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Characterization of In Vivo Atherosclerotic Plaques in the Carotid Artery with Acoustic Radiation Force Impulse Imaging

机译:声辐射力脉冲成像的颈动脉体内动脉体内动脉粥样硬化斑块的表征

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Acoustic Radiation Force Impulse (ARFI) imaging is a useful method for characterizing the local mechanical properties of tissue. ARFI imaging uses high energy, focused ultrasound pulses to generate small displacements (1-10 um) in tissue. The response of tissue to these localized forces is observed using a series of imaging pulses, which track displacement of the tissue. ARFI imaging is complementary to B-mode imaging, and can readily distinguish between stiff and soft regions of tissue with high contrast. Currently, physicians cannot easily determine whether atherosclerotic plaques in carotid arteries are vulnerable to rupture. We are investigating the use of ARFI imaging to characterize atherosclerotic plaque in carotid arteries and to guide the treatment of these plaques. We have created custom beam sequences on a Siemens Antares scanner to implement ARFI imaging. Five patients with atherosclerotic plaque and four volunteers without known atherosclerotic plaque underwent B-Mode and ARFI scanning of their carotid arteries. Measurements of the complete vessel wall (adventitial layer plus IMT) with ARFI imaging are shown to be consistent with measurements of the intima-media thickness (IMT) in normal B-mode scans. In plaque-filled vessels, the mean near-wall IMT was 0.92 mm and the mean far-wall IMT was 1.24 mm. In ARFI imaging, vessel walls have mean thicknesses of 2.17 mm and 2.17 mm for the near and far walls, respectively. For volunteers without plaques, the near and far wall IMT measurements were 0.52 and 0.54 mm, respectively and the ARFI vessel thicknesses were 1.39 and 1.26 mm. Both IMT measurements and ARFI measurements were significantly (p < 0.005) greater for patients with plaques. We demonstrate high-resolution ARFI images of carotid plaques depicting their complex mechanical structure, which often involve regions of soft and hard plaque. We discuss methods of improving the contrast and resolution of ARFI vascular images.
机译:声辐射力脉冲(ARFI)成像是用于表征组织的局部机械性能的有用方法。 ARFI成像使用高能量,聚焦的超声脉冲来产生组织中的小型位移(1-10μm)。使用一系列成像脉冲观察组织对这些局部力的响应,这是一系列成像脉冲,该脉冲跟踪组织的位移。 ARFI成像与B模式成像互补,并且可以容易地区分具有高对比度的高度组织的僵硬和柔软的组织区域。目前,医生不能轻易确定颈动脉中的动脉粥样硬化斑块是否易于破裂。我们正在研究ARFI成像在颈动脉中表征动脉粥样硬化斑块,并指导这些斑块的治疗。我们在Siemens Antares扫描仪上创建了自定义光束序列以实现ARFI成像。五名患有动脉粥样硬化斑块的患者和四个没有已知的动脉粥样硬化斑块的志愿者接受了B模式和arfi扫描其颈动脉。具有ARFI成像的完整血管壁(含有含有Addinitial Layer Plus IMT)的测量结果与正常B模式扫描中的内膜介质厚度(IMT)的测量一致。在镀斑的血管中,平均近壁IMT为0.92mm,平均远壁IMT为1.24mm。在ARFI成像中,近距离壁的血管壁分别具有2.17毫米和2.17毫米的平均厚度。对于没有斑块的志愿者,接近和远壁IMT测量分别为0.52和0.54mm,ARFI容器厚度为1.39和1.26mm。斑块患者,IMT测量和ARFI测量值显着(p <0.005)。我们展示了描绘其复杂机械结构的颈动脉斑块的高分辨率ARFI图像,这通常涉及柔软和硬质斑块的区域。我们讨论提高ARFI血管图像的对比度和分辨率的方法。

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