IEEE Trans Ultrason Ferroelectr Freq Control. 2022 Feb;69(2):681-690. doi: 10.1109/TUFFC.2021.3132607. Epub 2022 Jan 27.
Existing 3-D intravascular ultrasound (IVUS) systems that combine two electromagnetic (EM) motors to drive catheters are bulky and require considerable efforts to eliminate EM interference (EMI). Here, we propose a new scanning method to realize 3-D IVUS imaging using a helical ultrasonic motor to overcome the aforementioned issues. The ultrasonic motor with compact dimensions (7-mm outer diameter and 30-mm longitudinal length), lightweight (20.5 g), and free of EMI exhibits a great application potential in mobile imaging devices. In particular, it can simultaneously perform rotary and linear motions, facilitating precise 3-D scanning of an imaging catheter. Experimental results show that the signal-to-noise ratio (SNR) of raw images obtained using the ultrasonic motor is 5.3 dB better than that of an EM motor. Moreover, the proposed imaging device exhibits the maximum rotary speed of 12.3 r/s and the positioning accuracy of 2.6 [Formula: see text] at a driving voltage of 240 V. The 3-D wire phantom imaging and 3-D tube phantom imaging are performed to evaluate the performance of the imaging device. Finally, the in vitro imaging of a porcine coronary artery demonstrates that the layered architecture of the vessel can be precisely identified while significantly increasing the SNR of the raw images.
现有的 3-D 血管内超声(IVUS)系统结合两个电磁(EM)电机来驱动导管,体积庞大,需要花费大量精力来消除电磁干扰(EMI)。在这里,我们提出了一种新的扫描方法,使用螺旋超声电机来实现 3-D IVUS 成像,以克服上述问题。该超声电机尺寸紧凑(外径 7 毫米,纵向长度 30 毫米)、重量轻(20.5 克)且无 EMI,在移动成像设备中有很大的应用潜力。特别是,它可以同时进行旋转和直线运动,便于对成像导管进行精确的 3-D 扫描。实验结果表明,使用超声电机获得的原始图像的信噪比(SNR)比 EM 电机高 5.3dB。此外,所提出的成像设备在 240V 驱动电压下表现出最大旋转速度为 12.3r/s 和定位精度为 2.6[公式:见正文]。进行了 3-D 线栓体模成像和 3-D 管体模成像,以评估成像设备的性能。最后,对猪冠状动脉的体外成像表明,在显著提高原始图像 SNR 的同时,还可以精确识别血管的分层结构。