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Neonatal hypoglycemia.

机译:新生儿低血糖症。

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摘要

PURPOSE OF REVIEW: Hypoglycemia in the newborn may be associated with both acute decompensation and long-term neuronal loss. Studies of the cause of hypoglycemic brain damage and the relationship of hypoglycemia to disorders associated with hyperinsulinism have aided in our understanding of this common clinical finding. RECENT FINDINGS: A recent consensus workshop concluded that there has been little progress toward a precise numerical definition of neonatal hypoglycemia. Nonetheless, newer brain imaging modalities have provided insight into the relationship between neuronal energy deficiency and central nervous system damage. Laboratory studies have begun to reveal the mechanism of hypoglycemic damage. In addition, there is new information about hyperinsulinemic hypoglycemia of genetic, environmental, and iatrogenic origin. SUMMARY: The quantitative definition of hypoglycemia in the newborn remains elusive because it is a surrogate marker for central nervous system energy deficiency. Nonetheless, the recognition that hyperinsulinemic hypoglycemia, which produces profound central nervous system energy deficiency, is most likely to lead to long-term central nervous system damage, has altered management of children with hypoglycemia. In addition, imaging studies on neonates and laboratory evaluation in animal models have provided insight into the mechanism of neuronal damage.
机译:审查目的:新生儿低血糖可能与急性代偿失调和长期神经元丢失有关。对低血糖性脑损伤的原因以及低血糖与高胰岛素血症相关疾病的关系的研究有助于我们对这一常见临床发现的理解。最近的发现:最近的一个共识研讨会得出结论,在新生儿低血糖的精确数字定义方面进展甚微。尽管如此,较新的大脑成像方法已经提供了对神经元能量缺乏与中枢神经系统损害之间关系的见解。实验室研究已开始揭示降血糖损害的机制。此外,还有有关遗传,环境和医源性高胰岛素血症性低血糖的新信息。摘要:新生儿低血糖的定量定义仍然难以捉摸,因为它是中枢神经系统能量缺乏的替代标志。尽管如此,人们认识到高胰岛素低血糖症会导致严重的中枢神经系统能量缺乏,最有可能导致长期的中枢神经系统损害,从而改变了低血糖儿童的治疗方法。此外,对新生儿的影像学研究和在动物模型中的实验室评估还提供了对神经元损伤机制的了解。

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