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Estimation of the Elevational Distance between Image Planes by Analysis of Ultrasonic Echoes from Point Scatterers

机译:通过点散射体的超声回波分析估计图像平面之间的上升距离

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There are two approaches to three-dimensional (3D) image reconstruction using a 1D array ultrasonic transducer: mechanical linear scanning and free-hand scanning. Mechanical scanning employs a motorized mechanism to translate the transducer linearly. However, the large size and weight of the scanning system sometimes make it inconvenient to use. In free-hand scanning, a sensor (e.g., electromagnetic or optical) is attached to the ultrasonic transducer to measure the position and orientation of the transducer. These techniques are sensitive to the usage environment. Recently, sensorless free-hand scanning techniques have been developed. Seabra et al. reported sensorless free-hand techniques for the carotid artery by monitoring the velocity of the ultrasound probe [J. C. R. Seabra, L. M. Pedro, and J. F. Ferandes: IEEE Trans. Biomed. Eng. 56 (2009) 1442]. This system achieved an accuracy of 2.5 mm [root mean square (RMS) error] of the location. To develop accurate sensorless measurement, we propose a novel method using the phase shift between ultrasonic RF echoes. In this study, we measured the transmit-receive directivity of a linear-array transducer using a silicone phantom and estimated the elevational distance between two 2D US images using the phase shift. An accuracy of 49.9 μm in RMS, which is less than that of the previous sensorless free-hand method, could be achieved by the proposed method.
机译:使用1D阵列超声换能器进行三维(3D)图像重建的方法有两种:机械线性扫描和徒手扫描。机械扫描采用电动机构来线性移动换能器。然而,扫描系统的大尺寸和重量有时使使用起来不方便。在徒手扫描中,将传感器(例如,电磁的或光学的)附接到超声换能器以测量换能器的位置和方向。这些技术对使用环境敏感。最近,已经开发了无传感器徒手扫描技术。 Seabra等。通过监测超声探头的速度报道了颈动脉无传感器徒手技术[J. C.R. Seabra,L.M.Pedro和J.F.Ferandes:IEEE Trans。生物医学。 。 56(2009)1442]。该系统的位置精度为2.5 mm [均方根(RMS)误差]。为了开发精确的无传感器测量,我们提出了一种利用超声RF回波之间的相移的新颖方法。在这项研究中,我们使用硅胶体模测量了线性阵列换能器的发射-接收方向性,并使用相移估计了两个2D US图像之间的海拔距离。所提出的方法可以实现49.9μm的RMS精度,该精度低于以前的无传感器徒手方法。

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  • 来源
    《Japanese journal of applied physics》 |2011年第7issue2期|p.07HF09.1-07HF09.7|共7页
  • 作者单位

    Graduate School of Biomedical Engineering, Tohoku University, Sendai 980-8579, Japan;

    Graduate School of Biomedical Engineering, Tohoku University, Sendai 980-8579, Japan,Graduate School of Engineering, Tohoku University, Sendai 980-8579, Japan;

    Graduate School of Biomedical Engineering, Tohoku University, Sendai 980-8579, Japan,Graduate School of Engineering, Tohoku University, Sendai 980-8579, Japan;

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