A sensitivity analysis method and its application in physics-based nonrigid motion modeling

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摘要

Parameters used in physical models for nonrigid and articulated motion analysis are often not known with high precision. It has been recognized that commonly used assumptions about the parameters may have adverse effect on modeling quality. In this paper, we present an efficient sensitivity analysis method to assess the impact of those assumptions by examining the model's spatial response to parameter perturbation. Numerical experiments with a synthetic model and skin tissues show that: (1) normalized sensitivity distribution can help determine the relative importance of different parameters; (2) dimensional sensitivity is useful in the assessment of a particular parameter assumption; and (3) models are more sensitive at the locations of property discontinuity (heterogeneity). The formulation of the proposed sensitivity analysis method is general and can be applied to assessment of other types of assumptions, such as those related to nonlinearity and anisotropy.

论文关键词:Sensitivity analysis,Physical modeling,Nonrigid motion,Elastic parameters

论文评审过程:Received 19 October 2004, Revised 4 June 2005, Accepted 4 August 2005, Available online 18 April 2006.

论文官网地址:https://doi.org/10.1016/j.imavis.2005.08.007