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Febrile seizures in the developing brain result in persistent modification of neuronal excitability in limbic circuits

机译:发育中的脑部高热性癫痫发作导致边缘回路神经元兴奋性持续改变

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摘要

Febrile (fever-induced) seizures affect 3–5% of infants and young children. Despite the high incidence of febrile seizures, their contribution to the development of epilepsy later in life has remained controversial. Combining a new rat model of complex febrile seizures and patch clamp techniques, we determined that hyperthermia-induced seizures in the immature rat cause a selective presynaptic increase in inhibitory synaptic transmission in the hippocampus that lasts into adulthood. The long-lasting nature of these potent alterations in synaptic communication after febrile seizures does not support the prevalent view of the ‘benign’ nature of early-life febrile convulsions.
机译:高热(发热引起的)癫痫发作影响了3%至5%的婴幼儿。尽管高热性惊厥的发病率很高,但它们对生命后期癫痫发展的贡献仍存在争议。结合复杂的高热惊厥的新大鼠模型和膜片钳技术,我们确定了未成熟大鼠的高热诱导的惊厥会导致持续到成年的海马中抑制性突触传递选择性突触前增加。高热惊厥后突触通讯中这些强力改变的持久性质并不支持对早期高热惊厥的“良性”性质的普遍看法。

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