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Combinatorial techniques for enhancing neuroprotection Hypothermia and alkalinization

机译:用于增强神经保护体积低温和碱化的组合技术

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Brain and spinal cord (CNS) trauma typically kill a number of neurons, but even more neurons are killed by secondary causes triggered by the initial trauma. Thus, a minor insult may rapidly cause the death of a vastly larger number of neurons and complete paralysis. The best mechanism for reducing the extent of neurological deficits is to minimize the number of neurons killed by post-trauma sequelae. Neuroprotection techniques take many diverse forms with a breadth too great for a short review. Therefore, this review focuses on the neuroprotection provided by hypothermia and a number of other neuroprotective techniques, when administered singly or in combination, because it is generally found that combinations of applications lead to significantly better neuroprotection than is achieved by any one alone. The combinatorial approach to neuroprotection holds great promise for enhancing the degree of neuroprotection following trauma, leading to maximum maintenance of neurological function.
机译:脑和脊髓(CNS)创伤通常杀死许多神经元,但初始创伤引发的次要原因甚至更多的神经元杀死。因此,轻微的侮辱可能会迅速导致大量神经元的死亡和完全瘫痪。降低神经缺陷程度的最佳机制是最小化由创伤后后遗症杀死的神经元数量。神经保护技术采取许多不同的形式,宽度过于伟大的评论。因此,本综述侧重于低温提供的神经保护和许多其他神经保护技术,当时单独或组合施用时,因为它通常发现应用程序的组合导致了比单独任何一种的神经保护显着更好的神经保护。神经保护作用的组合方法对增强创伤后的神经保护程度具有很大的希望,从而最大限度地维持神经功能。

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