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3-D Vector Flow Using a Row-Column Addressed CMUT Array

机译:使用行列地址CmUT阵列的三维矢量流

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摘要

This paper presents an in-house developed 2-D capacitive micromachined ultrasonic transducer (CMUT) appliedfor 3-D blood flow estimation. The probe breaks with conventional transducers in two ways; first, the ultrasonicpressure field is generated from thousands of small vibrating micromachined cells, and second, elements areaccessed by row and/or column indices. The 62+62 2-D row-column addressed prototype CMUT probe was usedfor vector flow estimation by transmitting focused ultrasound into a flow-rig with a fully developed parabolicflow. The beam-to-flow angle was 90◦. The received data was beamformed and processed offline. A transverseoscillation (TO) velocity estimator was used to estimate the 3-D vector flow along a line originating from thecenter of the transducer. The estimated velocities in the lateral and axial direction were close to zero as expected.In the transverse direction a characteristic parabolic velocity profile was estimated with a peak velocity of 0.48m/s ± 0.02 m/s in reference to the expected 0.54 m/s. The results presented are the first 3-D vector flow estimates obtained with a row-column CMUT probe, which demonstrates that the CMUT technology is feasiblefor 3-D flow estimation
机译:本文介绍了一种内部开发的二维电容微机械超声换能器(CMUT),用于3-D血流估计。常规探头会以两种方式破坏探头:首先,超声压力场是由数千个小型振动微机械加工单元产生的,其次,通过行和/或列索引访问元素。通过将聚焦超声传输到具有完全发达的抛物线流的流动装置中,将62 + 62 2-D行列寻址原型CMUT探针用于矢量流估计。束流角为90°。接收到的数据经过波束成形并脱机处理。使用横向振荡(TO)速度估算器来估算3D矢量沿着沿换能器中心起源的线的流动。沿横向和轴向的估计速度接近预期的零。沿横向估计的特征抛物线速度曲线为0.48m / s±0.02 m / s的峰值速度,相对于预期的0.54 m / s 。给出的结果是使用行列CMUT探头获得的第一个3-D矢量流量估计值,这表明CMUT技术对于3-D流量估计是可行的

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