Waleszczyk Wioletta J, Nagy Attila, Wypych Marek, Berényi Antal, Paróczy Zsuzsanna, Eördegh Gabriella, Ghazaryan Anaida, Benedek György
Department of Neurophysiology, Nencki Institute of Experimental Biology, 3 Pasteur St., 02-093, Warsaw, Poland.
Exp Brain Res. 2007 Jul;181(1):87-98. doi: 10.1007/s00221-007-0908-1. Epub 2007 Mar 13.
The spatio-temporal frequency response profiles of 73 neurons located in the superficial, retino-recipient layers of the feline superior colliculus (SC) were investigated. The majority of the SC cells responded optimally to very low spatial frequencies with a mean of 0.1 cycles/degree (c/deg). The spatial resolution was also low with a mean of 0.31 c/deg. The spatial frequency tuning functions were either low-pass or band-pass with a mean spatial frequency bandwidth of 1.84 octaves. The cells responded optimally to a range of temporal frequencies between 0.74 cycles/s (c/s) and 26.41 c/s with a mean of 6.84 c/s. The majority (68%) of the SC cells showed band-pass temporal frequency tuning with a mean temporal frequency bandwidth of 2.4 octaves, while smaller proportions of the SC units displayed high-pass (19%), low-pass (8%) or broad-band (5%) temporal tuning. Most of the SC units exhibited simple spectral tuning with a single maximum in the spatio-temporal frequency domain, while some neurons were tuned for spatial or temporal frequencies or speed tuned. Further, we found cells excited by gratings moving at high temporal and low spatial frequencies and cells whose activity was suppressed by high velocity movement. The spatio-temporal filter properties of the SC neurons show close similarities to those of their retinal Y and W inputs as well as those of their inputs from the cortical visual motion detector areas, suggesting their common role in motion analysis and related behavioral actions.
研究了位于猫上丘(SC)浅层视网膜接受层的73个神经元的时空频率响应特性。大多数SC细胞对非常低的空间频率反应最佳,平均为0.1周/度(c/deg)。空间分辨率也很低,平均为0.31 c/deg。空间频率调谐函数为低通或带通,平均空间频率带宽为1.84倍频程。这些细胞对0.74周/秒(c/s)至26.41 c/s范围内的一系列时间频率反应最佳,平均为6.84 c/s。大多数(68%)的SC细胞表现出带通时间频率调谐,平均时间频率带宽为2.4倍频程,而较小比例的SC单元表现出高通(19%)、低通(8%)或宽带(5%)时间调谐。大多数SC单元在时空频率域表现出简单的频谱调谐,有一个单一的最大值,而一些神经元则对空间或时间频率进行调谐或速度调谐。此外,我们发现细胞被高时间和低空间频率移动的光栅所兴奋,以及其活动被高速运动所抑制的细胞。SC神经元的时空滤波特性与其视网膜Y和W输入以及来自皮层视觉运动检测区域的输入非常相似,这表明它们在运动分析和相关行为动作中具有共同作用。