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使用Geant4对激光束与人类眼睛相互作用进行蒙特卡洛模拟。

Monte Carlo simulation of laser beams interaction with the human eye using Geant4.

作者信息

Tendeiro Diogo, Lopes Gonçalo, Vieira Pedro, Santos José Paulo

机构信息

Centro de Física Atómica, CFA, Departamento de Física, Faculdade de Ciências e Tecnologia, FCT, Universidade Nova de Lisboa, 2829-516 Caparica, Portugal.

出版信息

Biomed Eng Online. 2014 May 7;13:58. doi: 10.1186/1475-925X-13-58.

Abstract

BACKGROUND

Due to the unique characteristics of the eye, ophthalmologic diagnostic techniques often rely on the photons interaction with the retina to infer its internal structure. Although these techniques are widely used, the interpretation of the generated images is not always fully understood, as in scanning laser ophthalmoscopy dark field imaging. This limits the exploitation of its full potential as a diagnostic tool for deep abnormalities in the retina, as in the situation of drusen.

METHODS

With the aim of better understanding the retinal diagnostic images, we have carried out computer simulations of incident laser beams interacting with different structures of the human eye, including a retina with and without drusen. We have used the Geant4 simulation toolkit, applying the optical package of the electromagnetic (EM) physics working group, to simulate the physical processes of reflection, refraction, absorption, and scattering of low energy photons (2 eV) in biological tissues. For each simulation it was used a single beam of orange light, with a Gaussian profile, that travels through all optical elements of the eye. The reflected beam characteristics were analyzed by virtual detectors in different locations, which collected information about the number and position of photons. The geometry and optical properties of all components of the eye were considered according to the published data.

RESULTS

Simulation results put in evidence that the presence of drusen influences the profile of the reflected beams. It changes the mean free path of the photons, modifying its reflection pattern, which depends on the area illuminated by the incident beam. This result is also visible when the reflected beam is analyzed outside of the eye, when the profile has no longer a symmetrical Gaussian distribution. These results will support the retinal diagnostic images that will be obtained in a near future with a new developed ophthalmic apparatus.

CONCLUSIONS

The shape analysis of the reflected beams in retinal laser scanning techniques could increase its potential as a diagnostic examination tool for the deeper structures of the retina.

摘要

背景

由于眼睛的独特特性,眼科诊断技术通常依赖于光子与视网膜的相互作用来推断其内部结构。尽管这些技术被广泛应用,但对于所生成图像的解读并不总是完全清楚,如在扫描激光检眼镜暗场成像中。这限制了其作为视网膜深层异常(如玻璃膜疣情况)诊断工具的全部潜力的发挥。

方法

为了更好地理解视网膜诊断图像,我们对入射激光束与人类眼睛的不同结构(包括有和没有玻璃膜疣的视网膜)相互作用进行了计算机模拟。我们使用了Geant4模拟工具包,应用电磁(EM)物理工作组的光学包,来模拟低能光子(2电子伏特)在生物组织中的反射、折射、吸收和散射的物理过程。对于每次模拟,使用一束具有高斯分布的橙色光,它穿过眼睛的所有光学元件。通过不同位置的虚拟探测器分析反射光束的特性,这些探测器收集有关光子数量和位置的信息。根据已发表的数据考虑眼睛所有组件的几何形状和光学特性。

结果

模拟结果表明玻璃膜疣的存在会影响反射光束的轮廓。它改变了光子的平均自由程,改变了其反射模式,这取决于入射光束照射的区域。当在眼睛外部分析反射光束时,这个结果也很明显,此时轮廓不再具有对称的高斯分布。这些结果将支持在不久的将来用新开发的眼科设备获得的视网膜诊断图像。

结论

视网膜激光扫描技术中反射光束的形状分析可以增加其作为视网膜深层结构诊断检查工具的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23d1/4026188/ed69d376e8f4/1475-925X-13-58-1.jpg

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