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Filtering the reality: Functional dissociation of lateral and medial pain systems during sleep in humans

机译:过滤现实:人类睡眠期间外侧和内侧疼痛系统的功能分离

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摘要

Behavioral reactions to sensory stimuli during sleep are scarce despite preservation of sizeable cortical responses. To further understand such dissociation, we recorded intracortical field potentials to painful laser pulses in humans during waking and all-night sleep. Recordings were obtained from the three cortical structures receiving 95% of the spinothalamic cortical input in primates, namely the parietal operculum, posterior insula, and mid-anterior cingulate cortex. The dynamics of responses during sleep differed among cortical sites. In sleep Stage 2, evoked potential amplitudes were similarly attenuated relative to waking in all three cortical regions. During paradoxical, or rapid eye movements (REM), sleep, opercular and insular potentials remained stable in comparison with Stage 2, whereas the responses from mid-anterior cingulate abated drastically, and decreasing below background noise in half of the subjects. Thus, while the lateral operculo-insular system subserving sensory analysis of somatic stimuli remained active during paradoxical-REM sleep, mid-anterior cingulate processes related to orienting and avoidance behavior were suppressed. Dissociation between sensory and orienting-motor networks might explain why nociceptive stimuli can be either neglected or incorporated into dreams without awakening the subject.
机译:尽管保留了可观的皮质反应,但睡眠期间对感觉刺激的行为反应却很少。为了进一步了解这种解离,我们在醒来和整夜睡眠期间记录了皮层内电场对人体内痛苦的激光脉冲的影响。记录是从在灵长类动物中接收到95%的脊椎丘脑皮质输入的三个皮质结构获得的,即顶盖,后岛岛和前扣带回皮质。睡眠期间反应的动力学在皮质部位之间有所不同。在睡眠阶段2中,相对于所有三个皮质区域中的醒来,诱发电位振幅都被类似地衰减。与第2阶段相比,在自相矛盾或快速眼动(REM)期间,睡眠,眼部和岛突电位保持稳定,而前扣带中部的反应则明显减轻,并且在一半的受试者中降至低于背景噪声。因此,虽然对躯体刺激进行感官分析的侧腹-肌鞘系统在悖论性REM睡眠期间仍然活跃,但与定向和回避行为相关的前扣带回过程受到抑制。感觉和定向运动网络之间的分离可能解释了为什么可以在不唤醒受试者的情况下忽略伤害性刺激或将伤害性刺激纳入梦中。

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