非侵入性,对比增强光谱成像乳腺癌特征的临床前动物模型在体内。

V Krishnan Ramanujan, Songyang Ren, Sangyong Park, Daniel L Farkas
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引用次数: 12

摘要

我们在此报告了一种非侵入性多光谱成像平台,用于监测临床前大鼠模型中原发性乳腺癌和转移性淋巴结的光谱反射和荧光图像。该系统围绕单色光源和声光可调滤波器(AOTF)构建,用于光谱选择。在广泛使用的淋巴管蛋白染料存在的情况下,对测量的反射谱进行定量分析,清楚地证明了所提出的成像平台在原发性肿瘤和转移性淋巴管中检测肿瘤相关光谱特征的能力。肿瘤相关的血管氧合和间质液压力变化被认为是测量到的反射曲线的生理来源。我们还讨论了我们的成像平台在术中临床环境中的转化潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Non-invasive, Contrast-enhanced Spectral Imaging of Breast Cancer Signatures in Preclinical Animal Models In vivo.

Non-invasive, Contrast-enhanced Spectral Imaging of Breast Cancer Signatures in Preclinical Animal Models In vivo.

Non-invasive, Contrast-enhanced Spectral Imaging of Breast Cancer Signatures in Preclinical Animal Models In vivo.

Non-invasive, Contrast-enhanced Spectral Imaging of Breast Cancer Signatures in Preclinical Animal Models In vivo.

We report here a non-invasive multispectral imaging platform for monitoring spectral reflectance and fluorescence images from primary breast carcinoma and metastatic lymph nodes in preclinical rat model in vivo. The system is built around a monochromator light source and an acousto-optic tunable filter (AOTF) for spectral selection. Quantitative analysis of the measured reflectance profiles in the presence of a widely-used lymphazurin dye clearly demonstrates the capability of the proposed imaging platform to detect tumor-associated spectral signatures in the primary tumors as well as metastatic lymphatics. Tumor-associated changes in vascular oxygenation and interstitial fluid pressure are reasoned to be the physiological sources of the measured reflectance profiles. We also discuss the translational potential of our imaging platform in intra-operative clinical setting.

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