iStent insertion orientation and impact on trabecular meshwork motion resolved by optical coherence tomography imaging.

IF 3 3区 医学 Q2 BIOCHEMICAL RESEARCH METHODS Journal of Biomedical Optics Pub Date : 2024-07-01 Epub Date: 2024-07-27 DOI:10.1117/1.JBO.29.7.076008
Zhaoyu Gong, Murray A Johnstone, Ruikang K Wang
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Abstract

Significance: The iStent is a popular device designed for glaucoma treatment, functioning by creating an artificial fluid pathway in the trabecular meshwork (TM) to drain aqueous humor. The assessment of iStent implantation surgery is clinically important. However, current tools offer limited information.

Aim: We aim to develop innovative assessment strategies for iStent implantation using optical coherence tomography (OCT) to evaluate the position and orientation of the iStent and its biomechanical impact on outflow system dynamics.

Approach: We examined four iStents in the two eyes of a glaucoma patient. Three-dimensional (3D) OCT structural imaging was conducted for each iStent, and a semi-automated algorithm was developed for iStent segmentation and visualization, allowing precise measurement of position and orientation. In addition, phase-sensitive OCT (PhS-OCT) imaging was introduced to measure the biomechanical impact of the iStent on the outflow system quantified by cumulative displacement (CDisp) of pulse-dependent trabecular TM motion.

Results: The 3D structural image processed by our algorithm definitively resolved the position and orientation of the iStent in the anterior segment, revealing substantial variations in relevant parameters. PhS-OCT imaging demonstrated significantly higher CDisp in the regions between two iStents compared to locations distant from the iStents in both OD ( p = 0.0075 ) and OS ( p = 0.0437 ).

Conclusions: Our proposed structural imaging technique improved the characterization of the iStent's placement. The imaging results revealed inherent challenges in achieving precise control of iStent insertion. Furthermore, PhS-OCT imaging unveiled potential biomechanical alterations induced by the iStent. This unique methodology shows potential as a valuable clinical tool for evaluating iStent implantation.

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通过光学相干断层成像解析 iStent 插入方向及其对小梁网运动的影响。
意义重大:iStent 是一种用于治疗青光眼的流行设备,其功能是在小梁网(TM)中创建一个人工液体通道,以排出房水。对 iStent 植入手术的评估在临床上非常重要。目的:我们旨在利用光学相干断层扫描(OCT)为 iStent 植入术开发创新的评估策略,以评估 iStent 的位置和方向及其对流出系统动力学的生物力学影响:方法:我们对一名青光眼患者两只眼睛中的四个 iStent 进行了检查。对每个 iStent 进行了三维(3D)OCT 结构成像,并开发了一种用于 iStent 分割和可视化的半自动算法,从而可以精确测量位置和方向。此外,还引入了相敏 OCT(PhS-OCT)成像技术,通过脉冲依赖性小梁 TM 运动的累积位移(CDisp)量化 iStent 对流出系统的生物力学影响:通过我们的算法处理的三维结构图像确定了 iStent 在前段的位置和方向,揭示了相关参数的巨大变化。PhS-OCT 成像显示,与远离 iStent 的位置相比,两个 iStent 之间区域的 CDisp 在 OD ( p = 0.0075 ) 和 OS ( p = 0.0437 ) 都明显更高:结论:我们提出的结构成像技术改进了 iStent 放置的特征描述。成像结果揭示了实现 iStent 插入精确控制的内在挑战。此外,PhS-OCT 成像还揭示了 iStent 可能引起的生物力学改变。这种独特的方法显示出作为评估 iStent 植入的重要临床工具的潜力。
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来源期刊
CiteScore
6.40
自引率
5.70%
发文量
263
审稿时长
2 months
期刊介绍: The Journal of Biomedical Optics publishes peer-reviewed papers on the use of modern optical technology for improved health care and biomedical research.
期刊最新文献
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