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Monte-carlo Simulation of Light Propagation considering Characteristic of Near-infrared LED and Evaluation on Tissue Phantom

机译:Monte-Carlo仿真考虑近红外LED的特征和组织幻影的评估

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Currently, there are many techniques to measure subcutaneous fat of skin layers on clinical fields. Among many kinds of methods to measure subcutaneous fat, an optical method has especially many advantages. Moreover, it is appropriate to use during a surgery like liposuction. To implement the optical method, a simulation by LEDs is frequently performed. In the field of optics, there are several methods to simulate diffuse light, such as Monte-carlo simulation. Although the basic Monte-carlo simulation for light propagation is only based on using beam typed light source, we consider characteristics of a LED source and suggest a method to simulate the light propagation by the LED source. To make the Monte-carlo simulation for a LED source, we modify the step of initializing photon in the simulation. First, we expand an initial area launching photons. Second, we apply stochastically the incident angle of photons. Third, we make the method performed differently according a contact area between LED source and turbid medium. Finally, we check the verification of our simulation compared with experimental results. The correlation coefficient between the simulation and the experimental results is 0.9771. In this study, for developments of devices to measure the subcutaneous fat using a LED source, we make the valid method to simulate diffuse light. In the future, we will develop the equipment to measure a fat thickness and an irregularity of it during liposuction surgery, based on the simulation method we proposed.
机译:目前,有许多技术可以在临床领域测量皮肤层的皮下脂肪。在测量皮下脂肪的多种方法中,光学方法具有特别的优点。此外,在手术期间使用脂肪术期间适合使用。为了实现光学方法,经常执行LED的模拟。在光学领域,有几种方法来模拟漫反射光,例如Monte-Carlo仿真。虽然光传播的基本Monte-Carlo仿真仅基于使用光束类型的光源,但我们考虑LED源的特性,并建议使用LED源模拟光传播的方法。为了使Monte-Carlo模拟LED源,我们修改初始化模拟中的光子的步骤。首先,我们扩展了发射光子的初始区域。其次,我们随机应用了光子的入射角。第三,我们根据LED源和浊度介质之间的接触区域进行不同地执行的方法。最后,与实验结果相比,我们检查了模拟的验证。模拟与实验结果之间的相关系数为0.9771。在本研究中,对于使用LED源测量皮下脂肪的设备的开发,我们制作了模拟漫反射光的有效方法。在未来,我们将通过我们提出的仿真方法,在吸脂手术期间开发设备以测量脂肪厚度和IT的不规则性。

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