Shan Baoxiang, Pelegri Assimina A, Maleke Caroline, Konofagou Elisa E
Mechanical and Aerospace Engineering, Rutgers, The State University of New Jersey, 98 Brett Road, Piscataway, USA.
J Biomech. 2008 Jul 19;41(10):2150-8. doi: 10.1016/j.jbiomech.2008.04.029. Epub 2008 Jun 20.
Numerous experimental and computational methods have been developed to estimate tissue elasticity. The existing testing techniques are generally classified into in vitro, invasive in vivo and non-invasive in vivo. For each experimental method, a computational scheme is accordingly proposed to calculate mechanical properties of soft biological tissues. Harmonic motion imaging (HMI) is a new technique that performs radio frequency (RF) signal tracking to estimate the localized oscillatory motion resulting from a radiation force produced by focused ultrasound. A mechanical model and computational scheme based on the superposition principle are developed in this paper to estimate the Young's modulus of a tissue mimicking phantom and bovine liver in vitro tissue from the harmonic displacement measured by HMI. The simulation results are verified by two groups of measurement data, and good agreement is shown in each comparison. Furthermore, an inverse function is observed to correlate the elastic modulus of uniform phantoms with amplitude of displacement measured in HMI. The computational scheme is also implemented to estimate 3D elastic modulus of bovine liver in vitro.
已经开发了许多实验和计算方法来估计组织弹性。现有的测试技术通常分为体外、有创体内和无创体内。对于每种实验方法,相应地提出了一种计算方案来计算软生物组织的力学性能。谐波运动成像(HMI)是一种新技术,它执行射频(RF)信号跟踪,以估计由聚焦超声产生的辐射力引起的局部振荡运动。本文基于叠加原理开发了一种力学模型和计算方案,以根据HMI测量的谐波位移估计体外组织模拟体模和牛肝的杨氏模量。模拟结果通过两组测量数据进行验证,每次比较都显示出良好的一致性。此外,观察到一个反函数将均匀体模的弹性模量与HMI中测量的位移幅度相关联。该计算方案还用于估计体外牛肝的三维弹性模量。