Within the neural engineering field, next-generation implantable neuroelectronic interfaces are being developed using biologically-inspired and/or biologically-derived materials to improve upon the stability and functional lifetime of current interfaces. These technologies use biomaterials, bioactive molecules, living cells, or some combination of these, to promote host neuronal survival, reduce the foreign body response, and improve chronic device-tissue integration. This article provides a general overview of the different strategies, milestones, and evolution of bioactive neural interfaces including electrode material properties, biological coatings, and “decoration” with living cells. Another such biohybrid approach developed in our lab...
Implantable neural interfaces are important tools to accelerate neuroscience research and translate ...
Microfabrication and nanotechnology have significantly expanded the technological capabilities for m...
Intraneural interfaces are stimulation/registration devices designed to couple the peripheral nervou...
Optimization of methodologies toward engineering the life sciences and healthcare remains a grand ch...
The development of electronics capable of interfacing with the nervous system is a rapidly advancing...
The treatment of disorders of the nervous system poses a major clinical challenge. Development of ne...
Neurological diseases are a prevalent cause of global mortality and are of growing concern when cons...
The development of electronics capable of interfacing with the nervous system is a rapidly advancing...
Neuroscience deals with one of the most complicate system we can study: the brain. The huge amount o...
pre-printThe emerging field of neuroprosthetics is focused on the development of new therapeutic int...
The recent development of neural prosthetic technology has demonstrated a therapeutic potential for ...
Despite the numerous advancements in electronics interfacing with the nervous system over the decade...
Traditional neuronal interfaces utilize metallic electrodes which in recent years have reached a pla...
Implantable neural interfaces are important tools to accelerate neuroscience research and translate ...
Tissue-electronics interfaces provide a two-way communication between biological tissue and external...
Implantable neural interfaces are important tools to accelerate neuroscience research and translate ...
Microfabrication and nanotechnology have significantly expanded the technological capabilities for m...
Intraneural interfaces are stimulation/registration devices designed to couple the peripheral nervou...
Optimization of methodologies toward engineering the life sciences and healthcare remains a grand ch...
The development of electronics capable of interfacing with the nervous system is a rapidly advancing...
The treatment of disorders of the nervous system poses a major clinical challenge. Development of ne...
Neurological diseases are a prevalent cause of global mortality and are of growing concern when cons...
The development of electronics capable of interfacing with the nervous system is a rapidly advancing...
Neuroscience deals with one of the most complicate system we can study: the brain. The huge amount o...
pre-printThe emerging field of neuroprosthetics is focused on the development of new therapeutic int...
The recent development of neural prosthetic technology has demonstrated a therapeutic potential for ...
Despite the numerous advancements in electronics interfacing with the nervous system over the decade...
Traditional neuronal interfaces utilize metallic electrodes which in recent years have reached a pla...
Implantable neural interfaces are important tools to accelerate neuroscience research and translate ...
Tissue-electronics interfaces provide a two-way communication between biological tissue and external...
Implantable neural interfaces are important tools to accelerate neuroscience research and translate ...
Microfabrication and nanotechnology have significantly expanded the technological capabilities for m...
Intraneural interfaces are stimulation/registration devices designed to couple the peripheral nervou...