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人类视觉皮层中的周围抑制:一项使用脑磁图的分析。

Surround suppression in the human visual cortex: an analysis using magnetoencephalography.

作者信息

Ohtani Yoshio, Okamura Shoichi, Yoshida Yoshikazu, Toyama Keisuke, Ejima Yoshimichi

机构信息

Faculty of Engineering and Design, Kyoto Institute of Technology, Matsugasaki, Sakyo-ku, 606-8585, Kyoto, Japan.

出版信息

Vision Res. 2002 Jul;42(15):1825-35. doi: 10.1016/s0042-6989(02)00103-7.

Abstract

The responses of neurons in the primate and cat primary visual cortices (V1s) to the stimuli within their classical receptive fields (CRFs) are markedly suppressed by the surrounding stimuli outside CRFs. In the present study, we show that a similar suppressive effect occurs for visually evoked magnetic responses in the human visual cortex. The initial peak amplitude of the magnetic response (at a latency of around 90 ms) to a test grating accompanied by high-contrast surround gratings was smaller than that for the test without the surround. Current source localization with a single dipole model indicated that the initial response originated from cortical activity near the occipital pole in the contralateral hemisphere to the visual stimulation. The peak amplitude for the test decreased with increasing surround contrast, and increased with increasing test contrast. The contrast dependence and the early development of the surround suppression were in agreement with the results of the V1 single-cell studies of monkeys and cats. We suggest that the surround suppression of the initial peak amplitude of the magnetic response may be ascribed to the inhibition of the neural activity at the early processing stage(s), presumably at V1, in the human visual cortex.

摘要

灵长类动物和猫的初级视觉皮层(V1)中的神经元对其经典感受野(CRF)内的刺激的反应,会被CRF外的周围刺激显著抑制。在本研究中,我们表明人类视觉皮层中视觉诱发的磁反应也会出现类似的抑制效应。与高对比度周围光栅相伴的测试光栅的磁反应的初始峰值幅度(潜伏期约为90毫秒),比没有周围光栅时的测试光栅的初始峰值幅度小。用单偶极子模型进行的电流源定位表明,初始反应起源于对侧半球枕极附近的皮层活动,该半球接受视觉刺激。测试的峰值幅度随着周围对比度的增加而降低,随着测试对比度的增加而增加。周围抑制的对比度依赖性和早期发展与猴子和猫的V1单细胞研究结果一致。我们认为,磁反应初始峰值幅度的周围抑制可能归因于早期处理阶段(可能是在人类视觉皮层的V1)神经活动的抑制。

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