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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Reconstruction algorithm for improved ultrasound image quality
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Reconstruction algorithm for improved ultrasound image quality

机译:重建算法以提高超声图像质量

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摘要

A new algorithm is proposed for reconstructing raw RF data into ultrasound images. Previous delay-and-sum beamforming reconstruction algorithms are essentially one- dimensional, because a sum is performed across all receiving elements. In contrast, the present approach is two-dimensional, potentially allowing any time point from any receiving element to contribute to any pixel location. Computer-intensive matrix inversions are performed once, in advance, to create a reconstruction matrix that can be reused indefinitely for a given probe and imaging geometry. Individual images are generated through a single matrix multiplication with the raw RF data, without any need for separate envelope detection or gridding steps. Raw RF data sets were acquired using a commercially available digital ultrasound engine for three imaging geometries: a 64-element array with a rectangular field-of-view (FOV), the same probe with a sector-shaped FOV, and a 128-element array with rectangular FOV. The acquired data were reconstructed using our proposed method and a delay-and-sum beamforming algorithm for comparison purposes. Point spread function (PSF) measurements from metal wires in a water bath showed that the proposed method was able to reduce the size of the PSF and its spatial integral by about 20 to 38%. Images from a commercially available quality-assurance phantom had greater spatial resolution and contrast when reconstructed with the proposed approach.
机译:提出了一种将原始RF数据重构为超声图像的新算法。先前的延迟和求和波束成形重建算法本质上是一维的,因为在所有接收元件上执行求和。相反,本方法是二维的,潜在地允许来自任何接收元件的任何时间点对任何像素位置做出贡献。预先执行一次计算机密集型矩阵求逆运算,以创建一个重建矩阵,该重建矩阵可以无限期地用于给定的探头和成像几何形状。通过与原始RF数据的单矩阵乘法生成单独的图像,而无需单独的包络检测或网格化步骤。使用可商购的数字超声引擎获取原始RF数据集,用于三种成像几何结构:具有矩形视场(FOV)的64元件阵列,具有扇形FOV的相同探头和128元件具有矩形FOV的数组。为了进行比较,使用我们提出的方法和延迟求和波束形成算法重建了采集的数据。水浴中金属线的点扩散函数(PSF)测量表明,所提出的方法能够将PSF的尺寸及其空间积分减小约20%至38%。使用建议的方法进行重建时,来自市售质量保证体模的图像具有更高的空间分辨率和对比度。

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