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Discrete Modules and Mesoscale Functional Circuits for Thermal Nociception within Primate S1 Cortex

机译:灵长类动物S1皮质内热伤害感受的分立模块和中尺度功能电路

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摘要

This study addresses one long-standing question of whether functional separations are preserved for somatosensory modalities of touch, heat, and cold nociception within primate primary somatosensory (S1) cortex. This information is critical for understanding how the nature of pain is represented in the primate brain. Using a combination of submillimeter-resolution fMRI and microelectrode local field potential (LFP) and spike recordings, we identified spatially segregated cortical zones for processing touch and nociceptive heat and cold stimuli in somatotopically appropriate areas 3a, 3b, 1, and 2 of S1 in male monkeys. The distances between zones were comparable (∼3.4 mm) across stimulus modalities (heat, cold, and tactile), indicating the existence of uniform, modality-specific modules. Stimulus-evoked LFP maps validated the fMRI maps in areas 3b and 1. Isolation of heat and cold nociceptive neurons from the fMRI zones confirmed the validity of using fMRI to probe nociceptive regions and circuits. Resting-state fMRI analysis revealed distinct intrinsic functional circuits among functionally related zones. We discovered distinct modular structures and networks for thermal nociception within S1 cortex, a finding that has significant implications for studying chronic pain syndromes and guiding the selection of neuromodulation targets for chronic pain management.>SIGNIFICANCE STATEMENT Primate S1 subregions contain discrete heat and cold nociceptive modules. Modules with the same properties exhibit strong functional connection. Nociceptive fMRI response coincides with LFP and spike activities of nociceptive neurons. Functional separation of heat and cold pain is retained within primate S1 cortex.
机译:这项研究解决了一个长期存在的问题,即是否在灵长类动物初级体感(S1)皮质内为触觉,热和冷伤害感受的体感模式保留功能分离。这些信息对于理解灵长类动物大脑中疼痛的本质是至关重要的。使用亚毫米级分辨率的功能磁共振成像和微电极局部场电势(LFP)以及峰值记录的组合,我们在S1的体位合适区域3a,3b,1和2中确定了空间隔离的皮质区域,用于处理触摸,伤害性热和冷刺激。公猴子。在各种刺激方式(热,冷和触觉)之间,区域之间的距离是可比较的(〜3.4 mm),表明存在统一的,特定于模式的模块。刺激诱发的LFP图验证了3b和1区的fMRI图。从fMRI区域分离出冷热伤害感受神经元,证实了使用fMRI探测伤害感受区域和电路的有效性。静止状态功能磁共振成像分析显示功能相关区域之间明显的固有功能电路。我们发现了S1皮质内热伤害感受的独特模块化结构和网络,这一发现对研究慢性疼痛综合征和指导慢性疼痛管理的神经调节靶标的选择具有重要意义。>重要声明灵长类S1子区域包含分立的热和冷伤害感受模块。具有相同属性的模块具有强大的功能连接。伤害性功能磁共振成像反应与伤害性神经元的LFP和峰值活动同时发生。在灵长类动物S1皮质内保留了热和冷痛的功能分离。

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