Nic Smith: Publications
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[1]
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Theoretical Modeling in Hemodynamics of Microcirculation
Lee J., Smith N.P.
Microcirculation, Vol. 15(8), pages 730-745. 2008.
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[2]
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The role of theoretical modeling in microcirculation research
Secomb T.W. et al.
Microcirculation, Vol. 15(8), pages 693-698. 2008.
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[3]
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Three-dimensional visualisation of cutaneous head and neck melanoma lymphoscintigraphy data
Reynolds H.M. et al.
Head and Neck, 2008.
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[4]
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A thermodynamic model of the cardiac sarcoplasmic/endoplasmic Ca2+ (SERCA) pump
Tran K. et al.
Biophysical Journal, 2008.
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[5]
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A Meta Analysis of the Physiome Paradigm with application to cardiac electrophysiology
Niederer S. A. et al.
Experimental Physiology, 2008.
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[6]
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Coupling Contraction, Excitation, Ventricular and Coronary Blood Flow across scale and physics in the Heart
Lee J. et al.
Phil Trans, 2008.
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[7]
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A Biophysically Based Model of Unitary Potential Activity in the Interstitial Cells of Cajal
R.A. Faville, A.J. Pullan, K.M Sanders, N.P. Smith
Biophys. J. 2008.
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[8]
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Using Physiome Standards to couple cellular functions for cardiac excitation-contraction
Terkildsen J., Niederer S.A., Hunter P.J., Crampin E.J., Smith N.P.
Exp. Physiol. 2008.
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[9]
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Energetic Consequences of Mechanical Loads
Loiselle D.S., Crampin E.J., Niederer S.A., Smith N.P., Barclay C.J.
Prog. Bio. Mol. Biol. 2008.
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[10]
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Triangulation of p-Order parametric Surfaces,
Nordsletten D.A., Smith N.P.
Journal of Scientific Computing, 2008.
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[11]
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Modelling the Chloride dependent bicarbonate independent acid equivalent transporter in guinea pig ventricular myoctes
Niederer S. A., Wilson D. A., Swietach P., Smith N. P., R. D. Vaughan-Jones
Biophys. J. 2008.
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[12]
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Knowledge capture and the responsibility: Past and present
Smith, N., Noble, D.
Prog Biophys Mol Biol, 2008.
Editorial.
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[13]
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An improved numerical method for strong coupling of excitation and contraction models in the heart
Niederer, S. A., Smith, N. P.
Prog Biophys Mol Biol, 2008.
Journal article.
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[14]
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The balance between inactivation and activation of the Na+-K+ pump underlies the triphasic accumulation of extracellular K+ during myocardial ischemia
Terkildsen, J. R., Crampin, E. J. and Smith, N. P.
Am J Physiol Heart Circ Physiol, Vol. 293, No. 5, pages H3036-45. 2007.
Journal Article United States.
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[15]
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Computational biology of cardiac myocytes: proposed standards for the physiome
Smith, N. P. et al.
J Exp Biol, Vol. 210, No. Pt 9, pages 1576-83. 2007.
Eb005825/eb/nibib Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't England.
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[16]
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Mapping melanoma lymphoscintigraphy data onto a 3D anatomically based model
Reynolds, H. M. et al.
Ann Biomed Eng, Vol. 35, No. 8, pages 1444-57. 2007.
Journal Article Research Support, Non-U.S. Gov't United States.
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[17]
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Three-dimensional visualisation of lymphatic drainage patterns in patients with cutaneous melanoma
Reynolds, H. M. et al.
Lancet Oncol, Vol. 8, No. 9, pages 806-12. 2007.
Evaluation Studies Journal Article Research Support, Non-U.S. Gov't England.
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[18]
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A mathematical model of the slow force response to stretch in rat ventricular myocytes
Niederer, S. A., Smith, N. P.
Biophys J, Vol. 92, No. 11, pages 4030-44. 2007.
R01-EB005825-01/EB/United States NIBIB Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't United States.
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[19]
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Automatic segmentation of 3D micro-CT coronary vascular images
Lee, J. et al.
Med Image Anal, Vol. 11, No. 6, pages 630-47. 2007.
Journal Article Netherlands.
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[20]
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Effects of Stenting on Blood Flow in a Coronary Artery Model, Applied Bionics
Raghu, R., Pullan, A.J. and Smith, N.P.
Applied Bionics, Vol. 3, No. 2, pages 77-86. 2006.
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[21]
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Structural morphology of renal vasculature
Nordsletten, D. A. et al.
Am J Physiol Heart Circ Physiol, Vol. 291, No. 1, pages H296-309. 2006.
EB000305/EB/United States NIBIB R01-EB-00582501/EB/United States NIBIB Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S. United States.
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[22]
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A quantitative analysis of cardiac myocyte relaxation: a simulation study
Niederer, S. A., Hunter, P. J. and Smith, N. P.
Biophys J, Vol. 90, No. 5, pages 1697-722. 2006.
United Kingdom Wellcome Trust Journal Article Research Support, Non-U.S. Gov't United States.
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[23]
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Computational multiscale modeling in the UPS physiome project: Modeling cardiac electromechanics
Nickerson, D. et al.
Ibm Journal of Research and Development, Vol. 50, No. 6, pages 617-630. 2006.
104NJ Times Cited:0 Cited References Count:52.
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[24]
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Modelling slow wave activity in the small intestine
Lin, A. S. et al.
J Theor Biol, Vol. 242, No. 2, pages 356-62. 2006.
R01-DK64775/DK/United States NIDDK Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't Netherlands.
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[25]
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Computational simulations of the human magneto- and electroenterogram
Lin, A. S. et al.
Ann Biomed Eng, Vol. 34, No. 8, pages 1322-31. 2006.
R01-DK64775/DK/United States NIDDK Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't United States.
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[26]
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Hodgkin-Huxley type ion channel characterization: an improved method of voltage clamp experiment parameter estimation
Lee, J., Smaill, B. and Smith, N.
J Theor Biol, Vol. 242, No. 1, pages 123-34. 2006.
Journal Article Research Support, Non-U.S. Gov't Netherlands.
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[27]
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Acidosis in models of cardiac ventricular myocytes
Crampin, E. J. et al.
Philos Transact A Math Phys Eng Sci, Vol. 364, No. 1842, pages 1171-86. 2006.
Journal Article Research Support, Non-U.S. Gov't Review England.
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[28]
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A dynamic model of excitation-contraction coupling during acidosis in cardiac ventricular myocytes
Crampin, E. J., Smith, N. P.
Biophys J, Vol. 90, No. 9, pages 3074-90. 2006.
EB005825/EB/United States NIBIB United Kingdom Wellcome Trust Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't United States.
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[29]
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Three-dimensional models of individual cardiac histoanatomy: tools and challenges
Burton, R. A. et al.
Ann N Y Acad Sci, Vol. 1080, pages 301-19. 2006.
HL 63195/HL/United States NHLBI Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't United States.
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[30]
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Computational Modeling of Ventricular Mechanics and Energetics
Smith, N.P., Stevens, C. and Hunter, P.J.
Applied Mechanics Reviews, Vol. 58, pages 77-90. 2005.
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[31]
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The efficiency of muscle contraction
Smith, N. P., Barclay, C. J. and Loiselle, D. S.
Prog Biophys Mol Biol, Vol. 88, No. 1, pages 1-58. 2005.
Journal Article Research Support, Non-U.S. Gov't Review England.
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[32]
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New developments in a strongly coupled cardiac electromechanical model
Nickerson, D., Smith, N. and Hunter, P.
Europace, Vol. 7 Suppl 2, pages 118-27. 2005.
Journal Article Research Support, Non-U.S. Gov't England European pacing, arrhythmias, and cardiac electrophysiology : journal of the working groups on cardiac pacing, arrhythmias, and cardiac cellular electrophysiology of the European Society of Cardiology.
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[33]
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Integration from proteins to organs: the IUPS Physiome Project
Hunter, P. et al.
Mech Ageing Dev, Vol. 126, No. 1, pages 187-92. 2005.
Journal Article Review Ireland.
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[34]
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Computational Modelling of the Heart
Smith, N.P. et al.
Acta Numerica, Vol. 13, pages 371-431. 2004.
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[35]
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Modelling cellular and tissue function
Smith, N. P., Crampin, E. J.
Prog Biophys Mol Biol, Vol. 85, No. 2-3, pages 117-9. 2004.
Editorial England.
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[36]
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Development of models of active ion transport for whole-cell modelling: cardiac sodium-potassium pump as a case study
Smith, N. P., Crampin, E. J.
Prog Biophys Mol Biol, Vol. 85, No. 2-3, pages 387-405. 2004.
Comparative Study Evaluation Studies Journal Article Research Support, Non-U.S. Gov't Validation Studies England.
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[37]
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A computational study of the interaction between coronary blood flow and myocardial mechanics
Smith, N. P.
Physiol Meas, Vol. 25, No. 4, pages 863-77. 2004.
Journal Article England.
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[38]
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Giving form to the function of the heart: embedding cellular models in an anatomical framework
Smith, N., Hunter, P.
Jpn J Physiol, Vol. 54, No. 6, pages 541-4. 2004.
Journal Article Review Japan.
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[39]
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Multi-scale modelling and the IUPS physiome project
Crampin, E. J., Smith, N. P. and Hunter, P. J.
J Mol Histol, Vol. 35, No. 7, pages 707-14. 2004.
Journal Article Netherlands.
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[40]
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Computational physiology and the Physiome Project
Crampin, E. J. et al.
Exp Physiol, Vol. 89, No. 1, pages 1-26. 2004.
Journal Article Research Support, Non-U.S. Gov't Review England.
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[41]
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Altered T wave dynamics in a contracting cardiac model
Smith, N. P., Buist, M. L. and Pullan, A. J.
J Cardiovasc Electrophysiol, Vol. 14, No. 10 Suppl, pages S203-9. 2003.
Journal Article Research Support, Non-U.S. Gov't United States.
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[42]
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From sarcomere to cell: an efficient algorithm for linking mathematical models of muscle contraction
Smith, N. P.
Bull Math Biol, Vol. 65, No. 6, pages 1141-62. 2003.
Journal Article United States.
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[43]
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New developments in an anatomical framework for modeling cardiac ischemia
Smith, N. et al.
International Journal of Bifurcation and Chaos, Vol. 13, No. 12, pages 3717-3722. 2003.
779UV Times Cited:1 Cited References Count:19.
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[44]
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Cardiac electrical activity—from heart to body surface and back again
Pullan, A. J. et al.
J Electrocardiol, Vol. 36 Suppl, pages 63-7. 2003.
Journal Article United States.
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[45]
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An Anatomically Based Model of Transient Coronary Blood Flow in the Heart
Smith, N.P., Pullan, A.J. and Hunter, P.J.
SIAM Journal of Applied Mathematics, Vol. 62, No. 3, pages 990-1018. 2002.
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[46]
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Mathematical modelling of the heart: cell to organ
Smith, N. P. et al.
Chaos Solitons & Fractals, Vol. 13, No. 8, pages 1613-1621. 2002.
517YQ Times Cited:17 Cited References Count:26.
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[47]
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Analysis of Coronary Blood Flow Interaction with Myocardial Mechanics Based on Anatomical Models
Smith, N.P., Kassab, G.S.
Philos Transact A Math Phys Eng Sci, Vol. 359, pages 1159-1172. 2001.
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[48]
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A model of cardiac cellular electromechanics
Nickerson, D. P., Smith, N. P. and Hunter, P. J.
Philosophical Transactions of the Royal Society of London Series a-Mathematical Physical and Engineering Sciences, Vol. 359, No. 1783, pages 1159-1172. 2001.
443TM Times Cited:24 Cited References Count:40.
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[49]
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Mathematical modelling of the ischaemic heart
Mulquiney, P. J. et al.
Nonlinear Analysis-Theory Methods & Applications, Vol. 47, No. 1, pages 235-244. 2001.
Part 1 466BX Times Cited:5 Cited References Count:18.
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[50]
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Generation of an anatomically based geometric coronary model
Smith, N. P., Pullan, A. J. and Hunter, P. J.
Ann Biomed Eng, Vol. 28, No. 1, pages 14-25. 2000.
Journal Article Research Support, Non-U.S. Gov't United states.
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