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把科学带到腹泻发生的地方。

Taking science where the diarrhoea is.

作者信息

Rohde J E, Northrup R S

出版信息

Ciba Found Symp. 1976(42):339-66. doi: 10.1002/9780470720240.ch18.

Abstract

With attack rates exceeding two episodes per year in the young diarrhoea with attendant dehydration is by far the major single killer in the developing world. An invariable accompaniment of the more insidious and chronic protein-energy malnutrition (PEM), diarrhoea is itself an acute form of malnutrition: fluid-electrolyte malnutrition (FEM). Scientific attention to FEM has focused heavily on mechanisms of pathogenesis and disordered physiology, often to the neglect of preventive and effective control measures. A notable exception was the huge step from the short-circuit chamber to the cholera ward which carried the science of coupled transport to the field. Glucose-electrolyte solutions provide effective prevention and treatment of dehydration and, where combined with early proper feeding, an interruption of the FEM-PEM cycle. Wider use of this simple technology awaits greater understanding and interact-on with the social systems that determine the ecology of diarrhoeal disease.

摘要

在发展中世界,年轻人每年的发病率超过两次,腹泻及其伴随的脱水现象是目前主要的单一杀手。腹泻是更为隐匿和慢性的蛋白质-能量营养不良(PEM)的一个必然伴随症状,其本身就是一种急性营养不良形式:即液体-电解质营养不良(FEM)。对FEM的科学关注主要集中在发病机制和生理紊乱方面,往往忽视了预防和有效控制措施。一个显著的例外是从短路试验箱到霍乱病房的巨大跨越,它将耦合运输科学应用到了实际场景中。葡萄糖-电解质溶液能有效预防和治疗脱水,并且在与早期适当喂养相结合时,能够中断FEM-PEM循环。要更广泛地应用这项简单技术,还需要对决定腹泻病生态的社会系统有更深入的理解和互动。

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