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首页> 外文期刊>Advances in Optical Technologies >A New 3D Simulation Method for the Construction of Optical Phase Contrast Images of Gold Nanoparticle Clusters in Biological Cells
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A New 3D Simulation Method for the Construction of Optical Phase Contrast Images of Gold Nanoparticle Clusters in Biological Cells

机译:构建生物细胞中金纳米粒子团的光学相差图像的3D模拟新方法

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摘要

A new 3D simulation method based on the finite-difference time domain (FDTD) approach in combination with Fourier optic techniques is applied to the modeling of optical phase contrast microscope (OPCM) imaging of gold nanoparticles (NPs) in singe biological cells. We consider a realistic size 3D cell model at optical immersion conditions, that is, when the refractive index values of the cytoplasm and of the extracellular medium are equal. For the first time, an FDTD-based OPCM model is applied to visualize the presence of a cluster of gold NPs in the cytoplasm at both resonant and nonresonant conditions. The results demonstrate the capability to model OPCM image enhancement by optically controlling the resonant properties of the NPs. Our research study extends the applicability of the FDTD modeling approach into a new biomedical optics research area.
机译:一种基于有限时域(FDTD)方法与傅立叶光学技术相结合的新3D仿真方法,被用于模拟生物细胞中金纳米颗粒(NP)的光学相衬显微镜(OPCM)成像。我们考虑在光学浸没条件下,即当细胞质和细胞外培养基的折射率值相等时的逼真的3D细胞模型。第一次,基于FDTD的OPCM模型被用于可视化在共振和非共振条件下细胞质中金纳米颗粒簇的存在。结果证明了通过光学控制NP的共振特性来建模OPCM图像增强的能力。我们的研究将FDTD建模方法的适用性扩展到了新的生物医学光学研究领域。

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