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使用前瞻性电容式微机械超声换能器(CMUT)环形阵列进行血管内/心内应用的三维超声成像。

3-D ultrasound imaging using a forward-looking CMUT ring array for intravascular/intracardiac applications.

作者信息

Yeh David T, Oralkan Omer, Wygant Ira O, O'Donnell Matthew, Khuri-Yakub Butrus T

机构信息

Edward L. Ginzton Laboratory, Stanford University, Stanford, CA, USA.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2006 Jun;53(6):1202-11. doi: 10.1109/tuffc.2006.1642519.

Abstract

Forward-viewing ring arrays can enable new applications in intravascular and intracardiac ultrasound. This work presents compelling, full-synthetic, phased-array volumetric images from a forward-viewing capacitive micromachined ultrasonic transducer (CMUT) ring array wire bonded to a custom integrated circuit front end. The CMUT ring array has a diameter of 2 mm and 64 elements each 100 microm x 100 microm in size. In conventional mode, echo signals received from a plane reflector at 5 mm had 70% fractional bandwidth around a center frequency of 8.3 MHz. In collapse mode, 69% fractional bandwidth is measured around 19 MHz. Measured signal-to-noise ratio (SNR) of the echo averaged 16 times was 29 dB for conventional operation and 35 dB for collapse mode. B-scans were generated of a target consisting of steel wires 0.3 mm in diameter to determine resolution performance. The 6 dB axial and lateral resolutions for the B-scan of the wire target are 189 microm and 0.112 radians for 8 MHz, and 78 microm and 0.051 radians for 19 MHz. A reduced firing set suitable for real-time, intravascular applications was generated and shown to produce acceptable images. Rendered three-dimensional (3-D) images of a Palmaz-Schatz stent also are shown, demonstrating that the imaging quality is sufficient for practical applications.

摘要

前视环形阵列能够实现血管内和心内超声的新应用。本文展示了由线键合到定制集成电路前端的前视电容式微机械超声换能器(CMUT)环形阵列生成的引人注目的全合成相控阵体积图像。该CMUT环形阵列直径为2毫米,有64个元件,每个元件尺寸为100微米×100微米。在传统模式下,从5毫米处的平面反射器接收到的回波信号在中心频率8.3兆赫附近具有70%的分数带宽。在塌陷模式下,在19兆赫附近测得的分数带宽为69%。对回波进行16次平均测量得到的信噪比,传统操作时为29分贝,塌陷模式时为35分贝。对由直径0.3毫米的钢丝组成的目标进行B扫描以确定分辨率性能。对于钢丝目标的B扫描而言,8兆赫时6分贝轴向和横向分辨率分别为189微米和0.112弧度,19兆赫时分别为78微米和0.051弧度。生成了适用于实时血管内应用的简化发射集,并显示其能产生可接受的图像。还展示了帕尔马兹-沙茨支架的三维(3-D)渲染图像,证明成像质量足以满足实际应用。

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