Lehmann D, Skrandies W
Exp Brain Res. 1979 Mar 9;35(1):151-9. doi: 10.1007/BF00236791.
Scalp potential fields in human subjects were evoked by checkerboard reversals to the upper and lower hermiretinae, using 1.6 and 3.2 reversals/s. Averaged fields were sampled along a saggital midline row of electrodes (field profiles) in 20 subjects, and from a 47 electrode array (field maps) in five subjects. In five subjects, profile peaks and troughs between 84 and 128 ms latency resided within the recorded electrode row surrounded by lesser potential values, and thus met the evaluation criteria. Response latency defined as maximal voltage difference between two electrodes within the profiles was significantly shorter (medians 12 and 11 ms, respectively) for upper than for lower hemiretina stimuli at both frequencies. There was a significant difference between latencies to 3.2 and 1.6 stimuli/s in the upper but not in the lower hemiretina system, suggesting different system behavior of the two retinal halves. Pertinent anatomical, electrophysiological, and behavioral data are reviewed.
通过以1.6次/秒和3.2次/秒的频率将棋盘格图案在上下半视网膜之间反转,来诱发人类受试者的头皮电位场。在20名受试者中,沿着矢状中线电极排(场分布图)对平均场进行采样,在5名受试者中,从47电极阵列(场图)进行采样。在5名受试者中,潜伏期在84至128毫秒之间的分布图峰值和谷值位于记录电极排内,周围是较小的电位值,因此符合评估标准。在两个频率下,上半视网膜刺激的反应潜伏期(定义为分布图中两个电极之间的最大电压差)显著短于下半视网膜刺激(中位数分别为12毫秒和11毫秒)。上半视网膜系统中,对3.2次/秒和1.6次/秒刺激的潜伏期存在显著差异,而下半视网膜系统中则不存在,这表明两个视网膜半部的系统行为不同。文中对相关的解剖学、电生理学和行为学数据进行了综述。