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Brain Research|August 1, 1987
Development of serotonin immunoreactivity in the rat spinal cord and its plasticity after neonatal spinal cord lesionsB S BregmanBrain Research|August 1, 1987
Spinal cord transplants permit the growth of serotonergic axons across the site of neonatal spinal cord transectionB S BregmanExperimental Neurology|May 19, 2001
Differences in neurotrophic factor gene expression profiles between neonate and adult rat spinal cord after injuryM Nakamura, B S BregmanBrain Research|August 1, 1983
Infant lesion effect: II. Sparing and recovery of function after spinal cord damage in newborn and adult catsB S Bregman, M E GoldbergerBrain Research|August 1, 1983
Infant lesion effect: III. Anatomical correlates of sparing and recovery of function after spinal cord damage in newborn and adult catsB S Bregman, M E GoldbergerNeuroreport|October 3, 1994
Neurotrophic factors prevent the death of CNS neurons after spinal cord lesions in newborn ratsP S Diener, B S BregmanBrain Research|August 1, 1983
Infant lesion effect: I. Development of motor behavior following neonatal spinal cord damage in catsB S Bregman, M E GoldbergerExperimental Neurology|December 17, 1997
Axotomized rubrospinal neurons rescued by fetal spinal cord transplants maintain axon collaterals to rostral CNS targetsH Bernstein-Goral, B S BregmanExperimental Brain Research|January 1, 1990
Spinal cord transplants enhance the recovery of locomotor function after spinal cord injury at birthE Kunkel-Bagden, B S BregmanPageof 5