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2
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3
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Comb-push ultrasound shear elastography of breast masses: initial results show promise.乳腺肿块梳推式超声剪切波弹性成像:初步结果显示有前景。
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Quantitative diagnostics of soft tissue through viscoelastic characterization using time-based instrumented palpation.基于时间的仪器触诊的粘弹性特征对软组织进行定量诊断。
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用于粘弹性成像的自动压缩装置

Automated Compression Device for Viscoelasticity Imaging.

作者信息

Nabavizadeh Alireza, Kinnick Randall R, Bayat Mahdi, Amador Carolina, Urban Matthew W, Alizad Azra, Fatemi Mostafa

出版信息

IEEE Trans Biomed Eng. 2017 Jul;64(7):1535-1546. doi: 10.1109/TBME.2016.2612541. Epub 2016 Sep 22.

DOI:10.1109/TBME.2016.2612541
PMID:28113299
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5485831/
Abstract

Noninvasive measurement of tissue viscoelastic properties is gaining more attention for screening and diagnostic purposes. Recently, measuring dynamic response of tissue under a constant force has been studied for estimation of tissue viscoelastic properties in terms of retardation times. The essential part of such a test is an instrument that is capable of creating a controlled axial force and is suitable for clinical applications. Such a device should be lightweight, portable, and easy to use for patient studies to capture tissue dynamics under external stress. In this paper, we present the design of an automated compression device for studying the creep response of materials with tissue-like behaviors. The device can be used to apply a ramp-and-hold force excitation for a predetermined duration of time and it houses an ultrasound probe for monitoring the creep response of the underlying tissue. To validate the performance of the device, several creep tests were performed on tissue-mimicking phantoms, and the results were compared against those from a commercial mechanical testing instrument. Using a second-order Kelvin-Voigt model and surface measurement of the forces and displacements, retardation times T and T were estimated from each test. These tests showed strong agreement between our automated compression device and the commercial mechanical testing system, with an average relative error of 2.9% and 12.4%, for T and T, respectively. Also, we present the application of compression device to measure local retardation times for four different phantoms with different size and stiffness.

摘要

组织粘弹性特性的无创测量在筛查和诊断方面正受到越来越多的关注。最近,研究了在恒定力作用下测量组织的动态响应,以便根据延迟时间估计组织的粘弹性特性。这种测试的关键部分是一种能够产生可控轴向力且适用于临床应用的仪器。这样的设备应该重量轻、便于携带,并且易于用于患者研究,以捕捉外部应力下的组织动态。在本文中,我们介绍了一种用于研究具有组织样行为材料的蠕变响应的自动压缩装置的设计。该装置可用于在预定时间段内施加斜坡保持力激励,并装有一个超声探头,用于监测下层组织的蠕变响应。为了验证该装置的性能,在组织模拟体模上进行了几次蠕变测试,并将结果与商业机械测试仪器的结果进行了比较。使用二阶开尔文-沃伊特模型以及力和位移的表面测量,从每次测试中估计延迟时间T和T。这些测试表明,我们的自动压缩装置与商业机械测试系统之间具有很强的一致性,对于T和T,平均相对误差分别为2.9%和12.4%。此外,我们还展示了压缩装置在测量四种不同尺寸和刚度的不同体模的局部延迟时间方面的应用。