding...
pre-printThe emerging field of neuroprosthetics is focused on the development of new therapeutic int...
Thanks to pioneering scientists and clinicians, prosthetic devices that are controlled by intra-cort...
Neuroelectronic devices play a crucial role in neuroscience research, diagnosis, treatment of neurol...
Penetrating neural probe technologies allow investigators to record electrical signals in the brain....
Thanks to pioneering scientists and clinicians, prosthetic devices that are controlled by intra-cort...