Chen Lujie, Treece Graham M, Lindop Joel E, Gee Andrew H, Prager Richard W
Department of Engineering, University of Cambridge, Trumpington Street, Cambridge CB2 1PZ, UK.
Med Image Anal. 2009 Apr;13(2):286-96. doi: 10.1016/j.media.2008.10.007. Epub 2008 Nov 8.
Displacement estimation is a key step in the evaluation of tissue elasticity by quasistatic strain imaging. An efficient approach may incorporate a tracking strategy whereby each estimate is initially obtained from its neighbours' displacements and then refined through a localized search. This increases the accuracy and reduces the computational expense compared with exhaustive search. However, simple tracking strategies fail when the target displacement map exhibits complex structure. For example, there may be discontinuities and regions of indeterminate displacement caused by decorrelation between the pre- and post-deformation radio frequency (RF) echo signals. This paper introduces a novel displacement tracking algorithm, with a search strategy guided by a data quality indicator. Comparisons with existing methods show that the proposed algorithm is more robust when the displacement distribution is challenging.
位移估计是通过准静态应变成像评估组织弹性的关键步骤。一种有效的方法可能包含一种跟踪策略,即每个估计值最初从其相邻点的位移获得,然后通过局部搜索进行细化。与穷举搜索相比,这提高了准确性并降低了计算成本。然而,当目标位移图呈现复杂结构时,简单的跟踪策略会失效。例如,由于变形前和变形后射频(RF)回波信号之间的去相关,可能会出现不连续性和位移不确定区域。本文介绍了一种新颖的位移跟踪算法,其搜索策略由数据质量指标引导。与现有方法的比较表明,当位移分布具有挑战性时,所提出的算法更稳健。