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Monte Carlo modeling of spatially complex tissue for the optimization of optical pulse oximeters

机译:用于光学脉搏血氧仪优化的空间复杂组织的Monte Carlo建模

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Monte Carlo modeling of photon propagation has been used in the examination of particular areas of the body to further enhance the understanding of light propagation through tissue. This work seeks to improve upon the established simulation methods through more accurate representations of the simulated tissues in the wrist as well as the characteristics of the light source. The Monte Carlo simulation program was developed using Matlab. Generation of different tissue domains, such as muscle, vasculature, and bone, was performed in Solidworks, where each domain was saved as a separate .stl file that was read into the program. The light source was altered to give considerations to both viewing angle of the simulated LED as well as the nominal diameter of the source. It is believed that the use of these more accurate models generates results that more closely match those seen in-vivo, and can be used to better guide the design of optical wrist-worn measurement devices.
机译:对光子传播的蒙特卡洛建模已用于检查身体的特定区域,以进一步增强对通过组织传播的光的理解。这项工作旨在通过更准确地表示手腕中的模拟组织以及光源的特性来改进已建立的模拟方法。蒙特卡罗模拟程序是使用Matlab开发的。在Solidworks中执行了不同组织域的生成,例如肌肉,脉管系统和骨骼,其中每个域都保存为一个单独的.stl文件,该文件被读入程序。更改光源以考虑模拟LED的视角以及光源的标称直径。相信使用这些更精确的模型所产生的结果与体内观察到的结果更加接近,并且可以用来更好地指导光学腕戴式测量设备的设计。

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  • 会议地点 San Francisco(US)
  • 作者单位

    Department of Biomedical Engineering, Texas AM University, College Station, TX;

    Department of Biomedical Engineering, Texas AM University, College Station, TX;

    Department of Biomedical Engineering, Texas AM University, College Station, TX,Center for Remote Health Technologies and Systems, Texas AM Engineering Experiment Station College Station, TX;

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