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首页> 外文期刊>Clinical neurophysiology >O1 Comparison between intra-epidermal electrical and laser stimulations: An intracranial evoked potential study
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O1 Comparison between intra-epidermal electrical and laser stimulations: An intracranial evoked potential study

机译:O1内表皮电和激光刺激之间的比较:颅内诱发潜在的研究

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摘要

Objectives Intra-epidermal electrical stimulation (IES) is considered to stimulate selectively and directly A δ fibres, by-passing the heat-mediated receptor process of laser stimulation. However, there has been only extra-cranial data to argue such fiber selectivity. Here, we recorded intracranial responses to IE and laser stimulations, to assess whether the two types of stimulation can demonstrate identical responses in precisely-localized brain regions. Methods We analysed intracranial evoked potentials to IE and laser (Nd:YAP) stimulations in 11 epileptic patients with stereotactically-implanted electrodes in the spinothalamic-receiving posterior insula (12 contacts) and affective-cognitive regions (amygdala, 8 contacts; anteromedial frontal region, 13 contacts). Results While both IE and laser stimuli were perceived as ‘pricking’ sensations, those elicited by IES were of lesser intensity and intrusiveness. In the posterior insula, IES-evoked and laser-evoked potentials were similar in waveform and amplitude. Peak-latencies were significantly shorter for IES than for laser, the mean latency difference being of 15.8 ms. In both the amygdala and anteromedial frontal regions, amplitudes were significantly attenuated for IES, as compared to laser. Discussion The latency difference in the posterior insula was concordant with the heat-transduction time of laser, suggesting the ability of IES to activate selectively the spinothalamic system. The depressed activations in the amygdala and anteromedial frontal regions, while preserved in the posterior sensory insula, were compatible with modest attentional-affective drive for IES. Conclusions IES can effectively activate the A δ -mediated sensory-encoding system (posterior insula) at non-nociceptive levels of stimulus intensity. Significance IES can minimize aversive reactions of patients while ensuring spinothalamic-specific sensory assessment. ]]>
机译:目的地,表皮内电刺激(IE)被认为是选择性地刺激δ纤维,通过通过激光刺激的热介导的受体方法刺激。但是,只有额外的数据争辩归于这种纤维选择性。这里,我们记录了对IE和激光刺激的颅内反应,以评估两种类型的刺激是否可以在精确局部脑区域中表现出相同的反应。方法对11例癫痫术患者的颅内诱发电位分析到IE和激光(ND:YAP)刺激,在纺丝术 - 接收后肠道(12触点)和情感 - 认知区域(Amygdala,8个触点;前部区域,13次触点)。结果,虽然IE和激光刺激都被认为是“刺激”感觉,但IE引发的那些具有较小的强度和侵入性。在后肠道中,诱发的IES诱发和激光诱发电位在波形和幅度中类似。 IE的峰值延迟比激光显着短,平均延迟差异为15.8毫秒。与激光相比,在Amygdala和主前部区域中,振幅显着衰减IES。讨论后肠内的潜伏差异与激光的热转导时间相辅调,表明IES选择性地激活的纺丝素系统。 Amygdala和主前部区域的凹陷激活,同时保存在后部感觉肠内,与IES的适度预造成效力驱动兼容。结论IES可以在非伤害刺激强度的非伤害水平下有效地激活Aδ导眼的感觉编码系统(后肠道)。显着性IES可以最大限度地减少患者的厌恶反应,同时确保纺丝特异性特异性感官评估。 ]]>

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