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一种用于视觉假体的可穿戴实时图像处理器。

A wearable real-time image processor for a vision prosthesis.

作者信息

Tsai D, Morley J W, Suaning G J, Lovell N H

机构信息

Graduate School of Biomedical Engineering, University of New South Wales, Sydney, NSW 2052, Australia.

出版信息

Comput Methods Programs Biomed. 2009 Sep;95(3):258-69. doi: 10.1016/j.cmpb.2009.03.009. Epub 2009 Apr 25.

Abstract

Rapid progress in recent years has made implantable retinal prostheses a promising therapeutic option in the near future for patients with macular degeneration or retinitis pigmentosa. Yet little work on devices that encode visual images into electrical stimuli have been reported to date. This paper presents a wearable image processor for use as the external module of a vision prosthesis. It is based on a dual-core microprocessor architecture and runs the Linux operating system. A set of image-processing algorithms executes on the digital signal processor of the device, which may be controlled remotely via a standard desktop computer. The results indicate that a highly flexible and configurable image processor can be built with the dual-core architecture. Depending on the image-processing requirements, general-purpose embedded microprocessors alone may be inadequate for implementing image-processing strategies required by retinal prostheses.

摘要

近年来的快速进展使可植入视网膜假体在不久的将来成为黄斑变性或色素性视网膜炎患者有前景的治疗选择。然而,迄今为止,关于将视觉图像编码为电刺激的设备的研究工作报道甚少。本文介绍了一种用作视觉假体外部模块的可穿戴图像处理器。它基于双核微处理器架构并运行Linux操作系统。一组图像处理算法在该设备的数字信号处理器上执行,该设备可通过标准台式计算机进行远程控制。结果表明,采用双核架构可以构建高度灵活且可配置的图像处理器。根据图像处理要求,仅通用嵌入式微处理器可能不足以实现视网膜假体所需的图像处理策略。

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