Kulikowski J J, Vidyasagar T R
Exp Brain Res. 1986;64(1):5-18. doi: 10.1007/BF00238196.
Simple cells in the macaque striate cortex were tested with bars, edges and gratings. Spatial frequency tuning curves could be predicted from the spatial profiles plotted with bars and edges and the bandwidth could be evaluated more accurately by computing the mean from measured and predicted tuning curves. The results suggest that the mean relative spatial frequency bandwidth (delta f/fo) is nearly constant and of a moderate value. But at each optimal spatial frequency, cells with different bandwidths (about a factor of two) were recorded. The shapes of spatial response profiles resemble the corresponding spatial and spatial frequency characteristics of line and edge detectors evaluated psychophysically. Among the remaining cell types, concentric cells tend to be tuned to lower spatial frequencies and have broader bandwidths, whereas periodic cells prefer higher spatial frequencies and have narrower bandwidths. Thus the mean relative bandwidth tends to decrease significantly with spatial frequency (as required by a system of patch-by-patch Fourier analysis) only when cells with poor orientation selectivity and the non-linear silent periodic cells are included along with the simple cells. Simple cells, on their own, seem to form a quasi-linear contrast processing system which is more biased towards spatial accuracy than spatial frequency selectivity.
用条形、边缘和光栅对猕猴纹状皮层中的简单细胞进行了测试。空间频率调谐曲线可以从用条形和边缘绘制的空间轮廓中预测出来,并且通过计算测量的和预测的调谐曲线的平均值,可以更准确地评估带宽。结果表明,平均相对空间频率带宽(δf/fo)几乎是恒定的,且数值适中。但在每个最佳空间频率下,记录到了具有不同带宽(约为两倍)的细胞。空间响应轮廓的形状类似于通过心理物理学评估的线条和边缘检测器的相应空间和空间频率特征。在其余细胞类型中,同心圆细胞倾向于调谐到较低的空间频率且具有较宽的带宽,而周期性细胞则偏好较高的空间频率且具有较窄的带宽。因此,只有当将方向选择性差的细胞和非线性沉默周期性细胞与简单细胞一起包括在内时,平均相对带宽才会随着空间频率显著降低(如逐块傅里叶分析系统所要求的那样)。就其本身而言,简单细胞似乎形成了一个准线性对比度处理系统,该系统更偏向于空间精度而非空间频率选择性。