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Titlebook: Comparative Neurology of the Telencephalon; Sven O. E. Ebbesson Book 1980 Plenum Press, New York 1980 Evolution.Nervous System.brain.neuro

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Morphological Correlates of Specialized Elaborations in Somatic Sensory Cerebral Neocortex,ogy, the subject matter here is the correlation of morphological characters—growth and bumps—with “mental faculties and traits of character,” behavioral character, the probabilities of occurrence of specific kinds of actions. The Old Phrenology restricted its concern to humans, and failed because of
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Thalamocortical Relationships in Echidna (,),reas of echidnas (Lende, 1964). This chapter is a direct outcome of Dr. Lende’s desire to corroborate his electrophysiological delineation of cortical sensory and motor areas in echidnas by means of retrograde degeneration studies of thalamocortical connections. Striking features of the echidna brai
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,Kultur, Kulturen und Ethnizität, origin in the early Devonian period, some 400 million years ago, or 250 million years before the African and American continents separated. The sharks evolved rapidly in Devonian times and continued their expansion through the Carboniferous and Permian periods. The available data suggest that the g
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,Identität und Identifikationen,ip between the vertebrate brain and behavior. In general, two investigative approaches have been taken toward realizing this goal. Some workers have attempted to correlate the behavior patterns of different existing animal species with known structural differences in their central nervous systems. O
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Handlung, Interaktion, Kommunikation,, and the Actinopterygii. The intergroup relationships have long been disputed by paleontologists, and there is no consensus at the present time. It is usually argued either that the Crossopterygii and the Dipnoi are more closely related to one another than either is to the Actinopterygii (Romer, 19
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https://doi.org/10.1007/978-3-322-97362-7 are solid lobes separated by a slitlike ventricle. The lobes are covered with an ependymal membrane which is attached to the dorsolateral margins of the hemispheres. One suggestion has been that this forebrain structure is the result of a process of eversion during development (Gage, 1893; Holmgren
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