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扩散介质重新发射光的穿透深度:理论与实验研究。

Penetration depth of light re-emitted by a diffusive medium: theoretical and experimental investigation.

作者信息

Del Bianco Samuele, Martelli Fabrizio, Zaccanti Giovanni

机构信息

Dipartimento di Fisica, dell'Università degli Studi di Firenze, Istituto Nazionale per la Fisica della Materia, Via G Sansonee, 50019 Sesto Fiorentino, Firenze, Italy.

出版信息

Phys Med Biol. 2002 Dec 7;47(23):4131-44. doi: 10.1088/0031-9155/47/23/301.

Abstract

The depth at which photons penetrate into a diffusive medium before being re-emitted has been investigated with reference to a semi-infinite homogeneous medium illuminated by a pencil beam. By using the diffusion equation analytical expressions have been obtained for the probability that photons penetrate at a certain depth before being detected, and for the mean path length they travel inside each layer of the medium. Expressions have been obtained both for the cw and the time domain, and simple approximate scaling relationships describing the dependence on the scattering properties of the medium have been found. For time-resolved measurements both the probability and the mean path length are expected to be independent of the distance from the light beam at which the detector is placed and of the absorption coefficient of the medium. The penetration depth increases as the time of flight increases. In contrast, for cw measurements both the probability and the mean path length strongly depend on the distance and absorption. The penetration depth increases as the distance increases or absorption decreases. The accuracy of the analytical expressions has been demonstrated by comparisons with cw experimental results. The penetration depth and the mean path length provide useful information, for instance, for measurements of tissue oxygenation and for functional imaging of muscle and brain. In particular, the depth reached by received photons provides overall information on the volume of the tissue actually investigated, while the mean path is strictly related to the sensitivity to local variations of absorption.

摘要

针对由笔形光束照射的半无限均匀介质,研究了光子在被重新发射之前穿透扩散介质的深度。通过使用扩散方程,已获得光子在被检测之前穿透到特定深度的概率以及它们在介质各层内传播的平均路径长度的解析表达式。已针对连续波(cw)和时域获得了表达式,并且发现了描述对介质散射特性依赖性的简单近似缩放关系。对于时间分辨测量,预期概率和平均路径长度都与探测器放置位置与光束的距离以及介质的吸收系数无关。穿透深度随飞行时间增加而增加。相比之下,对于连续波测量,概率和平均路径长度都强烈依赖于距离和吸收。穿透深度随距离增加或吸收减少而增加。通过与连续波实验结果的比较证明了解析表达式的准确性。穿透深度和平均路径长度提供了有用的信息,例如,用于组织氧合测量以及肌肉和大脑的功能成像。特别是,接收到的光子到达的深度提供了关于实际研究的组织体积的总体信息,而平均路径与对吸收局部变化的敏感性密切相关。

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