Fate of endogenous stem/progenitor cells following spinal cord injury

LL Horky, F Galimi, FH Gage… - Journal of Comparative …, 2006 - Wiley Online Library
The adult mammalian spinal cord contains neural stem and/or progenitor cells that slowly
multiply throughout life and differentiate exclusively into glia. The contribution of adult …

Fate of endogenous stem/progenitor cells following spinal cord injury

LL Horky, F Galimi, FH Gage… - The Journal of …, 2006 - pubmed.ncbi.nlm.nih.gov
The adult mammalian spinal cord contains neural stem and/or progenitor cells that slowly
multiply throughout life and differentiate exclusively into glia. The contribution of adult …

Fate of endogenous stem/progenitor cells following spinal cord injury.

LL Horky, F Galimi, FH Gage… - The Journal of …, 2006 - europepmc.org
The adult mammalian spinal cord contains neural stem and/or progenitor cells that slowly
multiply throughout life and differentiate exclusively into glia. The contribution of adult …

[HTML][HTML] Fate of Endogenous Stem/Progenitor Cells Following Spinal Cord Injury

LL HORKY, F GALIMI, FH GAGE… - The Journal of …, 2006 - ncbi.nlm.nih.gov
The adult mammalian spinal cord contains neural stem and/or progenitor cells that slowly
multiply throughout life and differentiate exclusively into glia. The contribution of adult …

[引用][C] Fate of endogenous stem/progenitor cells following spinal cord injury

LL Horky, F Galimi, FH Gage, PJ Horner - The Journal of Comparative …, 2006 - cir.nii.ac.jp
Fate of endogenous stem/progenitor cells following spinal cord injury | CiNii Research CiNii
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[PDF][PDF] Fate of Endogenous Stem/Progenitor Cells Following Spinal Cord Injury

LL HORKY, F GALIMI, FH GAGE, PJ HORNER - J Comp Neurol, 2006 - researchgate.net
The adult mammalian spinal cord contains neural stem and/or progenitor cells that slowly
multiply throughout life and differentiate exclusively into glia. The contribution of adult …