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Abstract

The condition sine qua non for the normal activity of the central nervous system is the continuous production of a sufficient amount of energy. Every function of the nerve cells or of the conducting elements requires either direct or indirect energy. The biochemical processes by which the brain cells derive this energy are very similar to those observed in other organs and in lower forms of life, though slight differences are not uncommon. Thus, for example, unlike most other cell types, the brain cells in vivo appear incapable of using any other substance than glucose as their basic energy source [1]. The carbohydrates play such a dominating part in the energy-producing processes of the nerve cells that it appears appropriate to begin this discussion with the metabolism of glucose.

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Decsi, L. (1965). Biochemical Effects of Drugs Acting on the Central Nervous System. In: Jucker, E. (eds) Fortschritte der Arzneimittelforschung / Progress in Drug Research / Progrès des recherches pharmaceutiques. Fortschritte der Arzneimittelforschung / Progress in Drug Research / Progrès des recherches pharmaceutiques, vol 8. Birkhäuser Basel. https://doi.org/10.1007/978-3-0348-7056-6_2

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