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A linear chromatic mechanism drives the pupillary response.

机译:线性彩色机制驱动瞳孔反应。

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摘要

Previous studies have shown that a chromatic mechanism can drive pupil responses. The aim of this research was to clarify whether a linear or nonlinear chromatic mechanism drives pupillary responses by using test stimuli of various colours that are defined in cone contrast space. The pupil and accommodation responses evoked by these test stimuli were continuously and simultaneously objectively measured by photorefraction. The results with isochromatic and isoluminant stimuli showed that the accommodative level remained approximately constant (< 0.25 D change in mean level) even when the concurrent pupillary response was large (ca. 0.30 mm). The pupillary response to an isoluminant grating was sustained, delayed (by ca. 60 ms) and larger in amplitude than that for a isochromatic uniform stimulus, which supports previous work suggesting that the chromatic mechanism contributes to the pupillary response. In a second experiment, selected chromatic test gratings were used and isoresponse contours in cone contrast space were obtained. The results showed that the isoresponse contour in cone contrast space is well described (r(2) = 0.99) by a straight line with a positive slope. The results indicate that a /L - M/ linear chromatic mechanism, whereby a signal from the long wavelength cone is subtracted from that of the middle wavelength cone and vice versa, drives pupillary responses.
机译:先前的研究表明,色度机制可以驱动瞳孔反应。这项研究的目的是通过使用锥形对比空间中定义的各种颜色的测试刺激来阐明线性或非线性色度机制是驱动瞳孔反应。这些测试刺激引起的瞳孔和适应性反应通过光折射连续而同时客观地测量。等色和等光源刺激的结果表明,即使同时发生的瞳孔反应较大(约0.30 mm),调节水平仍保持大致恒定(平均水平变化<0.25 D)。与等色均匀刺激相比,对等光源光栅的瞳孔反应得以持续,延迟(约60 ms)并且幅度更大,这支持先前的工作,表明色度机制有助于瞳孔反应。在第二个实验中,使用了选定的彩色测试光栅,并获得了锥形对比空间中的等响应轮廓。结果表明,圆锥形对比空间中的等响应线轮廓由具有正斜率的直线很好地描述了(r(2)= 0.99)。结果表明,/ L-M /线性色度机制会驱动瞳孔响应,从而从中波长锥体的信号中减去长波长锥体的信号,反之亦然。

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