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Long-term depression of nociception in man: Influence of varying stimulation parameters

机译:人类的长期抑郁症:不同刺激参数的影响

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Electrical low-frequency stimulation (LFS) of spinal afferents induces long-term depression (LTD) of nociceptive processing in rodents. LTD and its parameters in man are largely unknown. This study aimed to obtain the most effective design in man by varying stimulation frequency (0.5, 1, 2 Hz), number of pulses (300, 600, 1200), stimulation intensity related to pain threshold (I{sub}P) (1·I{sub}P, 2·I{sub}P, 4·I{sub}P), and by applying repetitive LFS. One hundred and twenty electrophysiological and psychophysical experiments were performed in 29 healthy volunteers. Painful electrical test stimulation and conditioning LFS were applied to right hand dorsum. Somatosensory evoked cortical potentials (SEP) were recorded and volunteers were asked to rate stimulus intensity. LFS with 0.5, 1 or 2 Hz induced significant reduction of SEP and pain ratings as compared to Control group. Effect on SEP amplitude after 1 Hz LFS preponderated that of 2 Hz stimulation. LTD of SEP and pain perception was induced by noxious LFS with 300 to 1200 pulses. SEP suppression augmented with increasing number of pulses. LFS with intensities 2·I{sub}P and 4·I{sub}P evoked sustained depression of SEP and pain perception in comparison to Control and 1·I{sub}P LFS. Established LTD after single LFS was amplified by additional LFS. Hence this study provides evidence for LTD of spinal nociceptive processing in man and indicates a stimulation paradigm with 1 Hz, 1200 pulses and 4·I{sub}P as most effective for induction of LTD in man.
机译:脊柱传入的电低频刺激(LFS)诱导啮齿动物中的长期凹陷(LTD)的肌肌肌的伤害加工。 LTD及其在人的参数主要是未知的。本研究旨在通过不同的刺激频率(0.5,1,2Hz),脉冲数(300,600,1200),与疼痛阈值相关的刺激强度(i {sub} p)(1 ·i {sub} p,2·i {sub} p,4·i {sub} p),并通过应用重复的lfs。在29个健康的志愿者中进行了一百二十二次电生理和心理物理实验。疼痛的电气测试刺激和调节LFS被施加到右手背体上。记录躯体感杂小症诱发皮质潜力(SEP),并要求志愿者评估刺激强度。与对照组相比,LFS致对照组致对照组诱导患锡病和疼痛评级的显着降低。在1 Hz LF后对SEP振幅的影响优先于2 Hz刺激的升高。 SEP的有限公司和疼痛感知由有毒LFS引起300至1200脉冲诱导。 SEP抑制随着越来越多的脉冲而增强。 LFS具有强度2·I {Sub} P和4·I {Sub} P诱发持续抑制SEP和疼痛感知与控制和1·I {Sub} P LFS相比。通过额外的LFS扩增单次LF后,已建立的有限公司。因此,本研究提供了人类脊柱伤害性加工有限公司的证据,并表示具有1 Hz,1200个脉冲和4·I {Sub} P的刺激范例,对Ltd In Man诱导最有效。

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