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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Optophysiology: Depth-resolved probing of retinal physiology with functional ultrahigh-resolution optical coherence tomography
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Optophysiology: Depth-resolved probing of retinal physiology with functional ultrahigh-resolution optical coherence tomography

机译:光学生理学:使用功能性超高分辨率光学相干断层扫描技术深度解析视网膜生理学

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摘要

Noncontact, depth-resolved, optical probing of retinal response to visual stimulation with a < 10-mu m spatial resolution, achieved by using functional ultrahigh-resolution optical coherence tomography (fUHROCT), is demonstrated in isolated rabbit retinas. The method takes advantage of the fact that physiological changes in dark-adapted retinas caused by light stimulation can result in local variation of the tissue reflectivity. fUHROCT scans were acquired from isolated retinas synchronously with electrical recordings before, during, and after light stimulation. Pronounced stimulus-related changes in the retinal reflectivity profile were observed in the inner/outer segments of the photoreceptor layer and the plexiform layers. Control experiments (e.g., dark adaptation vs. light stimulation), pharmacological inhibition of photoreceptor function, and synaptic transmission to the inner retina confirmed that the origin of the observed optical changes is the altered physiological state of the retina evoked by the light stimulus. We have demonstrated that fUHROCT allows for simultaneous, non-invasive probing of both retinal morphology and function, which could significantly improve the early diagnosis of various ophthalmic pathologies and could lead to better understanding of pathogenesis.
机译:通过使用功能性超高分辨率光学相干断层扫描(fUHROCT)实现了对视网膜响应小于10微米空间分辨率的视觉刺激的非接触式深度分辨光学探测,该实验在孤立的兔视网膜中进行。该方法利用以下事实:由光刺激引起的暗适应视网膜的生理变化可导致组织反射率的局部变化。在光刺激之前,期间和之后,从孤立的视网膜与电记录同步获取fUHROCT扫描。在感光层和丛状层的内/外节段中观察到了视网膜反射率分布中与刺激有关的明显变化。对照实验(例如,黑暗适应与光刺激),光感受器功能的药理学抑制以及突触向内视网膜的传递证实,所观察到的光学变化的起源是由光刺激引起的视网膜生理状态的改变。我们已经证明fUHROCT允许同时,非侵入性地探测视网膜形态和功能,这可以显着改善各种眼科病理的早期诊断,并可以更好地理解发病机理。

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