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Modelling research on different types of retinal ganglion cells for the formation of irregular phosphenes

机译:不同类型视网膜神经节细胞形成不规则膦的建模研究

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According to some clinical reports, prosthesis implant recipients perceived some irregular phosphenes, a phenomenon that does not have a definite explanation. One hypothesis points to the unwanted activation of passing axons and the differences in responses of various types of retinal ganglion cells as the cause of irregular phosphenes. The objective of this paper was to study the responses of different types of retinal ganglion cells through model-based epiretinal stimulation research in order to support this hypothesis. In this paper, a retinal stimulation model and six types of retinal ganglion cell computational models were established. We investigated the responses of each type of retinal ganglion cell model under stimuli with different polarities and pulse durations. According to our results, different types of ganglion cell models had various responses to anodic stimuli. In addition, when a modelled ganglion cell was activated by a monophasic cathodic impulse with a longer pulse duration, the ratio of the threshold of the distal axon and the minimum threshold of a retinal ganglion cell decreased. As a result, it was easier to activate the passing axon using a stimulus with a longer pulse duration.
机译:根据一些临床报告,假体植入接受者感觉到一些不规则的膦,这种现象没有确切的解释。一种假说指出了传递轴突的不希望有的激活,以及各种类型的视网膜神经节细胞的反应差异是不规则膦的原因。本文的目的是通过基于模型的视网膜前刺激研究来研究不同类型的视网膜神经节细胞的反应,以支持这一假设。本文建立了视网膜刺激模型和六种类型的视网膜神经节细胞计算模型。我们研究了在不同极性和脉冲持续时间的刺激下每种类型的视网膜神经节细胞模型的反应。根据我们的结果,不同类型的神经节细胞模型对阳极刺激具有多种反应。另外,当通过更长的脉冲持续时间的单相阴极脉冲激活模拟的神经节细胞时,远端轴突的阈值与视网膜神经节细胞的最小阈值之比降低。结果,使用具有更长脉冲持续时间的刺激来激活经过的轴突更容易。

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