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透明和散射介质中时间聚焦特性的数值评估。

Numerical evaluation of temporal focusing characteristics in transparent and scattering media.

作者信息

Dana Hod, Shoham Shy

机构信息

Faculty of Biomedical Engineering, The Technion–I.I.T., Haifa, Israel.

出版信息

Opt Express. 2011 Mar 14;19(6):4937-48. doi: 10.1364/OE.19.004937.

Abstract

Temporal focusing is a simple approach for achieving tight, optically sectioned excitation in nonlinear microscopy and multiphoton photo-manipulation. Key applications and advantages of temporal focusing involve propagation through scattering media, but the progressive broadening of the temporal focus has not been characterized. By combining a detailed geometrical optics model with Monte-Carlo scattering simulations we introduce and validate a simulation strategy for predicting temporal focusing characteristics in scattering and non-scattering media. The broadening of the temporal focus width with increasing depth in brain tissue is studied using both simulations and experiments for several key optical geometries, and an analytical approximation is found for the dependence of this broadening on the microscope's parameters in a transparent medium. Our results indicate that a multiphoton temporal focus has radically different broadening characteristics in deep tissue than those of a spatial focus.

摘要

时间聚焦是在非线性显微镜和多光子光操纵中实现紧密、光学切片激发的一种简单方法。时间聚焦的关键应用和优势涉及通过散射介质的传播,但时间焦点的逐渐展宽尚未得到表征。通过将详细的几何光学模型与蒙特卡罗散射模拟相结合,我们引入并验证了一种用于预测散射和非散射介质中时间聚焦特性的模拟策略。针对几种关键光学几何结构,使用模拟和实验研究了脑组织中时间焦点宽度随深度增加的展宽情况,并找到了这种展宽对透明介质中显微镜参数依赖性的解析近似。我们的结果表明,多光子时间焦点在深层组织中的展宽特性与空间焦点的展宽特性截然不同。

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