首页> 外文会议>Optics and measurement international confercnec 2016 >Minimising back reflections from the common path objective in a fundus camera
【24h】

Minimising back reflections from the common path objective in a fundus camera

机译:最大限度地减少眼底照相机中来自公共路径物镜的背反射

获取原文
获取原文并翻译 | 示例

摘要

Eliminating back reflections is critical in the design of a fundus camera with internal illuminating system. As there is very little light reflected from the retina, even excellent antireflective coatings are not sufficient suppression of ghost reflections, therefore the number of surfaces in the common optics in illuminating and imaging paths shall be minimised. Typically a single aspheric objective is used. In the paper an alternative approach, an objective with all spherical surfaces, is presented. As more surfaces are required, more sophisticated method is needed to get rid of back reflections. Typically back reflections analysis, comprise treating subsequent objective surfaces as mirrors, and reflections from the objective surfaces are traced back through the imaging path. This approach can be applied in both sequential and nonsequential ray tracing. It is good enough for system check but not very suitable for early optimisation process in the optical system design phase. There are also available standard ghost control merit function operands in the sequential ray-trace, for example in Zemax system, but these don't allow back ray-trace in an alternative optical path, illumination vs. imaging. What is proposed in the paper, is a complete method to incorporate ghost reflected energy into the raytracing system merit function for sequential mode which is more efficient in optimisation process. Although developed for the purpose of specific case of fundus camera, the method might be utilised in a wider range of applications where ghost control is critical.
机译:在设计带有内部照明系统的眼底照相机时,消除背反射至关重要。由于从视网膜反射的光很少,因此即使是出色的抗反射涂层也无法充分抑制幻影反射,因此应将照明和成像路径中常见光学元件的表面数量减至最少。通常使用单个非球面物镜。在本文中,提出了一种替代方法,即具有所有球面的物镜。随着需要更多的表面,需要更复杂的方法来消除背反射。典型地,背反射分析包括将随后的物镜表面当作镜子,并且来自物镜表面的反射通过成像路径被追溯。此方法可以应用于顺序和非顺序光线跟踪中。它足以进行系统检查,但不适用于光学系统设计阶段的早期优化过程。在连续的光线跟踪中,例如在Zemax系统中,也有可用的标准重影控制优点函数操作数,但是这些不允许在替代光路(照明与成像)中进行反向光线跟踪。本文提出的是一种将幻影反射能量合并到连续模式的光线跟踪系统性能函数中的完整方法,在优化过程中效率更高。尽管针对眼底照相机的特定情况而开发,但该方法可能在重影控制至关重要的广泛应用中使用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号