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44 通道脉络膜上视网膜假体的动态刺激的眼球运动反应。

Oculomotor Responses to Dynamic Stimuli in a 44-Channel Suprachoroidal Retinal Prosthesis.

机构信息

Bionics Institute, East Melbourne, Australia.

Medical Bionics Department, University of Melbourne, Melbourne, Australia.

出版信息

Transl Vis Sci Technol. 2020 Dec 18;9(13):31. doi: 10.1167/tvst.9.13.31. eCollection 2020 Dec.

Abstract

PURPOSE

To investigate oculomotor behavior in response to dynamic stimuli in retinal implant recipients.

METHODS

Three suprachoroidal retinal implant recipients performed a four-alternative forced-choice motion discrimination task over six sessions longitudinally. Stimuli were a single white bar ("moving bar") or a series of white bars ("moving grating") sweeping left, right, up, or down across a 42″ monitor. Performance was compared with normal video processing and scrambled video processing (randomized image-to-electrode mapping to disrupt spatiotemporal structure). Eye and head movement was monitored throughout the task.

RESULTS

Two subjects had diminished performance with scrambling, suggesting retinotopic discrimination was used in the normal condition and made smooth pursuit eye movements congruent to the moving bar stimulus direction. These two subjects also made stimulus-related eye movements resembling optokinetic reflex (OKR) for moving grating stimuli, but the movement was incongruent with stimulus direction. The third subject was less adept at the task, appeared primarily reliant on head position cues (head movements were congruent to stimulus direction), and did not exhibit retinotopic discrimination and associated eye movements.

CONCLUSIONS

Our observation of smooth pursuit indicates residual functionality of cortical direction-selective circuits and implies a more naturalistic perception of motion than expected. A distorted OKR implies improper functionality of retinal direction-selective circuits, possibly due to retinal remodeling or the non-selective nature of the electrical stimulation.

TRANSLATIONAL RELEVANCE

Retinal implant users can make naturalistic eye movements in response to moving stimuli, highlighting the potential for eye tracker feedback to improve perceptual localization and image stabilization in camera-based visual prostheses.

摘要

目的

研究视网膜植入物受者对动态刺激的眼球运动行为。

方法

三名脉络膜上视网膜植入物受者在六个疗程中进行了四次选择强制选择运动辨别任务。刺激物是一个单一的白色条(“移动条”)或一系列白色条(“移动光栅”)在 42 英寸的监视器上向左、向右、向上或向下扫动。性能与正常视频处理和乱序视频处理(随机图像到电极映射以破坏时空结构)进行了比较。在整个任务过程中监测眼和头的运动。

结果

两名受试者的乱序表现下降,表明在正常情况下使用了视网膜辨别,并使平滑追踪眼球运动与移动条刺激方向一致。这两名受试者还对移动光栅刺激做出了与光刺激反射(OKR)相似的刺激相关的眼球运动,但运动与刺激方向不一致。第三名受试者不太擅长这项任务,似乎主要依赖于头部位置线索(头部运动与刺激方向一致),并且没有表现出视网膜辨别和相关的眼球运动。

结论

我们对平滑追踪的观察表明,皮质方向选择性电路仍具有功能,这意味着对运动的感知比预期的更自然。扭曲的 OKR 意味着视网膜方向选择性电路功能不当,可能是由于视网膜重塑或电刺激的非选择性。

翻译相关性

视网膜植入物使用者可以对移动刺激做出自然的眼球运动,这突出了眼动跟踪反馈在基于相机的视觉假体中改善感知定位和图像稳定的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c10e/7757638/fc30afa13922/tvst-9-13-31-f001.jpg

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