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Experimental Neurology|April 1, 1992
Recovery of function after spinal cord hemisection in newborn and adult rats: differential effects on reflex and locomotor functionE Kunkel-Bagden, H N Dai, B S BregmanExperimental Neurology|December 17, 1997
Regenerating and sprouting axons differ in their requirements for growth after injuryH Bernstein-Goral, P S Diener, B S BregmanExperimental Neurology|February 1, 1993
Methods to assess the development and recovery of locomotor function after spinal cord injury in ratsE Kunkel-Bagden, H N Dai, B S BregmanExperimental Neurology|February 10, 1998
Transplants and neurotrophic factors prevent atrophy of mature CNS neurons after spinal cord injuryB S Bregman, E Broude, M McAtee, et al.Experimental Neurology|December 17, 1997
c-Jun expression in adult rat dorsal root ganglion neurons: differential response after central or peripheral axotomyE Broude, M McAtee, M S Kelley, et al.The Journal of Comparative Neurology|April 15, 1989
Extension of the critical period for developmental plasticity of the corticospinal pathwayB S Bregman, E Kunkel-Bagden, M McAtee, et al.Experimental Neurology|January 27, 1999
Fetal spinal cord transplants and exogenous neurotrophic support enhance c-Jun expression in mature axotomized neurons after spinal cord injuryE Broude, M McAtee, M S Kelley, et al.Experimental Neurology|January 24, 1998
Neurotrophic factors increase axonal growth after spinal cord injury and transplantation in the adult ratB S Bregman, M McAtee, H N Dai, et al.Experimental Neurology|October 1, 1995
Development of locomotor behavior in the spinal kittenD R Howland, B S Bregman, A Tessler, et al.Experimental Neurology|October 1, 1995
Transplants enhance locomotion in neonatal kittens whose spinal cords are transected: a behavioral and anatomical studyD R Howland, B S Bregman, A Tessler, et al.Pageof 5