首页> 外文会议>Society of Photo-Optical Instrumentation Engineers;Conference on Photons Plus Ultrasound: Imaging and Sensing >Monte Carlo Simulation for Improving Spectral Photoacoustic Imaging-Based Oxygen Saturation Estimation of Human Placental Tissue
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Monte Carlo Simulation for Improving Spectral Photoacoustic Imaging-Based Oxygen Saturation Estimation of Human Placental Tissue

机译:蒙特卡罗模拟,用于改进基于光谱的光声成像的人胎盘组织的氧饱和度估计

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Using spectral photoacoustic imaging (sPAI) to estimate oxygen saturation of tissue at depth suffers frominaccuracies due to the unknown optical absorption and scattering properties of tissue. Because of the highscattering and absorption of light by tissue, the estimation of concentrations of Hb and HbO2 from the measuredphotoacoustic (PA) signal intensity can be erroneous. Simulation of wavelength-dependent light transport intissue can help to estimate the local fluence distribution within the tissue. In this work, a Monte Carlo simulationhas been implemented to simulate the fluence distribution in placental tissue. We obtained sPAI images of exvivo human placental tissue and demonstrate improved estimations of hemoglobin oxygen saturation by usinga fluence correction derived from the Monte Carlo simulation. The results show that with simulation correction,the oxygen saturation value is 12.61±3% which is closer to the value 6.8% directly measured from ex vivohuman placenta using invasive oxygen probe.
机译:使用光谱光声成像(sPAI)估算深处组织的氧饱和度 由于未知的组织光吸收和散射特性而导致的误差。因为高 通过组织对光的散射和吸收,根据测得的Hb和HbO2浓度进行估算 光声(PA)信号强度可能是错误的。模拟与波长有关的光传输 组织可以帮助估计组织内的局部注量分布。在这项工作中,进行了蒙特卡洛模拟 已经实施以模拟胎盘组织中的注量分布。我们获得了ex的sPAI图像 体内人类胎盘组织,并通过使用改进的血红蛋白氧饱和度评估方法进行了验证 从蒙特卡洛模拟得出的注量校正。结果表明,通过仿真校正, 氧饱和度值为12.61±3%,接近离体直接测量值6.8% 人胎盘使用有创氧探头。

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