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简单细胞对马赫带刺激的非线性反应:来自早期单眼剥夺猫的证据。

Nonlinear responses of simple cells to Mach band stimuli: evidence from early monocularly deprived cats.

作者信息

Syrkin G, Yinon U, Gur M

机构信息

Physiological Laboratory, Maurice and Gabriela Goldschleger Eye Research Institute, Tel Aviv University Sackler Faculty of Medicine, Chaim Sheba Medical Center, Tel Hashomer, Israel.

出版信息

Exp Brain Res. 1996 Jul;110(2):212-22. doi: 10.1007/BF00228553.

Abstract

We have previously shown that, cat simple cells respond linearly to edges of variable blur widths: cells with receptive fields (RFs) of even symmetry respond better to a luminance ramp (where Mach bands are observed); cells with RFs of odd symmetry respond better to a luminance step (where no Mach bands are perceived). Our evidence has also indicated the existence of inhibitory interaction between cells with RFs of even and odd symmetry as predicted by the Tolhurst-Ratliff Mach band model. Since monocular deprivation is known to impair cortical inhibitory mechanisms, we studied the responses of simple cells of adult cats monocularly deprived at the age of 8-10 weeks to Mach band stimuli in order to delineate specific changes in inhibitory interactions caused by monocular deprivation. In pattern-deprived cats, particularly for cells driven by the deprived eye, there were many cells that responded contrary to linear models: odd-symmetric cells responded maximally to blurred edges while even-symmetric cells responded maximally to sharp edges. Cells that responded maximally as predicted, responded, similarly to normal cat cells, less than expected at suboptimal widths. All cells in normal and light-deprived cats responded in a linear fashion to sinusoidal stimuli. We conclude, therefore, that intracortical inhibition shapes simple cells' responses to edges. Monocular deprivation impairs this mechanism, thus causing simple cells in monocularly deprived cats to respond nonlinearly to edges. All simple cells responded linearly to gratings since it is not the linear spatiotemporal RF of these simple cells that was impaired under monocular deprivation.

摘要

我们之前已经表明,猫的简单细胞对可变模糊宽度的边缘呈线性反应:具有偶数对称感受野(RFs)的细胞对亮度斜坡(可观察到马赫带的地方)反应更好;具有奇数对称RFs的细胞对亮度阶跃(无法感知马赫带的地方)反应更好。我们的证据还表明,如托尔赫斯特 - 拉特利夫马赫带模型所预测的,具有偶数和奇数对称RFs的细胞之间存在抑制性相互作用。由于已知单眼剥夺会损害皮质抑制机制,我们研究了8 - 10周龄时单眼剥夺的成年猫的简单细胞对马赫带刺激的反应,以描绘单眼剥夺引起的抑制性相互作用的具体变化。在模式剥夺的猫中,特别是对于由剥夺眼驱动的细胞,有许多细胞的反应与线性模型相反:奇数对称细胞对模糊边缘反应最大,而偶数对称细胞对锐利边缘反应最大。按预期最大反应的细胞,与正常猫细胞类似,在次优宽度下反应小于预期。正常和轻度剥夺猫中的所有细胞对正弦刺激呈线性反应。因此,我们得出结论,皮质内抑制塑造了简单细胞对边缘的反应。单眼剥夺会损害这种机制,从而导致单眼剥夺猫中的简单细胞对边缘做出非线性反应。所有简单细胞对光栅呈线性反应,因为在单眼剥夺下受损的并非这些简单细胞的线性时空RF。

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