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Performance analysis of steady-state harmonic elastography

Marvin M Doyley et al 2007 Phys. Med. Biol. 52 2657-2674   doi: 10.1088/0031-9155/52/10/002  Help

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Marvin M Doyley1, Qing Feng1, John B Weaver1,2 and Keith D Paulsen1
1 Thayer School of Engineering, Dartmouth College, Hanover, NH 03755, USA
2 Dartmouth Medical School, Dartmouth College, Hanover, NH 03766, USA
E-mail: marvin.m.doyley@dartmouth.edu

Abstract. Shear modulus estimation can be confounded by the ill-posed nature of the inverse elasticity problem. In this paper, we report the results of experiments conducted on simulated and gelatin phantoms to investigate the effect of various parameters (i.e., regularization, spatial filtering and the subzone generation process) associated with shear modulus reconstruction on the statistical accuracy (mean squared error), and image quality (i.e., contrast and spatial resolution) of the recovered mechanical properties. The results indicate several interesting observations. Firstly, the intrinsic spatial resolution of magnetic resonance elastography (MRE) is dependent on both regularization and spatial filtering. Secondly, the elastographic contrast-to-noise ratio (CNRe) increases with increasing regularization and spatial filtering, but it was not affected by the zoning parameters (i.e., the subzones and the extent of the overlap). Thirdly, the statistical accuracy (MSE) of the recovered property improved with increasing regularization, and spatial filtering weight, but the size of the subdomains and their overlap had no significant effect.

Print publication: Issue 10 (21 May 2007)
Received 19 October 2006, in final form 6 February 2007
Published 24 April 2007

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