Inst. de Genie Biomed., Ecole Polytech., Montreal, Que.
IEEE Trans Med Imaging. 1996;15(3):299-313. doi: 10.1109/42.500139.
A new method to reconstruct the elastic modulus of soft tissue subjected to an external static compression is presented. In this approach the Newton-Raphson method is used to vary a finite element (FE) model of the elasticity equations to fit, in a least squared sense, a set of axial tissue displacement fields estimated using a correlation technique applied to ultrasound signals. The ill-conditioning of the Hessian matrix is eliminated using the Tikhonov regularization technique. This regularization provides a compromise between fidelity to the observed data and a priori information of the solution. Using an echographic image formation model, it is shown that the method converges within a few iterations (8-10) and that strain images artifacts which are common in elastography are significantly reduced after the resolution of the inverse problem.
提出了一种新的方法来重建软组织在外部静态压缩下的弹性模量。在这种方法中,牛顿-拉普森方法被用来改变弹性方程的有限元(FE)模型,以最小二乘意义上拟合一组使用相关技术应用于超声信号估计的轴向组织位移场。使用 Tikhonov 正则化技术消除了海森矩阵的病态。这种正则化在对观测数据的保真度和解决方案的先验信息之间提供了一个折衷。使用超声成象模型,结果表明该方法在几次迭代(8-10)内收敛,并且在解决逆问题后,弹性成像中常见的应变图像伪影显著减少。