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Imaging of tumor hypermetabolism with near-infrared fluorescence contrast agents

机译:近红外荧光造影剂的肿瘤超代谢成像

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We have developed a high sensitivity near-infrared (NIR) optical imaging system for non-invasive cancer detection through molecular labeled fluorescent contrast agents. Near-infrared (NIR) imaging can probe tissue deeply thus possess the potential for non-invasively detection of breast or lymph node cancer. Recent developments in molecular beacons can selectively label various pre-cancer/cancer signatures and provide high tumor to background contrast. To increase the sensitivity in detecting fluorescent photons and the accuracy of localization, phase cancellation (in- and anti-phase) device is employed. This frequency-domain system utilizes the interference-like pattern of diffuse photon density wave to achieve high detection sensitivity and localization accuracy for the fluorescent heterogeneity embedded inside the scattering media. The opto-electronic system consists of the laser sources, fiber optics, interference filter to select the fluorescent photons and the high sensitivity photon detector (photomultiplier tube). The source-detector pair scans the tissue surface in multiple directions and the two-dimensional localization image can be obtained using goniometric reconstruction. In vivo measurements with tumor-bearing mouse model using the novel Cypate-mono-2-deoxy-glucose (Cypate-2-D-Glucosamide) fluorescent contrast agent, which targets the enhanced tumor glycolysis, demonstrated the feasibility on detection of 2 cm deep subsurface tumor in the tissue-like medium, with a localization accuracy within 2 ~ 3 mm. This instrument has the potential for tumor diagnosis and imaging, and the accuracy of the localization suggests that this system could help to guide the clinical fine-needle biopsy. This portable device would be complementary to X-ray mammogram and provide add-on information on early diagnosis and localization of early breast tumor.
机译:我们已经开发了近红外高灵敏度(NIR)光学成像系统,用于非侵入性癌症的检测通过分子标记的荧光造影剂。近红外(NIR)成像可以探测组织深深地从而具有用于非侵入性检测乳腺癌或淋巴结癌症的潜力。在分子信标最近的发展可以选择性标记各种预癌/肿瘤的签名,并提供高肿瘤到背景的对比度。为了提高检测荧光的光子的敏感性和定位的精确度,相位抵消(输入和反相位)装置使用。此频域系统利用干扰状漫射光子密度波的图案,以实现为嵌入式散射介质内部的荧光异质性高的检测灵敏度和定位精度。在光电系统包括激光源,光纤,干涉滤光器来选择荧光光子和高灵敏度光子检测器(光电倍增管)。源 - 检测器对扫描组织表面在多个方向上,并且可以使用测角重建来获得所述二维定位图像。在使用该新型Cypate-单-2-脱氧葡萄糖体内测量用荷瘤小鼠模型(Cypate -2- d-葡糖)荧光对比剂,其靶向增强的肿瘤糖酵解,表明深上检测为2厘米的可行性地下肿瘤在组织样介质,具有在2〜3mm的定位精度。本仪器具有对肿瘤的诊断和成像的潜力,定位的精确度表明,该系统可帮助指导临床细针活检。这种便携式设备将X射线乳房X射线照片和互补提供附加信息,早期诊断和早期乳腺肿瘤的定位。

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