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分心对人类中通过C纤维上升的脑磁图反应的影响。

Effects of distraction on magnetoencephalographic responses ascending through C-fibers in humans.

作者信息

Qiu Yunhai, Inui Koji, Wang Xiaohong, Nguyen Binh Thi, Tran Tuan Diep, Kakigi Ryusuke

机构信息

Department of Integrative Physiology, National Institute for Physiological Sciences, Myodaiji, Okazaki 444-8585, Japan.

出版信息

Clin Neurophysiol. 2004 Mar;115(3):636-46. doi: 10.1016/j.clinph.2003.10.017.

Abstract

OBJECTIVE

Using magnetoencephalography (MEG), we evaluated the cerebral regions relating to second pain perception ascending through C-fibers and investigated the effect of distraction on each region.

METHODS

Thirteen normal subjects participated in this study. CO2 laser pulses were delivered to the dorsum of the left hand to selectively activate C-fibers. The MEG responses were analyzed using a multi-dipole model.

RESULTS

(1) primary somatosensory cortex (SI), and (2) secondary somatosensory cortex (SII)--insula were the main generators for the primary component, 1M, whose mean peak latency was 744 ms. In addition to (1) and (2), (3) cingulate cortex and (4) medial temporal area (MT) were also activated for the subsequent component, 2M, whose mean peak latency was 947 ms. During a mental calculation task (Distraction), all 6 sources were significantly reduced in amplitude, but the SII-insula (P < 0.01) and cingulate cortex (P < 0.001) were more sensitive than the SI (P < 0.05) and MT (P < 0.05).

CONCLUSIONS

We confirmed that SI in the contralateral hemisphere and SII-insula, cingulate cortex and MT in bilateral hemispheres play a major role in second pain perception, and all sites were much affected by a change of attention, indicating that these regions are related to the cognitive aspect of second pain perception.

SIGNIFICANCE

The SI, SII, cingulate and MT were activated during the C-fiber-related MEG response, and responses in these regions were significantly diminished during mental distraction.

摘要

目的

我们使用脑磁图(MEG)评估与通过C纤维传导的继发性疼痛感知相关的脑区,并研究分心对每个区域的影响。

方法

13名正常受试者参与了本研究。用二氧化碳激光脉冲照射左手背以选择性激活C纤维。使用多偶极子模型分析MEG反应。

结果

(1)初级体感皮层(SI)和(2)次级体感皮层(SII)-脑岛是主要成分1M的主要发生器,其平均峰值潜伏期为744毫秒。除了(1)和(2)之外,(3)扣带回皮层和(4)内侧颞叶区域(MT)也因后续成分2M而被激活,其平均峰值潜伏期为947毫秒。在进行心算任务(分心)期间,所有6个来源的振幅均显著降低,但SII-脑岛(P < 0.01)和扣带回皮层(P < 0.001)比SI(P < 0.05)和MT(P < 0.05)更敏感。

结论

我们证实对侧半球的SI以及双侧半球的SII-脑岛、扣带回皮层和MT在继发性疼痛感知中起主要作用,并且所有部位都受到注意力变化的很大影响,表明这些区域与继发性疼痛感知的认知方面有关。

意义

在与C纤维相关的MEG反应期间,SI、SII、扣带回和MT被激活,并且在精神分心期间这些区域的反应显著减弱。

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