首页> 外国专利> SYSTEM AND METHOD FOR IMAGING, SEGMENTATION, TEMPORAL AND SPATIAL TRACKING, AND ANALYSIS OF VISIBLE AND INFRARED IMAGES OF OCULAR SURFACE AND EYE ADNEXA

SYSTEM AND METHOD FOR IMAGING, SEGMENTATION, TEMPORAL AND SPATIAL TRACKING, AND ANALYSIS OF VISIBLE AND INFRARED IMAGES OF OCULAR SURFACE AND EYE ADNEXA

机译:用于成像,分割,时间和空间跟踪的系统和方法,以及眼表面和眼睛adnexa的可见和红外图像的分析

摘要

An automatic system and method for non-invasive imaging and identification of specific ocular structures of the eye and adnexa tissues by synchronous segmentation of visual and infrared images; that can produce spatial temperature profiles within each segmented area of the eye and adnexa; that can track eye and head movement and eye-blinks during the period of measurement to remove artefacts and maintain synchronicity; that can track ocular surface and eye adnexa temperature profiles over time; that can assist in diagnosis of eye disease; that can produce diagnostic indicators for ocular disease diagnosis and study of the eye. The system comprises infrared and visible light cameras for imaging the ocular structures, and a digital signal processing unit for processing the acquired infrared and visible images to output segmentations of the images for identification of different areas of the eye surface, including pupil, cornea, conjunctiva, and eyelids. The system further captures synchronous infrared and visible images from each segmented area of the ocular surface over the time of measurement. A digital signal processing unit processes and analyzes the infrared and visible images to generate descriptive outputs on temporal and spatial changes in the infrared and visible images over the time of measurement, as well as produce diagnostic indicators for ocular disease diagnosis and study of the eye.
机译:通过视觉和红外图像的同步分割对眼睛和adnexa组织的非侵入性成像和鉴定的自动系统和方法;这可以在眼睛和adnexa的每个分段区域内产生空间温度曲线;在测量期间可以跟踪眼睛和头部运动和眼睛闪烁,以去除伪影并保持同步性;随着时间的推移,可以追踪眼表面和眼睛adnexa温度曲线;可以有助于诊断眼病;这可以生产眼部疾病诊断和眼睛研究的诊断指标。该系统包括用于对眼结构进行成像的红外和可见光照相机,以及用于处理所获取的红外和可见图像的数字信号处理单元,以输出图像的分割,以识别眼表面的不同区域,包括瞳孔,角膜,结膜和眼睑。该系统进一步在测量时间内从每个分段区域捕获来自眼表面的每个分段区域的同步红外图像。数字信号处理单元处理并分析红外和可见图像,以在测量时间内产生红外和可见图像中的时间和空间变化的描述性输出,以及产生诊断指示器,用于眼部疾病诊断和眼睛的研究。

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