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对猫背外侧膝状核中作为模式和闪烁探测器的X细胞和Y细胞的电生理评估。

An electrophysiological assessment of X and Y cells as pattern and flicker detectors in the dorsal lateral geniculate nucleus of the cat.

作者信息

Frascella J, Lehmkuhle S

出版信息

Exp Brain Res. 1984;55(1):117-26. doi: 10.1007/BF00240505.

Abstract

We tested the hypothesis that geniculate X cells are the neural substrate of psychophysically identified pattern channels and that geniculate Y cells are the neural substrate of psychophysically identified flicker channels. The hypothesis was tested by measuring the relative sensitivity of isolated X and Y cells in the dorsal lateral geniculate nucleus of the cat to counterphase and on-off grating presentations. The fundamental and second harmonic responses of X and Y cells to sinusoidal counterphase and on-off temporal modulation were measured at a number of spatial frequencies using two contrasts, 0.1 and 0.4. The fundamental responses of both X and Y cells to sinusoidal counterphase were greater relative to on-off responses. The second harmonic responses of Y cells to counterphase were larger at high spatial frequencies. Contrast sensitivity also was measured. At all spatial frequencies, both X and Y cells were slightly more sensitive to counterphase than to on-off presentations. Since flicker sensitivity in humans is twice as high for counterphase as for on-off presentations across all spatial frequencies, whereas pattern sensitivity is equal for the two presentations, we conclude that X and Y cells do not subserve uniquely pattern and flicker sensitivity, respectively. This conclusion is based on the result that differences between X and Y cells to counterphase and on-off presentations were inconsistent with the differences observed for pattern and flicker sensitivity. We suggest then that a spatial/temporal dichotomy does not seem to accurately characterize the functional roles of X and Y cells.

摘要

我们检验了以下假设

膝状X细胞是心理物理学确定的模式通道的神经基质,膝状Y细胞是心理物理学确定的闪烁通道的神经基质。通过测量猫背外侧膝状核中分离出的X细胞和Y细胞对反相和开-关光栅呈现的相对敏感性来检验该假设。使用0.1和0.4两种对比度,在多个空间频率下测量了X细胞和Y细胞对正弦反相和开-关时间调制的基波和二次谐波响应。相对于开-关响应,X细胞和Y细胞对正弦反相的基波响应都更大。Y细胞对反相的二次谐波响应在高空间频率下更大。还测量了对比度敏感性。在所有空间频率下,X细胞和Y细胞对反相的敏感性都略高于对开-关呈现的敏感性。由于在所有空间频率上,人类对反相闪烁的敏感性是对开-关呈现的两倍,而两种呈现的模式敏感性相同,我们得出结论,X细胞和Y细胞并非分别专门负责模式和闪烁敏感性。这一结论基于以下结果:X细胞和Y细胞对反相和开-关呈现的差异与模式和闪烁敏感性所观察到的差异不一致。因此,我们认为空间/时间二分法似乎不能准确地描述X细胞和Y细胞的功能作用。

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