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Coherent Multi-Transducer Ultrasound Imaging

机译:相干多换能器超声成像

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摘要

This work extends the effective aperture size by coherently compounding the received radio frequency data from multiple transducers. As a result, it is possible to obtain an improved image, with enhanced resolution, an extended field of view (FoV), and high-acquisition frame rates. A framework is developed in which an ultrasound imaging system consisting of N synchronized matrix arrays, each with partly shared FoV, take turns to transmit plane waves (PWs). Only one individual transducer transmits at each time while all N transducers simultaneously receive. The subwavelength localization accuracy required to combine information from multiple transducers is achieved without the use of any external tracking device. The method developed in this study is based on the study of the backscattered echoes received by the same transducer and resulting from a targeted scatterer point in the medium insonated by the multiple ultrasound probes of the system. The current transducer locations along with the speed of sound in the medium are deduced by optimizing the cross correlation between these echoes. The method is demonstrated experimentally in 2-D for two linear arrays using point targets and anechoic lesion phantoms. The first demonstration of a free-hand experiment is also shown. Results demonstrate that the coherent multi-transducer ultrasound imaging method has the potential to improve ultrasound image quality, improving resolution, and target detectability. Compared with coherent PW compounding using a single probe, lateral resolution improved from 1.56 to 0.71 mm in the coherent multi-transducer imaging method without acquisition frame rate sacrifice (acquisition frame rate 5350 Hz).
机译:通过对来自多个换能器的射频数据进行相干合成,这项工作扩展了有效孔径的大小。结果,可以获得具有增强的分辨率,扩展的视场(FoV)和高采集帧速率的改进图像。开发了一个框架,其中由N个同步矩阵阵列组成的超声成像系统轮流发送平面波(PW),每个阵列均具有部分共享的FoV。每次仅发送一个传感器,而所有N个传感器同时接收。无需使用任何外部跟踪设备即可实现组合来自多个换能器的信息所需的亚波长定位精度。本研究中开发的方法基于对同一换能器接收到的反向散射回波的研究,这些回波是由系统的多个超声探头在介质中定向的散射点产生的。通过优化这些回声之间的互相关,可以得出当前换能器的位置以及介质中的声速。对于二维线性阵列,使用点目标和消声病变体模以二维方式对该方法进行了实验验证。还显示了徒手实验的第一个演示。结果表明,相干多换能器超声成像方法具有改善超声图像质量,提高分辨率和目标可检测性的潜力。与使用单个探针的相干PW复合相比,相干多换能器成像方法的横向分辨率从1.56毫米提高到0.71毫米,而无需牺牲采集速率(采集帧速率5350 Hz)。

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