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Penetration depth of single-, two-, and three-photon fluorescence microscopic imaging through human cortex structures: Monte Carlo simulation

机译:单光,二光和三光子荧光显微成像通过人体皮质结构的穿透深度:蒙特卡洛模拟

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摘要

Penetration depth is investigated in terms of the performance of transverse image resolution and signal level in human cortex under single-, two-, and three-photon fluorescence microscopy. Simulation results show that, in a double-layer human cortex structure consisting of gray and white matter media, the signal level is strongly affected by the existence of the white matter medium under three-photon excitation. Compared with three-photon excitation, two-photon excitation keeps a better signal level and sacrifices a slight degradation in image resolution. In a thick gray matter medium, a penetration depth of 1500 mum with a near-diffraction-limited resolution is obtainable under three-photon excitation. It is also demonstrated that the numerical aperture has a slight influence on image resolution and signal level under two- and three-photon excitation because of the nonlinear nature in the excitation process. (C) 2003 Optical Society of America. [References: 25]
机译:在单光,二光和三光子荧光显微镜下,根据横向图像分辨率和人类皮层中信号水平的性能研究穿透深度。仿真结果表明,在由灰和白质介质组成的双层人体皮质结构中,三光子激发下白质介质的存在强烈影响信号水平。与三光子激发相比,两光子激发保持更好的信号水平,并且牺牲了图像分辨率的轻微降低。在厚的灰质介质中,在三光子激发下可获得具有近衍射极限分辨率的1500 m的穿透深度。还证明了由于在激发过程中的非线性特性,数值孔径在两光子和三光子激发下对图像分辨率和信号电平有轻微的影响。 (C)2003年美国眼镜学会。 [参考:25]

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