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Improved quality of freehand 3-D ultrasound color flow imaging by multi-angle compounding

机译:通过多角度复合提高手绘3D超声彩色流成像的质量

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3-D imaging of blood flow based on 2-D ultrasound scanning and position sensor information can be used to portray clinical information not currently available in vascular and peripheral imaging. During surgery, information of blood flow is important to identify and avoid damage to important vessels. 3-D intraoperative ultrasound flow imaging has proven useful in this respect. However, due to Doppler angle-dependencies and the complexity of the vascular architecture, the generated 3-D image of blood vessels often have drop-outs in the vessel structure. In this work we aim to reduce the number of drop-outs in the 3-D blood flow images by combining 2-D flow images with different transmit angles. The compounded 2-D images are further reconstructed to a 3-D flow image based on information from an accurate position sensor system. The method was implemented on a research ultrasound scanner for real-time processing of the data, and in vitro trials showed promising results. The method also showed promising results in vivo using a clinical approved high-end scanner, improving the 3-D image quality of the feeding arteries of an arteriovenous malformation.
机译:基于2-D超声扫描和位置传感器信息的血流3-D成像可用于描绘目前在血管和外围成像中使用的临床信息。在手术过程中,血流信息对于识别和避免对重要血管造成损害很重要。在这方面证明了3-D术中超声波的成像。然而,由于多普勒角度依赖性和血管架构的复杂性,所产生的血管的3-D图像通常在血管结构中脱落。在这项工作中,我们的目标是通过将具有不同发射角度的二进制流图像组合来减少三维血流图像中的辍学次数。基于来自精确位置传感器系统的信息,进一步重建到3-D流图像的复合的2-D图像。该方法在研究超声扫描仪上实施,用于实时处理数据,并且体外试验显示出现有前途的结果。该方法还显示了使用临床认可的高端扫描仪体内体内有前途的结果,提高了动静脉畸形的饲养动脉的3-D图像质量。

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