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  4. Spatiotemporal Differences in Gene Expression Between Motor and Sensory Autografts and Their Effect on Femoral Nerve Regeneration in the Rat
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Spatiotemporal Differences in Gene Expression Between Motor and Sensory Autografts and Their Effect on Femoral Nerve Regeneration in the Rat

Journal
Frontiers in Cellular Neuroscience
ISSN
1662-5102
Date Issued
2019
Author(s)
David Hercher
Markus Kerbl
Christina M. A. P. Schuh
Facultad de Medicina Clínica Alemana Universidad del Desarrollo  
Johannes Heinzel
László Gal
Michaela Stainer
Robert Schmidhammer
Thomas Hausner
Heinz Redl
Antal Nógrádi
Ara Hacobian
Type
Resource Types::text::journal::journal article
Scopus ID
2-s2.0-85066937081
WoS ID
WOS:000467480300001
DOI
10.3389/fncel.2019.00182
URL
https://investigadores.udd.cl/handle/123456789/2473
Cite this document
Hercher, D., Kerbl, M., Schuh, C. M. A. P., Heinzel, J., Gal, L., Stainer, M., Schmidhammer, R., Hausner, T., Redl, H., Nógrádi, A., & Hacobian, A. (2019). Spatiotemporal differences in gene expression between motor and sensory autografts and their effect on femoral nerve regeneration in the rat. Frontiers in Cellular Neuroscience, 13, 182. https://doi.org/10.3389/fncel.2019.00182
Subjects
femoral nerve

; 

schwann cell

; 

phenotype

; 

gene expression

; 

neurotrophic factor

; 

cell adhesion molecule

; 

peripheral nerve regeneration

; 

brain derived neurotrophic factor

; 

cell adhesion molecule

; 

glial cell line derived neurotrophic factor receptor

; 

ki 67 antigen

; 

nerve cell adhesion molecule l1

; 

animal experiment

; 

animal model

; 

animal tissue

; 

article

; 

autograft

; 

catwalk gait analysis test

; 

cell adhesion

; 

controlled study

; 

electrophysiology

; 

femoral nerve

; 

follow up

; 

gait

; 

gene expression

; 

histology

; 

immunohistology

; 

male

; 

muscle action potential

; 

muscle mass

; 

myelination

; 

nerve fiber regeneration

; 

nerve regeneration

; 

nerve transplantation

; 

nonhuman

; 

phenotype

; 

power analysis

; 

quadriceps femoris muscle

; 

rat

; 

real time polymerase chain reaction

; 

reinnervation

; 

reverse transcription polymerase chain reaction

; 

sensorimotor function

; 

spatiotemporal analysis

; 

upregulation
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