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Responses of neurones of the rat suprachiasmatic nucleus to retinal illumination under photopic and scotopic conditions

机译:视和暗视条件下大鼠视交叉上神经核神经元对视网膜照明的反应

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摘要

class="enumerated" style="list-style-type:decimal">We have examined the responses of neurones in the suprachiasmatic nuclei (SCN) of the rat to retinal illumination under photopic and scotopic conditions to identify the types of photoreceptor input to these nuclei.The majority of visually responsive SCN neurones studied under dark adaptation received rod input (48 of 52, 92 %). The action spectrum conformed to the sensitivity of rhodopsin, with maximal sensitivity at around 505 nm.When also studied under light adaptation, most visually responsive SCN neurones (20 out of 26, 77 %) responded to input from cones. The action spectra conformed to the spectrum of green cone opsin, with a main sensitivity peak at 510 nm and a significant secondary peak in the near-ultraviolet region of the spectrum.The frequency of spontaneous activity was typically low under scotopic conditions (range 0.2–17.2 Hz) and higher under photopic conditions (range 0.6–40 Hz) for any given neurone. The most common response under scotopic conditions was an ‘on-excitation’ (32 of 48, 62.5 %), which changed under photopic conditions to an on-excitation followed by a more prominent off-inhibition.Responses also changed due to endogenous ultradian cycles. Depending on the phase, responses could be altogether absent and even reverted from excitation to inhibition on opposite phases of a cycle. Ultradian cycles had a circadian dependence and were most common at around the light phase:dark phase (L:D) and D:L transition points of the circadian cycle.Under photopic conditions, SCN neurones showed rhythmic electrical activity, with a preferred firing interval that had a value between 18 and 39 ms. This rhythmic activity was probably the result of endogenous subthreshold membrane potential oscillations.In conclusion, light acting either via rod or cone pathways could have powerful, opposing actions on SCN neurones. These actions were state dependent. The presence of these neuronal responses suggests a role for rod and cone photoreceptors in SCN function.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 我们已经检查了大鼠视交叉上核(SCN)中的神经元在明视和暗视条件下对视网膜照明的反应,以识别输入到这些核的感光细胞的类型。 大多数视觉响应性SCN神经元在暗适应下进行的研究收到了棒的输入(52 of 48,92%)。作用谱符合视紫红质的敏感性,在505 nm处具有最大敏感性。 在光适应下进行研究时,大多数视觉响应的SCN神经元(26个中的20个,占77%)对来自视锥细胞。作用谱符合绿色视锥蛋白的光谱,在光谱的近紫外区域有一个主灵敏度峰,在510nm处有一个明显的次要峰。 自发活动的频率通常很低对于任何给定的神经元,在暗视条件下(范围为0.2–17.2 Hz),在明视条件下(范围为0.6–40 Hz)更高。在暗视条件下,最常见的反应是“激发”(48个反应中的32个,占62.5%),在明视条件下变为“激发”,然后出现更明显的抑制作用。 反应由于内生的超循环,也发生了变化。根据阶段的不同,可能完全不存在响应,甚至可能在循环的相反阶段从激励恢复为抑制。 Ultradian周期具有昼夜节律依赖性,且最常见于昼夜周期的亮相:暗相(L:D)和D:L过渡点。 在明视条件下,SCN神经元表现出节律性电性活动时间,首选触发间隔的值介于18到39 ms之间。这种节律性活动可能是内源性亚阈值膜电位振荡的结果。 总而言之,通过杆或锥途径传播的光可能对SCN神经元产生强大而相反的作用。这些动作取决于状态。这些神经元反应的存在表明杆状和锥状感光体在SCN功能中起作用。

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