首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Cortical Potentials Evoked by Subthalamic Stimulation Demonstrate a Short Latency Hyperdirect Pathway in Humans
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Cortical Potentials Evoked by Subthalamic Stimulation Demonstrate a Short Latency Hyperdirect Pathway in Humans

机译:通过次粒子刺激引起的皮质电位展示了人类的短期超导性途径

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摘要

A monosynaptic projection from the cortex to the subthalamic nucleus is thought to have an important role in basal ganglia function and in the mechanism of therapeutic subthalamic deep-brain stimulation, but in humans the evidence for its existence is limited. We sought physiological confirmation of the cortico-subthalamic hyperdirect pathway using invasive recording techniques in patients with Parkinson's disease (9 men, 1 woman). We measured sensorimotor cortical evoked potentials using a temporary subdural strip electrode in response to low-frequency deep-brain stimulation in patients undergoing awake subthalamic or pallidal lead implantations. Evoked potentials were grouped into very short latency ( 2 ms), short latency (2-10 ms), and long latency (10-100 ms) from the onset of the stimulus pulse. Subthalamic and pallidal stimulation resulted in very short-latency evoked potentials at 1.5 ms in the primary motor cortex accompanied by EMG-evoked potentials consistent with corticospinal tract activation. Subthalamic, but not pallidal stimulation, resulted in three short-latency evoked potentials at 2.8, 5.8, and 7.7 ms in a widespread cortical distribution, consistent with antidromic activation of the hyperdirect pathway. Long-latency potentials were evoked by both targets, with subthalamic responses lagging pallidal responses by 10-20 ms, consistent with orthodromic activation of the thalamocortical pathway. The amplitude of the first short-latency evoked potential was predictive of the chronic therapeutic stimulation contact.
机译:从皮质到亚饱和核的单突触突触投影被认为具有在基底神经节函数中具有重要作用,并且在治疗亚脂肪的深脑刺激机制中,但在人类存在的证据是有限的。我们寻求使用帕金森病患者的侵袭性记录技术来生理学证实,帕金森病(9人,1名女)。我们使用临时软骨条电极测量SensorImotor皮质诱发电位,响应于经历唤醒次粒或苍白铅注入的患者的低频深脑刺激。从刺激脉冲的开始,将诱发的电位分为非常短的延迟(& 2 ms),短延迟(2-10毫秒)和长期(10-100毫秒)。在初级电机皮层中,次饱和刺激导致非常短延迟的诱发电位在1.5ms,伴随着与皮质脊髓激活一致的EMG诱发的电位。次饱和但不是苍白的刺激,导致3.8,5.8和7.7ms的三个短延迟诱发电位,其普遍的皮质分布一致,与超直接途径的抗抗体激活一致。两种靶标诱发了长期电位,分子抑制滞后的粘性反应10-20ms,与肌淋巴感途径的正交激活一致。第一短期诱发电位的幅度是预测慢性治疗刺激接触的预测性。

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