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Prosthetic Visual Acuity in Irregular Phosphene Arrays Under Two Down-Sampling Schemes: A Simulation Study

机译:两种下采样方案下不规则荧光体阵列中的假肢视力:仿真研究

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To investigate the effects of phosphene array irregularity in visual prostheses, a model of phosphenes'' positional uncertainty was devised and two different image down-sampling schemes, adapting and non-adapting, were proposed. Based on a simulation system, visual acuity tests were given to four normally sighted subjects under seven degrees of array irregularity and the two down-sampling schemes. With the irregularity index increasing from 0 to 0.6, visual acuity fell over a range of 0.22 logMAR (logarithm of minimum angular resolution) for the adapting scheme and 0.47 logMAR for the non-adapting scheme, both monotonously. Comparison between the two down-sampling schemes was made. For low array irregularity, non-adapting down-sampling afforded higher visual acuity, whereas for higher irregular the adapting approach did. Head movements were observed to play significant roles in the acuity tests
机译:为了研究磷光体排列不规则对视觉假体的影响,设计了磷光体的位置不确定性模型,并提出了两种不同的图像下采样方案:自适应和非自适应。在模拟系统的基础上,对四个正常视线对象在七个阵列不规则度和两个下采样方案下进行了视敏度测试。随着不规则指数从0增加到0.6,对于适应方案,视敏度下降了0.22 logMAR(最小角度分辨率的对数),对于非适应方案,视敏度下降了0.47 logMAR。比较了两种下采样方案。对于较低的阵列不规则度,非自适应下采样可提供更高的视敏度,而对于较高的不规则度,则采用自适应方法。观察到头部运动在敏锐度测试中起重要作用

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