Optimization design of the coupling scheme of the pulse laser output through the hysteroscope observation channel

Jinrui Wang, Chuanhui Ge, Guansong Zou, Feiyang Wang, Xiaoman Zhang, Shulian Wu, Hengchang Guo, Huan Yi, Yulong Zhang, Hui Li
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Abstract

Photoacoustic imaging is an imaging technology which combines the advantages of high-resolution optical imaging and deep detection depth of acoustic imaging. Photoacoustic imaging combined with hysteroscopy may be a new diagnostic technique for endometrial cancer. However, the energy loss after pulsed laser passing through the hysteroscope is very large. Therefore, the energy of pulsed laser after hysteroscopy based on photoacoustic imaging is worth further discussion. A coupling Program of pulsed laser and hysteroscope based on the optical path of pulsed laser and hysteroscope was designed in this paper. The Program was optimized by ZEMAX simulation, and then the optimal effect of pulsed laser observation through hysteroscopy was verified by phantom experiment. The results show that the pulsed laser can obtain better photoacoustic signals after passing through our coupling module. This method is expected to be applied to the detection of endometrial diseases in clinic.
宫腔镜观察通道脉冲激光输出耦合方案的优化设计
光声成像是一种结合了高分辨率光学成像和声成像深探测深度优点的成像技术。光声成像联合宫腔镜可能是诊断子宫内膜癌的一种新技术。然而,脉冲激光通过宫腔镜后的能量损失非常大。因此,基于光声成像的宫腔镜后脉冲激光的能量值得进一步探讨。基于脉冲激光与宫腔镜的光路,设计了脉冲激光与宫腔镜的耦合方案。通过ZEMAX仿真对程序进行优化,并通过模拟实验验证脉冲激光宫腔镜观察的最佳效果。结果表明,脉冲激光经过我们设计的耦合模块后,可以获得较好的光声信号。该方法有望应用于临床子宫内膜疾病的检测。
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