用固体激光(266 nm)替代 ArF 准分子激光(193 nm)进行角膜塑形:热效应比较数值研究。

IF 2.2 4区 医学 Q3 ENGINEERING, BIOMEDICAL International Journal for Numerical Methods in Biomedical Engineering Pub Date : 2024-08-18 DOI:10.1002/cnm.3861
Ibrahim Abdelhalim, Aziza Ahmed Hassan, Salwa Abdelkawi, Salah Hassab Elnaby, Sahar Rahbar, Omnia Hamdy
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引用次数: 0

摘要

激光角膜塑形术是治疗常见视力障碍的一种安全有效的技术。先进的激光传输系统配备了具有特定参数的脉冲紫外激光,用于消融角膜表面的部分区域,以矫正现有的屈光不正。193 纳米的氟化氩(ArF)准分子脉冲气体激光器是用于此类治疗的商用设备中使用最多的一种。这种激光使用氩气、氟气和大量氖气的混合物产生。然而,由于俄乌战争的持续,目前氖气的供应非常有限,而该地区被认为是纯氖气的主要供应地。因此,我们建议用固态(波长为 266 nm 的四次谐波掺钕钇铝石榴石激光器)取代商用设备中常见的 ArF 激光源。这种替代品使用相同的操作参数、光学器件和扫描算法。我们将五种商用设备(Zeiss MEL 90、Technolas TENEO 317、Alcon Wave Light EX 500、Schwind Amaris 750 s、OptoSystems MICROSCAN VISUM)的参数与使用 266 nm 激光源的研究设备 i-ablation 设备的参数进行了比较。我们的目标是通过具有重大影响的简单改装来降低生产成本。因此,本研究的目的是在不改变整个系统设计的情况下,为目前的 ArF 激光器找到一种替代激光源。这项建议是在数值模拟研究的基础上提出的。在 COMSOL 平台上,通过使用两种激光波长,使用 Pennes 生物热方程的有限元求解,对人体角膜模型的热效应进行了数值评估。结果表明,即使采用相同的激光设置,改变激光源也会对热效应产生显著影响。与普通条件下接近 100°C 的温度相比,所有研究设备的热效应都降低到了 40°C 以下。
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Solid-state laser (266 nm) as an alternative to ArF excimer laser (193 nm) for corneal reshaping: Comparative numerical study of the thermal effect

Laser corneal reshaping is a safe and effective technique utilized to treat common vision disorders. An advanced laser delivery system equipped with a pulsed UV laser with specific parameters is used to ablate parts of the cornea surface to correct the existing refractive error. The argon fluoride (ArF) excimer pulsed gas laser at 193 nm is the most employed type in the commercial devices for such treatments. This laser is generated using a mixture of Argon, Fluorine, and a significant amount of Neon gases. However, due to the ongoing Russian-Ukraine war, the availability of Neon gas is currently very limited, as this region is considered the primary supplier of pure Neon gas. Consequently we suggest replacing the common ArF laser source in the commercial devices with a solid-state (forth harmonic neodymium-doped yttrium aluminum garnet laser at 266 nm). This replacement uses the same operation parameters, optics, and scanning algorithm. Parameters from five commercial devices (Zeiss MEL 90, Technolas TENEO 317, Alcon Wave Light EX 500, Schwind Amaris 750 s, OptoSystems MICROSCAN VISUM) were compared with those of the i-ablation device, a research device that uses a 266 nm laser source. Our goal is to reduce production costs through a simple modification that has a significant impact. Consequently, the present study aims to find an alternative laser source for the current ArF laser without exchanging the complete system's design. This recommendation is based on a numerical simulation study. The thermal effect on a human cornea model was numerically evaluated using finite-element solutions of Pennes' bioheat equation on the COMSOL platform by applying two laser wavelengths. The results demonstrated that changing the laser source significantly impacts the thermal effect, even with the same laser settings. All studied devices showed a reduction in the thermal effect to below 40°C, compared with nearly 100°C under ordinary conditions.

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来源期刊
International Journal for Numerical Methods in Biomedical Engineering
International Journal for Numerical Methods in Biomedical Engineering ENGINEERING, BIOMEDICAL-MATHEMATICAL & COMPUTATIONAL BIOLOGY
CiteScore
4.50
自引率
9.50%
发文量
103
审稿时长
3 months
期刊介绍: All differential equation based models for biomedical applications and their novel solutions (using either established numerical methods such as finite difference, finite element and finite volume methods or new numerical methods) are within the scope of this journal. Manuscripts with experimental and analytical themes are also welcome if a component of the paper deals with numerical methods. Special cases that may not involve differential equations such as image processing, meshing and artificial intelligence are within the scope. Any research that is broadly linked to the wellbeing of the human body, either directly or indirectly, is also within the scope of this journal.
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