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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >THETA-FREQUENCY PHASE-LOCKING OF SINGLE ANTERIOR CINGULATE CORTEX NEURONS AND SYNCHRONIZATION WITH THE MEDIAL THALAMUS ARE MODULATED BY VISCERAL NOXIOUS STIMULATION IN RATS
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THETA-FREQUENCY PHASE-LOCKING OF SINGLE ANTERIOR CINGULATE CORTEX NEURONS AND SYNCHRONIZATION WITH THE MEDIAL THALAMUS ARE MODULATED BY VISCERAL NOXIOUS STIMULATION IN RATS

机译:大鼠内脏有害刺激可调节单个前瓣皮质神经元的θ-频率锁相和与内侧丘脑的同步

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The rodent anterior cingulate cortex (ACC) is critical for visceral pain and pain-related aversive response in chronic visceral hypersensitive (VH) state. Long-term potentiation (LTP), induced by theta burst stimulation (TBS) in the medial thalamus (MT)-ACC pathway, is blocked in VH rats. However, the neuronal intrinsic firing characteristics and the MT-ACC connectivity have not been investigated in visceral pain. Using repetitive distension of the colon and rectum (rCRD) as a sensitization paradigm, we have identified that the spontaneous firing rates of ACC neurons and the CRD-stimulated neuronal firings were increased after repetitive visceral noxious stimulation. This correlates with increases in visceral pain responses (visceromotor responses, VMRs). Two multichannel arrays of electrodes were implanted in the MT and ACC. Recordings were performed in free-moving rats before and after repeated CRD treatment. Power spectral density analysis showed that the local field potential (LFP) recorded in the ACC displayed increases in theta band power (4-10 Hz) that were modulated by rCRD. Neural spike activity in the ACC becomes synchronized with ongoing theta oscillations of LFP. Furthermore, cross correlation analysis showed augmented synchronization of thalamo-ACC theta band LFPs, which was consistent with an increase of neuronal communication between the two regions. In conclusion, these results reveal theta oscillations and theta-frequency phase-locking as prominent features of neural activity in the ACC and a candidate neural mechanism underlying acute visceral pain. (C) 2015 The Authors. Published by Elsevier Ltd. on behalf of IBRO.
机译:啮齿动物前扣带回皮质(ACC)对于慢性内脏超敏(VH)状态下的内脏疼痛和与疼痛相关的厌恶反应至关重要。在VH大鼠中,内侧丘脑(MT)-ACC途径中的theta爆发刺激(TBS)诱导的长期增强(LTP)被阻断。但是,尚未在内脏痛中研究神经元固有放电特性和MT-ACC连接性。使用结肠和直肠的反复扩张(rCRD)作为敏化范例,我们已经发现,反复内脏有毒刺激后,ACC神经元的自发放电率和CRD刺激的神经元放电增加。这与内脏疼痛反应(内脏运动反应,VMR)的增加相关。将两个多通道电极阵列植入MT和ACC中。在反复进行CRD治疗之前和之后,在自由活动的大鼠中进行记录。功率谱密度分析表明,记录在ACC中的局部场电势(LFP)显示出由rCRD调制的θ带功率(4-10 Hz)增加。 ACC中的神经尖峰活动与LFP持续的θ振荡同步。此外,互相关分析显示,Thalamo-ACC theta带LFP的同步增强,这与两个区域之间神经元交流的增加是一致的。总之,这些结果表明,θ振荡和θ频率锁相是ACC中神经活动的突出特征,也是急性内脏痛的潜在神经机制。 (C)2015作者。由Elsevier Ltd.代表IBRO发布。

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