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Design and fabrication of an electromagnetic micro-motor for intravascular ultrasound (IVUS) imaging

机译:用于血管内超声(IVUS)成像的电磁微电机的设计与制造

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Catheter based intravascular ultrasound (IVUS) imaging is widely used for coronary artery diseases. However, image produced by the current IVUS catheter which utilizes an outer proximal motor and a flexible drive shaft transmitting rotational motion through the bending vessel segment, is easy to distort. In this study, we present an electromagnetic micro-motor as a distal actuator for IVUS imaging. The micro-motor consists of a two-pole permanent magnet as the rotor and two-strand flexible coils as the stator. The size of the prototype electromagnetic micro-motor is 6.4 mm length and 1.5 mm outer diameter. The rotational speed of the micro-motor was characterized by using a laser displacement sensor. The micro-motor can generate several decade revolutions per second (RPS) speed needed for IVUS imaging. A static 3D electromagnetic simulation of the micro-motor was performed to estimate the driving torque. The micro-motor can generate a torque of 14.5 μNm with 1.0A effective driving current. This micro-motor is expected to eliminate the image distortion.
机译:基于导管的血管内超声(IVUS)成像被广泛用于冠状动脉疾病。但是,由当前的IVUS导管产生的图像很容易变形,该图像利用外部近端电机和通过旋转血管段传递旋转运动的柔性驱动轴。在这项研究中,我们提出了一种电磁微电机作为IVUS成像的远端执行器。微型电动机由两极永磁体作为转子和两股柔性线圈作为定子。原型电磁微电机的尺寸为6.4毫米长和1.5毫米外径。通过使用激光位移传感器来表征微电机的转速。微型电动机可以产生IVUS成像所需的每秒几十转(RPS)的速度。对微电机进行了静态3D电磁仿真,以估算驱动扭矩。微型电动机在1.0A有效驱动电流下可产生14.5μNm的扭矩。该微型电动机有望消除图像失真。

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