IEEE Trans Biomed Eng. 2023 Jun;70(6):1768-1774. doi: 10.1109/TBME.2022.3226955. Epub 2023 May 19.
For the early diagnosis of atherosclerosis and interventions, intravascular ultrasound (IVUS) is a valuable tool for intravascular luminal imaging. Compared with the array-based method, mechanically rotating IVUS catheters dominate the clinical applications because of their less complexity and better suitability for high-frequency ultrasound imaging. However, mechanically rotating catheters are suffering from non-uniform rotational distortion (NURD) which hinders accurate image acquisition. In this study, a dual-element imaging catheter is proposed, in which two elements with the same frequency and similar performance are assembled in a back-to-back arrangement. When the catheter encounters a NURD due to acute bending, the abnormal image of one element can be replaced by the normal image of the opposite element, thus eliminating the NURD in the reconstructed image. Moreover, two images can be obtained in one rotation and the imaging frame rate is doubled in the absence of NURD. The performance of the two elements was quantitatively assessed by a wire phantom. And the complementary imaging protocols were evaluated by a tissue phantom and ex vivo porcine vessel. The results show that the proposed strategy can be promising in clinical studies.
为了实现动脉粥样硬化的早期诊断和干预,血管内超声(IVUS)是一种有价值的血管腔内成像工具。与基于阵列的方法相比,机械旋转 IVUS 导管因其复杂性较低且更适合高频超声成像而占据主导地位。然而,机械旋转导管存在非均匀旋转失真(NURD),这会阻碍准确的图像采集。在这项研究中,提出了一种双元件成像导管,其中两个具有相同频率和相似性能的元件以背对背的方式组装在一起。当导管因急性弯曲而遇到 NURD 时,一个元件的异常图像可以被相反元件的正常图像所取代,从而消除重建图像中的 NURD。此外,在不存在 NURD 的情况下,一次旋转可以获得两个图像,并且成像帧率提高了一倍。通过线阵体模对两个元件的性能进行了定量评估。并通过组织体模和离体猪血管评估了互补成像方案。结果表明,所提出的策略在临床研究中具有很大的应用潜力。