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A flexible annular-array imaging platform for micro-ultrasound

机译:用于微超声的柔性环形阵列成像平台

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摘要

Micro-ultrasound is an invaluable imaging tool for many clinical and preclinical applications requiring high resolution (approximately several tens of micrometers). Imaging systems for micro-ultrasound, including single-element imaging systems and linear-array imaging systems, have been developed extensively in recent years. Single-element systems are cheaper, but linear-array systems give much better image quality at a higher expense. Annular-array-based systems provide a third alternative, striking a balance between image quality and expense. This paper presents the development of a novel programmable and real-time annular-array imaging platform for micro-ultrasound. It supports multi-channel dynamic beamforming techniques for large-depth-of-field imaging. The major image processing algorithms were achieved by a novel field-programmable gate array technology for high speed and flexibility. Real-time imaging was achieved by fast processing algorithms and high-speed data transfer interface. The platform utilizes a printed circuit board scheme incorporating state-of-the-art electronics for compactness and cost effectiveness. Extensive tests including hardware, algorithms, wire phantom, and tissue mimicking phantom measurements were conducted to demonstrate good performance of the platform. The calculated contrast-to-noise ratio (CNR) of the tissue phantom measurements were higher than 1.2 in the range of 3.8 to 8.7 mm imaging depth. The platform supported more than 25 images per second for real-time image acquisition. The depth-of-field had about 2.5-fold improvement compared to single-element transducer imaging.
机译:对于需要高分辨率(约几十微米)的许多临床和临床前应用,微超声是一种宝贵的成像工具。近年来,用于微超声的成像系统,包括单元素成像系统和线性阵列成像系统,得到了广泛的开发。单元素系统更便宜,但是线性阵列系统以更高的成本提供了更好的图像质量。基于环形阵列的系统提供了第三种选择,在图像质量和费用之间取得了平衡。本文介绍了一种用于微超声的新型可编程实时环形阵列成像平台的开发。它支持用于大景深成像的多通道动态波束形成技术。主要的图像处理算法是通过一种新颖的现场可编程门阵列技术实现的,具有很高的速度和灵活性。通过快速处理算法和高速数据传输接口实现了实时成像。该平台采用印刷电路板方案,并结合了最新的电子技术,以实现紧凑性和成本效益。进行了包括硬件,算法,导线体模和组织模拟体模测量在内的广泛测试,以证明该平台的良好性能。在3.8至8.7毫米成像深度范围内,组织体模测量值的计算得出的对比噪声比(CNR)高于1.2。该平台每秒支持多于25张图像进行实时图像采集。与单元素换能器成像相比,景深提高了约2.5倍。

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