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Contribution of cone photoreceptors and post-receptoral mechanisms to the human photopic electroretinogram

机译:视锥细胞感光细胞和受体后机制对人类视神经视网膜电图的贡献

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摘要

We recorded the electroretinogram (ERG) from human subjects with normal vision, using ganzfeld stimulation in the presence of rod-suppressing blue background light. In families of responses to flashes of increasing intensity, we investigated features of both receptoral and post-receptoral origin. Firstly, we found that the oscillatory potentials (OPs, that have long been known to be post-receptoral) exhibited a time course that was invariant over a range of bright flash intensities. Secondly, we found that the photopic b-wave (which probably originates in cone ON bipolar cells) was most pronounced after test flashes of around 20 Td s, and could be suppressed either by increasing the test flash intensity or by applying a second flash after the test flash. We obtained estimates of the time course of the cone photoreceptor response using the paired-flash technique, in which an intense ‘probe’ flash was delivered at different times after a test flash. The response to the probe flash was recorded and, its amplitude was measured at early times after the probe flash. Estimates obtained in this way were of normalized amplitude, but could be scaled to an absolute amplitude by making an assumption about the level of probe-flash response that corresponded to complete suppression of photoreceptor current. For moderately bright test flashes the estimated cone photoreceptor response at early times coincided closely with the a-wave of the test flash ERG. However, the maximal size of this estimated response accounted for only about 70% of the peak a-wave amplitude in the case of bright flashes, and for an even smaller proportion after flashes of lower intensity, and we take this to indicate the existence of a third substantial post-receptoral contribution to the a-wave. For dim flashes, the time-to-peak of the cone response was around 15–20 ms, and for saturating flashes the dominant time constant of recovery was about 18 ms. The intensity dependence of the estimated cone response amplitude at fixed times followed an exponential saturation relation. We provide a comparison between our estimates of photoreceptor responses from human cones, and recent estimates from monkey cones obtained using related ERG approaches, and earlier single-cell measurements from isolated primate cones.
机译:我们在杆抑制蓝色背景光的存在下使用ganzfeld刺激记录了正常视力的人类受试者的视网膜电图(ERG)。在对强度增加的闪光的响应家族中,我们研究了受体起源和受体后起源的特征。首先,我们发现振荡电位(OPs,长期以来一直被认为是受体后的)表现出的时间过程在明亮的闪光强度范围内是不变的。其次,我们发现在约20 Td s的测试闪光后,明视b波(可能起源于圆锥ON双极电池)最明显,并且可以通过增加测试闪光强度或在测试后加第二次闪光来抑制它。测试闪光灯。我们使用配对闪光技术获得了锥体感光器响应时间过程的估计值,其中在测试闪光后的不同时间发出了强烈的“探针”闪光。记录对探针闪光的响应,并在探针闪光后的早期测量其幅度。以这种方式获得的估计值具有归一化的幅度,但可以通过假设与完全抑制光感受器电流相对应的探针闪光响应水平来将其缩放为绝对幅度。对于中等亮度的测试闪光,早期估计的视锥细胞感光反应与测试闪光ERG的a波非常吻合。但是,在明亮的闪光情况下,此估计响应的最大大小仅占峰值a波幅度的大约70%,而在强度较低的闪光后占比例甚至更小,我们以此来表明存在接收后对a波的第三次实质性贡献。对于暗淡闪光,锥形响应的峰值时间约为15–20 ms,对于饱和闪光,恢复的主要时间常数约为18 ms。在固定时间估计的锥响应幅度的强度依赖性遵循指数饱和关系。我们提供了我们对来自人类视锥细胞的感光细胞反应的估计值,与使用相关ERG方法获得的猴视锥细胞的最新估计值以及从孤立的灵长类视锥细胞进行的早期单细胞测量之间的比较。

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