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Titlebook: Carbohydrates and Energy Metabolism; Alan A. Boulton,Glen B. Baker,Roger F. Butterworth Book 1989 Springer Science+Business Media New York

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书目名称Carbohydrates and Energy Metabolism
编辑Alan A. Boulton,Glen B. Baker,Roger F. Butterworth
视频videohttp://file.papertrans.cn/222/221544/221544.mp4
丛书名称Neuromethods
图书封面Titlebook: Carbohydrates and Energy Metabolism;  Alan A. Boulton,Glen B. Baker,Roger F. Butterworth Book 1989 Springer Science+Business Media New York
出版日期Book 1989
版次1
doihttps://doi.org/10.1385/0896031438
isbn_softcover978-1-4899-4103-9
isbn_ebook978-1-59259-616-4Series ISSN 0893-2336 Series E-ISSN 1940-6045
issn_series 0893-2336
copyrightSpringer Science+Business Media New York 1989
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Isolation and Characterization of Synaptic and Nonsynaptic Mitochondria from Mammalian Brain,tion. In the majority of the studies up to this time, crude mitochondrial preparations were isolated from mammalian brain homogenates using differential centrifugation techniques that were adapted from those that had originally been designed for isolating liver mitochondria. During the early 196Os,
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The Use of Hippocampal Slices for the Study of Energy Metabolism,past decade, especially in the realm of electrophysiological determinations. Warburg (1923) initially developed tissue slice techniques to study metabolism in vitro, and in the 1950s, brain slice research, developed by Quastel and Elliott, was still centered on metabolic phenomena. In those studies,
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Measurement of Carbohydrates and Their Derivatives in Neural Tissues,cerebral cortex contains glucose at l–l.5 μmol/g fresh weight and a little more of the equivalent amount of glucose stored as glycogen (McIlwain and Bachelard, 1985). On death, very rapid rates of anaerobic metabolism continue postmortem, so within a few seconds, cerebral glucose in the mouse or rat
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The [14C]Deoxyglucose Method for Measurement of Local Cerebral Glucose Utilization,y that vary independently with time and function. Other tissues are generally far more homogeneous, with most of their cells functioning similarly and synchronously in response to a common stimulus or regulatory influence. The central nervous system, however, consists of innumerable subunits, each i
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Glycolytic, Tricarboxylic Acid Cycle and Related Enzymes in Brain,w the methodologies can be usefully exploited in different experimental settings. Because of this primary focus and space limitation, the authors are only able to cite a small number of the references obtained in the authors’ computer search (1972–1986). Several reviews have adequately covered diffe
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CO2-Fixing Enzymes,1-d-old mice (Moldave et al., 1953), and in the adult cat brain (Berl et al., 1962a,b). When cat brain was perfused with labeled bicarbonate and the specific radioactivity of .CO. was maintained at a constant level, most of the radioactivity fixed in the brain was found in free aspartate, glutamate,
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