Lee Barry B, Cooper Bonnie, Cao Dingcai
State University of New York, College of Optometry, NY 10036, NY, USA; Max Planck Institute for Biophysical Chemistry, D-37077 Göttingen, Germany.
State University of New York, College of Optometry, NY 10036, NY, USA.
Vision Res. 2018 Oct;151:141-151. doi: 10.1016/j.visres.2017.05.013. Epub 2017 Jul 19.
The receptive field structure of long (L) to middle (M) wavelength (L/M) cone-opponent ganglion cells of the parafoveal macaque retina was investigated using drifting gratings. Gratings were luminance, chromatic or selective for the L- or M-cones. Based on these spatial tuning curves, receptive field profiles for the individual cones were derived. Receptive field profiles were coarse compared to single cones, and often could not be described by a simple Gaussian, having shallower flanks. There was a continuum of spatial properties, which blurred any systematic distinction between Type I and Type II receptive fields. Opponent center-surround organization within a single cone was rare. Usually, responses to all four grating types could be described based on the cone receptive field profiles. An exception was a few cells that showed irregularities of amplitude and phase at high spatial frequencies for one or other of the cone isolating conditions. The data are related to standard models of M/L opponent receptive fields and implications for central processing are considered.
利用漂移光栅研究了恒河猴视网膜中央凹旁长(L)到中(M)波长(L/M)视锥细胞对立神经节细胞的感受野结构。光栅对L视锥细胞或M视锥细胞是亮度、颜色或选择性的。基于这些空间调谐曲线,得出了单个视锥细胞的感受野轮廓。与单个视锥细胞相比,感受野轮廓较为粗糙,通常不能用简单的高斯分布来描述,其侧翼较浅。存在一系列空间特性,模糊了I型和II型感受野之间的任何系统区别。单个视锥细胞内的对立中心-周边组织很少见。通常,基于视锥细胞感受野轮廓可以描述对所有四种光栅类型的反应。一个例外是少数细胞,在一种或另一种视锥细胞分离条件下,在高空间频率处表现出幅度和相位的不规则性。这些数据与M/L对立感受野的标准模型相关,并考虑了对中枢处理的影响。