Ikeda Hiroaki, Wang Yaozhi, Okada Yoshio C
Department of Neurology (MSC1-5620), University of New Mexico School of Medicine, 1 University of New Mexico, Albuquerque, NM 87131-0001, USA.
Clin Neurophysiol. 2005 Apr;116(4):827-41. doi: 10.1016/j.clinph.2004.10.010. Epub 2004 Dec 25.
In humans, the somatic evoked potentials (SEPs) and magnetic fields (SEFs) elicited by peripheral nerve stimulation contain high-frequency oscillations (HFOs) around 600 Hz superimposed on the initial cortical response N20. Responses elicited by snout stimulation in the swine also contain similar HFOs during the rising phase of the porcine N20. This study examined the generators of the N20 and HFOs in the swine.
We recorded intracortical SEPs and multi-unit activities in the sulcal area of the primary somatosensory cortex (SI) simultaneously with SEFs. The laminar profiles of the potential and current-source-density (CSD) were analyzed.
The CSD analysis revealed that the N20 was produced by two dipolar generators, both directed toward the cortical surface. After the arrival of the initial thalamocortical volley in layer IV, the sink of the first generator shifted toward shallower layers II-III with a velocity of 0.109+/-0.038 m/s (mean+/-SD). The sink of the second generator moved to layer V. The initial thalamocortical axonal component of the HFO was produced by repolarizing current with the sink in layer IV. The CSD laminar profile of the postsynaptic component was very similar to the profile of intracortical N20. The current sink within each cycle of HFO propagated upward with a velocity of 0.633+/-0.189 m/s, indicating backpropagation.
We propose that the N20 is generated by two sets of excitatory neurons which also produce the HFOs. Although the loci of synaptic inputs are unknown, these neurons appear to fire initially in the soma and produce backpropagating spikes toward distal apical dendrites.
These conclusions relate the N20 to the HFO and provide a new explanation of how the current underlying the N20 is invariantly directed toward superficial layers across species.
在人类中,外周神经刺激所诱发的躯体诱发电位(SEP)和磁场(SEF)在初始皮质反应N20上叠加有600 Hz左右的高频振荡(HFO)。猪的口鼻部刺激所诱发的反应在猪N20的上升阶段也包含类似的HFO。本研究检测了猪中N20和HFO的发生器。
我们同时记录了初级体感皮层(SI)沟回区域的皮质内SEP和多单位活动以及SEF。分析了电位和电流源密度(CSD)的分层分布。
CSD分析显示,N20由两个偶极发生器产生,二者均指向皮质表面。在第IV层丘脑皮质冲动初始到达后,第一个发生器的电流汇以0.109±0.038 m/s(平均值±标准差)的速度向较浅的第II - III层移动。第二个发生器的电流汇移至第V层。HFO的初始丘脑皮质轴突成分由第IV层的电流汇复极化电流产生。突触后成分的CSD分层分布与皮质内N20的分布非常相似。HFO每个周期内的电流汇以0.633±0.189 m/s的速度向上传播,表明存在逆向传播。
我们提出N20由两组也产生HFO的兴奋性神经元产生。尽管突触输入的位点尚不清楚,但这些神经元似乎最初在胞体中放电,并向远端顶树突产生逆向传播的动作电位。
这些结论将N20与HFO联系起来,并为N20电流如何在不同物种中始终指向浅层提供了新的解释。