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Effect of scattering on coherent anti-Stokes Raman scattering (CARS) signals

机译:散射对相干反斯托克斯拉曼散射(CARS)信号的影响

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摘要

We develop a computational framework to examine the factors responsible for scattering-induced distortions of coherent anti-Stokes Raman scattering (CARS) signals in turbid samples. We apply the Huygens-Fresnel wave-based electric field superposition (HF-WEFS) method combined with the radiating dipole approximation to compute the effects of scattering-induced distortions of focal excitation fields on the far-field CARS signal. We analyze the effect of spherical scatterers, placed in the vicinity of the focal volume, on the CARS signal emitted by different objects (2μm diameter solid sphere, 2μm diameter myelin cylinder and 2μm diameter myelin tube). We find that distortions in the CARS signals arise not only from attenuation of the focal field but also from scattering-induced changes in the spatial phase that modifies the angular distribution of the CARS emission. Our simulations further show that CARS signal attenuation can be minimized by using a high numerical aperture condenser. Moreover, unlike the CARS intensity image, CARS images formed by taking the ratio of CARS signals obtained using x- and y-polarized input fields is relatively insensitive to the effects of spherical scatterers. Our computational framework provide a mechanistic approach to characterizing scattering-induced distortions in coherent imaging of turbid media and may inspire bottom-up approaches for adaptive optical methods for image correction.
机译:我们开发了一个计算框架,以检查造成浑浊样品中相干反斯托克斯拉曼散射(CARS)信号的散射诱导失真的因素。我们将基于惠更斯-菲涅耳波的电场叠加(HF-WEFS)方法与辐射偶极近似相结合,以计算散射激发的聚焦激发场畸变对远场CARS信号的影响。我们分析了位于散射体附近的球形散射体对不同物体(直径为2μm的实心球,直径为2μm的髓磷脂圆柱和直径为2μm的髓磷脂管)发出的CARS信号的影响。我们发现,CARS信号中的失真不仅是由焦场的衰减引起的,而且还由散射引起的空间相位的变化而引起,这些变化改变了CARS发射的角度分布。我们的仿真进一步表明,通过使用高数值孔径的聚光镜,可以将CARS信号的衰减降至最低。此外,与CARS强度图像不同,通过获取使用x和y偏振输入场获得的CARS信号的比率而形成的CARS图像对球形散射体的影响相对不敏感。我们的计算框架提供了一种机制方法来表征浑浊介质相干成像中的散射引起的畸变,并且可能会启发自底向上的方法进行自适应光学方法进行图像校正。

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