首页> 外文会议>Southern Biomedical Engineering Conference >Ultra High-Resolution Optical Coherence Tomography for Ocular Imaging of Small Animals
【24h】

Ultra High-Resolution Optical Coherence Tomography for Ocular Imaging of Small Animals

机译:超高分辨率光学相干断层扫描,用于小动物的眼镜

获取原文

摘要

Accurate in-vivo evaluation of the structural and morphological changes of the ocular structures of small animal models is essential in understanding the disease mechanisms, monitoring the disease progression, and response to therapies. Currently, ocular morphology and structure of animal models can only be examined quantitatively with histology. We present the advances for in vivo non contact three-dimensional (3D) ocular imaging of small animals with ultra high-resolution Spectral Domain Optical Coherence Tomography (SD-OCT) and quantitative information extraction using 3D segmentation of the OCT images. A SD-OCT system with two dedicated optical delivery systems for imaging the retina and anterior segment of small animals in vivo was built. An advanced 5-axis animal positioning and alignment system was developed for high throughput applications. 3D segmentation algorithm was developed for calculation of the retinal thickness map. An algorithm for automatic segmentation of the tumor boundaries and tumor volume calculation for LHpTag mouse model of retinoblastoma was also developed. The OCT system was applied in imaging mice, rats, rabbits, and raptors in the study of various ocular diseases and treatment procedures. One of the exciting applications is that the retina of Broad-winged hawk, Barred owl and Great-horned owl were imaged in vivo for the first time with high quality. The SD-OCT system accomplished the goal of non-invasive, non-contact, in vivo imaging of small animal retinal structures with high imaging quality and short imaging time (~2 minutes, acquisition time 2.7 seconds). These results make the system suitable for routine high throughput applications. Together with the segmentation algorithms, the acquired 3D data allows quantitative information extraction and provides means for precise comparison of the images acquired at different time, which make possible longitudinal studies of retinal diseases and treatment effects.
机译:的小动物模型眼结构的结构和形态的变化精确的体内评价是在理解疾病机制,监测疾病进展和对治疗的应答​​是必不可少的。目前,动物模型的眼部形态和结构只能用定量组织学检查。我们提出了进步体内非接触三维(3D)的小动物用超高分辨率谱域光学相干断层扫描(SD-OCT)和定量信息提取使用OCT图像的3D分割的眼部成像。 SD-OCT系统具有两个专用的光学传递系统用于成像视网膜和体内小动物的眼前段建。一种先进的5轴动物定位和对准系统是为高通量应用开发的。 3D分割算法是为视网膜厚度地图的计算显影。对肿瘤边界和肿瘤体积计算为视网膜母细胞瘤的LHpTag小鼠模型的自动分割的算法也被开发。 OCT系统在多种眼部疾病和治疗程序的成像研究小鼠,大鼠,兔和猛禽施加。其中一个令人兴奋的应用是广泛的翅鹰,禁止的猫头鹰和大的猫头鹰的视网膜体内进行成像,首次以高品质。的SD-OCT系统来实现非侵入性,非接触,小动物视网膜结构的具有高成像质量和短的成像时间(1〜2分钟,采集时间2.7秒)体内成像的目的。这些结果使该系统适用于常规高吞吐量应用。连同分割算法,所获取的三维数据允许定量信息提取和提供装置,用于在不同时间获取的图像,这使视网膜疾病和治疗效果的可能的纵向研究的精确比较。

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