首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Control over brain activation and pain learned by using real-time functional MRI.
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Control over brain activation and pain learned by using real-time functional MRI.

机译:通过使用实时功能性MRI控制大脑活动和疼痛。

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If an individual can learn to directly control activation of localized regions within the brain, this approach might provide control over the neurophysiological mechanisms that mediate behavior and cognition and could potentially provide a different route for treating disease. Control over the endogenous pain modulatory system is a particularly important target because it could enable a unique mechanism for clinical control over pain. Here, we found that by using real-time functional MRI (rtfMRI) to guide training, subjects were able to learn to control activation in the rostral anterior cingulate cortex (rACC), a region putatively involved in pain perception and regulation. When subjects deliberately induced increases or decreases in rACC fMRI activation, there was a corresponding change in the perception of pain caused by an applied noxious thermal stimulus. Control experiments demonstrated that this effect was not observed after similar training conducted without rtfMRI information, or using rtfMRI information derived from a different brain region, or sham rtfMRI information derived previously from a different subject. Chronic pain patients were also trained to control activation in rACC and reported decreases in the ongoing level of chronic pain after training. These findings show that individuals can gain voluntary control over activation in a specific brain region given appropriate training, that voluntary control over activation in rACC leads to control over pain perception, and that these effects were powerful enough to impact severe, chronic clinical pain.
机译:如果一个人可以学会直接控制大脑中局部区域的激活,那么这种方法可能会控制介导行为和认知的神经生理机制,并可能提供治疗疾病的不同途径。控制内源性疼痛调节系统是一个特别重要的目标,因为它可以为临床控制疼痛提供独特的机制。在这里,我们发现,通过使用实时功能性MRI(rtfMRI)指导训练,受试者能够学习控制在前额扣带回皮层(rACC)中的激活,该区域可能涉及疼痛的感知和调节。当受试者故意诱导rACC fMRI激活增加或减少时,由于施加有害的热刺激而引起的疼痛感相应改变。对照实验表明,在没有rtfMRI信息或使用源自不同大脑区域的rtfMRI信息或先前源自不同受试者的假rtfMRI信息进行类似训练后,未观察到这种效果。慢性疼痛患者也接受了控制rACC激活的训练,并报告了训练后慢性疼痛持续水平的降低。这些发现表明,在适当的训练下,个体可以对特定大脑区域的激活进行自愿控制,对rACC的激活进行自愿控制可以控制疼痛感,并且这些作用足以影响严重的慢性临床疼痛。

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