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Comparative investigation of stimulus-evoked rod outer segment movement and retinal electrophysiological activity

机译:刺激诱发的杆外节运动与视网膜电生理活动的比较研究

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Transient retinal phototropism (TRP) has been observed in rod photoreceptors activated by oblique visible light flashes. Time-lapse confocal microscopy and optical coherence tomography (OCT) revealed rod outer segment (ROS) movements as the physical source of TRP. However, the physiological source of TRP is still not well understood. In this study, concurrent TRP and electroretinogram (ERG) measurements disclosed a remarkably earlier onset time of the ROS movements (≤10 ms) than that (~38 ms) of the ERG a-wave. Furthermore, low sodium treatment reversibly blocked the photoreceptor ERG a-wave, which is known to reflect hyperpolarization of retinal photoreceptors, but preserved the TRP associated rod OS movements well. Our experimental results and theoretical analysis suggested that the physiological source of TRP might be attributed to early stages of phototransduction, before the hyperpolarization of retinal photoreceptors.
机译:在由倾斜的可见光闪光激活的棒状光感受器中观察到短暂性视网膜光凝性(TRP)。延时共聚焦显微镜和光学相干断层扫描(OCT)揭示了杆外段(ROS)的运动是TRP的物理来源。然而,TRP的生理来源仍未得到很好的理解。在这项研究中,同时进行的TRP和视网膜电图(ERG)测量显示,ROS运动的开始时间(≤10ms)比ERG a波的发生时间(〜38 ms)显着更早。此外,低钠治疗可逆地阻断了感光器ERG a波,已知这反映了视网膜感光器的超极化,但很好地保留了与TRP相关的杆OS运动。我们的实验结果和理论分析表明,TRP的生理来源可能归因于视网膜光感受器超极化之前的光转导的早期阶段。

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