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Multifrequency Interlaced CMUTs for Photoacoustic Imaging

机译:用于光声成像的多频隔行CMUT

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Multifrequency capacitive micromachined ultrasound transducers (CMUTs) are introduced consisting of interlaced 82- μm (low frequency) and 36- μm (high frequency) membranes. The membranes have been interlaced on a scale smaller than the shortest wavelength of operation allowing several advantages over other multifrequency transducer designs including aligned beam profiles, optimal imaging resolution, and minimal grating lobes. The low- and high-frequency CMUTs operate at 1.74 and 5.04 MHz in immersion, respectively. Multifrequency transducers have applications in wideband photoacoustic (PA) imaging where multifrequency transducers are better able to detect both high- and low-frequency PA frequency content. The PA frequency content is target size dependent, which means traditional high-frequency transducers have less sensitivity to larger objects such as diffuse contrast agents. We demonstrate that the low-frequency subarrays are able to better visualize diffuse agent distributions, while the high-frequency subarrays offer fine-resolution imaging important for microvascular imaging and structural navigation. Spectroscopically unmixed images superimpose high sensitivity images of agent concentrations (acquired using low-frequency subarrays) onto high-resolution images of microvessel-mimicking phantoms (acquired using high-frequency subarrays).
机译:介绍了由隔行扫描的82-μm(低频)和36-μm(高频)膜组成的多频电容微加工超声换能器(CMUT)。隔行扫描膜的间隔小于最短操作波长,与其他多频换能器设计相比,具有多个优点,包括对准的光束轮廓,最佳的成像分辨率和最小的光栅波瓣。低频和低频CMUT的浸入频率分别为1.74 MHz和5.04 MHz。多频换能器已在宽带光声(PA)成像中得到应用,其中多频换能器能够更好地检测高频和低频PA频率含量。 PA频率含量取决于目标尺寸,这意味着传统的高频传感器对诸如弥漫性造影剂之类的较大物体的灵敏度较低。我们证明了低频子阵列能够更好地可视化扩散剂分布,而高频子阵列则提供了对微血管成像和结构导航非常重要的高分辨率成像。在光谱上未混合的图像将药剂浓度的高灵敏度图像(使用低频子阵列获得)叠加到微血管模拟体模的高分辨率图像(使用高频子阵列获得)上。

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