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贝塞尔光束用于手术激光聚焦望远镜——一种新方法。

Bessel light beam for a surgical laser focusing telescope-a novel approach.

机构信息

Department of Physics, Institute for Advanced Studies in Basic Sciences (IASBS), Zanjan, 45137- 66731, Iran.

Institute of Optics and Atomic Physics, Technical University of Berlin, D-10623, Berlin, Germany.

出版信息

Lasers Med Sci. 2024 Jan 17;39(1):33. doi: 10.1007/s10103-023-03968-y.

Abstract

As the demand for CO[Formula: see text] laser surgeries continues to grow, the quality of their main instrument, the laser micromanipulator, becomes increasingly important. However, in many surgery systems, a large ratio of the laser power is wasted due to the reflection from the mirror of a telescopic system, like a Cassegrain telescope, back to the laser side, which not only decreases the system's efficiency but can also damage the system itself. In this article, we introduce a new design of the micromanipulator telescope for CO[Formula: see text] laser surgery, which employs a Bessel beam to improve the system efficiency. As in the propagation of a Bessel beam, the power of the light beam can be transferred from the center to a ring shape, the whole power reflected from the first mirror can reach the second mirror and no power goes back to the second mirror hole. The micromanipulator telescope design and optimization are carried out using Zemax Optics Studio, and the integration of the Bessel beam into the system is implemented using MATLAB. Our simulation results show that by applying the appropriate Bessel beam, the system efficiency can reach more than 96%, and the normalized peak irradiance can increase by 40 to 73% for various working distances. In addition to increasing the system efficiency and normalized peak irradiance, resulting in a sharper surgical blade, the use of the Bessel beam enhances the depth of focus, making the system less sensitive to depth misalignment.

摘要

随着 CO[Formula: see text]激光手术需求的不断增长,其主要仪器——激光微操纵器的质量变得越来越重要。然而,在许多手术系统中,由于望远镜系统(如卡塞格林望远镜)的镜子反射回激光侧,导致大量激光功率被浪费,这不仅降低了系统的效率,而且可能损坏系统本身。在本文中,我们介绍了一种用于 CO[Formula: see text]激光手术的新型微操纵器望远镜设计,该设计采用贝塞尔光束来提高系统效率。与贝塞尔光束的传播一样,光束的功率可以从中心转移到环形,从第一面镜子反射的全部功率可以到达第二面镜子,而没有功率返回到第二面镜子孔。使用 Zemax Optics Studio 进行微操纵器望远镜的设计和优化,并使用 MATLAB 将贝塞尔光束集成到系统中。我们的模拟结果表明,通过应用适当的贝塞尔光束,系统效率可达到 96%以上,对于各种工作距离,归一化峰值辐照度可增加 40%至 73%。除了提高系统效率和归一化峰值辐照度,从而使手术刀片更加锋利之外,贝塞尔光束的使用还增强了焦点深度,使系统对深度失准不那么敏感。

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