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Human secondary somatosensory cortex is involved in the processing of somatosensory rare stimuli: an fMRI study.

机译:人类次生体感皮层参与体感稀有刺激的处理:一项功能磁共振成像研究。

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In the human somatosensory system, the contralateral primary somatosensory cortex (SI) is presumed to process and encode type and intensity of the sensory inputs, whereas the bilateral secondary somatosensory cortex (SII) is believed to perform higher order functions including sensorimotor integration, integration of information from the two body halves, attention, learning and memory. In this fMRI study we investigated the effect of attention on the activation of SI and SII, as induced by nonpainful and painful rare deviant electric stimuli during somatosensory oddball tasks. The working hypothesis is of stronger effects of attention on SII with respect to SI. Four runs were acquired according to an oddball scheme. Frequent nonpainful electrical stimuli were delivered to the ulnar nerve at motor threshold, whereas rare/deviant stimuli were delivered to median nerve in four conditions (one condition per run): nonpainful, painful, counting nonpainful, and counting painful. Results showed a statisticallysignificant fMRI activation in bilateral SII but not in contralateral SI when the rare/deviant median nerve stimuli were delivered at nonpainful and painful levels as well as at the two levels of attention considered (i.e., associated with counting and non-counting tasks). Furthermore, fMRI activation in SII did not differ across the different levels of stimulus intensity (nonpainful, painful) and attention (non-counting, counting). These results corroborate the notion that SII is the target of independent pathways for the processing and integration of nonpainful and painful somatosensory stimuli salient for further high-order elaborations.
机译:在人体体感系统中,假定对侧初级体感皮层(SI)处理并编码感官输入的类型和强度,而据信双侧次级体感皮层(SII)执行更高级别的功能,包括感觉运动整合,整合来自身体两半的信息,注意力,学习和记忆。在这项功能磁共振成像研究中,我们研究了注意对体感奇异球任务中无痛和疼痛的罕见异常电刺激所引起的SI和SII激活的影响。工作假设是关于SI的注意力在SII上的影响更大。根据奇数球计划获得了四轮。经常在运动阈值处将无痛电刺激传递至尺神经,而在以下4种情况(每次运行一种情况)下,将稀有/异常刺激传递至正中神经:无痛,疼痛,计数无痛和计数疼痛。结果显示,当在非疼痛和疼痛水平以及考虑的两个注意水平(即与计数和非计数任务相关)下传递稀有/异常中位神经刺激时,双侧SII的fMRI激活具有统计学意义,而对侧SI则没有)。此外,SII中的fMRI激活在不同水平的刺激强度(无痛,痛苦)和注意力(无计数,计数)上没有差异。这些结果证实了以下观点:SII是处理和整合无痛和痛苦的体感刺激显着性的独立途径的目标,以进一步进行高级修饰。

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