The objective of the research is to design, implement, test, and characterize a new wireless neural interfacing tool that can simultaneously record large scale neuronal ensembles over the entire brain area for a long term (>1 yr). This thesis work includes a novel design concept for a standalone free-floating wireless implantable neural recording (FF-WINeR) system with a total volume of less than 1 mm3 as well as the development of each fundamental system component. For system operation and control, two FF-WINeR application specific integrated circuits (ASIC) with constrained silicon area and power budget were designed and tested. The specifications and features of the ASIC have been determined based on comprehensive studies on wireless pow...
This thesis focuses on integrated and miniaturized wireless neural recording systems for bio-instrum...
A 100-channel fully implantable wireless broadband neural recording system was developed. It feature...
Clinically viable and minimally invasive neural interfaces stand to revolutionize disease care for p...
A new class of wireless neural interfaces is under development in the form of tens to hundreds of mm...
A new class of wireless neural interfaces is under development in the form of tens to hundreds of mm...
A multi-channel wireless implantable neural recording (WINeR) system for electrophysiology and behav...
In the past few years neural recording and stimulation technology has advanced rapidly. As new impla...
In the past few years neural recording and stimulation technology has advanced rapidly. As new impla...
Neural interfaces promise to radically change medicine. Currently, amputees and persons suffering fr...
Neural prostheses such as deep brain stimulation and cochlear implants are showing great promise for...
Life-threatening medical conditions such as stroke, spinal injuries and traumatic brain injury affec...
Neural prostheses such as deep brain stimulation and cochlear implants are showing great promise for...
This paper reports the development of an implantable, fully integrated, multichannel peripheral neur...
Recording neural activities plays an important role in numerous applications ranging from brain mapp...
A 100-channel fully implantable wireless broadband neural recording system was developed. It feature...
This thesis focuses on integrated and miniaturized wireless neural recording systems for bio-instrum...
A 100-channel fully implantable wireless broadband neural recording system was developed. It feature...
Clinically viable and minimally invasive neural interfaces stand to revolutionize disease care for p...
A new class of wireless neural interfaces is under development in the form of tens to hundreds of mm...
A new class of wireless neural interfaces is under development in the form of tens to hundreds of mm...
A multi-channel wireless implantable neural recording (WINeR) system for electrophysiology and behav...
In the past few years neural recording and stimulation technology has advanced rapidly. As new impla...
In the past few years neural recording and stimulation technology has advanced rapidly. As new impla...
Neural interfaces promise to radically change medicine. Currently, amputees and persons suffering fr...
Neural prostheses such as deep brain stimulation and cochlear implants are showing great promise for...
Life-threatening medical conditions such as stroke, spinal injuries and traumatic brain injury affec...
Neural prostheses such as deep brain stimulation and cochlear implants are showing great promise for...
This paper reports the development of an implantable, fully integrated, multichannel peripheral neur...
Recording neural activities plays an important role in numerous applications ranging from brain mapp...
A 100-channel fully implantable wireless broadband neural recording system was developed. It feature...
This thesis focuses on integrated and miniaturized wireless neural recording systems for bio-instrum...
A 100-channel fully implantable wireless broadband neural recording system was developed. It feature...
Clinically viable and minimally invasive neural interfaces stand to revolutionize disease care for p...