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Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|March 16, 2007
Electrostriction of anisotropic tissuePhillip Prior, Bradley J RothMeasurement Science & Technology|September 20, 2011
Fourier analysis in Magnetic Induction Tomography: Mapping of anisotropic, inhomogeneous resistivitySteffan Puwal, Bradley J RothPhysical Review. E, Statistical, Nonlinear, and Soft Matter Physics|March 19, 2013
Monodomain shear wave propagation and bidomain shear wave dispersion in an elastic model of cardiac tissueSteffan Puwal, Bradley J RothPhysical Biology|August 17, 2018
The mechanical bidomain model of cardiac muscle with curving fibersKharananda Sharma, Bradley J RothPhysical Review. E, Statistical, Nonlinear, and Soft Matter Physics|January 15, 2011
Mechanical bidomain model of cardiac tissueSteffan Puwal, Bradley J RothBiophysical Journal|May 20, 2008
Calculation of optical signal using three-dimensional bidomain/diffusion model reveals distortion of the transmembrane potentialPhillip Prior, Bradley J RothMedical & Biological Engineering & Computing|March 28, 2009
Ultrasonically-induced Lorentz force tomographyBradley J Roth, Kevin SchaltePhysical Review. E|January 23, 2020
Mechanical bidomain model of cardiac muscle with unequal anisotropy ratiosDilmini Wijesinghe, Bradley J RothHeart Rhythm|March 3, 2009
A mechanism for the upper limit of vulnerabilityNachaat Mazeh, Bradley J RothChaos (Woodbury, N.Y.)|June 5, 2003
The induction of reentry in cardiac tissue. The missing link: How electric fields alter transmembrane potentialBradley J. Roth, Wanda KrassowskaPageof 8