首页> 外文会议>Optical coherence tomography and coherence techniques IV >Active axial eye motion tracking by extended range, closed loop OPD-locked white light interferometer for combined confocal/ en face optical coherence tomography imaging of the human eye fundus in vivo
【24h】

Active axial eye motion tracking by extended range, closed loop OPD-locked white light interferometer for combined confocal/ en face optical coherence tomography imaging of the human eye fundus in vivo

机译:通过扩展范围的闭环OPD锁定白光干涉仪进行主动轴向眼运动跟踪,用于体内人眼底的共焦/面部光学相干层析成像

获取原文
获取原文并翻译 | 示例

摘要

We report an active tracking device based on white light coherence ranging using a spectrally interrogated Michelson interferometer, which is used to monitor and correct for the axial displacement of the eye and head of the subject in a confocal scanning ophthalmoscope/ en face OCT system (SLO/OCT). The Nyquist limit range of the spectrometer in the tracking interferometer is ~5.4 mm, which is adequate for monitoring the axial position of axially extended layered objects like the human eye fundus. Both the tracking and imaging interferometers share the eye interface optics and the sample and also an optical path (OPD) changing device in the reference (fast voice coil mounted retroreflector), that keeps them locked at constant OPD values. As a consequence, the sensitivity of the tracking interferometer is not affected by the spectrometer sensitivity roll-off with increased OPD and mirror term ambiguity tracking errors close to OPD = 0 are eliminated. Moreover, the axial tracking range is only limited by the voice coil stage travel range. A real time data acquisition processor board is used to digitize the spectrometer signal and calculate the correction signal applied to the voice coil with an update time better than 5 ms. We demonstrate axial motion corrected combined confocal/ en face OCT imaging of the human eye fundus in vivo.
机译:我们报告了一种主动跟踪设备,该设备使用光谱探询的迈克尔逊干涉仪,基于白光相干测距,用于在共焦扫描检眼镜/面部OCT系统(SLO)中监视和校正对象的眼睛和头部的轴向位移/ OCT)。跟踪干涉仪中光谱仪的奈奎斯特极限范围约为5.4 mm,这足以监视像人眼底一样轴向延伸的分层物体的轴向位置。跟踪干涉仪和成像干涉仪都共享眼界面光学器件和样本,还共享参考(快速音圈安装的后向反射器)中的光路(OPD)更改设备,将其锁定在恒定的OPD值。结果,随着OPD的增加,跟踪干涉仪的灵敏度不受光谱仪灵敏度下降的影响,并且消除了接近OPD = 0的镜射项模糊度跟踪误差。此外,轴向跟踪范围仅受音圈载物台行程范围限制。实时数据采集处理器板用于将光谱仪信号数字化,并计算更新时间小于5毫秒的应用于音圈的校正信号。我们证明了在人眼底体内的轴向运动校正组合共焦/面部OCT成像。

著录项

相似文献

  • 外文文献
  • 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