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用于乳腺癌检测的频域漫射光学层析成像仪的仪器设备与设计

Instrumentation and design of a frequency-domain diffuse optical tomography imager for breast cancer detection.

作者信息

Pogue B, Testorf M, McBride T, Osterberg U, Paulsen K

出版信息

Opt Express. 1997 Dec 22;1(13):391-403. doi: 10.1364/oe.1.000391.

Abstract

The instrument development and design of a prototype frequency-domain optical imaging device for breast cancer detection is described in detail. This device employs radio-frequency intensity modulated near-infrared light to image quantitatively both the scattering and absorption coefficients of tissue. The functioning components of the system include a laser diode and a photomultiplier tube, which are multiplexed automatically through 32 large core fiber optic bundles using high precision linear translation stages. Image reconstruction is based on a finite element solution of the diffusion equation. This tool for solving the forward problem of photon migration is coupled to an iterative optical property estimation algorithm, which uses a Levenberg-Marquardt routine with total variation minimization. The result of this development is an automated frequency-domain optical imager for computed tomography which produces quantitatively accurate images of the test phantoms used to date. This paper is a description and characterization of an automated frequency-domain computed tomography scanner, which is more quantitative than earlier systems used in diaphanography because of the combination of intensity modulated signal detection and iterative image reconstruction.

摘要

本文详细描述了一种用于乳腺癌检测的频域光学成像设备的仪器开发与原型设计。该设备采用射频强度调制近红外光对组织的散射系数和吸收系数进行定量成像。系统的功能组件包括一个激光二极管和一个光电倍增管,它们通过高精度线性平移台自动复用32根大芯光纤束。图像重建基于扩散方程的有限元解。这个用于解决光子迁移正向问题的工具与一种迭代光学特性估计算法相结合,该算法使用具有总变差最小化的Levenberg-Marquardt例程。这一开发成果是一种用于计算机断层扫描的自动频域光学成像仪,它能够对迄今使用的测试体模生成定量准确的图像。本文是对一种自动频域计算机断层扫描扫描仪的描述与特性介绍,由于强度调制信号检测和迭代图像重建相结合,该扫描仪比早期用于透照术的系统更具定量性。

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