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猫背外侧膝状核中的双眼处理。III. 非优势眼影响的空间频率、方向和方向敏感性。

Binocular processing in the cat's dorsal lateral geniculate nucleus. III. Spatial frequency, orientation, and direction sensitivity of nondominant-eye influences.

作者信息

Moore R J, Spear P D, Kim C B, Xue J T

机构信息

Department of Psychology, University of Wisconsin, Madison 53706.

出版信息

Exp Brain Res. 1992;89(3):588-98. doi: 10.1007/BF00229884.

Abstract

The present experiments examined the extent to which binocular processing in the cat's dorsal lateral geniculate nucleus (LGN) depends upon the spatial frequency, orientation, and direction of movement of stimuli presented to the nondominant eye. In Experiment 1, we tested the effects of varying these stimulus parameters on the responses of LGN cells to nondominant-eye stimulation. Sixteen of 34 cells tested had statistically significant responses to the nondominant eye and, in agreement with a previous study (Guido et al. 1989), the responsive cells were spatial-frequency sensitive. However, there was little evidence for orientation or direction sensitivity in responses to the nondominant eye: changes in discharge with changes in stimulus orientation and direction were small and were statistically significant in only nine of the cells. In Experiment 2, we tested the effects of varying spatial frequency, orientation, and direction of movement of stimuli presented to the nondominant eye on its ability to influence responses to the dominant eye (i.e., on binocular interactions). The dominant eye was stimulated with the optimal spatial frequency for the cell being tested. For 22 of 45 cells tested, nondominant-eye stimulation had a statistically significant effect on the response to the dominant eye. Fourteen of these cells showed band-pass spatial-frequency sensitivity in the nondominant-eye influence, and eight showed low-pass spatial-frequency sensitivity. However, only 11 of the cells had statistically significant variations in their binocular interactions that depended on the orientation or direction of stimuli presented to the nondominant eye. Furthermore, even for those cells, the effect of varying orientation and direction was only about half as strong as the effect of varying spatial frequency. We conclude that binocular processing in the LGN, including responses to the nondominant eye and nondominant-eye influences on responses to the dominant eye, are affected significantly by the spatial frequency of the nondominant-eye stimulus and relatively little by stimulus orientation or direction of movement. The significance of these findings for understanding the functions of LGN binocular processing is discussed.

摘要

本实验研究了猫背外侧膝状核(LGN)中的双眼处理在多大程度上依赖于呈现给非优势眼的刺激的空间频率、方向和运动方向。在实验1中,我们测试了改变这些刺激参数对LGN细胞对非优势眼刺激的反应的影响。在测试的34个细胞中,有16个对非优势眼有统计学上显著的反应,并且与先前的一项研究(Guido等人,1989年)一致,反应性细胞对空间频率敏感。然而,几乎没有证据表明对非优势眼的反应存在方向或方向敏感性:随着刺激方向和方向的变化,放电变化很小,并且仅在9个细胞中具有统计学显著性。在实验2中,我们测试了改变呈现给非优势眼的刺激的空间频率、方向和运动方向对其影响优势眼反应的能力(即双眼相互作用)的影响。用测试细胞的最佳空间频率刺激优势眼。在测试的45个细胞中,有22个细胞,非优势眼刺激对优势眼的反应有统计学上显著的影响。其中14个细胞在非优势眼影响中表现出带通空间频率敏感性,8个表现出低通空间频率敏感性。然而,只有11个细胞在其双眼相互作用中具有统计学上显著的变化,这取决于呈现给非优势眼的刺激的方向或方向。此外,即使对于那些细胞,改变方向和方向的影响也仅约为改变空间频率影响的一半。我们得出结论,LGN中的双眼处理,包括对非优势眼的反应以及非优势眼对优势眼反应的影响,受到非优势眼刺激的空间频率的显著影响,而受刺激方向或运动方向的影响相对较小。讨论了这些发现对于理解LGN双眼处理功能的意义。

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