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外侧下丘脑刺激通过一个与奖赏无关的过程控制巨细胞网状核诱导的厌恶。

Lateral hypothalamic stimulation gates nucleus gigantocellularis-induced aversion via a reward-independent process.

作者信息

Carr K D, Coons E E

出版信息

Brain Res. 1982 Jan 28;232(2):293-316. doi: 10.1016/0006-8993(82)90275-x.

Abstract

A monophasic pulse-pair stimulation technique was used behaviorally to infer neurophysiological interaction between 'reward' sites in the lateral hypothalamus (LH) and pain-implicated nucleus reticularis gigantocellularis (NGC). Rats lever-pressed for 3 s escapes from an otherwise continuous train of 0.1 ms NGC pulses delivered every 40 ms. When pulses to the LH were interdigitated with those to NGC, inter-response latencies were significantly longer. This occurred whether LH pulses were also interrupted by each lever-press (experiment 1) or not (experiment 2). Further, the same intensities of LH stimulation which inhibited escape supported high rates of lever-pressing for 3 s LH trains during inescapable NGC stimulation even though these LH trains were not of sufficient intensity to support 'rewarding' lever-pressing in the absence of NGC stimulation. This finding indicates that escape-inhibition in the first two experiments was not due to interfering motor effects of LH stimulation but most probably due to LH amelioration of NGC-induced aversion. Indeed, when aversion was ameliorated by morphine, lever-pressing for sub-reward-threshold LH stimulation during inescapable NGC stimulation decreased although classical self-stimulation did not. In the escape experiments, inhibition was greatest when each NGC pulse was preceded by an LH pulse at an interval of 0.1 or 10 ms. During inescapable NGC stimulation, rates of lever-pressing for LH trains were greatest when LH pulses preceded NGC pulses again at intervals of 0.1 or 10 ms. This congruence of the temporal bimodal profiles in the response functions of these two different behavioral experiments strongly suggests that the same integrative mechanism underlies both LH inhibition of NGC escape and lever-pressing for LH trains during inescapable stimulation of NGC. Since gastric loading did not alter lever-pressing for sub-reward-threshold LH trains during inescapable NGC stimulation but did inhibit classical self-stimulation, it was concluded that the inferred common integrative mechanism mediates a supraspinal gating of aversion which is independent of the LH self-stimulation reward process.

摘要

采用单相脉冲对刺激技术进行行为学实验,以推断下丘脑外侧区(LH)的“奖赏”位点与涉及疼痛的巨细胞网状核(NGC)之间的神经生理相互作用。大鼠通过按压杠杆3秒,以逃避每隔40毫秒持续发放的0.1毫秒NGC脉冲序列。当向LH施加的脉冲与向NGC施加的脉冲交叉时,反应间潜伏期显著延长。无论LH脉冲是否也被每次杠杆按压打断(实验1),都会出现这种情况。此外,抑制逃避的相同强度的LH刺激,在无法逃避的NGC刺激期间,能支持大鼠为3秒的LH脉冲序列进行高频率的杠杆按压,尽管这些LH脉冲序列的强度不足以在没有NGC刺激的情况下支持“奖赏性”杠杆按压。这一发现表明,前两个实验中的逃避抑制并非由于LH刺激干扰了运动效应,而很可能是由于LH减轻了NGC诱导的厌恶感。事实上,当用吗啡减轻厌恶感时,在无法逃避的NGC刺激期间,为低于奖赏阈值的LH刺激进行的杠杆按压减少,尽管经典的自我刺激没有减少。在逃避实验中,当每个NGC脉冲之前间隔0.1或10毫秒出现一个LH脉冲时,抑制作用最大。在无法逃避的NGC刺激期间,当LH脉冲再次以0.1或10毫秒的间隔先于NGC脉冲出现时,为LH脉冲序列进行的杠杆按压频率最高。这两个不同行为实验的反应函数中时间双峰分布的一致性,强烈表明相同的整合机制是LH抑制NGC逃避和在无法逃避的NGC刺激期间为LH脉冲序列进行杠杆按压的基础。由于胃部负荷在无法逃避的NGC刺激期间并未改变为低于奖赏阈值的LH脉冲序列进行的杠杆按压,但确实抑制了经典的自我刺激,因此得出结论,推断出的共同整合机制介导了一种与LH自我刺激奖赏过程无关的脊髓上厌恶门控。

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