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Bradley J. Roth
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2020 – today
- 2023
- [j29]Bradley J. Roth:
Can MRI Be Used as a Sensor to Record Neural Activity? Sensors 23(3): 1337 (2023) - [j28]Bradley J. Roth:
Biomagnetism: The First Sixty Years. Sensors 23(9): 4218 (2023) - [j27]Mohammed Alzahrani, Bradley J. Roth:
The Electric Field Induced by a Microcoil During Magnetic Stimulation. IEEE Trans. Biomed. Eng. 70(11): 3260-3262 (2023)
2010 – 2019
- 2014
- [j26]Bradley J. Roth, Adam Luterek, Steffan Puwal:
The movement of a nerve in a magnetic field: application to MRI Lorentz effect imaging. Medical Biol. Eng. Comput. 52(5): 491-498 (2014) - 2013
- [j25]Sunil M. Kandel, Bradley J. Roth:
The Strength-Interval Curve in Cardiac Tissue. Comput. Math. Methods Medicine 2013: 134163:1-134163:11 (2013) - 2012
- [j24]William I. Jay, Ranjith S. Wijesinghe, Brian D. Dolasinski, Bradley J. Roth:
Is it possible to detect dendrite currents using presently available magnetic resonance imaging techniques? Medical Biol. Eng. Comput. 50(7): 651-657 (2012) - 2011
- [j23]Nicholas P. Charteris, Bradley J. Roth:
How Hyperpolarization and the Recovery of Excitability Affect Propagation through a Virtual Anode in the Heart. Comput. Math. Methods Medicine 2011: 375059:1-375059:8 (2011)
2000 – 2009
- 2009
- [j22]Bradley J. Roth, Kevin Schalte:
Ultrasonically-induced Lorentz force tomography. Medical Biol. Eng. Comput. 47(6): 573-577 (2009) - [j21]Steffan Puwal, Bradley J. Roth:
Optimization of Feedback Pacing for Defibrillation. IEEE Trans. Biomed. Eng. 56(2): 532-534 (2009) - 2008
- [j20]Nancy Tseng, Bradley J. Roth:
The potential induced in anisotropic tissue by the ultrasonically-induced Lorentz force. Medical Biol. Eng. Comput. 46(2): 195-197 (2008) - [j19]Bradley J. Roth:
Bidomain model. Scholarpedia 3(4): 6221 (2008) - [j18]Kaytlin Brinker, Bradley J. Roth:
The Effect of Electrical Anisotropy During Magnetoacoustic Tomography With Magnetic Induction. IEEE Trans. Biomed. Eng. 55(5): 1637-1639 (2008) - [j17]Bradley J. Roth:
Photon Density Measured Over a Cut Surface: Implications for Optical Mapping of the Heart. IEEE Trans. Biomed. Eng. 55(8): 2102-2104 (2008) - 2007
- [j16]Steffan Puwal, Bradley J. Roth:
Forward Euler Stability of the Bidomain Model of Cardiac Tissue. IEEE Trans. Biomed. Eng. 54(5): 951-953 (2007) - 2006
- [j15]Bradley J. Roth, Salil G. Patel, Ryan A. Murdick:
The effect of the cut surface during electrical stimulation of a cardiac wedge preparation. IEEE Trans. Biomed. Eng. 53(6): 1187-1190 (2006) - [c1]Bradley J. Roth:
How to Explain Why "Unequal Anisotropy Ratios" is Important Using Pictures but No Mathematics. EMBC 2006: 580-583 - 2002
- [j14]Bradley J. Roth:
Correction to "how electrode size affects the electrical potential distribution in cardiac tissue". IEEE Trans. Biomed. Eng. 49(5): 500 (2002) - [j13]Deborah L. Janks, Bradley J. Roth:
Averaging over depth during optical mapping of unipolar stimulation. IEEE Trans. Biomed. Eng. 49(9): 1051-1054 (2002) - 2001
- [j12]Deborah M. Langrill, Bradley J. Roth:
The effect of plunge electrodes during electrical stimulation of cardiac tissue. IEEE Trans. Biomed. Eng. 48(10): 1207-1211 (2001) - 2000
- [j11]Bradley J. Roth:
An S1 gradient of refractoriness is not essential for reentry induction by an S2 stimulus. IEEE Trans. Biomed. Eng. 47(6): 820-821 (2000) - [j10]Salil G. Patel, Bradley J. Roth:
How electrode size affects the electric potential distribution in cardiac tissue. IEEE Trans. Biomed. Eng. 47(9): 1284-1287 (2000)
1990 – 1999
- 1999
- [j9]David C. Latimer, Bradley J. Roth:
Effect of a bath on the epicardial transmembrane potential during internal defibrillation shocks. IEEE Trans. Biomed. Eng. 46(5): 612-614 (1999) - [j8]Bradley J. Roth, Marcella C. Woods:
The magnetic field associated with a plane wave front propagating through cardiac tissue. IEEE Trans. Biomed. Eng. 46(11): 1288-1292 (1999) - 1997
- [j7]Bradley J. Roth:
Electrical conductivity values used with the bidomain model of cardiac tissue. IEEE Trans. Biomed. Eng. 44(4): 326-328 (1997) - 1996
- [j6]Bradley J. Roth, John P. Wikswo Jr.:
The effect of externally applied electrical fields on myocardial tissue. Proc. IEEE 84(3): 379-391 (1996) - 1994
- [j5]Bradley J. Roth, John P. Wikswo Jr.:
Electrical stimulation of cardiac tissue: a bidomain model with active membrane properties. IEEE Trans. Biomed. Eng. 41(3): 232-240 (1994) - [j4]Bradley J. Roth, Peter J. Basser, John P. Wikswo:
Authors' reply [to comments on "Theoretical model for an MRI radio frequency resonator"]. IEEE Trans. Biomed. Eng. 41(8) (1994) - 1993
- [j3]Natalia A. Trayanova, Bradley J. Roth, Lisa J. Malden:
The response of a spherical heart to a uniform electric field: a bidomain analysis of cardiac stimulation. IEEE Trans. Biomed. Eng. 40(9): 899-908 (1993) - 1992
- [j2]Peter J. Basser, Ranjith S. Wijesinghe, Bradley J. Roth:
The activating function for magnetic stimulation derived from a three-dimensional volume conductor model. IEEE Trans. Biomed. Eng. 39(11): 1207-1210 (1992) - 1990
- [j1]Bradley J. Roth, Peter J. Basser:
A model of the stimulation of a nerve fiber by electromagnetic induction. IEEE Trans. Biomed. Eng. 37(6): 588-597 (1990)
Coauthor Index
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