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首页> 外文期刊>Biomedical Optics Express >Two-dimensional micro-displacement measurement for laser coagulation using optical coherence tomography
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Two-dimensional micro-displacement measurement for laser coagulation using optical coherence tomography

机译:使用光学相干断层扫描技术进行激光凝固的二维微位移测量

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摘要

To improve the reproducibility of photocoagulation, the ability to quantitatively monitor the thermal change of laser-irradiated retinal tissue is required. Recently, optical coherence tomography has enabled non-invasive and non-contact monitoring of the tissue structural changes during laser irradiation. To further improve the capability of this technique, a method is proposed to measure tissue displacement by simultaneously using Doppler phase shifts and correlation coefficients. The theoretical approach for this method is described, and its performance is experimentally confirmed and evaluated. Finally, lateral and axial displacements in the laser-irradiated retinal tissues of an enucleated porcine eye are observed. The proposed method is found to be useful for further understanding the direct thermal response of laser-irradiated retinal tissue.
机译:为了提高光凝的再现性,需要具有定量监测激光照射的视网膜组织的热变化的能力。最近,光学相干断层扫描技术已经能够对激光照射过程中的组织结构变化进行非侵入性和非接触式监测。为了进一步提高该技术的能力,提出了一种同时使用多普勒相移和相关系数来测量组织位移的方法。描述了该方法的理论方法,并通过实验证实和评估了其性能。最后,观察到去核猪眼的激光照射视网膜组织中的横向和轴向位移。发现所提出的方法对于进一步理解激光照射的视网膜组织的直接热响应是有用的。

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