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Results: 1-6 |
Results: 6

Authors: KEIRSTEAD HS LEVINE JM BLAKEMORE WF
Citation: Hs. Keirstead et al., RESPONSE OF THE OLIGODENDROCYTE PROGENITOR-CELL POPULATION (DEFINED BY NG2 LABELING) TO DEMYELINATION OF THE ADULT SPINAL-CORD, Glia, 22(2), 1998, pp. 161-170

Authors: KEIRSTEAD HS HUGHES HC BLAKEMORE WF
Citation: Hs. Keirstead et al., A QUANTIFIABLE MODEL OF AXONAL REGENERATION IN THE DEMYELINATED ADULT-RAT SPINAL-CORD, Experimental neurology, 151(2), 1998, pp. 303-313

Authors: KEIRSTEAD HS BLAKEMORE WF
Citation: Hs. Keirstead et Wf. Blakemore, OLIGODENDROCYTES WHICH HAVE LOST THEIR MYELIN SHEATHS DO NOT DIVIDE, Brain pathology, 7(4), 1997, pp. 1263-1263

Authors: KEIRSTEAD HS PATAKY DM MCGRAW J STEEVES JD
Citation: Hs. Keirstead et al., IN-VIVO IMMUNOLOGICAL SUPPRESSION OF SPINAL-CORD MYELIN DEVELOPMENT, Brain research bulletin, 44(6), 1997, pp. 727-734

Authors: KEIRSTEAD HS BLAKEMORE WF
Citation: Hs. Keirstead et Wf. Blakemore, IDENTIFICATION OF POSTMITOTIC OLIGODENDROCYTES INCAPABLE OF REMYELINATION WITHIN THE DEMYELINATED ADULT SPINAL-CORD, Journal of neuropathology and experimental neurology, 56(11), 1997, pp. 1191-1201

Authors: KEIRSTEAD HS DYER JK SHOLOMENKO GN MCGRAW J DELANEY KR STEEVES JD
Citation: Hs. Keirstead et al., AXONAL REGENERATION AND PHYSIOLOGICAL-ACTIVITY FOLLOWING TRANSECTION AND IMMUNOLOGICAL DISRUPTION OF MYELIN WITHIN THE HATCHLING CHICK SPINAL-CORD, The Journal of neuroscience, 15(10), 1995, pp. 6963-6974
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