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Investigation of Thermal Effects of Photocoagulation on Retinal Tissue Using Fine-Motion-Sensitive Dynamic Optical Coherence Tomography

机译:精细运动敏感动态光学相干层析成像技术研究光凝对视网膜组织的热效应

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摘要

To enable an objective evaluation of photocoagulation, we characterize thermal tissue changes induced by laser irradiation with different laser parameters using optical coherence tomography (OCT). Spectral-domain OCT with a newly developed image processing method was used to monitor the thermal changes of ex vivo porcine retina. A sequence of OCT B-scans was obtained at the same retinal position simultaneously with the photocoagulation. Cross-sectional tissue displacement maps with respect to an OCT image taken before laser irradiation were computed for images taken before, during, and after laser irradiation, by using a correlation-based custom algorithm. Cross-sectional correlation maps (OCT correlation maps) were also computed from an OCT image taken before laser irradiation as a base-line to visualize alterations of tissue microstructure induced by laser irradiation. By systematically controlling laser power and exposure times, tissue displacements and structural changes of 200 retinal regions of 10 porcine eyes were characterized. Thermal tissue changes were characterized by B-scan images, OCT correlation maps, and tissue displacement maps. Larger tissue deformation was induced with higher laser power and shorter exposure time, while the same total laser energy (10 mJ) was applied. The measured tissue displacements revealed the complicated dynamics of tissue displacements. Three types of dynamics were observed; lateral expansion, lateral constriction, and a type showing more complicated dynamics. The results demonstrated the ability of this OCT-based method to evaluate retinal changes induced by laser irradiation. This evaluation could lead to further understanding of thermal effects, and increasing reproducibility of photocoagulation therapy.
机译:为了能够对光凝进行客观评估,我们使用光学相干断层扫描(OCT)来表征由激光照射不同激光参数引起的热组织变化。具有新开发的图像处理方法的光谱域OCT用于监测离体猪视网膜的热变化。在光凝的同时,在相同的视网膜位置获得了一系列的OCT B扫描。使用基于相关的自定义算法,针对在激光辐照之前,期间和之后拍摄的图像,计算了相对于激光辐照之前拍摄的OCT图像的横截面组织位移图。还从激光辐照之前拍摄的OCT图像作为基线计算出截面相关图(OCT相关图),以可视化由激光辐照引起的组织微观结构的变化。通过系统地控制激光功率和曝光时间,表征了10只猪眼的200个视网膜区域的组织位移和结构变化。通过B扫描图像,OCT相关图和组织位移图来表征热组织变化。更高的激光功率和更短的曝光时间会导致更大的组织变形,同时施加相同的总激光能量(10 mJ)。测量的组织位移揭示了组织位移的复杂动力学。观察到三种类型的动力学。侧向扩张,侧向收缩和一种表现出更复杂动力的类型。结果证明了这种基于OCT的方法能够评估由激光照射引起的视网膜变化。这项评估可以进一步了解热效应,并提高光凝疗法的可重复性。

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