The advent of implantable biomaterials has revolutionized medical treatment, allowing the development of the fields of tissue engineering and medical bionic devices (e.g., cochlea implants to restore hearing, vagus nerve stimulators to control Parkinson's disease, and cardiac pace makers). Similarly, future materials developments are likely to continue to drive development in treatment of disease and disability, or even enhancing human potential. The material requirements for implantable devices are stringent. In all cases they must be nontoxic and provide appropriate mechanical integrity for the application at hand. In the case of scaffolds for tissue regeneration, biodegradability in an appropriate time frame may be required, and for medi...
Graphene is a flat monolayer of carbon atoms, arranged in a two-dimensional hexagonal structure, wit...
Regenerative medicine and tissue engineering have been considered pioneer fields in the life science...
Because of recent research advances in nanoscience and nanotechnology, there has been a growing inte...
The advent of implantable biomaterials has revolutionized medical treatment, allowing the developmen...
Graphene is a material composed of a single layer of carbon atoms arranged in a two-dimensional hone...
Thanks to their reduced size, great surface area, and capacity to interact with cells and tissues, n...
The scientific community has witnessed an exponential increase in the applications of graphene and g...
The scientific community has witnessed an exponential increase in the applications of graphene and g...
Emerging graphene-based materials offer numerous opportunities to design novel scaffolds for neural ...
Recent clinical research on neuroengineering is primarily focused on biocompatible materials, which ...
Graphene research, already prized, is nonetheless challenged to provide material advantages that bri...
Graphene unique physicochemical properties made it prominent among other allotropic forms of carbon,...
In the last years, a rapid development in production, and functionalization of graphene give rise to...
5noIn recent years, the scientific community has witnessed an exponential increase in the use of gra...
In the last years, a rapid development in production, and functionalization of graphene give rise to...
Graphene is a flat monolayer of carbon atoms, arranged in a two-dimensional hexagonal structure, wit...
Regenerative medicine and tissue engineering have been considered pioneer fields in the life science...
Because of recent research advances in nanoscience and nanotechnology, there has been a growing inte...
The advent of implantable biomaterials has revolutionized medical treatment, allowing the developmen...
Graphene is a material composed of a single layer of carbon atoms arranged in a two-dimensional hone...
Thanks to their reduced size, great surface area, and capacity to interact with cells and tissues, n...
The scientific community has witnessed an exponential increase in the applications of graphene and g...
The scientific community has witnessed an exponential increase in the applications of graphene and g...
Emerging graphene-based materials offer numerous opportunities to design novel scaffolds for neural ...
Recent clinical research on neuroengineering is primarily focused on biocompatible materials, which ...
Graphene research, already prized, is nonetheless challenged to provide material advantages that bri...
Graphene unique physicochemical properties made it prominent among other allotropic forms of carbon,...
In the last years, a rapid development in production, and functionalization of graphene give rise to...
5noIn recent years, the scientific community has witnessed an exponential increase in the use of gra...
In the last years, a rapid development in production, and functionalization of graphene give rise to...
Graphene is a flat monolayer of carbon atoms, arranged in a two-dimensional hexagonal structure, wit...
Regenerative medicine and tissue engineering have been considered pioneer fields in the life science...
Because of recent research advances in nanoscience and nanotechnology, there has been a growing inte...