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Multi-functional Ultrasonic Micro-elastography Imaging System

机译:多功能超声微弹成像系统

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摘要

In clinical decision making, in addition to anatomical information, biomechanical properties of soft tissues may provide additional clues for disease diagnosis. Given the fact that most of diseases are originated from micron sized structures, an elastography imaging system of fine resolution (~100 µm) and deep penetration depth capable of providing both qualitative and quantitative measurements of biomechanical properties is desired. Here, we report a newly developed multi-functional ultrasonic micro-elastography imaging system in which acoustic radiation force impulse imaging (ARFI) and shear wave elasticity imaging (SWEI) are implemented. To accomplish this, the 4.5 MHz/40 MHz transducer were used as the excitation/detection source, respectively. The imaging system was tested with tissue-mimicking phantoms and an ex vivo chicken liver through 2D/3D imaging. The measured lateral/axial elastography resolution and field of view are 223.7 ± 20.1/109.8 ± 6.9 µm and 1.5 mm for ARFI, 543.6 ± 39.3/117.6 ± 8.7 µm and 2 mm for SWEI, respectively. These results demonstrate that the promising capability of this high resolution elastography imaging system for characterizing tissue biomechanical properties at microscale level and its translational potential into clinical practice.
机译:在临床决策中,除了解剖信息外,软组织的生物力学特性还可能为疾病诊断提供其他线索。鉴于大多数疾病都源自微米级结构,因此需要一种能够提供生物力学性质定性和定量测量结果的高分辨率(〜100μm)和深穿透深度的弹性成像系统。在这里,我们报告了一个新开发的多功能超声微弹性成像系统,其中实现了声辐射力脉冲成像(ARFI)和剪切波弹性成像(SWEI)。为此,分别使用4.5 theMHz / 40 MHz换能器作为激励/检测源。通过2D / 3D成像,使用模仿组织的体模和离体鸡肝对成像系统进行了测试。测得的横向/轴向弹性成像分辨率和视野分别为:ARFI为223.7±20.1 / 109.8±6.9μm和1.5,mm,SWEI为543.6±39.3 / 117.6±8.7μm和2 mm。这些结果表明,该高分辨率弹性成像系统在微尺度水平上表征组织生物力学特性的潜在能力及其在临床实践中的转化潜力。

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