Coherent Multi-Transducer Ultrasound Imaging with Microbubble Contrast Agents

K. Christensen-Jeffries, L. Peralta, M. Reinwald, J. Hajnal, R. Eckersley
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引用次数: 4

Abstract

A coherent multi-transducer ultrasound imaging system (CoMTUS) enables an extended effective aperture through coherent combination of multiple transducers. The resulting larger effective aperture improves the ultrasound imaging performance. The optimal beamforming parameters, which include the transducer locations and the average speed of sound in the medium, are deduced by maximizing the coherence of the received radio frequency data by cross-correlation. In this technique, the detection of multiple isolated point-like targets in the overlap of the insonated regions is mandatory to determine the relative probe-to-probe position. This study proposes the use of microbubbles to generate the point-like targets that the CoMTUS approach requires. The first phantom images produced using CoMTUS and microbubbles are presented here.
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相干多换能器超声成像与微泡造影剂
相干多换能器超声成像系统(CoMTUS)通过多个换能器的相干组合实现有效孔径的扩展。由此产生的更大的有效孔径提高了超声成像性能。通过相互关联,最大限度地提高接收到的射频数据的相干性,从而推导出包括换能器位置和介质中平均声速在内的最佳波束形成参数。在该技术中,检测多个孤立的点状目标在重叠的受热区域是强制性的,以确定相对探针到探针的位置。本研究提出使用微泡来产生CoMTUS方法所需的点状目标。这里展示了使用CoMTUS和微气泡产生的第一个幻影图像。
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