Reinnervation of Dentate Gyrus by Homologous Afferents Following Entorhinal Cortical Lesions in Adult Rats
Author:
Affiliation:
1. Departments of Neurosurgery and Physiology, University of Virginia School of Medicine, Charlottesville 22901
Publisher
American Association for the Advancement of Science (AAAS)
Subject
Multidisciplinary
Reference15 articles.
1. BLACKSTAD, T.W., COMMISSURAL CONNECTIONS OF THE HIPPOCAMPAL REGION IN THE RAT, WITH SPECIAL REFERENCE TO THEIR MODE OF TERMINATION, JOURNAL OF COMPARATIVE NEUROLOGY 105: 417 (1956).
2. GOLDOWITZ, D, ANATOMICAL EVIDENCE FOR A PROJECTION FROM ENTORHINAL CORTEX TO CONTRALATERAL DENTATE GYRUS OF RAT, EXPERIMENTAL NEUROLOGY 47: 433 (1975).
3. GOODMAN, D.C., SPROUTING OF OPTIC TRACT PROJECTIONS IN BRAIN STEM OF RAT, JOURNAL OF COMPARATIVE NEUROLOGY 127: 71 (1966).
4. HJORTHSIMONSEN, A, ORIGIN AND TERMINATION OF HIPPOCAMPAL PERFORANT PATH IN RAT STUDIED BY SILVER IMPREGNATION, JOURNAL OF COMPARATIVE NEUROLOGY 144: 215 (1972).
5. HJORTHSIMONSEN, A, PROJECTION OF LATERAL PART OF ENTORHINAL AREA TO HIPPOCAMPUS AND FASCIA DENTATA, JOURNAL OF COMPARATIVE NEUROLOGY 146: 219 (1972).
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