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The application of acoustic angiography to assess the progression of angiogenesis in a spontaneous mouse model of breast cancer

机译:声学血管造影在评估自发性乳腺癌小鼠血管生成过程中的应用

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Acoustic angiography is a method for contrast enhanced ultrasound imaging that provides sufficient contrast and resolution to visualize microvasculature non-invasively. A dual-frequency transducer is used to transmit at low frequency and receive high frequency (superharmonic) echoes originating from intravascular microbubbles. Analysis of these images in healthy and tumor-bearing mice revealed that tumors possess quantifiably different vascular structure than healthy control animals, through measurements of vascular density and 2 metrics of tortuosity. Furthermore, tortuosity is correlated to proximity to the tumor margin, and distal tissue surrounding tumor regions has an intermediate level of tortuosity between that of tumor and control tissue. Overall, these results indicate that acoustic angiography images can reveal microvasculature in sufficient detail for vascular morphology to be used as a biomarker for cancer imaging.
机译:声学血管造影是一种用于造影增强超声成像的方法,可提供足够的对比度和分辨率以无创地可视化微脉管系统。双频换能器用于低频发射并接收源自血管内微泡的高频(超谐波)回波。对健康和荷瘤小鼠的这些图像进行分析后发现,通过测量血管密度和2种曲折度,肿瘤与健康对照组动物相比具有定量不同的血管结构。此外,曲折度与接近肿瘤边缘相关,并且肿瘤区域周围的远侧组织在肿瘤与对照组织之间具有中等程度的曲折度。总体而言,这些结果表明,声波血管造影图像可以足够详细地揭示微脉管系统,从而使血管形态学可以用作癌症成像的生物标记。

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