Publications of Wanda K. Neu

Book Chapters

  1. Wanda Krassowska Neu, John C. Neu, Mechanism of irreversible electroporation in cells: Insight from the models, in Irreversible Electroporation, edited by B. Rubinsky (2010), pp. 85-122, Springer

Papers Published

  1. Neu, WK, Analytical solution for time-dependent potentials in a fiber stimulated by an external electrode, Med Biol Eng Comput, vol. 54 no. 11 (November, 2016), pp. 1719-1725, Springer Verlag (Germany), ISSN 0140-0118
  2. Idriss, SF; Krassowska Neu, W; Varadarajan, V; Antonijevic, T; Gilani, SS; Starobin, JM, Feasibility of non-invasive determination of the stability of propagation reserve in patients, Computing in Cardiology, vol. 39 (December, 2012), pp. 353-356, ISSN 2325-8861
  3. Cranford, JP; Kim, BJ; Neu, WK, Asymptotic model of electrical stimulation of nerve fibers., Medical & Biological Engineering & Computing, vol. 50 no. 3 (March, 2012), pp. 243-251
  4. Neu, WK; Neu, JC, Theory of electroporation, in Cardiac Bioelectric Therapy. Mechanisms and Practical Applications, edited by I.R. Efimov, M.W. Kroll, P.J. Tchou (December, 2009), pp. 133-161, Springer US
  5. Dobrovolny, HM; Berger, CM; Brown, NH; Neu, WK; Gauthier, DJ, Spatial heterogeneity of restitution properties and the onset of alternans., Annual International Conference of the Ieee Engineering in Medicine and Biology Society. Ieee Engineering in Medicine and Biology Society. Annual International Conference, vol. 2009 (January, 2009), pp. 4186-4189, ISSN 1557-170X (31st Annual International IEEE EMBS Conference of the IEEE Engineering in Medicine and Biology Society, Minneapolis, Minnesota, September, 2-6.)
  6. Ring, CL; Idriss, SF; Neu, WK, Variability of action potential duration in pharmacologically induced long QT syndrome type 1., Conference Proceedings : ... Annual International Conference of the Ieee Engineering in Medicine and Biology Society. Ieee Engineering in Medicine and Biology Society. Annual Conference, vol. 2009 (January, 2009), pp. 4520-4522, ISSN 1557-170X
  7. Ring, CL; Idriss, SF; Neu, WK, Variability of action potential duration in pharmacologically induced long QT syndrome type 1., Annu Int Conf Ieee Eng Med Biol Soc, vol. 2009 (2009), pp. 4520-4522, ISSN 1557-170X, ISBN 9781424432967 (31st Annual International IEEE EMBS Conference of the IEEE Engineering in Medicine and Biology Society, Minneapolis, Minnesota, September, 2-6.)
  8. Guo, L; Neu, JC; Cranford, JP; Krassowska Neu, W, Activating function of needle electrodes in anisotropic tissue, Med. Biol. Eng. Comput., vol. 47 no. 9 (2009), pp. 1001-1011
  9. Dobrovolny, HM; Berger, CM; Brown, NH; Neu, WK; Gauthier, DJ, Spatial heterogeneity of restitution properties and the onset of alternans., Conference Proceedings : ... Annual International Conference of the Ieee Engineering in Medicine and Biology Society. Ieee Engineering in Medicine and Biology Society. Annual Conference, vol. 2009 (2009), pp. 4186-4189
  10. Zhao, X; Schaeffer, DG; Berger, CM; Krassowska, W; Gauthier, DJ, `Cardiac alternans arising from an unfolded border-collision bifurcation, J. Comput. Nonlinear Dynam., vol. 3 no. 4 (October, 2008), pp. 041004, ASME International, ISSN 1555-1423
  11. Zhao, X; Schaeffer, DG; Berger, CM; Krassowska, W; Gauthier, DJ, Cardiac alternans arising from an unfolded border-collision bifurcation, 2007 Proceedings of the Asme International Design Engineering Technical Conferences and Computers and Information in Engineering Conference, Detc2007, vol. 5 PART A no. 4 (June, 2008), pp. 223-232, ISSN 1555-1423
  12. Berger, CM; Zhao, X; Schaeffer, DG; Dobrovolny, HM; Krassowska, W; Gauthier, DJ, Period-doubling bifurcation to alternans in paced cardiac tissue: crossover from smooth to border-collision characteristics., Physical Review Letters, vol. 99 no. 5 (August, 2007), pp. 058101, ISSN 0031-9007
  13. Pitruzzello, AM; Krassowska, W; Idriss, SF, Spatial heterogeneity of the restitution portrait in rabbit epicardium., American Journal of Physiology Heart and Circulatory Physiology, vol. 292 no. 3 (March, 2007), pp. H1568-H1578, ISSN 0363-6135
  14. Schaeffer, DG; Cain, JW; Gauthier, DJ; Kalb, SS; Oliver, RA; Tolkacheva, EG; Ying, W; Krassowska, W, An ionically based mapping model with memory for cardiac restitution., Bulletin of Mathematical Biology, vol. 69 no. 2 (February, 2007), pp. 459-482, ISSN 0092-8240
  15. Cranford, JP; Zhao, X; Krassowska, W, Guidelines for controlling pore radii from nonlinear analysis of a two-dimensional model of electroporation, Asme International Mechanical Engineering Congress and Exposition, Proceedings (Imece), vol. 2 (January, 2007), pp. 307-308, ASME
  16. Zhao, X; Schaeffer, DG; Krassowska, W; Gauthier, DJ, A model-independent technique for eigenvalue identification and its application in predicting cardiac alternans, Asme International Mechanical Engineering Congress and Exposition, Proceedings (Imece), vol. 2 (January, 2007), pp. 301-302, ASME
  17. Krassowska, W; Filev, PD, Modeling electroporation in a single cell., Biophysical Journal, vol. 92 no. 2 (January, 2007), pp. 404-417, ISSN 0006-3495
  18. Bell, J; Rouze, N; Krassowska, W; Idriss, S, The Electrocardiogram Restitution Portrait Quantifying Dynamical Electrical Instability in Young Myocardium., Computers in Cardiology, vol. 34 (2007), pp. 789-792, ISSN 0276-6574
  19. Neu, JC; Krassowska, W, Singular perturbation analysis of the pore creation transient., Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics, vol. 74 no. 3 Pt 1 (September, 2006), pp. 031917, ISSN 1539-3755
  20. Oliver, RA; Krassowska, W, Reproducing cardiac restitution properties using the Fenton-Karma membrane model., Annals of Biomedical Engineering, vol. 33 no. 7 (July, 2005), pp. 907-911, ISSN 0090-6964
  21. Kalb, SS; Tolkacheva, EG; Schaeffer, DG; Gauthier, DJ; Krassowska, W, Restitution in mapping models with an arbitrary amount of memory., Chaos (Woodbury, N.Y.), vol. 15 no. 2 (June, 2005), pp. 23701, ISSN 1054-1500
  22. Oliver, RA; Henriquez, CS; Krassowska, W, Bistability and correlation with arrhythmogenesis in a model of the right atrium., Annals of Biomedical Engineering, vol. 33 no. 5 (May, 2005), pp. 577-589, ISSN 0090-6964
  23. Kalb, SS; Dobrovolny, HM; Tolkacheva, EG; Idriss, SF; Krassowska, W; Gauthier, DJ, The restitution portrait: a new method for investigating rate-dependent restitution., Journal of Cardiovascular Electrophysiology, vol. 15 no. 6 (June, 2004), pp. 698-709, ISSN 1045-3873
  24. Smith, KC; Neu, JC; Krassowska, W, Model of creation and evolution of stable electropores for DNA delivery., Biophysical Journal, vol. 86 no. 5 (May, 2004), pp. 2813-2826
  25. Dev, SB; Dhar, D; Krassowska, W, Electric field of a six-needle array electrode used in drug and DNA delivery in vivo: analytical versus numerical solution., Ieee Transactions on Bio Medical Engineering, vol. 50 no. 11 (November, 2003), pp. 1296-1300
  26. Neu, JC; Smith, KC; Krassowska, W, Electrical energy required to form large conducting pores., Bioelectrochemistry (Amsterdam, Netherlands), vol. 60 no. 1-2 (August, 2003), pp. 107-114
  27. Tolkacheva, EG; Schaeffer, DG; Gauthier, DJ; Krassowska, W, Condition for alternans and stability of the 1:1 response pattern in a "memory" model of paced cardiac dynamics., Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics, vol. 67 no. 3 Pt 1 (March, 2003), pp. 031904, ISSN 1539-3755
  28. Neu, JC; Krassowska, W, Modeling postshock evolution of large electropores, Physical Review E Statistical, Nonlinear, and Soft Matter Physics, vol. 67 no. 2 1 (February, 2003), pp. 219151-2191512, ISSN 1063-651X
  29. Krassowska, W, Field stimulation of cardiac fibers with random spatial structure., Ieee Transactions on Bio Medical Engineering, vol. 50 no. 1 (January, 2003), pp. 33-40
  30. Krassowska, W; Nanda, GS; Austin, MB; Dev, SB; Rabussay, DP, Viability of cancer cells exposed to pulsed electric fields: the role of pulse charge., Annals of Biomedical Engineering, vol. 31 no. 1 (January, 2003), pp. 80-90
  31. Neu, JC; Krassowska, W, Modeling postshock evolution of large electropores, Phys. Rev. E, Stat. Nonlinear Soft Matter Phys. (Usa), vol. 67 no. 2 (2003), pp. 12, American Physical Society (APS), ISSN 1063-651X
  32. Skouibine, K; Wall, J; Krassowska, W; Trayanova, N, Modelling induction of a rotor in cardiac muscle by perpendicular electric shocks., Medical & Biological Engineering & Computing, vol. 40 no. 1 (January, 2002), pp. 47-55, ISSN 0140-0118
  33. Oliver, RA; Hall, GM; Bahar, S; Krassowska, W; Wolf, PD; Dixon-Tulloch, EG; Gauthier, DJ, Existence of bistability and correlation with arrhythmogenesis in paced sheep atria., Journal of Cardiovascular Electrophysiology, vol. 11 no. 7 (July, 2000), pp. 797-805, ISSN 1045-3873
  34. Skouibine, K; Krassowska, W, Increasing the computational efficiency of a bidomain model of defibrillation using a time-dependent activating function., Annals of Biomedical Engineering, vol. 28 no. 7 (July, 2000), pp. 772-780
  35. Bilska, AO; DeBruin, KA; Krassowska, W, Theoretical modeling of the effects of shock duration, frequency, and strength on the degree of electroporation., Bioelectrochemistry (Amsterdam, Netherlands), vol. 51 no. 2 (June, 2000), pp. 133-143
  36. Wall, J; Trayanova, NA; Skouibine, K; Krassowska, W, Modeling induction of reentry with a realistic S2 stimulus, Annual International Conference of the Ieee Engineering in Medicine and Biology Proceedings, vol. 1 (December, 1999), pp. 154, Atlanta, GA, USA
  37. Skouibine, K; Krassowska, W, Reduced bidomain model of defibrillation, Annual International Conference of the Ieee Engineering in Medicine and Biology Proceedings, vol. 1 (December, 1999), pp. 287, Atlanta, GA, USA
  38. Bilska, AO; DeBruin, KA; Krassowska, W, Electroporation of single cells by high frequency shocks, Annual International Conference of the Ieee Engineering in Medicine and Biology Proceedings, vol. 1 (December, 1999), pp. 87, Atlanta, GA, USA
  39. Oliver, RA; Krassowska, W; Hall, GM; Bahar, S; Wolf, PD; Gauthier, DJ, Existence of bistability and correlation with arrhythmogenesis in sheep atria, Annual International Conference of the Ieee Engineering in Medicine and Biology Proceedings, vol. 1 (December, 1999), pp. 157, Atlanta, GA, USA
  40. Bahar, S; Hall, GM; Oliver, RA; Krassowska, W; Gauthier, DJ, Transitions between 2:1 and 1:1 responses in cardiac muscle induced by added stimuli, Annual International Conference of the Ieee Engineering in Medicine and Biology Proceedings, vol. 1 (December, 1999), pp. 258, Atlanta, GA, USA
  41. DeBruin, KA; Krassowska, W, Modeling electroporation in a single cell. I. Effects Of field strength and rest potential., Biophysical Journal, vol. 77 no. 3 (September, 1999), pp. 1213-1224, ISSN 0006-3495
  42. Aguel, F; Debruin, KA; Krassowska, W; Trayanova, NA, Effects of electroporation on the transmembrane potential distribution in a two-dimensional bidomain model of cardiac tissue., Journal of Cardiovascular Electrophysiology, vol. 10 no. 5 (May, 1999), pp. 701-714, ISSN 1045-3873
  43. Neu, JC; Krassowska, W, Asymptotic model of electroporation, Physical Review E Statistical, Nonlinear, and Soft Matter Physics, vol. 59 no. 3 (January, 1999), pp. 3471-3482
  44. Stone, BA; Lieberman, M; Krassowska, W, Field stimulation of isolated chick heart cells: comparison of experimental and theoretical activation thresholds., Journal of Cardiovascular Electrophysiology, vol. 10 no. 1 (January, 1999), pp. 92-107, ISSN 1045-3873
  45. DeBruin, KA; Krassowska, W, Modeling electroporation in a single cell. II. Effects of ionic concentrations, Biophys. J. (Usa), vol. 77 no. 3 (1999), pp. 1225-1233
  46. DeBruin, KA; Krassowska, W, Electroporation and shock-induced transmembrane potential in a cardiac fiber during defibrillation strength shocks., Annals of Biomedical Engineering, vol. 26 no. 4 (July, 1998), pp. 584-596
  47. Roth, BJ; Krassowska, W, The induction of reentry in cardiac tissue. The missing link: How electric fields alter transmembrane potential, Chaos (Woodbury, N.Y.), vol. 8 no. 1 (January, 1998), pp. 204-220, AIP Publishing
  48. Neu, JC; Preissig, RS; Krassowska, W, Initiation of propagation in a one-dimensional excitable medium, Physica D: Nonlinear Phenomena, vol. 102 no. 3-4 (January, 1997), pp. 285-299, Elsevier BV
  49. Krassowska, W., Macroscopic model of electroporating membrane, 1995 IEEE Engineering in Medicine and Biology 17th Annual Conference and 21 Canadian Medical and Biological Engineering Conference (Cat. No.95CH35746), vol. vol.1 (1997), pp. 253 - 4, Montreal, Que., Canada
  50. Krassowska, W; Kumar, MS, Role of spatial interactions in creating the dispersion of transmembrane potential by premature electric shocks, Annals of Biomedical Engineering, vol. 25 no. 6 (1997), pp. 949-963, ISSN 0090-6964
  51. DeBruin, KA; Krassowska, W, Electroporation as a mechanism of the saturation of transmembrane potential induced by large electric fields, Annual International Conference of the Ieee Engineering in Medicine and Biology Proceedings, vol. 5 (December, 1996), pp. 1836-1837, Amsterdam, Netherlands
  52. Krassowska, W, Macroscopic model of electroporating membrane, Annual International Conference of the Ieee Engineering in Medicine and Biology Proceedings, vol. 17 no. 1 (December, 1995), pp. 253-254
  53. Trayanova, N; Krassowska, W, Virtual electrode effects in a bidomain model with electroporating membrane, Annual International Conference of the Ieee Engineering in Medicine and Biology Proceedings, vol. 17 no. 1 (December, 1995), pp. 255-256, Montreal, Can
  54. Walcott, GP; Walker, RG; Cates, AW; Krassowska, W; Smith, WM; Ideker, RE, Choosing the optimal monophasic and biphasic waveforms for ventricular defibrillation., Journal of Cardiovascular Electrophysiology, vol. 6 no. 9 (September, 1995), pp. 737-750
  55. Krassowska, W. and Neu, J.C., Activation of a single cell by an external field, Computers in Cardiology 1994 (1995), pp. 637 - 40, Bethesda, MD, USA
  56. Krassowska, W, Effects of electroporation on transmembrane potential induced by defibrillation shocks, Pace Pacing and Clinical Electrophysiology, vol. 18 no. 9 I (1995), pp. 1644-1660
  57. Krassowska, W; Neu, JC, Response of a single cell to an external electric field., Biophysical Journal, vol. 66 no. 6 (June, 1994), pp. 1768-1776
  58. Alferness, C; Bayly, PV; Krassowska, W; Daubert, JP; Smith, WM; Ideker, RE, Strength-interval curves in canine myocardium at very short cycle lengths., Pacing and Clinical Electrophysiology : Pace, vol. 17 no. 5 Pt 1 (May, 1994), pp. 876-881
  59. Krassowska, W; Neu, JC, Effective boundary conditions for syncytial tissues., Ieee Transactions on Bio Medical Engineering, vol. 41 no. 2 (February, 1994), pp. 143-150
  60. Krassowska, W; Neu, JC, Boundary conditions for the bidomain model of the heart, Annual International Conference of the Ieee Engineering in Medicine and Biology Proceedings, vol. 15 no. pt 2 (December, 1993), pp. 865-866, San Diego, CA, USA
  61. Guse, PA; Rollins, DL; Krassowska, W; Wolf, PD; Smith, WM; Ideker, RE, Effective defibrillation in pigs using interleaved and common phase sequential biphasic shocks., Pacing and Clinical Electrophysiology : Pace, vol. 16 no. 8 (August, 1993), pp. 1719-1734, ISSN 0147-8389
  62. Neu, JC; Krassowska, W, Homogenization of syncytial tissues., Critical Reviews in Biomedical Engineering, vol. 21 no. 2 (January, 1993), pp. 137-199
  63. Krassowska, W; Cabo, C; Knisley, SB; Ideker, RE, Propagation versus delayed activation during field stimulation of cardiac muscle., Pacing and Clinical Electrophysiology : Pace, vol. 15 no. 2 (February, 1992), pp. 197-210
  64. Krassowska, W; Rollins, DL; Wolf, PD; Dixon, EG; Pilkington, TC; Ideker, RE, Pacing thresholds for cathodal and anodal high-frequency monophasic pulses, Journal of Cardiovascular Electrophysiology, vol. 3 no. 1 (January, 1992), pp. 64-76, WILEY
  65. Krassowska, W; Pilkington, TC; Ideker, RE, Two-scale asymptotic analysis for modeling activation of periodic cardiac strand, Mathematical and Computer Modelling, vol. 16 no. 3 (January, 1992), pp. 121-130, Elsevier BV, ISSN 0895-7177
  66. Krassowska, W. and Neu, J.C., Theoretical versus experimental estimates of the effective conductivities of cardiac muscle, Proceedings of Computer in Cardiology 1992 (Cat. No.92CH3259-9) (1992), pp. 703 - 6, Durham, NC, USA
  67. Papanicolaou, VG; Krassowska, W, Electrostatic potential on the boundary of cardiac tissue, Annual International Conference of the Ieee Engineering in Medicine and Biology Proceedings, vol. 13 no. pt 2 (December, 1991), pp. 500-501, Orlando, FL, USA
  68. Knisley, SB; Krassowska, W; Pilkington, TC; Smith, WM, Do myocardial fibers contain junctional capacitance?, Annual International Conference of the Ieee Engineering in Medicine and Biology Proceedings, vol. 13 no. pt 2 (December, 1991), pp. 611-612, Orlando, FL, USA
  69. Ideker, RE; Wolf, PD; Alferness, C; Krassowska, W; Smith, WM, Current concepts for selecting the location, size and shape of defibrillation electrodes., Pacing and Clinical Electrophysiology : Pace, vol. 14 no. 2 Pt 1 (February, 1991), pp. 227-240
  70. Knisley, SB; Krassowska, W; Pilkington, TC; Smith, WM, Effect of intercellular capacitance on conduction in a model of cell uncoupling, Annual International Conference of the Ieee Engineering in Medicine and Biology Proceedings no. pt 2 (December, 1990), pp. 620-621, Philadelphia, PA, USA
  71. Krassowska, W; Morrow, MN; Pilkington, TC, Modeling in the Bioelectric Stimulation Unit, Annual International Conference of the Ieee Engineering in Medicine and Biology Proceedings no. pt 2 (December, 1990), pp. 666-667, Philadelphia, PA, USA
  72. Krassowska, W; Knisley, SB; Pilkington, TC; Ideker, RE, Modeling high-frequency pacing with a discrete cardiac strand, Annual International Conference of the Ieee Engineering in Medicine and Biology Proceedings no. pt 2 (December, 1990), pp. 624-625, Philadelphia, PA, USA
  73. Krassowska, W; Pilkington, TC; Ideker, RE, Potential distribution in three-dimensional periodic myocardium--Part I: Solution with two-scale asymptotic analysis., Ieee Transactions on Bio Medical Engineering, vol. 37 no. 3 (March, 1990), pp. 252-266
  74. Krassowska, W; Frazier, DW; Pilkington, TC; Ideker, RE, Potential distribution in three-dimensional periodic myocardium--Part II: Application to extracellular stimulation., Ieee Transactions on Bio Medical Engineering, vol. 37 no. 3 (March, 1990), pp. 267-284
  75. Ideker, RE; Frazier, DW; Krassowska, W; Shibata, N; Chen, PS; Kavanagh, KM; Smith, WM, Experimental evidence for autowaves in the heart., Annals of the New York Academy of Sciences, vol. 591 (January, 1990), pp. 208-218, ISSN 0077-8923
  76. Ideker, RE; Krassowska, W; Wharton, JM; Smith, WM, Experimental results pertinent to the modelling of defibrillation, Annual International Conference of the Ieee Engineering in Medicine and Biology Proceedings, vol. 11 pt 1 (November, 1989), pp. 77-78, Seattle, WA, USA
  77. Krassowska, W; Pilkington, TC; Ideker, RE, Modelling the periodicity of cardiac muscle., Journal of Electrocardiology, vol. 22 Suppl no. SUPPL. (January, 1989), pp. 41-47, ISSN 0022-0736
  78. Frazier, DW; Krassowska, W; Chen, PS; Wolf, PD; Danieley, ND; Smith, WM; Ideker, RE, Transmural activations and stimulus potentials in three-dimensional anisotropic canine myocardium., Circulation Research, vol. 63 no. 1 (July, 1988), pp. 135-146, ISSN 0009-7330
  79. Frazier, DW; Krassowska, W; Chen, PS; Wolf, PD; Dixon, EG; Smith, WM; Ideker, RE, Extracellular field required for excitation in three-dimensional anisotropic canine myocardium., Circulation Research, vol. 63 no. 1 (July, 1988), pp. 147-164, ISSN 0009-7330
  80. Krassowska, W; Tang, ASL; Pilkington, TC; Ideker, RE, Anodal and cathodal thresholds during transthoracic stimulation, Ieee/Engineering in Medicine and Biology Society Annual Conference, vol. 10 no. pt 1 (January, 1988), pp. 202-203, New Orleans, LA, USA
  81. Krassowska, W; Frazier, DW; Pilkington, TC; Ideker, RE, Finite element approximation of potential gradient in cardiac muscle undergoing stimulation, Mathematical and Computer Modelling, vol. 11 no. C (January, 1988), pp. 801-806, Elsevier BV, St. Louis, MO, USA, ISSN 0895-7177
  82. Pilkington, TC; Krassowska, W; Morrow, MN; Ideker, RE, FEASIBILITY OF ESTIMATING ENDOCARDIAL POTENTIALS FROM CAVITY POTENTIALS., Ieee/Engineering in Medicine and Biology Society Annual Conference (December, 1987), pp. 1875-1876, Boston, MA, USA
  83. Krassowska, W; Pilkington, TC; Ideker, RE, The closed form solution to the periodic core-conductor model using asymptotic analysis., Ieee Transactions on Bio Medical Engineering, vol. 34 no. 7 (July, 1987), pp. 519-531
  84. Krassowska, W; Pilkington, TC; Ideker, RE, Periodic conductivity as a mechanism for cardiac stimulation and defibrillation., Ieee Transactions on Bio Medical Engineering, vol. 34 no. 7 (July, 1987), pp. 555-560
  85. Krassowska, W; Pilkington, TC; Ideker, RE, ASYMPTOTIC ANALYSIS FOR PERIODIC CARDIAC MUSCLE., Ieee/Engineering in Medicine and Biology Society Annual Conference (December, 1986), pp. 255-258, Fort Worth, TX, USA
  86. Krassowska, W; Jurkiewicz, B; Klupsz, E; Peczalski, K; Stopczyk, M, Computerized system for isochronic epicardial mapping, Medical Informatics = Medecine Et Informatique, vol. 10 no. 3 (1985), pp. 237-245

Other

  1. Neu, WK, Uncertainty in 1D and 3D models of a fiber stimulated byan external electrode, vol. 9656 (January, 2016), pp. 219-229, Springer International Publishing, ISBN 9783319317434
  2. Neu, WK; Neu, JC, Modeling electroporation with moment dynamics equations (December, 2015)
  3. Neu, WK, Analytical solution for time-dependent potentials in a cylindrical fiber (December, 2015)
  4. Caroline L. Ring, David G. Schaeffer, Wanda Krassowska Neu, Effect of strength-interval relationship on cardiac rhythm dynamics in a one-dimensional mapping model (2011) (Dynamics Days '11, 30th Annual International Conference on Chaos and Nonlinear Dynamics, Chapel Hill, NC, Jan. 5-8.)
  5. J. P. Cranford, W. Krassowska Neu, Electroporation in a three-dimensional, time-dependent model of a skeletal muscle fiber (2011) (Dynamics Days '11, 30th Annual International Conference on Chaos and Nonlinear Dynamics, Chapel Hill, NC, Jan. 5-8.)
  6. C. Berger, X. Zhao, D. Schaeffer, W. Krassowska, D. Gauthier, Investigating an unfolded-border collision bifurcation in paced cardiac tissue (2009) (2009 SIAM Conference on Applications of Dynamical Systems, Snowbird, Utah, May 17-21.)