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Titlebook: Macromolecules and Behavior; John Gaito Book 1972 Meredith Corporation 1972 DNA.RNA.antibody.behavior.brain.information.membrane.metabolis

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ndexing of astronomical publications throughout the world. It is prepared under the auspices of the International Astronomical Union (according to a resolution adopted at the 14th General Assembly in 1970). Astronomy and Astrophysics Abstracts aims to present a comprehensive documentation of literat
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Introductionds and proteins. Lipids have received lesser emphasis. This volume will be concerned with four types of macromolecules: deoxyribonucleic acid (DNA), ribonucleic acid (RNA), proteins, and lipids; however, chief emphasis will be on the first three.
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Macromolecules—Functional and Biochemical Correlates. The former contribute to the development of resting potentials across the membranes. They also impart, along with structural components, the properties of excitability to these cells. Their dynamics are inherently associated with the generation of action potentials. Neuro-humors as a class have an
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Brain Function and RNA, there is a tremendous uncertainty concerning the amount of information that is stored in the nervous system. This can be estimated by the performance of the animal, but unfortunately performance factors such as the physical condition and the emotional state of the animal at the time of testing can
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Biological Activity of Antibrain Antibody—An Introduction to Immunoneurologyibody’s combining groups. Antibrain antibody also refers to different experimental situations in which the whole brain, brain regions, populations of neurons, or neuronal components are employed as antigen to prepare antibrain serum. Since antibrain antibody cannot be precisely defined in terms of i
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Correlation of the S-100 Brain Protein with Behaviorreport that the amount of nerve cell S-100 protein increases in trained animals and that the S-100 protein is specifically correlated to learning. This linkage was demonstrated by the use of antiserum against the S-100 protein, which was injected intraventricularly during the course of the training
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A Molecular Basis for Regional Differentiation of the Excitable Membranelasmalemma. This is a fundamental axiom of neurophysiology. It is based upon the fact that function is a bioelectrical phenomenon which derives its origin from intrinsic properties and activities of the excitable membrane. It follows, therefore, that any attempt to link a biochemical parameter to fu
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