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ANDREW J PULLAN
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Name
Affiliation
Papers
ANDREW J PULLAN
Univ Auckland, Dept Engn Sci, Auckland Bioengn Inst, Auckland 1010, New Zealand
15
Collaborators
Citations
PageRank
35
69
15.32
Referers
Referees
References
192
77
34
Search Limit
100
192
Publications (15 rows)
Collaborators (35 rows)
Referers (100 rows)
Referees (77 rows)
Title
Citations
PageRank
Year
An improved method for the estimation and visualization of velocity fields from gastric high-resolution electrical mapping.
3
0.48
2012
Simulating a dual-array electrode configuration to investigate the influence of skeletal muscle fatigue following functional electrical stimulation
1
0.38
2012
A preliminary model of gastrointestinal electromechanical coupling.
0
0.34
2011
Electropathological substrate detection of persistent atrial fibrillation--a novel method to analyze unipolar electrograms of noncontact mapping.
0
0.34
2011
A tissue framework for simulating the effects of gastric electrical stimulation and in vivo validation.
1
0.48
2009
Bridging Scales: A Three-Dimensional Electromechanical Finite Element Model of Skeletal Muscle
5
1.53
2008
Relating discontinuous cardiac electrical activity to mesoscale tissue structures: detailed image based modeling
0
0.34
2007
An integrative software package for gastrointestinal biomagnetic data acquisition and analysis using SQUID magnetometers.
1
0.48
2006
Rapid Construction Of A Patient-Specific Torso Model From 3d Ultrasound For Non-Invasive Imaging Of Cardiac Electrophysiology
5
0.79
2005
Effects of experimental and modeling errors on electrocardiographic inverse formulations.
11
1.52
2003
The effect of torso impedance on epicardial and body surface potentials: a modeling study.
4
2.26
2003
Comparison of potential- and activation-based formulations for the inverse problem of electrocardiology.
21
2.60
2003
New Developments In An Anatomical Framework For Modeling Cardiac Ischemia
0
0.34
2003
An Anatomically Based Model of Transient Coronary Blood Flow in the Heart
4
1.19
2002
A Finite Element Method for an Eikonal Equation Model of Myocardial Excitation Wavefront Propagation
13
2.25
2002
1