Showing results (1-10 of 334) with videos related to
Sort By:
Pageof 34
The American Journal of Cardiology|December 18, 1980
Nuclear magnetic resonance imaging: potential cardiac applicationsM R Goldman, G M Pohost, J S Ingwall, et al.The American Journal of Cardiology|March 1, 1983
Effects of reduced coronary flow on thallium-201 accumulation and release in an in vitro rat heart preparationS Z Goldhaber, J B Newell, J S Ingwall, et al.Proceedings of the National Academy of Sciences of the United States of America|June 1, 1980
Measurement of changes in high-energy phosphates in the cardiac cycle using gated 31P nuclear magnetic renonanceE T Fossel, H E Morgan, J S IngwallLa Nouvelle Presse Medicale|February 7, 1981
[A new method to evaluate myocardial preservation techniques (author's transl)]P Menasché, A Piwnica, J S Ingwall, et al.Science (New York, N.Y.)|May 22, 1981
Gated sodium-23 nuclear magnetic resonance images of an isolated perfused working rat heartJ L DeLayre, J S Ingwall, C Malloy, et al.Cardiology Clinics|August 1, 1983
Nuclear magnetic resonance imaging. The potential for cardiac evaluation of the pediatric patientM R Goldman, G M PohostCirculation|June 1, 1983
Evaluation of high-energy phosphate metabolism during cardioplegic arrest and reperfusion: a phosphorus-31 nuclear magnetic resonance studyA C Pernot, J S Ingwall, P Menasche, et al.Circulation|April 1, 1983
Effects of ischemic-like insult on myocardial thallium-201 accumulationS Z Goldhaber, J B Newell, N M Alpert, et al.Circulation Research|August 1, 1982
Inosine: a protective agent in an organ culture model of myocardial ischemiaS Z Goldhaber, G M Pohost, R A Kloner, et al.The Annals of Thoracic Surgery|December 1, 1981
Limitations of potassium cardioplegia during cardiac ischemic arrest: a phosphorus 31 nuclear magnetic resonance studyA C Pernot, J S Ingwall, P Menasche, et al.Pageof 34