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Common neural systems for contact heat and laser pain stimulation reveal higher‐level pain processing

机译:接触热和激光疼痛刺激的通用神经系统揭示了更高水平的疼痛处理

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摘要

Our current knowledge of pain‐related neuronal responses is largely based on experimental pain studies using contact heat or nontactile laser painful stimulation. Both stimuli evoke pain, yet they differ considerably in their physical and perceptual properties. In sensory cortex, cerebral responses to either stimulus should therefore substantially differ. However, given that both stimuli evoke pain, we hypothesized that at a certain subset of cortical regions the different physical properties of the stimuli become less important and are therefore activated by both stimuli. In contrast, regions with clearly dissociable activity may belong to “lower‐level” pain processing mechanisms depending on the physical properties of the administered stimuli. We used functional magnetic resonance (fMRI) to intraindividually compare pain‐related activation patterns between laser and contact heat stimulation using four different intensities of laser and contact heat stimuli. Common and dissociable neural responses were identified by correlating perceived pain intensities with blood oxygenation level dependent (BOLD) signal changes. Only neuronal responses to stimuli that were perceived as painful were analyzed. Pain‐related BOLD signal increases independent of stimulus modality were detected in the anterior insula, anterior cingulate cortex, medial secondary somatosensory cortex, and the prefrontal cortex. These similarities are likely to reflect higher‐level pain processing, which is largely independent of the single physical parameters that determine the painful nature of the stimuli. Hum Brain Mapp 2008. © 2007 Wiley‐Liss, Inc.
机译:我们目前对疼痛相关的神经元反应的了解主要基于使用接触热或非触觉激光疼痛刺激进行的实验性疼痛研究。两种刺激都会引起疼痛,但是它们的物理和感知特性却存在很大差异。因此,在感觉皮层中,大脑对任一刺激的反应都应有实质性差异。但是,鉴于这两种刺激都会引起疼痛,我们假设在皮质区域的某个子集上,刺激的不同物理特性变得不那么重要,因此被两种刺激激活。相反,根据所施加刺激的物理特性,活动明显可分离的区域可能属于“低级”疼痛处理机制。我们使用功能磁共振(fMRI)来分别比较使用四种不同强度的激光和接触热刺激在激光和接触热刺激之间的疼痛相关激活模式。通过将感知到的疼痛强度与血液氧合水平依赖性(BOLD)信号变化相关联,确定常见和可分离的神经反应。仅分析被认为是疼痛的对刺激的神经反应。在前岛岛,前扣带回皮层,内侧次生体感皮层和额前皮层中检测到与疼痛相关的BOLD信号增加,与刺激方式无关。这些相似之处可能反映了更高级别的疼痛处理,该过程在很大程度上与决定刺激的疼痛性质的单个物理参数无关。嗡嗡声大脑Mapp2008。©2007 Wiley-Liss,Inc.。

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