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The peripheral effect of direct current stimulation on brain circuits involving memory

机译:直流刺激对涉及记忆脑电路的外周效应

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An ongoing debate surrounding transcranial direct current stimulation (tDCS) of the scalp is whether it modulates brain activity both directly and in a regionally constrained manner enough to positively affect symptoms in patients with neurological disorders. One alternative explanation is that direct current stimulation affects neural circuits mainly indirectly, i.e., via peripheral nerves. Here, we report that noninvasive direct current stimulation indirectly affects neural circuits via peripheral nerves. In a series of studies, we show that direct current stimulation can cause activation of the greater occipital nerve (ON-tDCS) and augments memory via the ascending fibers of the occipital nerve to the locus coeruleus, promoting noradrenaline release. This noradrenergic pathway plays a key role in driving hippocampal activity by modifying functional connectivity supporting the consolidation of a memory event.
机译:围绕头皮的经颅直流刺激(TDC)的持续争论是它是否是直接和以区域约束的方式调节大脑活性,足以积极影响神经系统疾病患者的症状。一种替代说明是直流刺激主要间接地影响神经电路,即通过外周神经。在这里,我们报告说,非侵入式直流刺激间接地通过外周神经间接影响神经电路。在一系列研究中,我们表明直流刺激可以通过枕骨神经的升高纤维引起更大的枕骨神经(ON-TDCS)并增强内存,促进Noradnaline释放。通过修改支持内存事件的统一的功能连接来推动海马活性,这种诺肾上腺素能途径在驾驶海马活动中起着关键作用。

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