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Blanca Rodriguez : Publications

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[1]

A multi−scale investigation of repolarization variability and its role in cardiac arrhythmogenesis

E. Pueyo‚ A. Corrias‚ L. Virag‚ N. Jost‚ T. Szel‚ A. Varro‚ N. Szentandrassy‚ P. Nanasi‚ K. Burrage and B. Rodriguez

In Biophysical journal. 2011.

[2]

A new ECG biomarker for drug toxicity: A combined signal processing and computational modeling study

X. Jie‚ B. Rodriguez and E. Pueyo

In Engineering in Medicine and Biology Society (EMBC)‚ 2010 Annual International Conference of the IEEE. Pages 2565–2568. IEEE. 2010.

[3]

A novel biophysically−detailed mathematical model of rabbit Purkinje cell electrophysiology

A. Corrias and B. Rodriguez

In Engineering in Medicine and Biology Society (EMBC)‚ 2010 Annual International Conference of the IEEE. Pages 2658–2661. IEEE. 2010.

[4]

Action potential duration inhomogeneities in acute myocardial ischemia: a simulation study

Ferrero Jr‚ JM‚ B. Rodriguez‚ B. Trenor‚ V. Torres‚ J. Saiz‚ JM Ferrero and NV Thakor

In Computers in Cardiology 1998. Pages 577–580. IEEE. 1998.

[5]

An investigation into the role of the optical detection set−up in the recording of cardiac optical mapping signals: A Monte Carlo simulation study

M.J. Bishop‚ G. Bub‚ A. Garny‚ D.J. Gavaghan and B. Rodriguez

In Physica D: Nonlinear Phenomena. Vol. 238. No. 11−12. Pages 1008–1018. 2009.

[6]

Arrhythmic risk biomarkers for the assessment of drug cardiotoxicity: from experiments to computer simulations

A. Corrias‚ X. Jie‚ L. Romero‚ MJ Bishop‚ M. Bernabeu‚ E. Pueyo and B. Rodriguez

In Philosophical Transactions of the Royal Society A: Mathematical‚ Physical and Engineering Sciences. Vol. 368. No. 1921. Pages 3001–3025. 2010.

[7]

Arrhythmogenesis in the heart: Multiscale modeling of the effects of defibrillation shocks and the role of electrophysiological heterogeneity

H. Arevalo‚ B. Rodriguez and N. Trayanova

In Chaos (Woodbury‚ NY). Vol. 17. No. 1. Pages 015103. 2007.

[8]

Arrthythmogenicity of transmural heterogeneities in a realistic model of regional ischemia

B.M. Tice‚ B. Rodriguez and N.A. Trayanova

In Heart Rhythm. Vol. 2. No. 5. Pages S261–S261. 2005.

[9]

Assessing influence of conductivity in heart modelling with the aim of studying cardiovascular diseases (Cum Laude Poster Award)[6916−79]

R. Sebastian‚ S. Ordas‚ G. Plank‚ B. Rodriguez‚ EJ Vigmond and AF Frangi

In PROCEEDINGS−SPIE THE INTERNATIONAL SOCIETY FOR OPTICAL ENGINEERING. Vol. 6916. Pages 6916. 2008.

[10]

Cardiac memory in human atria and relation to arrhythmogenesis

C. Sanchez‚ E. Pueyo‚ P. Laguna and B. Rodriguez

In Computers in Cardiology‚ 2009. Pages 81–84. IEEE. 2009.

[11]

Cardiac vulnerability to electric shocks during phase 1A of acute global ischemia

B. Rodŕıguez‚ B.M. Tice‚ J.C. Eason‚ F. Aguel and N. Trayanova

In Heart Rhythm. Vol. 1. No. 6. Pages 695–703. 2004.

[12]

Changes in rabbit heart vulnerability during phase 1A of acute global ischemia

N. Trayanova and B. Rodriguez

In Advances in Electrocardiology. Pages 818–826. 2004.

[13]

Chaste: A test−driven approach to software development for biological modelling

J. Pitt−Francis‚ P. Pathmanathan‚ M.O. Bernabeu‚ R. Bordas‚ J. Cooper‚ A.G. Fletcher‚ G.R. Mirams‚ P. Murray‚ J.M. Osborne‚ A. Walter‚ S.J. Chapman‚ A. Garny‚ I.M.M. van Leeuwen‚ P.K. Maini‚ B. Rodriguez‚ S.L. Waters‚ J.P. Whiteley‚ H.M. Byrne and D.J. Gavaghan

In Computer Physics Communications. Vol. 180. No. 12. Pages 2452−2471. 2009.

[14]

Chaste: Incorporating a Novel Multiscale Spatial and Temporal Algorithm into a Large Scale Open Source Library

M.O. Bernabeu‚ R. Bordas‚ P. Pathmanathan‚ J. Pitt−Francis‚ J. Cooper‚ A. Garny‚ D.J. Gavaghan‚ B. Rodriguez‚ J.A. Southern and J.P. Whiteley

In Phil Trans Roy Soc (A). Vol. 367. No. 1895. Pages 1907−1930. May, 2009.

[15]

Chaste: Using Agile Programming Techniques to Develop Computational Biology Software

Joe Pitt−Francis‚ Miguel O. Bernabeu‚ Jonathan Cooper‚ Alan Garny‚ Lee Momtahan‚ James Osborne‚ Pras Pathmanathan‚ Blanca Rodriguez‚ Jonathan P. Whiteley and David J. Gavaghan

In Philosophical Transactions of the Royal Society A. Vol. 366. No. 1878. Pages 3111−3136. 2008.

[16]

Computer model of the effects of pinacidil on ATP−sensitive potassium current

B. Trenor‚ JM Ferrero Jr‚ B. Rodriguez‚ J. Saiz‚ JM Ferrero and NV Thakor

In Engineering in Medicine and Biology Society‚ 1998. Proceedings of the 20th Annual International Conference of the IEEE. Pages 40–43. IEEE. 1998.

[17]

Differences between left and right ventricular anatomy determine the types of reentrant circuits induced by an external electric shock. A rabbit heart simulation study

B. Rodriguez‚ J.C. Eason and N. Trayanova

In Progress in biophysics and molecular biology. Vol. 90. No. 1−3. Pages 399–413. 2006.

[18]

Differences between left and right ventricular chamber geometry affect cardiac vulnerability to electric shocks.

B Rodríguez‚ L Li‚ JC Eason‚ IR Efimov and NA Trayanova

In Circulation research. Vol. 97. No. 2. Pages 168−175. 2005.

[19]

Direct optical mapping signal synthesis over a geometrically accurate ventricular model

M.J. Bishop‚ B. Rodriguez‚ J.C. Eason‚ J.P. Whiteley‚ J.A. Noble‚ N. Trayanova and D.J. Gavaghan

In Heart Rhythm. Vol. 2. No. 5. Pages S220–S220. 2005.

[20]

Effect of Na+−K+ pump inhibition on extracellular potassium accumulation during myocardial ischemia: a simulation study

B. Rodriguez and JM Ferrero Jr

In Computers in Cardiology 2000. Pages 315–318. IEEE. 2000.

[21]

Effect of acute global ischemia on cardiac vulnerability to electrical shocks

B. Rodriguez‚ JC Eason‚ B. Tice‚ JM Ferrero Jr and N. Trayanova

In Engineering in Medicine and Biology Society‚ 2003. Proceedings of the 25th Annual International Conference of the IEEE. Vol. 1. Pages 151–154. IEEE. 2003.

[22]

Effect of acute global ischemia on the upper limit of vulnerability: a simulation study.

B Rodríguez‚ BM Tice‚ JC Eason‚ F Aguel‚ JM Jr Ferrero and N Trayanova

In American Journal of Physiology−Heart and Circulatory Physiology. Vol. 286. No. 6. Pages H2078−H2088. 2004.

[23]

Effect of sodium inward current on extracellular potassium accumulation during myocardial ischemia: a simulation study

B. Rodriguez and JM Ferrero Jr

In Computers in Cardiology 1999. Pages 101–103. IEEE. 1999.

[24]

Effects of pinacidil on reentrant arrhythmias generated during acute regional ischemia: a simulation study

B. Trenor‚ J.M. Ferrero‚ B. Rodriguez and F. Montilla

In Annals of biomedical engineering. Vol. 33. No. 7. Pages 897–906. 2005.

[25]

Electrical activity and reentry during acute regional myocardial ischemia: insights from simulations

JM Ferrero‚ B. Trenor‚ B. Rodriguez and J. Saiz

In INTERNATIONAL JOURNAL OF BIFURCATION AND CHAOS IN APPLIED SCIENCES AND ENGINEERING. Vol. 13. No. 12. Pages 3703–3716. 2003.

[26]

Estimation of activation times in cardiac tissue using graph based methods

M. Wallman‚ N. Smith and B. Rodriguez

In Functional Imaging and Modeling of the Heart. Pages 71–79. 2011.

[27]

Exploring the parameter space of a rabbit ventricular action potential model to investigate the effect of variation on action potential and calcium transients

P. Gemmell‚ K. Burrage‚ B. Rodriguez and T.A. Quinn

In Engineering in Medicine and Biology Society (EMBC)‚ 2010 Annual International Conference of the IEEE. Pages 2662–2665. IEEE. 2010.

[28]

Gender and age based differences in risk of proarrhythmia by dofetilide: A computational model study

R. Gonzalez‚ J. Gomis−Tena‚ A. Corrias‚ J.M. Ferrero‚ B. Rodriguez and J. Saiz

In Computers in Cardiology‚ 2010. Pages 641–644. IEEE. 2010.

[29]

Generation of histo−anatomically representative models of the individual heart: tools and application

G. Plank‚ R.A.B. Burton‚ P. Hales‚ M. Bishop‚ T. Mansoori‚ M.O. Bernabeu‚ A. Garny‚ A.J. Prassl‚ C. Bollensdorff‚ F. Mason and others

In Philosophical Transactions of the Royal Society A: Mathematical‚ Physical and Engineering Sciences. Vol. 367. No. 1896. Pages 2257–2292. 2009.

[30]

Grid computing simulations of ion channel block effects on the ECG using 3D anatomically−based models

MO Bernabeu‚ A. Corrias‚ J. Pitt−Francis‚ B. Rodriguez‚ B. Bethwaite‚ C. Enticott‚ S. Garic‚ T. Peachey‚ J. Tan‚ D. Abramson and others

In Computers in Cardiology‚ 2009. Pages 213–216. IEEE. 2009.

[31]

High performance computer simulations for the study of biological function in 3D heart models incorporating fibre orientation and realistic geometry at para−cellular resolution

MO Bernabeu‚ MJ Bishop‚ J. Pitt−Francis‚ DJ Gavaghan‚ V. Grau and B. Rodriguez

In Computers in Cardiology‚ 2008. Pages 721–724. IEEE. 2008.

[32]

High performance computer simulations of cardiac electrical function based on high resolution MRI datasets

M. Plotkowiak‚ B. Rodriguez‚ G. Plank‚ J. Schneider‚ D. Gavaghan‚ P. Kohl and V. Grau

In Computational Science–ICCS 2008. Pages 571–580. 2008.

[33]

High−throughput cardiac science on the Grid

D. Abramson‚ M.O. Bernabeu‚ B. Bethwaite‚ K. Burrage‚ A. Corrias‚ C. Enticott‚ S. Garic‚ D. Gavaghan‚ T. Peachey‚ J. Pitt−Francis and others

In Philosophical Transactions of the Royal Society A: Mathematical‚ Physical and Engineering Sciences. Vol. 368. No. 1925. Pages 3907. 2010.

[34]

High−throughput cardiac science on the grid

J. Pitt−Francis‚ B. Rodriguez and others

In Phil. Trans. R. Soc. A. Pages 3907−3923. 2010.

[35]

Human and rabbit inter−species comparison of ionic mechanisms of arrhythmic risk: A simulation study

L. Romero‚ B. Carbonell‚ B. Trenor‚ B. Rodriguez‚ J. Saiz and JM Ferrero

In Engineering in Medicine and Biology Society (EMBC)‚ 2010 Annual International Conference of the IEEE. Pages 3253–3256. IEEE. 2010.

[36]

Impact of ionic current variability on human ventricular cellular electrophysiology

L. Romero‚ E. Pueyo‚ M. Fink and B. Rodŕıguez

In American Journal of Physiology−Heart and Circulatory Physiology. Vol. 297. No. 4. Pages H1436. 2009.

[37]

Inference of intramural wavefront orientation from optical recordings in realistic whole−heart models

M.J. Bishop‚ B. Rodriguez‚ N. Trayanova and D.J. Gavaghan

In Biophysical journal. Vol. 91. No. 10. Pages 3957. 2006.

[38]

Inference of intramural wavefront orientation from optical recordings in realistic whole−heart models.

M.J. Bishop‚ B. Rodríguez‚ N. Trayanova and D.J. Gavaghan

In Biophys J. Vol. 91. No. 10. Pages 3957−3958. 2006.

[39]

Integrated approach for the study of anatomical variability in the cardiac purkinje system: from high resolution MRI to electrophysiology simulation

R. Bordas‚ V. Grau‚ RAB Burton‚ P. Hales‚ JE Schneider‚ D. Gavaghan‚ P. Kohl and B. Rodriguez

In Engineering in Medicine and Biology Society (EMBC)‚ 2010 Annual International Conference of the IEEE. Pages 6793–6796. IEEE. 2010.

[40]

Integrated mechanisms of K+ loss in myocardial ischemia: a simulation study

B. Rodriguez and JM Ferrero Jr

In Engineering in Medicine and Biology Society‚ 2001. Proceedings of the 23rd Annual International Conference of the IEEE. Vol. 1. Pages 48–51. IEEE. 2001.

[41]

Integrative Biology: Real science through e−Science

S. Lloyd‚ D. Gavaghan‚ D. Boyd‚ D. Noble‚ B. Rodriguez‚ T. Maharaj‚ M. Bishop‚ R. Clayton‚ H. James‚ K. Brodlie and others

2008.

[42]

Interpreting optical mapping recordings in the ischemic heart: a combined experimental and computational investigation

S. Dutta‚ M. Bishop‚ P. Pathmanathan‚ P. Lee‚ P. Kohl‚ T. Quinn and B. Rodriguez

In Functional Imaging and Modeling of the Heart. Pages 20–27. 2011.

[43]

Ionic mechanisms of electrophysiological properties and repolarization abnormalities in rabbit Purkinje fibers

A. Corrias‚ W. Giles and B. Rodriguez

In American Journal of Physiology−Heart and Circulatory Physiology. Vol. 300. No. 5. Pages H1806–H1813. 2011.

[44]

Ischemia

J.M. Ferrero Jr‚ Á. Ferrero‚ B. Trénor‚ F. Montilla‚ J. Saiz and B. Rodŕıguez

In Wiley Encyclopedia of Biomedical Engineering.

[45]

Mechanisms of ventricular rate adaptation as a predictor of arrhythmic risk

E. Pueyo‚ Z. Husti‚ T. Hornyik‚ I. Baczkó‚ P. Laguna‚ A. Varró and B. Rodŕıguez

In American Journal of Physiology−Heart and Circulatory Physiology. Vol. 298. No. 5. Pages H1577–H1587. 2010.

[46]

Mechanisms of ventricular rate adaptation as a predictor of arrhythmic risk.

E. Pueyo‚ Z. Husti‚ T. Hornyik‚ I. Baczko‚ P. Laguna‚ A. Varro and B. Rodriguez

In Am J Physiol Heart Circ Physiol. 2010.

[47]

Mechanisms underlying cardiac vulnerability to electric shocks within the three−dimensional volume of the rabbit ventricles

T. Maharaj‚ B. Rodriguez‚ R. Blake‚ NA Trayanova and DJ Gavaghan

In Computers in Cardiology‚ 2006. Pages 37–40. IEEE. 2006.

[48]

Mechanistic enquiry into the effect of increased pacing rate on the upper limit of vulnerability

D.W. Bourn‚ M.M. Maleckar‚ B. Rodriguez and N.A. Trayanova

In Philosophical Transactions of the Royal Society A: Mathematical‚ Physical and Engineering Sciences. Vol. 364. No. 1843. Pages 1333–1348. 2006.

[49]

Mechanistic insight into the increase in the upper limit of vulnerability for rapid pacing

M.M. Maleckar‚ D.W. Bourn‚ B. Rodriguez and N.A. Trayanova

In Heart Rhythm. Vol. 2. No. 5. Pages S219–S219. 2005.

[50]

Mechanistic investigation into the arrhythmogenic role of transmural heterogeneities in regional ischaemia phase 1A.

BM Tice‚ B Rodríguez‚ J Eason and N Trayanova

In Europace. Vol. 9 Suppl 6. Pages vi46−vi58. 2007.

[51]

Mechanistic investigation of extracellular K+ accumulation during acute myocardial ischemia: a simulation study.

B Rodriguez‚ JM Jr Ferrero and B Trenor

In American Journal of Physiology−Heart and Circulatory Physiology. Vol. 283. No. 2. Pages H490−H500. 2002.

[52]

Mechano−electric feedback effects in a ventricular myocyte model subjected to dynamic changes in mechanical load

I. Cenci‚ S. Morotti‚ J. Negroni‚ B. Rodriguez and S. Severi

In Computers in Cardiology‚ 2010. Pages 193–196. IEEE. 2010.

[53]

Modeling cardiac ischemia.

B Rodríguez‚ N Trayanova and D Noble

In Annals of the New York Academy of Sciences. Vol. 1080. No. 1. Pages 395−414. 2006.

[54]

Modelling effects of Sotalol on Action Potential morphology using a novel Markov model of the HERG channel

T. Brennan‚ M. Fink‚ B. Rodriguez and LT Tarassenko

In 11th Mediterranean Conference on Medical and Biomedical Engineering and Computing 2007. Pages 50–53. 2007.

[55]

Modelling effects of Sotalol on T−wave morphology

TP Brennan‚ M. Fink‚ D. Stokeley‚ B. Rodriguez and L. Tarassenko

In Computers in Cardiology‚ 2007. Pages 249–252. IEEE. 2007.

[56]

Modulation of Shock−End Virtual Electrodoe Polarisation as a Direct Result of 3D Fluorescent Photon Scattering

MJ Bishop‚ B. Rodriguez‚ N. Trayanova and DJ Gavaghan

In Engineering in Medicine and Biology Society‚ 2006. EMBS'06. 28th Annual International Conference of the IEEE. Pages 1556–1559. IEEE. 2006.

[57]

Multiscale modelling and simulation investigation of variability and abnormalities in repolarization: application to drug cardiotoxicity

B. Rodriguez

In Computers in Cardiology‚ 2010. Pages 257–260. IEEE. 2010.

[58]

Multiscale modelling of drug−induced effects on cardiac electrophysiological activity

T. Brennan‚ M. Fink and B. Rodriguez

In European Journal of Pharmaceutical Sciences. Vol. 36. No. 1. Pages 62–77. 2009.

[59]

Novel approaches to assessing cardiac safety−proceedings of a workshop: regulators‚ industry and academia discuss the future of in silico cardiac modelling to predict the proarrhythmic safety of drugs.

K. Fletcher‚ R.R. Shah‚ A. Thomas‚ F. Tobin‚ B. Rodriguez‚ G.R. Mirams‚ J. Saiz and D. Noble

In Drug safety: an international journal of medical toxicology and drug experience. Vol. 34. No. 5. Pages 439. 2011.

[60]

P4−21: Role of transmural heterogeneities in vulnerability to electric shocks

T. Maharaj‚ B. Rodriguez‚ R.C. Blake‚ N.A. Trayanova and D. Gavaghan

In Heart Rhythm. Vol. 3. No. 5. Pages S225–S225. 2006.

[61]

P4−24: Vulnerability to electric shocks in regional ischemia

B. Rodriguez‚ B. Tice‚ R.C. Blake‚ J. Eason‚ D. Gavaghan and N.A. Trayanova

In Heart Rhythm. Vol. 3. No. 5. Pages S226–S226. 2006.

[62]

P5−23: Reentry in surviving epicardium coupled to depolarized midmyocardial tissue: A simulation of arrhythmogenesis during phase 1B

X. Jie‚ B. Rodŕıguez‚ R.C. Blake‚ J.R. De Groot‚ R. Coronel and N.A. Trayanova

In Heart Rhythm. Vol. 3. No. 5. Pages S267–S268. 2006.

[63]

Phenomenological modeling of cell−to−cell and beat−to−beat variability in isolated Guinea Pig ventricular myocytes

J. Walmsley‚ G. Mirams‚ M. Bahoshy‚ C. Bollensdorff‚ B. Rodriguez and K. Burrage

In Engineering in Medicine and Biology Society (EMBC)‚ 2010 Annual International Conference of the IEEE. Pages 1457–1460. IEEE. , 2010.

[64]

Photon scattering effects in optical mapping of propagation and arrhythmogenesis in the heart

M.J. Bishop‚ D.J. Gavaghan‚ N.A. Trayanova and B. Rodriguez

In Journal of electrocardiology. Vol. 40. No. 6. Pages S75–S80. 2007.

[65]

Potential pharmacological therapies for atrial fibrillation. A computational study

C. Sánchez‚ A. Corrias‚ P. Laguna‚ M. Davies‚ J. Swinton‚ I. Jacobson‚ E. Pueyo and B. Rodriguez

In Computers in Cardiology‚ 2010. Pages 413–416. IEEE. 2010.

[66]

Rabbit−specific ventricular model of cardiac electrophysiological function including specialized conduction system

R. Bordas‚ K. Gillow‚ Q. Lou‚ IR Efimov‚ D. Gavaghan‚ P. Kohl‚ V. Grau and B. Rodriguez

In Progress in Biophysics and Molecular Biology. 2011.

[67]

Reentry in survived subepicardium coupled to depolarized and inexcitable midmyocardium: Insights into arrhythmogenesis in ischemia phase 1B

X. Jie‚ B. Rodŕıguez‚ J.R. de Groot‚ R. Coronel and N. Trayanova

In Heart Rhythm. Vol. 5. No. 7. Pages 1036–1044. 2008.

[68]

Role of cellular uncoupling in arrhythmogenesis in ischemia phase 1B

X. Jie‚ B. Rodŕıguez and N. Trayanova

In Engineering in Medicine and Biology Society‚ 2006. EMBS'06. 28th Annual International Conference of the IEEE. Pages 2272–2275. IEEE. 2006.

[69]

Role of shock timing in cardiac vulnerability to electric shocks

B. Rodriguez‚ N. Trayanova and D. Gavaghan

In Anaesthesia‚ Pain‚ Intensive Care and Emergency APICE. Pages 287–294. 2006.

[70]

Role of ventricular anatomy in vulnerability to electric shocks

B. Rodriguez‚ L. Li‚ J.C. Eason‚ I.R. Efimov and N.A. Trayanova

In Heart Rhythm. Vol. 2. No. 5. Pages S257–S257. 2005.

[71]

Sex and age related differences in drug induced QT prolongation by dofetilide under reduced repolarization reserve in simulated ventricular cells

R. Gonzalez‚ J. Gomis−Tena‚ A. Corrias‚ J.M. Ferrero‚ B. Rodriguez and J. Saiz

In Engineering in Medicine and Biology Society (EMBC)‚ 2010 Annual International Conference of the IEEE. Pages 3245–3248. IEEE. 2010.

[72]

Shock−induced arrhythmogenesis in the human heart: a computational modelling study

M.O. Bernabeu‚ M. Wallman and B. Rodŕıguez

In Engineering in Medicine and Biology Society (EMBC)‚ 2010 Annual International Conference of the IEEE. Pages 760–763. IEEE. 2010.

[73]

Simulating drug−induced effects on the heart: from ion channel to body surface electrocardiogram

N. Zemzemi‚ M. Bernabeu‚ J. Saiz and B. Rodriguez

In Functional Imaging and Modeling of the Heart. Pages 259–266. 2011.

[74]

Simulation of figure−of−eight reentry during acute inhomogeneous myocardial ischemia: role of ATP−sensitive potassium current

Ferrero Jr‚ JM‚ B. Trénor‚ J. Saiz and B. Rodriguez

In Computers in Cardiology‚ 2002. Pages 251–254. IEEE. 2002.

[75]

Simulation study of the contribution of the ATP−dependent potassium current to extracellular potassium accumulation during myocardial ischemia

B. Rodriguez‚ JM Ferrero Jr‚ B. Trenor‚ JM Ferrero‚ J. Saiz and NV Thakori

In Engineering in Medicine and Biology Society‚ 1998. Proceedings of the 20th Annual International Conference of the IEEE. Pages 44–47. IEEE. 1998.

[76]

Simulation study of the effect of pinacidil on ATP−sensitive potassium current and action potential duration in myocardial tissue

B. Trenor‚ JM Ferrero Jr‚ B. Rodriguez‚ J. Saiz‚ JM Ferrero and NK Thakor

In Computers in Cardiology 1998. Pages 581–584. IEEE. 1998.

[77]

Stochasticity in Action Potential duration Enhances Dispersion of Repolarisation at Fast Pacing Rates

John Walmsley‚ Kevin Burrage‚ Joe M. Pitt−Francis‚ Gary R. Mirams and Blanca Rodriguez

Vol. 102. No. 3. Pages 592a−593a. 2012.

[78]

Synthesis of voltage−sensitive optical signals: application to panoramic optical mapping

M.J. Bishop‚ B. Rodriguez‚ J. Eason‚ J.P. Whiteley‚ N. Trayanova and D.J. Gavaghan

In Biophysical journal. Vol. 90. No. 8. Pages 2938–2945. 2006.

[79]

Systematic characterisation of the ionic basis of rabbit cellular electrophysiology using two ventricular models

L. Romero‚ B. Carbonell‚ B. Trenor‚ B. Rodriguez‚ J. Saiz and J.M. Ferrero

In Progress in Biophysics and Molecular Biology. 2011.

[80]

The Role of Photon Scattering in Optical Signal Distortion during Arrhythmia and Defibrillation.

MJ Bishop‚ B Rodríguez‚ F Qu‚ IR Efimov‚ DJ Gavaghan and NA Trayanova

In Biophysical journal. Vol. 93. No. 10. Pages 3714–3726. 2007.

[81]

The ischemic heart: what causes ectopic beating?

X. Jie‚ B. Rodŕıguez and N. Trayanova

In Engineering in Medicine and Biology Society‚ 2005. IEEE−EMBS 2005. 27th Annual International Conference of the. Pages 7194–7197. IEEE. 2006.

[82]

The role of blood vessels in rabbit propagation dynamics and cardiac arrhythmias

M. Gibb‚ M. Bishop‚ R. Burton‚ P. Kohl‚ V. Grau‚ G. Plank and B. Rodriguez

In Functional Imaging and Modeling of the Heart. Pages 268–276. 2009.

[83]

The role of photon scattering in voltage−calcium fluorescent recordings of ventricular fibrillation

M.J. Bishop‚ A. Rowley‚ B. Rodriguez‚ G. Plank‚ D.J. Gavaghan and G. Bub

In Biophysical Journal. Vol. 101. No. 2. Pages 307–318. 2011.

[84]

The role of transmural ventricular heterogeneities in cardiac vulnerability to electric shocks

T. Maharaj‚ R. Blake‚ N. Trayanova‚ D. Gavaghan and B. Rodriguez

In Progress in biophysics and molecular biology. Vol. 96. No. 1. Pages 321–338. 2008.

[85]

The systems biology approach to drug development: application to toxicity assessment of cardiac drugs

B. Rodriguez‚ K. Burrage‚ D. Gavaghan‚ V. Grau‚ P. Kohl and D. Noble

In Clinical Pharmacology and Therapeutics. Vol. 88. No. 1. Pages 130–134. 2010.

[86]

Torsadogenic drug−induced increased short−term variability of JT−area

X. Jie‚ B. Rodriguez and E. Pueyo

In Computers in Cardiology‚ 2010. Pages 353–356. IEEE. 2010.

[87]

Transmural electrophysiological heterogeneities in action potential duration increase the upper limit of vulnerability

T. Maharaj‚ B. Rodriguez‚ R. Blake‚ NA Trayanova and DJ Gavaghan

In Engineering in Medicine and Biology Society‚ 2006. EMBS'06. 28th Annual International Conference of the IEEE. Pages 4043–4046. IEEE. 2006.

[88]

Upper limit of vulnerability in a defibrillation model of the rabbit ventricles.

B Rodríguez and N Trayanova

In J Electrocardiol. Vol. 36 Suppl. Pages 51−6. 2003.

[89]

Vulnerability to electric shocks in the regionally−ischemic ventricles

B. Rodŕıguez‚ B. Tice‚ R. Blake‚ D. Gavaghan and N. Trayanova

In Engineering in Medicine and Biology Society‚ 2006. EMBS'06. 28th Annual International Conference of the IEEE. Pages 2280–2283. IEEE. 2006.

[90]

What have we learned from mathematical models of defibrillation and postshock arrhythmogenesis? Application of bidomain simulations.

N Trayanova‚ G Plank and B Rodríguez

In Heart Rhythm. Vol. 3. No. 10. Pages 1232−1235. 2006.