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首页> 外文期刊>Magnetic resonance imaging: An International journal of basic research and clinical applications >Mapping of neural activity produced by thermal pain in the healthy human spinal cord and brain stem: A functional magnetic resonance imaging study
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Mapping of neural activity produced by thermal pain in the healthy human spinal cord and brain stem: A functional magnetic resonance imaging study

机译:健康人的脊髓和脑干热痛产生的神经活动图:功能磁共振成像研究

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Functional magnetic resonance imaging (fMRI) has greatly advanced our current understanding of pain, although most studies to date have focused on imaging of cortical structures. In the present study, we have used fMRI at 3 T to investigate the neural activity evoked by thermal sensation and pain (42°C and 46°C) throughout the entire lower neuroaxis from the first synapse in the spinal cord rostral to the thalamus in healthy subjects. The results demonstrate that noxious thermal stimulation (46°C) produces consistent activity within various structures known to be involved in the pain matrix including the dorsal spinal cord, reticular formation, periaqueductal gray and rostral ventral medulla. However, additional areas of activity were evident that are not considered to be part of the pain matrix, including the olivary nucleus. Thermal stimulation (42°C) reported as either not painful or mildly painful produced quantitative, but not qualitative, differences in neuronal activity depending on the order of experiments. Activity was greater in the spinal cord and brain stem in earlier experiments, compared with repeated experiments after the more noxious (46°C) stimulus had been applied. This study provides significant insight into how the lower neuroaxis integrates and responds to pain in humans.
机译:功能磁共振成像(fMRI)大大提高了我们目前对疼痛的理解,尽管迄今为止大多数研究都集中在皮层结构的成像上。在本研究中,我们在3 T时使用了功能磁共振成像,以研究从脊髓头端的第一个突触到丘脑的整个下神经轴的热感觉和疼痛(42°C和46°C)引起的神经活动。健康受试者。结果表明,有害的热刺激(46°C)在已知与疼痛基质有关的各种结构(包括背脊髓,网状结构,导水管周围灰质和延髓腹侧延髓)中产生一致的活性。但是,显然还有其他活动区域,包括橄榄核不被认为是疼痛矩阵的一部分。据报道,根据实验的顺序,热刺激(42°C)既不疼痛也不是轻度疼痛,在神经元活动方面产生了定量但非定性的差异。与使用了更有害的(46°C)刺激后的重复实验相比,早期实验中的脊髓和脑干活性更高。这项研究提供了关于下神经轴如何整合并响应人类疼痛的重要见解。

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