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Plane wave imaging combined with eigenspace-based minimum variance beamforming using a ring array in ultrasound computed tomography

机译:平面波成像结合基于特征空间的最小方差波束形成,在超声计算机断层摄影中使用环形阵列

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Ultrasound computed tomography (USCT) is usually realized with a ring array. It can provide better imaging performance and more tissue information by emitting and receiving the ultrasound signal in different directions simultaneously. However, USCT imaging is usually applied with the synthetic aperture (SA) emission method, which leads to a long scanning time with a large number of elements on the ring array. The echo image can provide the structural information, and has a higher resolution than maps of other parameters in USCT. Hence, we proposed plane wave (PW) imaging for ring array to acquire the echo wave and reduce the scanning time considerably. In this paper, an emitting and receiving process was proposed to realize plane wave imaging with a ring array. With the proposed scanning method, the number of emission events can be reduced greatly. A beamforming method based on the eigenspace-based minimum variance (ESBMV) was also combined with the scanning method. With ESBMV beamformer, the resolution and contrast ratio of reconstruction result can be maintained or even improved under a fewer-emissions condition. We validated the method using both computer simulations with Field II and phantom experiments with a ring array of 512 elements. The Verasonics? system was used to transmit and receive the ultrasound signal in the phantom experiments. According to the results of the experiments, the imaging results will have a better contrast ratio with a higher emitting energy. Additionally, the scanning time with the proposed method can be only one-tenth of that with the SA emission method, while the echo imaging performance still remains at a similar level or even better.
机译:超声计算机断层扫描(USCT)通常通过环形阵列实现。通过同时在不同方向上发射和接收超声信号,它可以提供更好的成像性能和更多的组织信息。但是,USCT成像通常以合成孔径(SA)发射方法应用,这导致在环形阵列上使用大量元素的扫描时间较长。回波图像可以提供结构信息,并且具有比USCT中其他参数的图更高的分辨率。因此,我们提出了环形阵列的平面波成像技术,以获取回波并显着减少扫描时间。本文提出了一种发射和接收过程,以实现环形阵列的平面波成像。利用所提出的扫描方法,可以大大减少发射事件的数量。基于特征空间的最小方差(ESBMV)的波束形成方法也与扫描方法相结合。使用ESBMV波束形成器,可以在更少的辐射条件下保持甚至提高重建结果的分辨率和对比度。我们使用Field II的计算机模拟和具有512个元素的环形阵列的幻像实验对方法进行了验证。 Verasonics?系统在幻像实验中用于发送和接收超声信号。根据实验结果,成像结果将具有更好的对比度和更高的发射能量。另外,所提出的方法的扫描时间可以仅为SA发射方法的扫描时间的十分之一,而回波成像性能仍保持在相似水平甚至更好。

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