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使用脉络膜上视网膜假体引发的光幻视现象

The Appearance of Phosphenes Elicited Using a Suprachoroidal Retinal Prosthesis.

作者信息

Sinclair Nicholas C, Shivdasani Mohit N, Perera Thushara, Gillespie Lisa N, McDermott Hugh J, Ayton Lauren N, Blamey Peter J

机构信息

Bionics Institute, East Melbourne, Australia.

Bionics Institute, East Melbourne, Australia 2Department of Medical Bionics, The University of Melbourne, Carlton, Australia.

出版信息

Invest Ophthalmol Vis Sci. 2016 Sep 1;57(11):4948-4961. doi: 10.1167/iovs.15-18991.

Abstract

PURPOSE

Phosphenes are the fundamental building blocks for presenting meaningful visual information to the visually impaired using a bionic eye device. The aim of this study was to characterize the size, shape, and location of phosphenes elicited using a suprachoroidal retinal prosthesis.

METHODS

Three patients with profound vision loss due to retinitis pigmentosa were implanted with a suprachoroidal electrode array, which was used to deliver charge-balanced biphasic constant-current pulses at various rates, amplitudes, and durations to produce phosphenes. Tasks assessing phosphene appearance, location, overlap, and the patients' ability to recognize phosphenes were performed using a custom psychophysics setup.

RESULTS

Phosphenes were reliably elicited in all three patients, with marked differences in the reported appearances between patients and between electrodes. Phosphene shapes ranged from simple blobs to complex forms with multiple components in both space and time. Phosphene locations within the visual field generally corresponded to the retinotopic position of the stimulating electrodes. Overlap between phosphenes elicited from adjacent electrodes was observed with one patient, which reduced with increasing electrode separation. In a randomized recognition task, two patients correctly identified the electrode being stimulated for 57.2% and 23% of trials, respectively.

CONCLUSIONS

Phosphenes of varying complexity were successfully elicited in all three patients, indicating that the suprachoroidal space is an efficacious site for electrically stimulating the retina. The recognition scores obtained with two patients suggest that a suprachoroidal implant can elicit phosphenes containing unique information. This information may be useful when combining phosphenes into more complex and meaningful images that provide functional vision.

摘要

目的

光幻视是使用仿生眼设备向视力受损者呈现有意义视觉信息的基本组成部分。本研究的目的是描述使用脉络膜上视网膜假体引发的光幻视的大小、形状和位置。

方法

三名因色素性视网膜炎导致严重视力丧失的患者植入了脉络膜上电极阵列,该电极阵列用于以不同的速率、幅度和持续时间输送电荷平衡的双相恒流脉冲以产生光幻视。使用定制的心理物理学装置进行评估光幻视外观、位置、重叠以及患者识别光幻视能力的任务。

结果

在所有三名患者中均可靠地引发了光幻视,患者之间以及电极之间报告的外观存在明显差异。光幻视的形状范围从简单的斑点到在空间和时间上具有多个成分的复杂形式。视野内光幻视的位置通常对应于刺激电极的视网膜定位。一名患者观察到相邻电极引发的光幻视之间存在重叠,随着电极间距增加重叠减少。在一项随机识别任务中,两名患者分别在57.2%和23%的试验中正确识别了被刺激的电极。

结论

在所有三名患者中均成功引发了不同复杂程度的光幻视,表明脉络膜上空间是电刺激视网膜的有效部位。两名患者获得的识别分数表明,脉络膜上植入物可以引发包含独特信息的光幻视。当将光幻视组合成提供功能性视力的更复杂和有意义的图像时,这些信息可能会有用。

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