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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Development of Dual-Frequency Oblong-Shaped-Focused Transducers for Intravascular Ultrasound Tissue Harmonic Imaging
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Development of Dual-Frequency Oblong-Shaped-Focused Transducers for Intravascular Ultrasound Tissue Harmonic Imaging

机译:用于血管内超声组织谐波成像的双频长椭圆形聚焦传感器的开发

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摘要

Tissue harmonic imaging (THI), an essential mode of commercial ultrasound imaging scanners, can provide images with high spatial and contrast resolutions. For THI, the frequency spectrum of a transducer is generally divided for the transmission of fundamental signal and the reception of its second harmonic. Therefore, it is difficult to use the THI mode for intravascular ultrasound (IVUS) imaging because typical IVUS transducers have a narrow −6-dB fractional bandwidth of about 50%. Due to its small aperture (about 0.5 mm) and the strength of IVUS being too weak, it is difficult to construct a high-quality tissue harmonic image. In this paper, we report a recently developed dual-frequency oblong-shaped-focused IVUS transducer for high-quality intravascular THI; the transducer consists of three elements arranged side by side in the horizontal (i.e., elevation) direction. The two outer elements with a center frequency of 35 MHz are responsible for ultrasound transmission and the center element has a center frequency of 70 MHz for the reception of the second-harmonic signals. All three elements have a spherical shape with a radius of 3 mm to efficiently generate harmonics in the region of interest. This configuration of the developed IVUS transducer was determined to facilitate high-quality THI, which was based on the results of Field II simulation and finite-element analysis. The images of wires and a tissue-mimicking phantom indicated that the tissue harmonic images produced by the developed transducer have not only a high spatial resolution but also a deep imaging depth, compared to the 35- and 70-MHz fundamental images.
机译:组织谐波成像(THI)是商业超声成像扫描仪的基本模式,可以提供具有高空间分辨率和对比度分辨率的图像。对于THI,通常将换能器的频谱划分为基本信号的发送和二次谐波的接收。因此,难以将THI模式用于血管内超声(IVUS)成像,因为典型的IVUS换能器具有约50%的-6dB窄带宽。由于其较小的孔径(约0.5毫米)和IVUS的强度太弱,因此难以构建高质量的组织谐波图像。在本文中,我们报告了最近开发的用于高质量血管内THI的双频矩形聚焦IVUS换能器。换能器由在水平(即仰角)方向上并排布置的三个元件组成。中心频率为35 MHz的两个外部元件负责超声传输,中心元件的中心频率为70 MHz,用于接收二次谐波信号。所有这三个元素均具有半径为3 mm的球形,以有效地在感兴趣区域产生谐波。确定了IVUS换能器的这种配置,以促进高质量的THI,这是基于Field II模拟和有限元分析的结果。导线的图像和模仿组织的体模表明,与35和70 MHz基本图像相比,由开发的换能器产生的组织谐波图像不仅具有高的空间分辨率,而且具有较深的成像深度。

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