Department of Electrical and Computer Engineering, Texas A&M University, College Station, TX 77843, USA.
IEEE Trans Med Imaging. 2011 Feb;30(2):497-511. doi: 10.1109/TMI.2010.2087344. Epub 2010 Oct 14.
New elastographic techniques such as poroelastography and viscoelasticity imaging aim at imaging the temporal mechanical behavior of tissues. These techniques usually involve the use of curve fitting methods being applied to noisy data to estimate new elastographic parameters. As of today, however, current elastographic implementations of poroelastography and viscoelasticity imaging methods are in general too slow and not optimized for clinical applications. Furthermore, image quality performance of these new elastographic techniques is still largely unknown due to a paucity of data and the lack of systematic studies that analyze their performance limitations. In this paper, we propose a new elastographic time constant (TC) estimator, which is based on the use of the least square error (LSE) curve-fitting method and the Levenberg-Marquardt (LM) optimization rule as applied to noisy elastographic data obtained from a material in a creep-type experiment. The algorithm is executed on a massively parallel general purpose graphics processing unit (GPGPU) to achieve real-time performance. The estimator's performance is analyzed using simulations. Experimental results obtained from poroelastic phantoms are presented as a proof of principle of the new estimator's technical applicability on real experimental data. The results of this study demonstrate that the newly proposed elastographic estimator can produce highly accurate and sensitive elastographic TC estimates in real-time and at high signal-to-noise ratios.
新的弹性成像技术,如多孔弹性成像和粘弹性成像,旨在对组织的时间机械行为进行成像。这些技术通常涉及使用曲线拟合方法对噪声数据进行拟合,以估计新的弹性成像参数。然而,截至目前,多孔弹性成像和粘弹性成像方法的当前弹性成像实现通常速度太慢,不适合临床应用。此外,由于缺乏数据和缺乏分析其性能限制的系统研究,这些新的弹性成像技术的图像质量性能仍然很大程度上未知。在本文中,我们提出了一种新的弹性时间常数(TC)估计器,该估计器基于使用最小二乘误差(LSE)曲线拟合方法和 Levenberg-Marquardt(LM)优化规则,应用于从蠕变实验中的材料获得的噪声弹性成像数据。该算法在大规模并行通用图形处理单元(GPGPU)上执行,以实现实时性能。使用仿真分析了估计器的性能。还提出了多孔弹性体模型的实验结果,作为新估计器在真实实验数据上的技术适用性的原理证明。该研究的结果表明,新提出的弹性估计器可以实时以高信噪比产生高度准确和敏感的弹性 TC 估计值。