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多波长时域光学乳腺成像

Multi-wavelength time domain optical mammography.

作者信息

Taroni P, Spinelli L, Torricelli A, Pifferi A, Danesini G M, Cubeddu R

机构信息

CNR-INFM and CNR-IFN, Politecnico di Milano--Dipartimento di Fisica, Piazza Leonardo da Vinci 32, I-20133 Milan, Italy.

出版信息

Technol Cancer Res Treat. 2005 Oct;4(5):527-38. doi: 10.1177/153303460500400506.

Abstract

A time-resolved optical mammograph operating at 7 wavelengths (637, 683, 785, 832, 905, 916, and 975 nm) in compressed breast geometry was developed. Its clinical application was started on patients bearing malignant and benign lesions. Late gated intensity images are used to obtain information on the spatial distribution of the absorption properties of breast. Scattering images derived from the diffusion theory are also applied for lesion detection and characterization. Cancers are identified in intensity images at short wavelengths, due to the high blood content, while cysts are typically characterized by low scattering at all wavelengths. The increase (from 4 to 7) in the number of wavelengths as compared to the previous versions of the instrument aims at improving the robustness of the fitting procedures for a better estimate of tissue composition and structure and of physiological parameters. Moreover, the new wavelengths contribute to the qualitatively identify tissue composition from intensity images, and could assist lesion detection.

摘要

开发了一种在压缩乳房几何形状下以7种波长(637、683、785、832、905、916和975纳米)运行的时间分辨光学乳腺成像仪。其临床应用已在患有恶性和良性病变的患者身上展开。晚期选通强度图像用于获取有关乳房吸收特性空间分布的信息。基于扩散理论的散射图像也用于病变检测和特征描述。由于血液含量高,在短波长强度图像中可识别出癌症,而囊肿通常在所有波长下散射都较低。与该仪器的先前版本相比,波长数量增加(从4个增加到7个)旨在提高拟合程序的稳健性,以便更好地估计组织成分、结构和生理参数。此外,新波长有助于从强度图像中定性识别组织成分,并可协助病变检测。

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