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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Current source density analysis of laser heat-evoked intra-cortical field potentials in the primary somatosensory cortex of rats.
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Current source density analysis of laser heat-evoked intra-cortical field potentials in the primary somatosensory cortex of rats.

机译:大鼠初级体感皮层中激光热诱发的皮质内场电势的电流源密度分析。

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The role of the primary somatosensory cortex in thermal pain perception has been established. However, the cortical circuitry that mediates the thermo-nociceptive information processing has not been elucidated. The aim of present study was to investigate the intracortical synaptic currents in primary somatosensory cortex evoked by short laser pulses and to determine their transmission pathway. Noxious CO2 laser pulse stimuli or innocuous electrical and mechanical stimuli were delivered to the hind paw of halothane-anesthetized rats. Multi-channel field potentials were recorded simultaneously in primary somatosensory cortex and laminar-specific transmembrane currents were analyzed using a current source density method. A distinct spatial-temporal pattern of intra-cortical sink source currents was evoked by laser pulse stimuli. The amplitude of the early component was graded by laser energy output and influenced by contralateral signals, whereas the late components were not intensity-dependent and exhibited bilateral excitation. Intra-cortical current flows revealed that synaptic activation occurred initially at layers IV and VI separately and then was relayed transynaptically to the more superficial and the deeper layers. Latency, amplitude and intracortical distributions of the activated intra-cortical currents evoked by noxious stimuli differed significantly from those evoked by innocuous stimuli. Conduction velocity data together with the results of tetrodotoxin, capsaicin and morphine treatments indicated that the early and late components were mediated separately by A-delta and C fibers. Our results suggest that large and small diameter thermal nociceptive afferents generated laminar-specific intracortical synaptic currents in primary somatosensory cortex and that these excitatory synaptic currents were conveyed separately by lateral and medial thalamic nuclei.
机译:已经建立了初级体感皮层在热痛知觉中的作用。然而,尚未阐明介导热伤害感受信息处理的皮质电路。本研究的目的是研究短激光脉冲诱发的初级体感皮层的皮质内突触电流,并确定其传递途径。有害的CO2激光脉冲刺激或无害的电气和机械刺激被递送至氟烷麻醉的大鼠的后爪。同时在初级体感皮层中记录多通道场电势,并使用电流源密度方法分析层流特异性跨膜电流。皮层内源电流的独特时空模式是由激光脉冲刺激引起的。早期分量的振幅由激光能量输出分级,并受对侧信号的影响,而后期分量与强度无关,并表现出双边激励。皮质内电流显示,突触激活最初分别发生在IV和VI层,然后通过突触传递到更浅的表面和更深的层。有害刺激引起的激活的皮质内电流的潜伏期,幅度和皮质内分布与无害刺激引起的显着不同。传导速度数据以及河豚毒素,辣椒素和吗啡处理的结果表明,早期和晚期成分分别由A-δ和C纤维介导。我们的结果表明,大直径和小直径热伤害感受传入神经在初级体感皮质中产生层状特异性皮质内突触电流,并且这些兴奋性突触电流分别由外侧和内侧丘脑核传递。

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