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空间频率对瞬态和稳态视觉诱发电位的影响:使用棋盘格、方波光栅和正弦光栅图案进行刺激。

Effect of spatial frequency on transient and steady-state VEPs: stimulation with checkerboard, square-wave grating and sinusoidal grating patterns.

作者信息

Tobimatsu S, Kurita-Tashima S, Nakayama-Hiromatsu M, Kato M

机构信息

Department of Clinical Neurophysiology, Faculty of Medicine, Kyushu University, Fukuoka, Japan.

出版信息

J Neurol Sci. 1993 Aug;118(1):17-24. doi: 10.1016/0022-510x(93)90239-u.

Abstract

We recorded VEPs to the alteration of checkerboard, square-wave grating and sinusoidal grating patterns to evaluate the contribution of the fundamental spatial frequency and higher harmonic components in 12 normal subjects. Their fundamental spatial frequencies were equated and ranged from 0.5 to 8.0 c/deg. Both the transient VEP (T-VEP) and steady-state VEP (S-VEP) were obtained. The latency and amplitude of P100 of T-VEPs were measured. S-VEPs were Fourier analyzed, and phase and amplitude of the second harmonic response were measured. The mean P100 latency and the mean phase had a U-shaped function with a peak at a fundamental spatial frequency of 2.0 c/deg irrespective of the stimulus patterns, while the mean P100 amplitude and the mean amplitude of S-VEPs did not show such spatial selectivity. At low and medium spatial frequencies, differences in P100 latency, phase and amplitude between pattern types were more pronounced. However, this difference became insignificant at high spatial frequencies. These results indicate that VEP responses are predominantly determined by the fundamental spatial frequency, and that the contribution of higher harmonics to VEP responses is not negligible. Our results are consistent with the concept that the human visual system may use spatial frequency-domain information.

摘要

我们记录了12名正常受试者对棋盘格、方波光栅和正弦光栅图案变化的视觉诱发电位(VEP),以评估基本空间频率和更高谐波成分的作用。它们的基本空间频率相等,范围为0.5至8.0周/度。同时获得了瞬态VEP(T-VEP)和稳态VEP(S-VEP)。测量了T-VEP的P100潜伏期和波幅。对S-VEP进行傅里叶分析,并测量二次谐波响应的相位和波幅。无论刺激图案如何,平均P100潜伏期和平均相位都呈现U形函数,在基本空间频率为2.0周/度时达到峰值,而平均P100波幅和S-VEP的平均波幅并未表现出这种空间选择性。在低空间频率和中等空间频率下,不同图案类型之间P100潜伏期、相位和波幅的差异更为明显。然而,在高空间频率下这种差异变得不显著。这些结果表明,VEP反应主要由基本空间频率决定,并且更高谐波对VEP反应的贡献不可忽略。我们的结果与人类视觉系统可能使用空间频率域信息这一概念一致。

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