自由运动大鼠幼崽体感觉皮层伤害网络活动的发展

P. Chang, L. Fabrizi, S. Olhede, M. Fitzgerald
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引用次数: 24

摘要

大脑皮层对有害刺激的感知是疼痛体验的重要组成部分,但在大脑发育过程中,大脑皮层伤害性活动是如何产生的尚不清楚。在这里,我们使用醒着的活跃大鼠幼鼠初级体感皮层(S1)的连续遥测皮质电图(ECoG)记录来绘制生命最初4周内发育中的大脑的功能性伤害感受加工。横断面和纵向记录显示,基线S1 ECoG能量随着年龄的增长而稳步增加,在第3周,显著的β分量被显著的θ分量所取代。在所有年龄的测试中,短暂的有害后爪皮肤刺激都能诱发事件相关电位,证实S1区存在功能性伤害性脊髓丘脑输入。然而,后爪切口增加了所有年龄段的疼痛敏感性,直到第3周才增加S1 ECoG能量。在第3周出现皮肤切口时,伽马(20-50 Hz)能量显著增加,同时在第4周出现更持久的θ (4 - 8 Hz)能量增加。连续的ECoG记录显示了S1皮质痛觉成熟过程中特定的产后功能阶段。在2到4周龄的清醒大鼠幼仔中,持续疼痛“状态”的体感觉皮层编码变得明显。
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The Development of Nociceptive Network Activity in the Somatosensory Cortex of Freely Moving Rat Pups
Cortical perception of noxious stimulation is an essential component of pain experience but it is not known how cortical nociceptive activity emerges during brain development. Here we use continuous telemetric electrocorticogram (ECoG) recording from the primary somatosensory cortex (S1) of awake active rat pups to map functional nociceptive processing in the developing brain over the first 4 weeks of life. Cross-sectional and longitudinal recordings show that baseline S1 ECoG energy increases steadily with age, with a distinctive beta component replaced by a distinctive theta component in week 3. Event-related potentials were evoked by brief noxious hindpaw skin stimulation at all ages tested, confirming the presence of functional nociceptive spinothalamic inputs in S1. However, hindpaw incision, which increases pain sensitivity at all ages, did not increase S1 ECoG energy until week 3. A significant increase in gamma (20–50 Hz) energy occurred in the presence of skin incision at week 3 accompanied by a longer-lasting increase in theta (4–8 Hz) energy at week 4. Continuous ECoG recording demonstrates specific postnatal functional stages in the maturation of S1 cortical nociception. Somatosensory cortical coding of an ongoing pain “state” in awake rat pups becomes apparent between 2 and 4 weeks of age.
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