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Circulation|September 1, 1995
Correlation of temperature and pathophysiological effect during radiofrequency catheter ablation of the AV junctionS Nath, J P DiMarco, J P Mounsey, et al.Pacing and Clinical Electrophysiology : PACE|December 1, 1992
Adenosine and verapamil-sensitive ventricular tachycardia originating from the left ventricle: radiofrequency catheter ablationW A DeLacey, S Nath, D E Haines, et al.Circulation|July 1, 1993
Regional wall motion analysis predicts survival and functional outcome after subendocardial resection in patients with prior anterior myocardial infarctionS Nath, D E Haines, I L Kron, et al.The American Journal of Cardiology|December 1, 1996
Atrial rhythm after atrioventricular junctional ablationM A Mitchell, S J Ackerman, S Nath, et al.The American Journal of Cardiology|April 1, 1996
Effects of dispersive electrode position and surface area on electrical parameters and temperature during radiofrequency catheter ablationS Nath, J P DiMarco, R G Gallop, et al.Journal of Cardiovascular Electrophysiology|June 2, 2001
Role of calcium in acute hyperthermic myocardial injuryT H Everett, S Nath, C Lynch, et al.Circulation|June 1, 1994
Effects of radiofrequency catheter ablation on regional myocardial blood flow. Possible mechanism for late electrophysiological outcomeS Nath, J G Whayne, S Kaul, et al.Journal of Neurosurgery|August 1, 1981
Zones in the cerebellar cortex. Their organization and potential relevance to cerebellar stimulationD E HainesThe Journal of Comparative Neurology|November 1, 1976
Cerebellar corticonuclear and corticovestibular fibers of the anterior lobe vermis in a prosimian primate (Galago senegalensis)D E HainesPacing and Clinical Electrophysiology : PACE|March 1, 1993
The biophysics of radiofrequency catheter ablation in the heart: the importance of temperature monitoringD E HainesPageof 40