Combining transmural left ventricular mechanics and energetics to predict oxygen demand
Author:
Publisher
Springer Science and Business Media LLC
Subject
Biomedical Engineering
Link
http://link.springer.com/content/pdf/10.1007/BF02368012.pdf
Reference26 articles.
1. Baller, D.; Bretschneider, J. H.; Hellige, G. Validity of myocardial oxygen consumption parameters. Clin. Cardiol. 2:317–327; 1979.
2. Barta, E.; Sideman, S.; Beyar, R. Temperature distribution within the left ventricular wall of the heart. Int. J. Heat Mass Transfer 28:603–673; 1985.
3. Barta, E.; Sideman, S.; Beyar, R. Spatial and temporal temperature distribution in the healthy and locally diseased wall of the heart. Int. J. Heat Mass Transfer 29:86–94; 1986.
4. Barta, E.; Sideman, S.; Adachi, H., Beyar, R. Heat transfer and temperature profiles during ischemia and infarction in the left ventricular wall. In: Sideman, S.; Beyar, R., eds. Activation, Metabolism and Perfusion of the Heart. Dordrecht/Boston: Martinus Nijhoff; 1987; pp 683–688.
5. Beyar, R.; Sideman, S. A computer study of the left ventricular performance based on the fiber structure, sarcomere dynamics and transmural electrical propagation velocity. Circ. Res. 55:358–375; 1984.
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1. Mathematical model of cardiovascular mechanics for diagnostic analysis and treatment of heart failure: Part 1 model description and theoretical analysis;Medical & Biological Engineering & Computing;1994-01
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