By M. Glickstein (auth.), Mitchell Glickstein, Christopher Yeo, John Stein (eds.)
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Additional info for Cerebellum and Neuronal Plasticity
1978). , 1978). , 1978) have been investigated in the same manner as areas 17, 18 and 19. The determination of areal borders and transfer of retinotopic maps to our flat maps have been described in detail elsewhere (see Bjaalie, 1986). Average densities of labelled cells varies between the four areas: Densities are highest in the anteromedial area (AMLS) and lowest in the posterolateral area (PLLS, Table 1, Fig. 10). The den~ity in AMLS is also higher than in areas 17,18 and 19. Due to differences in size of the lateral suprasylvian visual areas (LS), however, the total number of labelled cells is highest in the posteromedial area (PMLS) and lowest in PL~ (Table 2, Fig.
232:1-15. , 1983, Afferent projections to the three floccular zones in cats. I. Climbing fiber projections. Brain Res. 272:27-36. , 1965, Cholinesterase-containing pathways of the hindbrain: afferent cerebellar and centrifugal cochlear fibers. ) 205:242-246. , 1974, The biology of cholinesterase. North Holland, Amsterdam. , 1984, Postnatal development of the inferior olivary complex in the rat. II. Topographic organization of the immature olivocerebellar projection. J. Compo Neurol. 222:177-199.
Topography, distribution of acetycholinesterase and development. S. , Neurology and Neurobiology Vol. 183-220. , 1984, Asynchrony in the expression of cyclic guanosine 3':5'-phosphate dependent protein kinase by clusters of Purkinje cells during the perinatal development of rat cerebellum. Neuroscience 13:1217-1241. , 1927, Manuel de neurologie. L'anatomie du systeme nerveux. Tome I, 3 ieme partie. Le cervelat, De Erven Bohn, Haarlem. , 1986, The inferior olive of Saimiri sciureus: olivocerebellar projections to the anterior lobe.
Cerebellum and Neuronal Plasticity by M. Glickstein (auth.), Mitchell Glickstein, Christopher Yeo, John Stein (eds.)