- Author:Stanislav Tucek
- Publisher:John Wiley & Sons Ltd (October 14, 1987)
- Pages:864 pages
- Subcategory:Biological Sciences
- FB2 format1588 kb
- ePUB format1686 kb
- DJVU format1721 kb
- Formats:mobi lrf lrf mobi
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Are you sure you want to remove Metabolism and development of the nervous system from your list? . Includes bibliographies and indexes. Papers from the 6th General Meeting of the European Society for Neurochemistry, held Sept. 1-6, 1986, in Prague, Czechoslovakia.
Are you sure you want to remove Metabolism and development of the nervous system from your list? Metabolism and development of the nervous system. Published 1987 by Wiley in Chichester, New York. Co-published with Academia, Publishing House of the Czechoslovak Academy of Sciences, Prague"-T. A Wiley-Interscience publication.
The book further tackles nucleic acid metabolism . 3. General Metabolism of the Rat Brain during Postnatal Development. Biochemistry and Metabolism of Serotonin as it Relates to the Nervous System.
The book further tackles nucleic acid metabolism; protein and amino acid metabolism; and cholinergic and non-cholinergic transmission. The text also discusses other pharmacologically active compounds related to the adult nervous tissue. 4. Phosphorus Metabolism of the Brain. 8. Energy Metabolism and Coenzymes. 1. Carbohydrate Metabolism in Relation to the Nervous System. 2. Enzyme Concentrations in Individual Nerve Cell Bodies. Histamine in Nervous Tissue.
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This volume is concerned with metabolic reactions occurring in the nervous system. Some time ago, it was thought that since most of the intermediary metabolism that can be observed in the brain is not specific to this organ, there is little justification in studying neural metabolism as such. Later it was realized that for an understanding of neural functions, the understanding of metabolism in the brain and its alterations is essential.
The development of the nervous system, or neural development, or neurodevelopment, refers to the processes that generate, shape, and reshape the nervous system of animals, from the earliest stages of embryonic development to adulthood
The development of the nervous system, or neural development, or neurodevelopment, refers to the processes that generate, shape, and reshape the nervous system of animals, from the earliest stages of embryonic development to adulthood. The field of neural development draws on both neuroscience and developmental biology to describe and provide insight into the cellular and molecular mechanisms by which complex nervous systems develop, from nematodes and fruit flies to mammals.
Development of the Nervous System presents a broad and basic treatment of the established and evolving principles of neural development as exemplified by key experiments and observations from past and recent times. The text is organized ontogenically.
Describe the development of the central nervous system. During early development of the vertebrate embryo, a longitudinal groove on the neural plate gradually deepens and the ridges on either side of it (the neural folds) ultimately meet, transforming it into a closed tube, the ectodermal wall of which forms the rudimentary nervous system. This tube initially differentiates into three vesicles (pockets): the prosencephalon at the front, the mesencephalon, the rhombencephalon between the mesencephalon and spinal cord.
The book discusses the molecular structure and morphology of the adult nervous tissue; the chemical composition .
The book discusses the molecular structure and morphology of the adult nervous tissue; the chemical composition and cytochemical localization of adult nervous tissue; and the permeability and blood-brain barrier. The text also describes topics on electrolytes and nervous conduction; the metabolism of isolated nerve and ganglion; and the metabolism of the brain in vivo. The metabolism of brain tissue preparations in vitro; energy metabolism and coenzymes in relation to the nervous system; and lipid and fatty acid metabolism are also considered.
Cholesterol is known to be a significant constituent of the central nervous system
On the basis of in vitro experiments with a limited number of missense mutations identified in patients with phenylalanine hydroxylase and fatty acid oxidation deficiencies, we discuss the cellular fate of missense mutant proteins. Cholesterol is known to be a significant constituent of the central nervous system. It also plays an important role in developmental pathways to form the human brain, such as the Sonic Hedgehog pathway.