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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Three-dimensional photoacoustic imaging using a two-dimensional CMUT array
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Three-dimensional photoacoustic imaging using a two-dimensional CMUT array

机译:使用二维CMUT阵列进行三维光声成像

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In this paper, we describe using a 2-D array of capacitive micromachined ultrasonic transducers (CMUTs) to perform 3-D photoacoustic and acoustic imaging. A tunable optical parametric oscillator laser system that generates nanosecond laser pulses was used to induce the photoacoustic signals. To demonstrate the feasibility of the system, 2 different phantoms were imaged. The first phantom consisted of alternating black and transparent fishing lines of 180 ;C;m and 150 ;C;m diameter, respectively. The second phantom comprised polyethylene tubes, embedded in chicken breast tissue, filled with liquids such as the dye indocyanine green, pig blood, and a mixture of the 2. The tubes were embedded at a depth of 0.8 cm inside the tissue and were at an overall distance of 1.8 cm from the CMUT array. Two-dimensional cross-sectional slices and 3-D volume rendered images of pulse-echo data as well as photoacoustic data are presented. The profile and beamwidths of the fishing line are analyzed and compared with a numerical simulation carried out using the Field II ultrasound simulation software. We investigated using a large aperture (64 x 64 element array) to perform photoacoustic and acoustic imaging by mechanically scanning a smaller CMUT array (16 x 16 elements). Two-dimensional transducer arrays overcome many of the limitations of a mechanically scanned system and enable volumetric imaging. Advantages of CMUT technology for photoacoustic imaging include the ease of integration with electronics, ability to fabricate large, fully populated 2-D arrays with arbitrary geometries, wide-bandwidth arrays and high-frequency arrays. A CMUT based photoacoustic system is proposed as a viable alternative to a piezoelectric transducer based photoacoustic systems.
机译:在本文中,我们描述了使用电容微机械超声换能器(CMUT)的二维阵列执行3-D光声和声学成像。产生纳秒激光脉冲的可调谐光学参量振荡器激光系统用于感应光声信号。为了证明该系统的可行性,对2种不同的体模进行了成像。第一个模型由交替的直径分别为180; C; m和150; C; m的黑色和透明钓鱼线组成。第二个模型包括聚乙烯管,该聚乙烯管嵌在鸡胸组织中,并充满诸如染料吲哚菁绿,猪血和两者的混合物之类的液体。这些管嵌在组织内部0.8 cm的深度处,并处于与CMUT阵列的总距离为1.8厘米。呈现了脉冲回波数据以及光声数据的二维横截面切片和3-D体积渲染图像。分析钓鱼线的轮廓和波束宽度,并与使用Field II超声仿真软件进行的数值仿真进行比较。我们调查了通过机械扫描较小的CMUT阵列(16 x 16元素)使用大孔径(64 x 64元素阵列)来执行光声和声学成像的方法。二维换能器阵列克服了机械扫描系统的许多限制,并可以进行体积成像。 CMUT技术在光声成像方面的优势包括易于与电子设备集成,能够制造具有任意几何形状的大型,完全填充的二维阵列,宽带阵列和高频阵列。提出了基于CMUT的光声系统,作为基于压电换能器的光声系统的可行替代方案。

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