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首页> 外文期刊>NeuroImage >Small animal, whole brain fMRI: innocuous and nociceptive forepaw stimulation.
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Small animal, whole brain fMRI: innocuous and nociceptive forepaw stimulation.

机译:小动物,全脑功能磁共振成像:无害和伤害性的前爪刺激。

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Supra-spinal pain processing involves a number of extensive networks. An examination of these networks using small animal functional magnetic resonance imaging (fMRI) is difficult. While prior studies have successfully delineated regions consistent with known pain processing pathways, they have been restricted to acquisitions of limited spatial extent with coarse in-plane resolution to achieve a high temporal resolution. An isotropic, whole brain fMRI protocol has been developed for the examination of the supra-spinal consequences of innocuous and nociceptive electrical stimulation of the rat forepaw. Innocuous electrical stimulation of the rat forepaw delineated BOLD contrast responses consistent with known somatosensory processing pathways (contralateral primary somatosensory cortex (S1), a region consistent with secondary somatosensory cortex, the ventral posterolateral thalamic nucleus and ipsilateral cuneate nucleus), providing face validity for the technique. The putative noxious stimulus delineated additional regions consistent with the classical lateral and medial pain systems as well as secondarily associated areas: the aversion and descending inhibition systems. These included the ipsilateral inferior colliculus, anterior pretectal nucleus, mediodorsal thalamic nucleus, with regions in the pre-frontal, cingulated, ventral orbital and infra-limbic cortices, nucleus accumbens all exhibiting negative BOLD changes. Such regions are in agreement with, and extend, those previously reported. Acquisition, post-processing and analysis methodologies undertaken in this study constitute a marked extension of previous fMRI in the rat, enabling whole brain coverage at a spatial resolution sufficient to delineate regional changes in BOLD contrast consistent with somatosensory and nociceptive networks.
机译:脊柱上疼痛的治疗涉及许多广泛的网络。使用小型动物功能磁共振成像(fMRI)对这些网络进行检查非常困难。尽管先前的研究已经成功地划定了与已知疼痛处理途径一致的区域,但它们已被限制在有限的空间范围内以粗糙的平面分辨率进行采集以获得高的时间分辨率。已经开发出一种各向同性的全脑功能磁共振成像方案,用于检查大鼠前爪的无害和伤害性电刺激的脊柱上后果。大鼠前爪的无害电刺激描绘了BOLD对比反应,该反应与已知的体感处理途径(对侧初级体感皮层(S1),与次级体感皮层,腹侧后外侧丘脑核和同侧楔形核相一致的区域)一致,从而为技术。推定的有害刺激物划定了与经典的外侧和内侧疼痛系统一致的其他区域,以及与之相关的次要区域:厌恶和下降抑制系统。这些包括同侧下丘脑,前前盖核,内侧腹膜丘脑核,以及位于前额叶,扣带状,腹侧眶和下缘皮层的区域,伏隔核均显示负的BOLD变化。这些区域与先前报告的区域一致并扩展。在这项研究中进行的采集,后处理和分析方法构成了大鼠先前功能磁共振成像的显着扩展,可以在空间分辨率下以全脑覆盖整个脑,从而描绘出与体感和伤害感受网络一致的BOLD对比区域变化。

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