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Comprehensive approach to breast cancer detection using light: photonlocalization by ultrasound modulation and tissue characterization by spectraldiscrimination,

机译:使用光检测乳腺癌的综合方法:通过超声调制进行光子定位和通过光谱鉴别进行组织表征,

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Abstract: A new technique called Ultrasound Tagging of Light (UTL) for imaging breast tissue is described. In this approach, photon localization in turbid tissue is achieved by cross- modulating a laser beam with focussed, pulsed ultrasound. Light which passes through the ultrasound focal spot is `tagged' with the frequency of the ultrasound pulse. The experimental system uses an Argon-Ion laser, a single PIN photodetector, and a 1 MHz fixed-focus pulsed ultrasound transducer. The utility of UTL as a photon localization technique in scattering media is examined using tissue phantoms consisting of gelatin and intralipid. In a separate study, in vivo optical reflectance spectrophotometry was performed on human breast tumors implanted intramuscularly and subcutaneously in nineteen nude mice. The validity of applying a quadruple wavelength breast cancer discrimination metric (developed using breast biopsy specimens) to the in vivo condition was tested. A scatter diagram for the in vivo model tumors based on this metric is presented using as the `normal' controls the hands and fingers of volunteers. Tumors at different growth stages were studied; these tumors ranged in size from a few millimeters to two centimeters. It is expected that when coupled with a suitable photon localization technique like UTL, spectral discrimination methods like this one will prove useful in the detection of breast cancer by non-ionizing means. !11
机译:摘要:描述了一种称为光超声标记(UTL)的用于对乳腺组织成像的新技术。在这种方法中,通过用聚焦的脉冲超声对激光束进行交叉调制,可以实现混浊组织中的光子定位。穿过超声焦点的光被超声脉冲的频率“标记”。实验系统使用氩离子激光器,单个PIN光电探测器和1 MHz固定焦点脉冲超声换能器。使用由明胶和脂质体内组成的体模检查UTL在散射介质中作为光子定位技术的实用性。在另一项研究中,对十九只裸鼠肌肉内和皮下植入的人乳腺肿瘤进行了体内光反射分光光度法。测试了将四倍波长乳腺癌鉴别指标(使用乳房活检样本开发)应用于体内条件的有效性。由于“正常”控制了志愿者的手和手指,因此给出了基于该指标的体内模型肿瘤散布图。研究了不同生长阶段的肿瘤;这些肿瘤的大小从几毫米到两厘米不等。可以预期的是,当与诸如UTL之类的合适的光子定位技术结合使用时,像这样的光谱鉴别方法将被证明可用于通过非电离手段检测乳腺癌。 !11

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