Bibliography

1
W. Müller, H. Windisch, and H.A. Tritthart.
Fluorescent styryl dyes applied as fast optical probes of cardiac action potential.
Eur. Biophys. J, 1:103-111, 1986.

2
W. Müller, H. Windisch, and H.A. Tritthart.
Fast optical monitoring of microscopic patterns in cardiac muscle.
Biophys. J., 56:623-629, 1989.

3
R.L. Lux.
Karhunen-Loeve representation of ECG data.
J. Electrocardiol., 25(Suppl):195, 1992.

4
R.S. MacLeod, C.R. Johnson, M.J. Gardner, and B.M. Horácek.
Localization of ischemia during coronary angioplasty using body surface potential mapping and an electrocardiographic inverse solution.
In IEEE Computers in Cardiology, pages 251-254. IEEE Press, 1992.

5
R.S. MacLeod, R.L. Lux, and B. Taccardi.
Translation of body surface maps between different electrode configurations using a three-dimensional interpolation scheme.
In P.W. MacFarlane, editor, Electrocardiology '93: Proceedings of the International Congress on Electrocardiology, XXth Annual Meeting, pages 179-182. World Scientific, Singapore, 1993.

6
R.S. MacLeod, D.H. Brooks, H. On, H. Krim, R.L. Lux, and F. Kornreich.
Analysis of PTCA-induced ischemia using both an electrocardiographic inverse solution and the wavelet transform.
J. Electrocardiol., 27(Suppl):90-96, 1994.

7
R.L. Lux and R.S. MacLeod.
Estimating electrocardiographic distributions from small numbers of leads.
J. Electrocardiol., 28(Suppl):92-98, 1995.

8
R.S. MacLeod, R.M. Miller, M.J. Gardner, and B.M. Horácek.
Application of an electrocardiographic inverse solution to localize myocardial ischemia during percutaneous transluminal coronary angioplasty.
J. Cardiovasc. Electrophysiol., 6:2-18, 1995.

9
R.S. MacLeod, B. Taccardi, and R.L. Lux.
The influence of torso inhomogeneities on epicardial potentials.
In IEEE Computers in Cardiology, pages 793-796. IEEE Computer Society, 1994.

10
R.S. MacLeod and R.L. Lux.
Errors in electrocardiographic parameter estimation from standard leadsets.
J. Electrocardiol., 28(Suppl):98-103, 1995.

11
P.R. Ershler, B.W. Steadman, R.F. Wyatt, R.L. Lux, and J.A. Abildskov.
A 64 lead online system for clinical and experimental mapping of ventricular activation sequences.
In IEEE Computers in Cardiology, pages 417-419. IEEE Computer Society Press, 1984.

12
R.S. MacLeod, B. Taccardi, and R.L. Lux.
Electrocardiographic mapping in a realistic torso tank preparation.
In Proceedings of the IEEE Engineering in Medicine and Biology Society 17th Annual International Conference, pages 245-246. IEEE Press, 1995.

13
P.R. Ershler and R.L. Lux.
Uncertainties in arrhythmia mapping.
In Proceedings of the IEEE Engineering in Medicine and Biology Society 9th Annual International Conference, pages 1867-1868. IEEE Press, 1987.

14
R.L. Lux, L.S. Green, R.S. MacLeod, and B. Taccardi.
Assessment of spatial and temporal characteristics of ventricular repolarization.
J. Electrocardiol., 27(Suppl):100-104, 1994.

15
A. Bowyer.
Computing dirichlet tesselations.
Computer J, 24:162-166, 1981.

16
D.T. Lee and B.J. Schachter.
Two algorithms for constructing a Delaunay triangulation.
Int. J. Comp. Inf. Sci., 9:219-242, 1980.

17
M. Bern and D. Eppstein.
Mesh generation and optimal triangulation.
In F.K. Hwang and D.Z. Du, editors, Computing in Euclidean Geomtry. World Scientific, 1992.


Rob Macleod 2004-10-20