首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Design of 1300 nm spectral domain optical coherence tomography angiography system for iris microvascular imaging
【24h】

Design of 1300 nm spectral domain optical coherence tomography angiography system for iris microvascular imaging

机译:1300nm光谱域光学相干断层造影血管造影系统的设计,用于虹膜微血管成像

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Developing a high-resolution non-invasive optical coherence tomography angiography (OCTA) method for iris vasculature imaging is essential for diagnosing a wide range of ocular pathologies. However, the current iris-OCTA devices are still limited in imaging quality and penetration depth for dark-colored eyes ranging from brown to dark brown. A spectral domain iris-OCTA system is presented in this paper incorporating a 1300 nm wavelength for deeper tissue penetration, a linear-wavenumber spectrometer for better detection sensitivity, and an iris scan objective lens for better optical focusing across the entire iris over a 12 x 12 mm(2) scan field. The -6 dB fall-off range is similar to 3 mm, and the maximum sensitivity fall-off is -28.57 dB at 6.94 mm. The axial resolution is 15.1 +/- 3.2 mu m. The 40 mm focal-length iris scan objective is optimized based on the ocular parameters from 100 Asian participants' left eyes, and it has a diffraction-limited lateral resolution (14.14 mu m) for the iris, in general. OCT distortions were calibrated based on the average ocular parameters, and the maximum residual distortions in both the lateral and axial directions were <0.1 mm (2.0%) for all of the eyes. A pilot study on a constricted pupil was performed to demonstrate high-contrast, wide-field en face iris microvascular imaging by either a horizontal or vertical fast-scan protocol in a dark brown eye. The iris vessels are radially aligned, and each vessel is more visible when it has an angle of similar to 65 degrees-90 degrees with respect to the fast-scan direction. A new circular fast-scan protocol could improve image quality for better visualization of the iris features or integration with image-registration algorithms and an eye-tracking system for eye-motion compensation.
机译:开发一种用于虹膜血管成像的高分辨率无创光学相干断层扫描血管造影(OCTA)方法对于诊断广泛的眼部疾病至关重要。然而,目前的虹膜OCTA设备在成像质量和穿透深度方面仍然有限,适用于从棕色到深棕色的深色眼睛。本文介绍了一种光谱域虹膜八度系统,包括用于更深组织穿透的1300 nm波长、用于更好检测灵敏度的线性波数分光计和用于在12 x 12 mm(2)扫描场上对整个虹膜进行更好光学聚焦的虹膜扫描物镜。-6 dB的衰减范围类似于3 mm,6.94 mm处的最大灵敏度衰减为-28.57 dB。轴向分辨率为15.1+/-3.2μm。40 mm焦距的虹膜扫描物镜根据100名亚洲参与者左眼的眼部参数进行了优化,总体而言,虹膜具有衍射限制的横向分辨率(14.14μm)。OCT畸变根据平均眼部参数进行校准,所有眼睛在横向和轴向上的最大残余畸变均<0.1 mm(2.0%)。在一只暗褐色眼睛中,通过水平或垂直快速扫描协议,对一个收缩的瞳孔进行了初步研究,以展示高对比度、宽视野的面部虹膜微血管成像。虹膜血管呈放射状排列,当其与快速扫描方向的角度类似于65度到90度时,每个血管都更清晰可见。一种新的循环快速扫描协议可以提高图像质量,以便更好地显示虹膜特征,或者与图像配准算法和用于眼动补偿的眼动跟踪系统集成。

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