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使用运动校正散斑去相关技术对激光治疗进行实时共定位光学相干断层扫描监测

Real-time co-localized OCT surveillance of laser therapy using motion corrected speckle decorrelation.

作者信息

Maltais-Tariant Raphaël, Boudoux Caroline, Uribe-Patarroyo Néstor

机构信息

Polytechnique Montréal, Department of Engineering Physics, 2900 Boulevard Edouard-Montpetit, Montreal, Qc, Canada.

Castor Optics Inc., 361 Boul Montpellier, St-Laurent, Qc, Canada.

出版信息

Biomed Opt Express. 2020 May 7;11(6):2925-2950. doi: 10.1364/BOE.385654. eCollection 2020 Jun 1.

Abstract

We present a system capable of real-time delivery and monitoring of laser therapy by imaging with optical coherence tomography (OCT) through a double-clad fiber (DCF). A double-clad fiber coupler is used to inject and collect OCT light into the core of a DCF and inject the therapy light into its larger inner cladding, allowing for both imaging and therapy to be perfectly coregistered. Monitoring of treatment depth is achieved by calculating the speckle intensity decorrelation occurring during tissue coagulation. Furthermore, an analytical noise correction was used on the correlation to extend the maximum monitoring depth. We also present a method for correcting motion-induced decorrelation using a lookup table. Using the value of the noise- and motion-corrected correlation coefficient in a novel approach, our system is capable of identifying the depth of thermal coagulation in real time and automatically shut the therapy laser off when the targeted depth is reached. The process is demonstrated in rat tongue and abdominal muscles for depths ranging from 500 µm to 1000 µm with induced motion in real time.

摘要

我们展示了一种系统,该系统能够通过双包层光纤(DCF)利用光学相干断层扫描(OCT)成像来实时输送和监测激光治疗。双包层光纤耦合器用于将OCT光注入并收集到DCF的纤芯中,并将治疗光注入其较大的内包层中,从而使成像和治疗能够完美地重合。通过计算组织凝固过程中出现的散斑强度去相关来实现对治疗深度的监测。此外,对相关性进行了分析噪声校正,以扩展最大监测深度。我们还提出了一种使用查找表校正运动引起的去相关的方法。通过一种新颖的方法利用噪声和运动校正后的相关系数值,我们的系统能够实时识别热凝固深度,并在达到目标深度时自动关闭治疗激光。该过程在大鼠舌头和腹部肌肉中进行了演示,深度范围为500微米至1000微米,且实时存在诱导运动。

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