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首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Attenuation of epilepsy-induced brain damage in the temporal cortices of rats by exposure to LTP-patterned magnetic fields.
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Attenuation of epilepsy-induced brain damage in the temporal cortices of rats by exposure to LTP-patterned magnetic fields.

机译:暴露于LTP模式的磁场可减轻癫痫诱发的大鼠颞皮质的脑损伤。

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摘要

To test the feasibility that whole body exposure to structurally matched, physiologically patterned magnetic fields could reduce cellular injury within specific regions of the brain, young rats were seized with lithium and pilocarpine and then exposed to a sham field or to one of three computer-generated magnetic field patterns. They were digitized equivalents of the pulsed patterns of electric current known to produce long-term potential (LTP) in slices of hippocampus or entorhinal cortices. Histological analyses of their brains as adults indicated the earlier exposure to the LTP-patterned fields produced a robust reduction of damage within the primary and association areas of the right temporal cortices and the CA1/CA2 hippocampal fields. The results suggest physiologically patterned magnetic fields could be employed to target specific nuclei anywhere within the brain by matching intrinsic activity.
机译:为了测试全身暴露于结构匹配,生理模式的磁场可以减少大脑特定区域内的细胞损伤的可行性,我们用锂和毛果芸香碱捕获了幼鼠,然后将其暴露于假手术场或计算机生成的三个场之一磁场模式。它们是数字化的脉冲电流等效物,已知在海马或内嗅皮质层中产生长期电位(LTP)。对成年时大脑的组织学分析表明,早期接触LTP模式的田地可以大大减少右侧颞皮质和CA1 / CA2海马区的初级和缔合区域的损伤。结果表明,通过匹配内在活动,可以将生理模式的磁场用于靶向大脑内任何地方的特定核。

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