logo The Paralysis Project of America
Home About Us Events News Research Grants Contact Us
frame frame frame frame frame frame
   

Calendar
 
 

Latest Spinal Cord Injury Research

Latest Stem Cell Research

Scientific Abstracts
 
Abstracts Archive

New Mobility Articles

Related Articles
 
 

Message Board
 
 

Take Action!
 
Scientific Abstracts

Synaptic evoked potentials from regenerating dorsal root axons within fetal spinal cord tissue transplants.

Houle JD; Skinner RD; Garcia Rill E; Turner KL, Department of Anatomy, University of Arkansas for Medical Sciences, Little Rock, Arkansas 72205, USA. Exp Neurol, 1996 Jun, 139:2, 278-90

Previously injured dorsal roots were electrically stimulated to determine if regenerating sensory axons can form physiologically active synaptic contacts with neurons within fetal spinal cord tissue transplants. Dorsal rootlets, sectioned at their spinal cord entry zone, were apposed to intraspinal transplants of fetal spinal cord tissue grafted along each side of a nerve growth factor treated nitrocellulose implant. Two to six months later, the rootlets were transected between the spinal cord and their respective ganglia and electrically stimulated. Evoked potentials were recorded from the dorsal surface of the transplant, but were absent from adjacent ipsilateral and contralateral spinal cord regions. A glass micropipette was advanced through the transplant and used to record intramedullary field potentials evoked by dorsal root stimulation. Maximal negative potentials occurred 400-700 micron below the dorsal surface of the transplant, shifting to positive potentials deeper into the transplant. Additionally, both spontaneous and electrically evoked single neuronal action potentials were observed along the microelectrode track. Evoked potentials were abolished following transaction of the rootlets between the stimulation site and the transplant. Immunocytochemical evidence of the production of fos protein following electrical stimulation of the regenerated dorsal rootlets was demonstrated within transplant neurons and some ventrally located host neurons, providing an anatomical correlate to the electrophysiological recordings of synaptic activation. These results provide evidence of the structural and functional integration of egenerated sensory axons with both transplant and host neurons.


Link to Literature Previous Page   Link to Literature  


Our Partners

Equity Mgmt Inc

United

ATAS

SCPIE

Lakers

Dodgers

Kings

Office Depot

UBS|PaineWebber