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人工视觉的心理物理学:II. 随机采样、光幻视图像与噪声

Psychophysics of prosthetic vision: II. stochastic sampling, the phosphene image, and noise.

作者信息

Hallum Luke E, Chen Spencer C, Cloherty Shaun L, Lovell Nigel H

机构信息

Graduate Sch. of Biomed. Eng., New South Wales Univ., Sydney, NSW.

出版信息

Conf Proc IEEE Eng Med Biol Soc. 2006;2006:1634-7. doi: 10.1109/IEMBS.2006.259957.

Abstract

Stimulation of the diseased retina via an intraocular electrode array is a proposed means of restoring some vision to the profoundly blind. A prosthetic device to this end would involve post-implantation calibration (analogous to cochlear implant fitting), wherein the subject indicates those discrete positions in the visual field where luminous percepts are elicited. This procedure would be a source of noise, because the indicated positions would only approximate the actual positions in the visual field. Put differently, the procedure introduces sampling jitter, and would therefore affect clinical outcomes such as mobility and reading speeds. The nature of this noise is the concern of the present paper; we derive an expression for the noise power spectrum as it relates to the statistical nature of the sampling jitter. We show that, generally, jitter has greater effect on higher spatial-frequencies, that is, those areas of the implantee's visual perception that represent fine detail are more prone to noise. More specifically, the noise spectrum depends on the characteristic function of the random variable describing the sampling jitter. Our results signal the need for experimental work that characterizes sampling jitter in implantees, plus the need for simulations that allow a better understanding of perception and the noisy phosphene image.

摘要

通过眼内电极阵列刺激患病视网膜是一种为深度失明患者恢复部分视力的提议方法。为此目的的假体装置将涉及植入后校准(类似于人工耳蜗调试),在此过程中,受试者指出视野中能引发光感的离散位置。该过程会产生噪声,因为所指出的位置只是大致接近视野中的实际位置。换句话说,该过程会引入采样抖动,因此会影响诸如移动性和阅读速度等临床结果。本文关注的是这种噪声的性质;我们推导了与采样抖动的统计性质相关的噪声功率谱表达式。我们表明,一般来说,抖动对更高空间频率的影响更大,也就是说,植入者视觉感知中代表精细细节的那些区域更容易受到噪声影响。更具体地说,噪声谱取决于描述采样抖动的随机变量的特征函数。我们的结果表明需要开展实验工作来表征植入者的采样抖动,还需要进行模拟以便更好地理解感知和有噪声的光幻视图像。

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