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首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Assessment of signals from a tissue phantom subjected to radiation sources of temporal Spans of the order of a nano-, pico-, and femto-second-A numerical study
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Assessment of signals from a tissue phantom subjected to radiation sources of temporal Spans of the order of a nano-, pico-, and femto-second-A numerical study

机译:评估来自受时间跨度辐射源影响的组织模型的信号的数量级为纳秒,皮秒和飞秒的数值研究

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摘要

This article reports and analyzes signals originating from a human tissue phantom subjected to a short-pulse laser that can have a temporal span of the order of a nano-, pico-, or a femto-second. Temporal spans having both step and Gaussian distributions are considered. To assess the case of an actual tissue phantom which is an inhomogeneous medium, results have been analyzed by also considering tissue phantom to be a homogeneous medium having the same optical thickness as that of the total optical thickness of the inhomogeneous (real) tissue. Signals for a laser having a temporal span of the order of a nano-second have been found to be more distinct and last longer. With inhomogeneous tissue, for both step and Gaussian temporal profiles, temporal spans of the signals have been found to be more. The analysis has been done using the finite volume method.
机译:本文报告并分析了受到短脉冲激光的人体组织幻像发出的信号,该信号的时间跨度约为纳秒,皮秒或飞秒。考虑具有阶跃和高斯分布的时间跨度。为了评估作为不均匀介质的实际组织体模的情况,还通过将组织体模视为具有与不均匀(真实)组织的总光学厚度相同的光学厚度的均匀介质来分析结果。已经发现具有纳秒量级的时间跨度的激光器的信号更明显并且持续时间更长。对于不均匀的组织,对于阶跃和高斯时间轮廓,信号的时间跨度都更大。使用有限体积方法进行了分析。

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