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VTM——一种用于测量眼球扭转的图像处理系统。

VTM--an image-processing system for measuring ocular torsion.

作者信息

Moore S T, Curthoys I S, McCoy S G

机构信息

Department of Neuro-otology, Royal Prince Alfred Hospital, Sydney, NSW, Australia.

出版信息

Comput Methods Programs Biomed. 1991 Jul;35(3):219-30. doi: 10.1016/0169-2607(91)90124-c.

Abstract

This paper reports a new, fast, accurate realization of an image-processing method of measuring ocular torsion (rotation of the eyeball around the visual axis) called Video Torsion Measurement (VTM). The method is to cross-correlate the two grey-level distributions of an arc of the iris from two separate images using a fast image processor card interfaced to an IBM-AT compatible computer. The card (Matrox MVP-AT) is supplied with a library of low-level functions for controlling the hardware operations of the board and the VTM system software, which is written in the C programming language, incorporates these low-level functions to interface with the MVP-AT board as well as carrying out the data-acquisition and processing algorithms. These programs: acquire an image of an iris illuminated by a single infrared (IR) light source; threshold this image in order to identify the pupil; calculate the pupil area and locate the centre of the pupil using a centre-of-gravity algorithm; record the grey-level distribution along an arc 256 pixels long at a selected radius from the pupil centre; carry out an FFT on this (interpolated) grey level distribution; store the parameters of this reference FFT and cross-correlate the comparable iral grey-level distribution from other test images of the same eye in order to determine the amount of torsional rotation of the test images relative to the reference image. This system is interactive and is designed for operation in a clinical testing situation with a minimum of operator intervention. The VTM system has a resolution of the order of 0.1 deg depending on the arc radius used and it has been validated in two ways: by using it to measure known torsional rotations of an artificial iris-like pattern and also by direct simultaneous comparison of measures on the same human iris images from VTM and those from the standard 35 mm photographic procedure of measuring torsion.

摘要

本文报道了一种名为视频扭转测量(VTM)的测量眼扭转(眼球绕视轴旋转)的图像处理方法的全新、快速且准确的实现方式。该方法是使用与IBM-AT兼容计算机相连的快速图像处理器卡,对来自两张单独图像的虹膜弧的两个灰度分布进行互相关运算。该卡(Matrox MVP-AT)配备了一个低级函数库,用于控制板卡的硬件操作,而用C编程语言编写的VTM系统软件则整合了这些低级函数,以便与MVP-AT板卡接口,并执行数据采集和处理算法。这些程序:获取由单个红外(IR)光源照亮的虹膜图像;对该图像进行阈值处理以识别瞳孔;计算瞳孔面积并使用重心算法定位瞳孔中心;记录沿距瞳孔中心选定半径处256像素长的弧的灰度分布;对该(插值后的)灰度分布进行快速傅里叶变换(FFT);存储该参考FFT的参数,并将同一只眼睛其他测试图像中可比的虹膜灰度分布进行互相关运算,以确定测试图像相对于参考图像的扭转旋转量。该系统具有交互性,设计用于在临床测试环境中运行,操作人员干预最少。VTM系统的分辨率约为0.1度,具体取决于所使用的弧半径,并且已通过两种方式进行了验证:一是使用它来测量人工虹膜样图案的已知扭转旋转,二是通过直接同时比较VTM对同一人类虹膜图像的测量结果与标准35毫米摄影测量扭转方法的测量结果。

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