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Three-dimensional evaluation of microvascular networks using contrast-enhanced ultrasound and microbubble tracking

机译:超声造影和微泡跟踪技术对微血管网络进行三维评估

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Evaluating tumor microvascular networks with use of contrast-enhanced ultrasound (CEUS) imaging and one-dimensional (1D) linear array transducers have inherit limitations as tumors exist in volume space. The use of a mechanical sweep allows users to overcome this limitation. To that end, we have developed a new method by which a 1D linear array transducer can be mechanically scanned over a region-of-interest to capture a volume of data allowing for the evaluation of microvasculature structures in 3D space. After intravascular injection of a microbubble (MB) contrast agent into a developing chicken embryo, a sequence of CEUS images were acquired using a Vevo 3100 scanner (VisualSonics Inc) and taken at multiple tissue cross-sections. The CEUS images were processed with a singular value filter (SVF) to help remove any clutter signal. MB localization was performed, and frame-to-frame MB movement was analyzed to produce spatial maps depicting blood flow and velocity at each tissue cross-section. Reconstruction of all images allowed visualization of microvascular networks and blood velocity distribution in volume space.
机译:由于肿瘤存在于体积空间中,使用对比增强超声(CEUS)成像和一维(1D)线性阵列换能器评估肿瘤微血管网络具有继承性局限性。机械扫掠的使用允许用户克服该限制。为此,我们开发了一种新方法,通过该方法,可以在目标区域上对一维线性阵列换能器进行机械扫描,以捕获大量数据,从而可以评估3D空间中的微脉管结构。在向发育中的鸡胚内血管内注射微泡(MB)造影剂后,使用Vevo 3100扫描仪(VisualSonics Inc)获取一系列CEUS图像,并在多个组织横截面上拍摄。使用奇异值滤波器(SVF)处理CEUS图像,以帮助消除任何杂波信号。进行MB定位,并分析逐帧MB运动以生成描述每个组织横截面的血流和速度的空间图。所有图像的重建允许微血管网络的可视化和体积空间中的血流速度分布。

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