Abstract
We present an automated method for acquiring images and contrast parameters based on mechanical properties of breast lesions and surrounding tissue at load frequencies less than 1 Hz. The method called sub-Hertz analysis of viscoelasticity (SAVE) uses a compression device integrated with ultrasound imaging to perform in vivo ramp-and-hold uniaxial creep-like test on human breast in vivo. It models the internal deformations of tissues under constant surface stress as a linear viscoelastic response. We first discuss different aspects of our unique measurement approach and the expected variability of the viscoelastic parameters estimated based on a simplified one-dimensional reconstruction model. Finite-element numerical analysis is used to justify the advantages of using imaging contrast over viscoelasticity values. We then present the results of SAVE applied to a group of patients with breast masses undergoing biopsy.
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CITATION STYLE
Bayat, M., Nabavizadeh, A., Kumar, V., Gregory, A., Insana, M., Alizad, A., & Fatemi, M. (2018). Automated in vivo sub-hertz analysis of viscoelasticity (SAVE) for evaluation of breast lesions. IEEE Transactions on Biomedical Engineering, 65(10), 2237–2247. https://doi.org/10.1109/TBME.2017.2787679
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