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Optimal Probing of Optical Contrast of Breast Lesions of Different Size Located at Different Depths by US Localization

机译:通过美国本地化对不同深度不同深度的乳腺病变光学对比度的最佳探测

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摘要

We report a frequency domain optical tomography system utilizing three RF modulation frequencies, which are optimized for probing breast lesions of different size located at different depths. A real-time co-registered ultrasound scanner is used to provide on-site estimation of lesion size and location. Based on the lesion information, an optimal light modulation frequency can be selected, which may yield more accurate estimates of lesion angiogenesis and hypoxia. Phantom experiments have demonstrated that a high modulation frequency, such as 350Mhz, is preferable for probing small lesions closer to the surface while a low modulation frequency, such as 50Mhz, is desirable for imaging deeper and larger lesions. A clinical example of a large invasive carcinoma is presented to demonstrate the application of this novel technique.
机译:我们报告了一种利用三个RF调制频率的频域光学层析成像系统,这些系统已优化用于探测位于不同深度的不同大小的乳房病变。实时共同注册的超声扫描仪用于提供病变大小和位置的现场估计。基于病变信息,可以选择最佳的光调制频率,其可以产生病变血管生成和缺氧的更准确的估计。幻影实验已经证明,较高的调制频率(例如350Mhz)对于探测更靠近表面的小病变是优选的,而较低的调制频率(例如50Mhz)则对于对更深和较大的病变进行成像是理想的。提出了一个大型浸润性癌的临床实例,以证明该新技术的应用。

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