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Three Dimensional Near Infrared Tomography of the Breast

机译:乳房的三维近红外断层扫描

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摘要

Near-Infrared (NIR) Diffuse Optical Tomography (DOT) is a non-invasive imaging technique which is used to obtain functional and physiological images of soft tissue, such as the female breast, specifically for the detection and characterization of breast cancer. The vast majority of the work to date has been limited to two dimensional (2D) models which have provided valuable insight into tissue function and physiology enabling a better understanding of tumor development and treatment. Although the 2D image reconstruction approach is fast and computationally efficient, it has limitations as it does not correctly represent the volume under investigation and therefore do not provide the most accurate model for image reconstruction. Three dimensional (3D) modeling and image reconstruction is becoming more accessible through the development of sophisticated numerical models and computationally fast algorithms. A robust and general method is presented which reconstructs 3D functional images using a more accurate and realistic spectral model of 3D light propagation in tissue. Results from a single patient example are presented to demonstrate the clinical importance of 3D image reconstruction in optical tomography for the detection and characterization of breast cancer.
机译:近红外(NIR)漫射光学层析成像(DOT)是一种非侵入性成像技术,用于获取诸如女性乳房等软组织的功能和生理图像,专门用于检测和表征乳腺癌。迄今为止,绝大多数工作仅限于二维(2D)模型,该模型为组织功能和生理学提供了宝贵的见识,使人们能够更好地了解肿瘤的发生和治疗。尽管2D图像重建方法快速且计算效率高,但由于不能正确表示所研究的体积,因此存在局限性,因此无法为图像重建提供最准确的模型。通过开发复杂的数值模型和计算快速的算法,三维(3D)建模和图像重建变得越来越容易。提出了一种鲁棒而通用的方法,该方法使用组织中3D光传播的更准确和逼真的光谱模型来重建3D功能图像。给出了来自单个患者实例的结果,以证明3D图像重建在光学层析成像中对乳腺癌的检测和表征的临床重要性。

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