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Single-chip CMUT-on-CMOS front-end system for real-time volumetric IVUS and ICE imaging

机译:单芯片CMUT-on-CMOS前端系统,用于实时体积IVUS和ICE成像

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Intravascular ultrasound (IVUS) and intracardiac echography (ICE) catheters with real-time volumetric ultrasound imaging capability can provide unique benefits to many interventional procedures used in the diagnosis and treatment of coronary and structural heart diseases. Integration of capacitive micromachined ultrasonic transducer (CMUT) arrays with front-end electronics in single-chip configuration allows for implementation of such catheter probes with reduced interconnect complexity, miniaturization, and high mechanical flexibility. We implemented a single-chip forward-looking (FL) ultrasound imaging system by fabricating a 1.4-mm-diameter dual-ring CMUT array using CMUT-on-CMOS technology on a front-end IC implemented in 0.35-;C;m CMOS process. The dual-ring array has 56 transmit elements and 48 receive elements on two separate concentric annular rings. The IC incorporates a 25-V pulser for each transmitter and a low-noise capacitive transimpedance amplifier (TIA) for each receiver, along with digital control and smart power management. The final shape of the silicon chip is a 1.5-mm-diameter donut with a 430-;C;m center hole for a guide wire. The overall front-end system requires only 13 external connections and provides 4 parallel RF outputs while consuming an average power of 20 mW. We measured RF A-scans from the integrated single- chip array which show full functionality at 20.1 MHz with 43% fractional bandwidth. We also tested and demonstrated the image quality of the system on a wire phantom and an ex vivo chicken heart sample. The measured axial and lateral point resolutions are 92 ;C;m and 251 ;C;m, respectively. We successfully acquired volumetric imaging data from the ex vivo chicken heart at 60 frames per second without any signal averaging. These demonstrative results indicate that single-chip CMUT-on-CMOS systems have the potential to produce realtime volumetric images with image quality and speed suitable for catheter- based clinical applications.
机译:具有实时体积超声成像功能的血管内超声(IVUS)和心内超声检查(ICE)导管可以为用于冠心病和结构性心脏病诊断和治疗的许多介入程序提供独特的益处。电容微机械超声换能器(CMUT)阵列与单芯片配置的前端电子设备的集成允许以减少的互连复杂性,小型化和高机械灵活性来实现这种导管探头。我们通过在以0.35-; C; m CMOS实现的前端IC上使用CMUT-on-CMOS技术制造直径为1.4mm的双环CMUT阵列,从而实现了单芯片前瞻(FL)超声成像系统。处理。双环阵列在两个单独的同心环形环上具有56个发射元件和48个接收元件。该集成电路为每个发射器集成了一个25V脉冲发生器,并为每个接收器集成了一个低噪声电容跨阻放大器(TIA),以及数字控制和智能电源管理。硅芯片的最终形状是直径为1.5毫米的甜甜圈,其中心孔为430°C; m。整个前端系统仅需要13个外部连接,并提供4个并行RF输出,而平均功耗为20 mW。我们测量了来自集成单芯片阵列的RF A扫描,该扫描在20.1 MHz处具有43%的分带宽显示了全部功能。我们还测试并演示了线材幻影和离体鸡心脏样本上系统的图像质量。测得的轴向和侧向点分辨率分别为92; C; m和251; C; m。我们成功地以每秒60帧的速度从离体鸡心获得了体积成像数据,而没有任何信号平均。这些证明性结果表明,单芯片CMUT-on-CMOS系统具有产生实时体积图像的潜力,其图像质量和速度适用于基于导管的临床应用。

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