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首页> 外文期刊>Experimental Brain Research >Cortical processing of tactile stimuli applied in quick succession across the fingertips: temporal evolution of dipole sources revealed by magnetoencephalography.
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Cortical processing of tactile stimuli applied in quick succession across the fingertips: temporal evolution of dipole sources revealed by magnetoencephalography.

机译:触觉刺激的皮质处理在指尖上快速连续地应用:磁脑图显示偶极子源的时间演变。

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We used magnetoencephalography (MEG) in 10 healthy human subjects to study cortical responses to tactile stimuli applied to the fingertips of digits 2-5 of the right hand. Each stimulus lasted 50 ms and was produced by air-driven elastic membranes. Four-hundred stimuli were delivered on each finger in three temporal patterns (conditions). In the "Discrete" condition, stimuli were applied to each finger repetitively with an interstimulus interval (ISI) of 1-2 s. In the Continuous four-stimulus trains with zero ISI and 1-2 s intervening between trains. Finally, in the "Gap" condition, stimuli were applied as in the Continuous condition but with an ISI of 50 ms. A sensation of tactile motion across fingers (digit 2 --> digit 5) was reported by all subjects in the Continuous and Gap conditions. Cortical responses were extracted as single equivalent current dipoles over a period of 1 s following stimulus onset. In all three conditions, initial responses in left primary somatosensory cortex (SI) were observed ~20 to 50 ms after stimulus onset and were followed by additional left SI responses and bilateral responses in the secondary somatosensory cortex (SII). In addition, in the Continuous and Gap conditions, there was an activation of the precentral gyrus, the temporal aspects of which depended on the temporal relation of the administered stimuli, as follows. An ISI of 0 ms led to activation of the precentral gyrus shortly after the second stimulation, whereas an ISI of 50 ms led to activation of the precentral gyrus after the third stimulation. The current findings support results from previous studies on temporal activity patterns in SI and SII, verify the participation of the precentral gyrus during tactile motion perception and, in addition, reveal aspects of integration of sequential sensory stimulations over nonadjacent areas as well as temporal activity patterns in the postcentral and precentral gyri.
机译:我们在10位健康的人类受试者中使用了磁脑电图(MEG),研究了对触觉刺激施加到右手手指2-5指尖的皮质反应。每次刺激持续50毫秒,由空气驱动的弹性膜产生。在三个时间模式(条件)下,每个手指上传递了四百个刺激。在“离散”状态下,以1-2 s的刺激间隔(ISI)重复地对每个手指施加刺激。在连续四刺激列车中,零ISI和1-2 s介于列车之间。最后,在“间隙”条件下,像在连续条件下一样施加刺激,但ISI为50毫秒。在连续和间隙条件下,所有受试者都报告了手指间的触觉运动(数字2->数字5)。刺激发作后1 s内,皮质反应被提取为单个等效电流偶极子。在所有这三种情况下,在刺激发作后约20至50 ms观察到左初级体感皮层(SI)的初始反应,随后是次级体感皮层(SII)的其他左SI反应和双侧反应。另外,在连续和间隙条件下,中央前回被激活,其时间方面取决于所给予刺激的时间关系,如下所述。在第二次刺激后不久,ISI为0 ms导致中央前回的激活,而在第三次刺激后,ISI为50 ms导致中央前回的激活。目前的发现支持先前关于SI和SII中的时间活动模式的研究结果,验证了触觉运动感知过程中中央前回的参与,此外,还揭示了非相邻区域顺序感官刺激的整合方面以及时间活动模式在中央后和中央前回旋中。

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