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Neurofeedback of the difference in activation of the anterior cingulate cortex and posterior insular cortex: two functionally connected areas in the processing of pain

机译:神经反馈的前扣带回皮层和后岛小岛皮层激活的差异:在疼痛的处理中两个功能连接的区域

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摘要

The aim of this study was the analysis of the effect of a learned increase in the dissociation between the rostral anterior cingulate cortex (rACC) and the left posterior insula (pInsL) on pain intensity and unpleasantness and the contribution of each region to the effect, exploring the possibility to influence the perception of pain with neurofeedback methods. We trained ten healthy subjects to increase the difference in the blood oxygenation level-dependent response between the rACC and pInsL to painful electric stimuli. Subjects learned to increase the dissociation with either the rACC (state 1) or the pInsL (state 2) being higher. For feedback we subtracted the signal of one region from the other and provided feedback in four conditions with six trials each yielding two different states: [rACC—pInsL increase (state 1), rACC—pInsL decrease (state 2), pInsL—rACC increase (state 2), pInsL—rACC decrease (state 1)]. Significant changes in the dissociation from trial one to six were seen in all conditions. There were significant changes from trial one to six in the pInsL in three of the four conditions, the rACC showed no significant change. Pain intensity or unpleasantness ratings were unrelated to the dissociation between the regions and the activation in each region. Learning success in the conditions did not significantly correlate and there was no significant correlation between the two respective conditions of one state, i.e., learning to achieve a specific state is not a stable ability. The pInsL seems to be the driving force behind changes in the learned dissociation between the regions. Despite successful differential modulation of activation in areas responsive to the painful stimulus, no corresponding changes in the perception of pain intensity or unpleasantness emerged. Learning to induce different states of dissociation between the areas is not a stable ability since success did not correlate overall or between two conditions of the the same state.
机译:这项研究的目的是分析习得的延锋性前扣带回皮层(rACC)与左后绝缘体(pInsL)之间的分离对疼痛强度和不适感的影响以及每个区域对该效果的影响,探索使用神经反馈方法影响疼痛感知的可能性。我们训练了十名健康受试者,以增加rACC和pInsL对疼痛电刺激的血液氧合水平依赖性反应的差异。受试者学会了增加与rACC(状态1)或pInsL(状态2)的解离。对于反馈,我们从另一个区域中减去了一个区域的信号,并在四个条件下提供了六个试验的反馈,每个试验都产生两种不同的状态:[rACC-pInsL增加(状态1),rACC-pInsL减少(状态2),pInsL-rACC增加(状态2),pInsL-rACC减小(状态1)]。在所有条件下,从试验1到6的解离都发生了显着变化。在四种情况中的三种情况下,pInsL从试验1到6发生了显着变化,rACC没有显示出显着变化。疼痛强度或不适等级与区域之间的分离和每个区域的激活无关。在该条件下的学习成功没有显着相关,并且在一个状态的两个相应条件之间没有显着的相关性,即学习达到特定状态不是稳定的能力。 pInsL似乎是区域之间习得的分离的变化背后的驱动力。尽管在响应疼痛刺激的区域中成功地完成了激活的差异调节,但是在疼痛强度或不适感方面并没有出现相应的变化。学习成功导致区域之间不同的解离状态并不是稳定的能力,因为成功与整体状态或同一状态的两个条件之间没有关联。

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