课题基金 / 基金详情

Adaptive Optics Fundus Imager

Adaptive Optics Fundus Imager
自适应光学眼底成像仪
批准号:
6667139
负责人:
Peter N Soliz
金额:
$30.77万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
1999
资助国家:
美国
项目状态:
已结题
起止时间:
1999-03-01 至 2005-08-31

项目摘要

项目成果

Peter N Soliz的其他基金

相关文献

中文摘要
翻译
描述(由申请人提供):在第一阶段,Kestrel公司开发并演示了一种视网膜成像系统,该系统将多光谱成像技术与自适应光学和图像反卷积相结合,以提供小于(<10微米)的高分辨率活体图像。隼鸟公司已经在人类和非人类测试对象上演示了诸如Shack-Hartmann波前传感器、自适应光学和图像反卷积算法等使能技术。美国和西班牙的其他人已经开发出实验室使用的自适应光学系统,并获得了大约4微米分辨率的视网膜图像。这些实验室设备为研究人员提供了研究视网膜最小结构的有力工具。不幸的是,这些系统都不适合临床使用,因为它们的视野(FOV)小1度,比大尺寸(大于30平方英尺),而且它们的复杂性。我们的系统将视场从1度增加到20度,并封装了这些技术,使它们很容易安装在标准眼底成像仪上。我们已经展示了几项专利技术,包括一种需要克服的抖动激光
英文摘要
DESCRIPTION (provided by applicant): In Phase I Kestrel Corporation developed and demonstrated a retinal imaging system that combines multispectral imaging techniques with adaptive optics and image deconvolution to provide high resolution less than (<10 micrometers), in-vivo images. The enabling technologies such as the Shack-Hartmann wavefront sensor, adaptive optics, and image deconvolution algorithm have been demonstrated by Kestrel on human and non-human test objects. Others in the US and Spain have developed adaptive optics system for laboratory use and have achieved about 4 micrometer resolution images of the retina. These laboratory devices have given researchers a powerful tool for studying the smallest structures of the retina. Unfortunately, none of these systems are suitable for clinical use because of their small field of view (FOV) of 1 degree, than large size (greater than 30 square feet), and their complexity. Our system increases the FOV from 1 degree to 20 degrees and packages the technologies so that they easily fit on a standard fundus imager. We have demonstrated several patented technologies, including a dithered laser to overcome specular reflections and eliminate multiple Shack-Hartmann images for wavefront measurements. To reduce cost of the system and to reduce the complexity, a deconvolution algorithm has allowed us to use a simpler (17 element) bimorph adaptive optics mirror. Our prototype Phase I system with its patented modifications has solved the technical issues that have limited the use of adaptive optics to research instruments. The first aim of Phase II is to design and develop a commercial prototype. The second aim of this project is to evaluate, through a comprehensive human subjects study, not the research significance, but the clinical value of high resolution images of the retina and optic disc. The images will be evaluated by experienced ophthalmologists. The clinical functionality of the high resolution spectral fundus imager (HRSFI) will be evaluated by having the ophthalmologists compare images taken with a standard fundus camera and the HRSFI. A statistical evaluation of the double-blinded study will quantitate the value in diagnosing diseases such as pro-proliferative diabetic retinopathy, age-related macular degeneration, and glaucoma.
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  • 项目类别:
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