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Dual-Element Intravascular Ultrasound Transducer for Tissue Harmonic Imaging and Frequency Compounding: Development and Imaging Performance Assessment

机译:用于组织谐波成像和频率合成的双元素血管内超声换能器:开发和成像性能评估

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Objective: For accurate diagnosis of atherosclerosis, the high spatial and contrast resolutions of intravascular ultrasound (IVUS) images are a key requirement. Increasing the center frequency of IVUS is a simple solution to meet this requirement. However, this leads to a reduction in imaging depth due to the frequency-dependent attenuation of ultrasound. Here, we report a recently developed dual-element IVUS transducer for tissue harmonic imaging (THI) and frequency compounding to increase the spatial and contrast resolutions of IVUS images, while maintaining the imaging depth to assess the overall morphological change of blood vessels. Methods: One 35-MHz element is used for producing general IVUS images and the other 70-MHz element is for receiving the second harmonic signals induced by the 35-MHz ultrasound. The fundamental and second harmonic signals can also be used for frequency compound imaging to further improve contrast resolution. The spatial and contrast resolutions achieved by the developed transducer were evaluated through wire and tissue-mimicking phantom imaging tests. Additionally, the images of a stent deployed in a tissue-mimicking phantom and an excised pig artery were acquired to assess clinical usefulness of the transducer. Results: The results demonstrated that the developed IVUS transducer enables us to simultaneously examine the overall morphological change of blood vessels by the 35-MHz ultrasound images and the near vessel layers such as the intima, the media, and the adventitia by either THI or compound images with high spatial and contrast resolutions. In addition, the developed transducer facilitates the simultaneous acquisition of 35- and 70-MHz fundamental images when needed. Conclusion: The developed dual-element IVUS transducer makes it possible to fully realize the potential benefits of IVUS in the diagnosis of atherosclerosis.
机译:目的:为了准确诊断动脉粥样硬化,血管内超声(IVUS)图像的高空间分辨率和对比度分辨率是关键要求。增加IVUS的中心频率是满足此要求的简单解决方案。然而,由于超声的频率相关衰减,这导致成像深度的减小。在这里,我们报告了最近开发的用于组织谐波成像(THI)和频率复合的双元件IVUS换能器,以增加IVUS图像的空间和对比度分辨率,同时保持成像深度以评估血管的总体形态变化。方法:一个35 MHz的元件用于产生一般的IVUS图像,另一个70 MHz的元件用于接收由35 MHz的超声波感应的二次谐波信号。基波和二次谐波信号也可以用于频率复合成像,以进一步提高对比度分辨率。通过导线和模仿组织的幻像成像测试评估了开发的换能器获得的空间分辨率和对比度分辨率。另外,获得了在模仿组织的幻影和切除的猪动脉中部署的支架的图像,以评估换能器的临床实用性。结果:结果表明,开发的IVUS换能器使我们能够同时通过35 MHz超声图像检查血管的整体形态变化,并通过THI或复合物同时检查血管的近内层(如内膜,中层和外膜)具有高空间分辨率和对比度分辨率的图像。此外,开发的传感器有助于在需要时同时采集35和70 MHz基本图像。结论:研制的双元素IVUS换能器可以完全实现IVUS在动脉粥样硬化诊断中的潜在益处。

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