Cell transplantation-based approaches to restore vision in patients blinded by advanced optic neuropathies show immense promise but are limited by 1) low integration efficiency and 2) of the RGCs that integrated, few axons grew out of the eye. What these experiments demonstrate is that the endogenous cues in the host retina and optic nerve are insufficient to direct the growth of newly transplanted RGC axons out of the eye. There is much interest in the potential of electrical fields (EFs) to promote long distance axon growth: axons of hippocampal neurons have grow directionally when exposed to an EF. Drawing from this, we hypothesized that EFs might exert a similar galvanotropic effect on RGC axon growth. If so, can EFs be exploited to dir...
Axon growth and alignment are fundamental processes during nervous system development and neural reg...
Low-level, steady electric fields of 6–10 volts/cm stimulated directional orientation and translocat...
Axons in the mammalian central nervous system (CNS) fail to regenerate after injury. A major goal of...
Cell transplantation-based approaches to restore vision in patients blinded by advanced optic neurop...
Restoration of vision in patients with advanced optic neuropathies such as glaucoma requires regener...
Regenerating the optic nerve requires signals that both "fuel" and "steer" retinal ganglion cell (RG...
PurposeThe purpose of this study was to characterize the ability of applied electrical fields (EFs) ...
Significance: Nervous system injuries, both in the peripheral nervous system (PNS) and central nervo...
AbstractGrowing axons are directed by an extracellular electric field in a process known as galvanot...
Click on the DOI link to access the article (may not be free).Effective directional axonal growth an...
Click on the DOI link to access the article (may not be free).Spinal cord injury or diseases such as...
It is a well known fact that the proximity of an axonal lesion from the cell body influences the deg...
Retinal ganglions cells (RGCs) are responsible for propagating electrochemical information from the ...
PurposeTo evaluate the integrative potential of neural stem cells (NSCs) with the visual system and ...
We sought to determine if electrical stimulation of the optic nerve, when performed just before an o...
Axon growth and alignment are fundamental processes during nervous system development and neural reg...
Low-level, steady electric fields of 6–10 volts/cm stimulated directional orientation and translocat...
Axons in the mammalian central nervous system (CNS) fail to regenerate after injury. A major goal of...
Cell transplantation-based approaches to restore vision in patients blinded by advanced optic neurop...
Restoration of vision in patients with advanced optic neuropathies such as glaucoma requires regener...
Regenerating the optic nerve requires signals that both "fuel" and "steer" retinal ganglion cell (RG...
PurposeThe purpose of this study was to characterize the ability of applied electrical fields (EFs) ...
Significance: Nervous system injuries, both in the peripheral nervous system (PNS) and central nervo...
AbstractGrowing axons are directed by an extracellular electric field in a process known as galvanot...
Click on the DOI link to access the article (may not be free).Effective directional axonal growth an...
Click on the DOI link to access the article (may not be free).Spinal cord injury or diseases such as...
It is a well known fact that the proximity of an axonal lesion from the cell body influences the deg...
Retinal ganglions cells (RGCs) are responsible for propagating electrochemical information from the ...
PurposeTo evaluate the integrative potential of neural stem cells (NSCs) with the visual system and ...
We sought to determine if electrical stimulation of the optic nerve, when performed just before an o...
Axon growth and alignment are fundamental processes during nervous system development and neural reg...
Low-level, steady electric fields of 6–10 volts/cm stimulated directional orientation and translocat...
Axons in the mammalian central nervous system (CNS) fail to regenerate after injury. A major goal of...