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人类躯体感觉系统中伤害性感受和触觉加工的前馈和反馈通路:基于 fMRI 数据的动态因果建模研究。

Feedforward and feedback pathways of nociceptive and tactile processing in human somatosensory system: A study of dynamic causal modeling of fMRI data.

机构信息

School of Medical Imaging and Tianjin Key Laboratory of Functional Imaging, Tianjin Medical University, Tianjin, China.

Department of Molecular Imaging and Nuclear Medicine, Tianjin Medical University Cancer Institute and Hospital, National Clinical Research Center for Cancer, Tianjin Key Laboratory of Cancer Prevention and Therapy, Tianjin's Clinical Research Center for China, Tianjin, China.

出版信息

Neuroimage. 2021 Jul 1;234:117957. doi: 10.1016/j.neuroimage.2021.117957. Epub 2021 Mar 17.

Abstract

Nociceptive and tactile information is processed in the somatosensory system via reciprocal (i.e., feedforward and feedback) projections between the thalamus, the primary (S1) and secondary (S2) somatosensory cortices. The exact hierarchy of nociceptive and tactile information processing within this 'thalamus-S1-S2' network and whether the processing hierarchy differs between the two somatosensory submodalities remains unclear. In particular, two questions related to the ascending and descending pathways have not been addressed. For the ascending pathways, whether tactile or nociceptive information is processed in parallel (i.e., 'thalamus-S1' and 'thalamus-S2') or in serial (i.e., 'thalamus-S1-S2') remains controversial. For the descending pathways, how corticothalamic feedback regulates nociceptive and tactile processing also remains elusive. Here, we aimed to investigate the hierarchical organization for the processing of nociceptive and tactile information in the 'thalamus-S1-S2' network using dynamic causal modeling (DCM) combined with high-temporal-resolution fMRI. We found that, for both nociceptive and tactile information processing, both S1 and S2 received inputs from thalamus, indicating a parallel structure of ascending pathways for nociceptive and tactile information processing. Furthermore, we observed distinct corticothalamic feedback regulations from S1 and S2, showing that S1 generally exerts inhibitory feedback regulation independent of external stimulation whereas S2 provides additional inhibition to the thalamic activity during nociceptive and tactile information processing in humans. These findings revealed that nociceptive and tactile information processing have similar hierarchical organization within the somatosensory system in the human brain.

摘要

伤害性和触觉信息在躯体感觉系统中通过丘脑、初级(S1)和次级(S2)躯体感觉皮层之间的相互(即前馈和反馈)投射进行处理。在这个“丘脑-S1-S2”网络中,伤害性和触觉信息处理的确切层次结构,以及这两种躯体感觉亚模式之间的处理层次结构是否不同,仍然不清楚。特别是,与上升和下降途径相关的两个问题尚未得到解决。对于上升途径,触觉或伤害性信息是并行处理(即“丘脑-S1”和“丘脑-S2”)还是串行处理(即“丘脑-S1-S2”)仍然存在争议。对于下降途径,皮质丘脑反馈如何调节伤害性和触觉处理仍然难以捉摸。在这里,我们旨在使用结合高时间分辨率 fMRI 的动态因果建模(DCM)来研究“丘脑-S1-S2”网络中伤害性和触觉信息处理的层次结构组织。我们发现,对于伤害性和触觉信息处理,S1 和 S2 都从丘脑接收输入,这表明伤害性和触觉信息处理的上升途径具有并行结构。此外,我们观察到来自 S1 和 S2 的不同皮质丘脑反馈调节,表明 S1 通常对外部刺激不依赖地发挥抑制性反馈调节,而 S2 在人类伤害性和触觉信息处理过程中对丘脑活动提供额外的抑制。这些发现表明,伤害性和触觉信息处理在人类大脑的躯体感觉系统中具有相似的层次结构组织。

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