Neuronal plasticity in the septal nuclei of the adult rat.
暂无分享,去创建一个
[1] E. Kandel,et al. Cellular neurophysiological approaches in the study of learning. , 1968, Physiological reviews.
[2] A. Scheibel,et al. The effect of visual deprivation on cortical neurons: a Golgi study. , 1967, Experimental neurology.
[3] J. Harvey,et al. LOCOMOTOR ACTIVITY AND AXON REGENERATION FOLLOWING SPINAL CORD COMPRESSION IN RATS TREATED WITH L‐THYROXINE , 1967, Journal of Neuropathology and Experimental Neurology.
[4] M. Bernstein,et al. Effect of glial-ependymal scar and teflon arrest on the regenerative capacity of goldfish spinal cord. , 1967, Experimental neurology.
[5] J. J. Bernstein. The regenerative capacity of the telencephalon of the goldfish and rat. , 1967, Experimental neurology.
[6] A. Scheibel,et al. Loss of Dendrite Spines as an Index of Pre-Synaptic Terminal Patterns , 1966, Nature.
[7] W. Nauta,et al. The isodendritic core of the brain stem , 1966, The Journal of comparative neurology.
[8] B. L. Ginsborg. THE PHYSIOLOGY OF SYNAPSES , 1964 .
[9] P. Lampert,et al. AXONAL REGENERATION IN THE DORSAL COLUMNS OF THE SPINAL CORD OF ADULT RATS. AN ELECTRON MICROSCOPIC STUDY. , 1964, Laboratory investigation; a journal of technical methods and pathology.
[10] C. Clemente,et al. REGENERATION IN THE VERTEBRATE CENTRAL NERVOUS SYSTEM. , 1964, International review of neurobiology.
[11] D. Scott,et al. FACTORS PROMOTING REGENERATION OF SPINAL NEURONS: POSITIVE INFLUENCE OF NERVE GROWTH FACTOR. , 1964, Progress in brain research.
[12] S. Sharpless. REORGANIZATION OF FUNCTION IN THE NERVOUS SYSTEM--USE AND DISUSE. , 1964, Annual review of physiology.
[13] D. Hubel,et al. SINGLE-CELL RESPONSES IN STRIATE CORTEX OF KITTENS DEPRIVED OF VISION IN ONE EYE. , 1963, Journal of neurophysiology.
[14] D. Hubel,et al. RECEPTIVE FIELDS OF CELLS IN STRIATE CORTEX OF VERY YOUNG, VISUALLY INEXPERIENCED KITTENS. , 1963, Journal of neurophysiology.
[15] R. Sperry,et al. Preferential selection of central pathways by regenerating optic fibers. , 1963, Experimental neurology.
[16] John C. Eccles,et al. AN INVESTIGATION INTO THE EFFECT OF DEGENERATING PRIMARY AFFERENT FIBERS ON THE MONOSYNAPTIC INNERVATION OF MOTONEURONS , 1962 .
[17] Jones Wh,et al. Changes in the dendritic organization of neurons in the cerebral cortex following deafferentation. , 1962 .
[18] T. Powell,et al. Some observations on transneuronal cell degeneration in the olfactory bulb of the rabbit. , 1962, Journal of anatomy.
[19] L. Guth,et al. Selectivity in the re-establishment of synapses in the superior cervical sympathetic ganglion of the cat. , 1961, Experimental neurology.
[20] C. P. Baker,et al. Effects of heavy, ionizing, monoenergetic particles on the cerebral cortex. II. Histological appearance of laminar lesions and growth of nerve fibers after laminar destructions , 1960, The Journal of comparative neurology.
[21] G. McCouch,et al. Sprouting as a cause of spasticity. , 1958, Journal of neurophysiology.
[22] J. Cerf,et al. Retrograde reaction in motoneuron dendrites following ventral root section in the frog , 1958, The Journal of comparative neurology.
[23] T. Powell,et al. STUDIES OF THE CONNEXIONS OF THE FORNIX SYSTEM , 1954, Journal of neurology, neurosurgery, and psychiatry.
[24] G. Weddell,et al. THE LOCAL EXTENSION OF NERVE FIBRES INTO DENERVATED AREAS OF SKIN , 1941 .