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中文摘要
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描述(由申请人提供):一些最有用的诊断和了解致盲视网膜疾病的工具依赖于光谱反射率的使用。这些工具的改进,特别是在过去的十年里,极大地提高了我们获得极高分辨率的人类视网膜图像的能力。特别是,扫描激光眼底镜已被证明是研究微视野、心理物理学和视觉神经科学的一项重要技术,它在对锥体马赛克成像的同时将刺激传递到单个视锥细胞。由于现在视网膜成像达到了前所未有的分辨率,对人眼看不见或察觉不到的更长波长的光的需求越来越大。受人眼反应和光吸收增加的限制,使用1000到1100 nm之间的波长是最合适的解决方案。不幸的是,虽然有几家供应商在这个波长范围内提供了足够的光源,但没有任何合适的光电探测器。因此,这项拟议的研究工作的目标是开发一种雪崩光电二极管(雪崩光电二极管)模块,其响应范围从80 nm到1050 nm,将与现有的扫描激光眼底镜兼容。我们提出的解决方案将使用一种新的制造工艺来增强雪崩光电二极管对近红外辐射的响应性。如果成功,我们的研究团队将开发用于眼底镜和其他健康科学的接收器模块。在第一阶段,我们将通过组装定制的近红外增强型接收器雪崩光电二极管模块来演示该方法的可行性。这将涉及apd工艺开发和定制宽带放大器电路的关键设计。与其他商业单位相比,这两个组件将在RMD进行测试,并部署在加州大学伯克利分校验光学院的扫描激光眼底镜测试夹具中。第一阶段工作的成功完成将为广泛的第二阶段计划奠定基础,我们将在该计划中调查雪佛龙的可靠性、制造和包装问题。此外,我们在加州大学伯克利分校的研究合作者将使用早期版本的接收器来执行视觉阈值测试,并记录照明波长比目前应用的更长的视网膜图像。与公共健康相关:辐射监测设备公司建议开发一种对近红外辐射做出反应的接收器模块,其响应能力远远高于目前任何可用的产品。该模块将促进新的成像技术,并让视网膜专家以更有效的方式利用现有的诊断成像设备。特别是,在健康和患病眼睛中进行更准确的视力阈值研究将是可行的。
英文摘要
DESCRIPTION (provided by applicant): Some of the most useful tools for diagnosis and understanding of blinding retinal diseases rely on the use of spectral reflectance. Improvements to these tools, especially over the past decade, have greatly advanced our ability to achieve extremely high-resolution images of the human retina. In particular, scanning laser ophthalmoscopy has proven to be an important technique for studies of microperimetry, psychophysics and visual neuroscience by imaging the cone mosaic while simultaneously delivering stimuli to single cones. Due to the unprecedented resolution now achieved during retinal imaging, there is an increasing need for longer wavelength light that is invisible or imperceptible to the human eye. Bounded by human eye response and increased optical absorption, the use of wavelengths between 1000 and 1100 nm is the most suitable solution. Unfortunately, while there are several venders providing sufficient light sources across this wavelength range, there are not any suitable photodetectors. Therefore, the goal of this proposed research effort is to develop an avalanche photodiode (APD) module with exceptional response from 80nm to 1050 nm, that wil be compatible with established scaning laser ophthalmoscopes. Our proposed solution will use a novel fabrication process to enhance the APD's responsivity to near-infrared radiation. If successful, our research team will develop the receiver module useful for ophthalmoscopy and other health sciences. In Phase I, we will demonstrate feasibility of the approach by assembling a custom near-infrared enhanced receiver APD module. This will involve APD process development and the critical design of a custom wideband amplifier circuit. The two components will be tested at RMD, compared with other commercial units, and deployed in a scanning laser ophthalmoscopy test fixture at the University of California, Berkeley, School of Optometry. Successful completion of the Phase I effort will form the foundation for an extensive Phase II program, where we will investigate APD reliability, manufacturing and packaging concerns. In addition, our research collaborators at the University of California, Berkeley, will use early versions of the receiver to perform visual threshold testing and record retinal images with illumination wavelengths longer than presently applied. PUBLIC HEALTH RELEVANCE: Radiation Monitoring Devices, Inc. proposes to develop a receiver module with response to near- infrared radiation that is significantly higher than any currently available product. This module will promote new imaging technologies and let retinal specialist utilize established diagnostic imaging instruments in a much more effective manner. In particular, much more accurate visual threshold studies in both the healthy and diseased eye will be feasible.
期刊论文(1)
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DOI: 10.1001/archopht.1982.01030040746007
发表时间: 1982-11
期刊: Archives of ophthalmology
影响因子: --
作者: [B. Shingleton;Don C. Bienfang;Daniel M. Albert;W. D. Ensminger;William F. Chandler;Harry S. Greenberg-Harry-S.-Greenber]
通讯作者: B. Shingleton;Don C. Bienfang;Daniel M. Albert;W. D. Ensminger;William F. Chandler;Harry S. Greenberg-Harry-S.-Greenber
Low Cost Photon Counting Detector for Synchrotron Applications
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国内基金
海外基金
帽结合蛋白(cap binding protein)调控乙烯信号转导的分子机制
  • 批准号:
    32170319
  • 项目类别:
    面上项目
  • 资助金额:
    58.00万元
  • 批准年份:
    2021
  • 负责人:
    董春海
  • 依托单位:
帽结合蛋白(cap binding protein)调控乙烯信号转导的分子机制
  • 批准号:
    --
  • 项目类别:
    --
  • 资助金额:
    58万元
  • 批准年份:
    2021
  • 负责人:
    董春海
  • 依托单位:
ID1 (Inhibitor of DNA binding 1) 在口蹄疫病毒感染中作用机制的研究
番茄EIN3-binding F-box蛋白2超表达诱导单性结实和果实成熟异常的机制研究
  • 批准号:
    31372080
  • 项目类别:
    面上项目
  • 资助金额:
    80.0万元
  • 批准年份:
    2013
  • 负责人:
    杨迎伍
  • 依托单位: