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Online object oriented Monte Carlo computational tool for the needs of biomedical optics

机译:面向对象的在线蒙特卡洛计算工具可满足生物医学光学的需求

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摘要

Conceptual engineering design and optimization of laser-based imaging techniques and optical diagnostic systems used in the field of biomedical optics requires a clear understanding of the light-tissue interaction and peculiarities of localization of the detected optical radiation within the medium. The description of photon migration within the turbid tissue-like media is based on the concept of radiative transfer that forms a basis of Monte Carlo (MC) modeling. An opportunity of direct simulation of influence of structural variations of biological tissues on the probing light makes MC a primary tool for biomedical optics and optical engineering. Due to the diversity of optical modalities utilizing different properties of light and mechanisms of light-tissue interactions a new MC code is typically required to be developed for the particular diagnostic application. In current paper introducing an object oriented concept of MC modeling and utilizing modern web applications we present the generalized online computational tool suitable for the major applications in biophotonics. The computation is supported by NVIDEA CUDA Graphics Processing Unit providing acceleration of modeling up to 340 times.
机译:在生物医学光学领域中使用的基于激光的成像技术和光学诊断系统的概念工程设计和优化,需要对光-组织相互作用以及介质中检测到的光辐射的局部特性有清楚的了解。在浑浊的组织样介质中进行光子迁移的描述基于辐射转移的概念,该概念构成了蒙特卡洛(MC)建模的基础。直接模拟生物组织的结构变化对探测光的影响的机会使MC成为生物医学光学和光学工程的主要工具。由于利用光的不同性质和光-组织相互作用的机制的光学模态的多样性,通常需要针对特定​​的诊断应用开发新的MC代码。在当前介绍MC建模的面向对象概念并利用现代Web应用程序的论文中,我们介绍了适用于生物光子学主要应用程序的通用在线计算工具。 NVIDEA CUDA图形处理单元支持该计算,可加速建模多达340次。

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