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首页> 外文期刊>Journal of the Neurological Sciences: Official Bulletin of the World Federation of Neurology >Visual evoked cortical magnetic responses to checkerboard pattern reversal stimulation: a study on the neural generators of N75, P100 and N145.
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Visual evoked cortical magnetic responses to checkerboard pattern reversal stimulation: a study on the neural generators of N75, P100 and N145.

机译:视觉诱发的皮质磁对棋盘图案反转刺激的反应:对N75,P100和N145的神经生成器的研究。

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摘要

In an attempt to elucidate the neural generators of pattern reversal visual evoked potentials (PR-VEPs), we measured the visual evoked magnetic fields (PR-VEFs) using a 37-channel magnetoencephalography in six healthy young adults. A half-field checkerboard pattern was phase-reversed at a rate of 1 Hz to stimulate the right or left visual half-field, thus yielding 12 PR-VEFs in total from the six subjects. The simultaneously recorded scalp PR-VEPs showed three distinct components of N75, P100 and N145. Three corresponding components were also identified in the PR-VEFs with similar peak latencies (N75m, P100m and N145m). P100m and N145m were clearly identified in all 12 PR-VEFs, whereas N75m was observed in only nine of 12 PR-VEFs. The equivalent current dipoles (ECDs) of N75m, P100m and N145m were located closely to each other in the occipital cortex around the calcarine fissure contralateral to the stimulated visual field, when they were overlaid on the MRI. The reliability of dipole estimation was highest in P100m, followed by N145m while N75m showed the least reliability. The direction of the current flow of ECDs of N75m and N145m was from the medial to the lateral in the occipital cortex when viewed in a coronal section, whereas that for P100m was toward the medial. The ECD location of P100m changed according to the retinotopic organization when the upper or lower quadrant of the visual field was stimulated, with the ECDs being located in the lower or upper part, respectively, of the visual cortex. Our results therefore indicate that the neural origins of N75m, P100m and N145m of PR-VEFs are in the primary visual cortex on the contralateral side of the stimulated visual half-field, while the three components are physiologically distinct.
机译:为了阐明模式反转视觉诱发电位(PR-VEP)的神经源,我们使用37通道磁脑电图在6位健康的年轻人中测量了视觉诱发磁场(PR-VEF)。半场棋盘格模式以1 Hz的频率反转,以刺激左右视觉半场,从而从六个对象中总共产生12个PR-VEF。同时记录的头皮PR-VEPs显示出N75,P100和N145的三个不同成分。在PR-VEF中还发现了三个相应的成分,它们具有相似的峰值延迟(N75m,P100m和N145m)。在所有12个PR-VEF中清楚地识别出P100m和N145m,而在12个PR-VEF中只有9个观察到N75m。当将N75m,P100m和N145m的等效电流偶极(ECD)重叠在MRI上时,它们位于枕骨裂痕周围与刺激视力相对的枕骨皮质中,彼此靠近。 P100m偶极子估计的可靠性最高,其次是N145m,而N75m的可靠性最低。当在冠状截面中观察时,N75m和N145m的ECD的电流方向是从枕骨内侧到外侧,而P100m的方向是朝向内侧。当刺激视野的上象限或下象限时,P100m的ECD位置根据视网膜组织而变化,ECD分别位于视皮层的下部或上部。因此,我们的结果表明PR-VEF的N75m,P100m和N145m的神经起源是在受刺激的视觉半场对侧的主要视觉皮层中,而这三个成分在生理上是不同的。

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