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有害刺激降低内侧前额叶皮质局部场电位功率。

Reduced local field potential power in the medial prefrontal cortex by noxious stimuli.

作者信息

Li Ai-Ling, Yang Xiaofei, Chiao Jung-Chih, Peng Yuan Bo

机构信息

Department of Psychology, The University of Texas at Arlington, 501 South Nedderman Drive, P. O. Box 19528, Arlington, TX 76019, USA.

School of Optical and Electronic Information, Huazhong University of Science and Technology, Wuhan, China.

出版信息

Brain Res Bull. 2016 Oct;127:92-99. doi: 10.1016/j.brainresbull.2016.09.001. Epub 2016 Sep 4.

Abstract

Nociceptive signals produced by noxious stimuli at the periphery reach the brain through ascending pathways. These signals are processed by various brain areas and lead to activity changes in those areas. The medial prefrontal cortex (mPFC) is involved in higher cognitive functions and emotional processing. It receives projections from brain areas involved in nociception. In this study, we investigated how nociceptive input from the periphery changes the local field potential (LFP) activity in the mPFC. Three different types of noxious stimuli were applied to the hind paw contralateral to the LFP recording site. They were transcutaneous electrical stimulations, mechanical stimuli and a chemical stimulus (formalin injection). High intensity transcutaneous stimulations (10V to 50V) and noxious mechanical stimulus (pinch) significantly reduced the LFP power during the stimulating period (p<0.05), but not the low intensity subcutaneous stimulations (0.1V to 5V) and other innocuous mechanical stimuli (brush and pressure). More frequency bands were inhibited with increased intensity of transcutaneous electrical stimulation, and almost all frequency bands were inhibited by stimulations at or higher than 30v. Pinch significantly reduced the power for beta band and formalin injection significantly reduced the power of alpha and beta band. Our data demonstrated the noxious stimuli-induced reduction of LFP power in the mPFC, which indicates the active processing of nociceptive information by the mPFC.

摘要

外周伤害性刺激产生的伤害性信号通过上行通路到达大脑。这些信号由不同脑区进行处理,并导致这些脑区的活动变化。内侧前额叶皮质(mPFC)参与更高层次的认知功能和情绪处理。它接收来自参与痛觉感受的脑区的投射。在本研究中,我们调查了来自外周的伤害性输入如何改变mPFC中的局部场电位(LFP)活动。对与LFP记录部位对侧的后爪施加三种不同类型的伤害性刺激。它们是经皮电刺激、机械刺激和化学刺激(福尔马林注射)。高强度经皮刺激(10V至50V)和伤害性机械刺激(捏)在刺激期间显著降低了LFP功率(p<0.05),但低强度皮下刺激(0.1V至5V)和其他无害机械刺激(刷和压)则没有。随着经皮电刺激强度增加,更多频段受到抑制,30V及以上刺激几乎抑制了所有频段。捏显著降低了β频段的功率,福尔马林注射显著降低了α和β频段的功率。我们的数据表明,伤害性刺激导致mPFC中LFP功率降低,这表明mPFC对伤害性信息进行了积极处理。

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