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Development of Theoretical Oxygen Saturation Calibration Curve Based on Optical Density Ratio and Optical Simulation Approach

机译:基于光密度比和光学仿真方法的理论氧饱和度校准曲线的开发

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The implementation of surface-based Monte Carlo simulation technique for oxygen saturation (SaO_2) calibration curve estimation is demonstrated in this paper. Generally, the calibration curve is estimated either from the empirical study using animals as the subject of experiment or is derived from mathematical equations. However, the determination of calibration curve using animal is time consuming and requires expertise to conduct the experiment. Alternatively, an optical simulation technique has been used widely in the biomedical optics field due to its capability to exhibit the real tissue behavior. The mathematical relationship between optical density (OD) and optical density ratios (ODR) associated with SaO_2 during systole and diastole is used as the basis of obtaining the theoretical calibration curve. The optical properties correspond to systolic and diastolic behaviors were applied to the tissue model to mimic the optical properties of the tissues. Based on the absorbed ray flux at detectors, the OD and ODR were successfully calculated. The simulation results of optical density ratio occurred at every 20 % interval of SaO_2 is presented with maximum error of 2.17 % when comparing it with previous numerical simulation technique (MC model). The findings reveal the potential of the proposed method to be used for extended calibration curve study using other wavelength pair.
机译:本文证明了用于氧饱和度(SAO_2)校准曲线估计的基于表面的蒙特卡罗模拟技术的实现。通常,校准曲线估计使用动物作为实验对象的实证研究估计,或者来自数学方程。然而,使用动物的校准曲线的测定是耗时的,需要专门知识来进行实验。或者,由于其表现出真实组织行为的能力,光学仿真技术在生物医学光学领域中广泛使用。用Systole和DiaStole期间与SAO_2相关联的光密度(OD)和光学密度比(ODR)之间的数学关系作为获得理论校准曲线的基础。将光学性质对应于组织模型的组织模型对应于收缩性和舒张性行为以模拟组织的光学性质。基于探测器的吸收射线通量,成功计算了OD和ODR。在与先前数值模拟技术(MC模型)比较时,在SaO_2的每个20%间隔发生在SaO_2的每个20%间隔的光密度比的仿真结果在于2.17%的最大误差。结果揭示了使用其他波长对进行扩展校准曲线研究的所提出的方法的潜力。

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