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Non-linearities in the Rod and Cone Photoreceptor Inputs to the Afferent Pupil Light Response

机译:传入的瞳孔光响应的杆和锥感光器输入中的非线性

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摘要

>Purpose: To assess the nature and extent of non-linear processes in pupil responses using rod- and cone-isolating visual beat stimuli.>Methods: A four-primary photostimulating method based on the principle of silent substitution was implemented to generate rod or cone isolating and combined sinusoidal stimuli at a single component frequency (1, 4, 5, 8, or 9 Hz) or a 1 Hz beat frequency (frequency pairs: 4 + 5, 8 + 9 Hz). The component frequencies were chosen to minimize the melanopsin photoresponse of intrinsically photosensitive retinal ganglion cells (ipRGCs) such that the pupil response was primarily driven by outer retinal photoreceptor inputs. Full-field (Ganzfeld) pupil responses and electroretinograms (ERGs) were recorded to the same stimuli at two mesopic light levels (−0.9 and 0 log cd/m2). Fourier analysis was used to derive the amplitudes and phases of the pupil and ERG responses.>Results: For the beat frequency condition, when modulation was restricted to the same photoreceptor type at the higher mesopic level (0 log cd/m2), there was a pronounced pupil response to the 1 Hz beat frequency with the 4 + 5 Hz frequency pair and rare beat responses for the 8 + 9 Hz frequency pair. At the lower mesopic level there were few and inconsistent beat responses. When one component modulated the rod excitation and the other component modulated the cone excitation, responses to the beat frequency were rare and lower than the 1 Hz component frequency condition responses. These results were confirmed by ERG recordings.>Conclusions: There is non-linearity in both the pupil response and electroretinogram to rod and cone inputs at mesopic light levels. The presence of a beat response for modulation components restricted to a single photoreceptor type, but not for components with cross-photoreceptor types, indicates that the location of a non-linear process in the pupil pathway occurs at a retinal site earlier than where the rod and cone signals are combined, that is, at the photoreceptor level.
机译:>目的:使用视杆刺激和视锥隔离的视觉刺激来评估瞳孔反应中非线性过程的性质和程度。>方法:一种基于四基色光刺激的方法实施了无声替代原理,以单个分量频率(1、4、5、8或9 Hz)或1 Hz拍频(频率对:4 + 5)生成杆或锥隔离并组合正弦波刺激8 + 9 Hz)。选择分量频率以最小化固有光敏性视网膜神经节细胞(ipRGC)的黑色素视光反应,从而使瞳孔反应主要由外部视网膜光感受器输入驱动。在两个中视光水平(-0.9和0 log cd / m 2 )下,对相同的刺激记录了全场(Ganzfeld)瞳孔反应和视网膜电图(ERG)。 >结果:对于拍频条件,当调制被限制为在较高的中视水平(0 log cd时)被限制为相同的感光体类型时, / m 2 ),则对4 + 5 Hz频率对的1 Hz拍频有明显的瞳孔响应,而对8 + 9 Hz频率对的拍频响应则很少。在较低的中视水平,几乎没有和不一致的搏动反应。当一个分量调制杆激励而另一分量调制圆锥激励时,对拍频的响应很少,并且低于1 Hz分量频率条件响应。这些结果已通过ERG记录得到证实。>结论:在中视光水平下,对杆和视锥输入的瞳孔响应和视网膜电图均存在非线性。对于仅限于单个感光体类型的调制组件,但对于具有交叉感光体类型的组件,不存在节拍响应,这表明瞳孔路径中非线性过程的位置比视网膜棒提前发生在视网膜部位视锥细胞和视锥细胞的信号在感光体水平上被合并。

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