Computer techniques in correlation and spectral analyses of cerebral slow waves during discriminative behavior.
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[1] V. Bonnet. Contribution a L'Étude Du Système Nerveux Ganglionnaire Des Crustacés , 1938 .
[2] W. R. Adey. The nervous system of the earthworm megascolex , 1951, The Journal of comparative neurology.
[3] H. Jasper,et al. Brain waves and unit discharge in cerebral cortex. , 1952, Science.
[4] M A BRAZIER,et al. Some applications of correlation analysis to clinical problems in electroencephalography. , 1956, Electroencephalography and clinical neurophysiology.
[5] O. H. Schmitt. LEAD VECTORS AND TRANSFER IMPEDANCE , 1957, Annals of the New York Academy of Sciences.
[6] I. Tasaki,et al. Electric Response of Glia Cells in Cat Brain , 1958, Science.
[7] F. Bremer. Cerebral and cerebellar potentials. , 1958, Physiological reviews.
[8] Bishop Gh,et al. The dendrite: receptive pole of the neurone. , 1958 .
[9] D. Purpura,et al. Nature of electrocortical potentials and synaptic organizations in cerebral and cerebellar cortex. , 1959, International review of neurobiology.
[10] John S. Barlow,et al. Autocorrelation and Crosscorrelation Analysis in Electroencephalography , 1959 .
[11] W. Rall. Branching dendritic trees and motoneuron membrane resistivity. , 1959, Experimental neurology.
[12] T. Teichmann,et al. The Measurement of Power Spectra , 1960 .
[13] W. Rall. Membrane potential transients and membrane time constant of motoneurons. , 1960, Experimental neurology.
[14] W. R. Adey,et al. Electrical activity of the entorhinal cortex during conditioned behavior. , 1960, The American journal of physiology.
[15] H. Hydén,et al. A CYTOPHYSIOLOGICAL STUDY OF THE FUNCTIONAL RELATIONSHIP BETWEEN OLIGODENDROGLIAL CELLS AND NERVE CELLS OF DEITERS' NUCLEUS , 1960, Journal of neurochemistry.
[16] G L GERSTEIN,et al. An approach to the quantitative analysis of electrophysiological data from single neurons. , 1960, Biophysical journal.
[17] W. R. Adey,et al. Hippocampal slow waves. Distribution and phase relationships in the course of approach learning. , 1960, Archives of neurology.
[18] W. R. Adey,et al. The action of certain cyclothexamines on hippocampal system during approach performance in the cat. , 1960, The Journal of pharmacology and experimental therapeutics.
[19] S. Kety. A biologist examines the mind and behavior. , 1960, Science.
[20] W. R. Adey,et al. Amygdaloid and perpheral influences on caudate and pallidal units in the cat and effects of chlorpromazine. , 1960, Experimental neurology.
[21] C. Stumpf,et al. RABBIT EEG "THETA" RHYTHM: ITS ANATOMICAL SOURCE AND RELATION TO ACTIVITY IN SINGLE NEURONS , 1960 .
[22] Adey Wr. Brain mechanisms and the learning process. , 1961 .
[23] J. Delafresnaye,et al. Brain mechanisms and learning , 1961 .
[24] P. K. Anokhin. ELECTROENCEPHALOGRAPHIC ANALYSIS OF CORTICO‐SUBCORTICAL RELATIONS IN POSITIVE AND NEGATIVE CONDITIONED REACTIONS , 1961, Annals of the New York Academy of Sciences.