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Imaging
Citations 71-80 of 103 total displayed.
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Past content
(since Apr 1999):
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- Reviews
Spatial Microstimuli in Endothelial Mechanosignaling
- Peter F. Davies, Jenny Zilberberg, and Brian P. Helmke
Circ. Res. 2003;92:359-370, doi:10.1161/01.RES.0000060201.41923.88
[Abstract]
[Full text]
- Integrative Physiology
Cx43 and Dual-Pathway Electrophysiology of the Atrioventricular Node and Atrioventricular Nodal Reentry
- Vladimir P. Nikolski, Sandra A. Jones, Matthew K. Lancaster, Mark R. Boyett, and Igor R. Efimov
Circ. Res. 2003;92:469-475; published online before print as doi:10.1161/01.RES.0000059304.97120.2F
[Abstract]
[Full text]
- Articles
Cx43 and Dual-Pathway Electrophysiology of the Atrioventricular Node and Atrioventricular Nodal Reentry
- Vladimir P. Nikolski, Sandra A. Jones, Matthew K. Lancaster, Mark R. Boyett, and Igor R. Efimov
Circ. Res. published January 30, 2003, doi:10.1161/01.RES.0000059304.97120.2F
[Abstract]
- UltraRapid Communications
Spatiotemporal Characteristics of Junctional and Nonjunctional Focal Ca2+ Release in Rat Atrial Myocytes
- Sun-Hee Woo, Lars Cleemann, and Martin Morad
Circ. Res. 2003;92:e1-11e; published online before print as doi:10.1161/01.RES.0000051887.97625.07
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[Full text]
- Articles
Spatiotemporal Characteristics of Junctional and Nonjunctional Focal Ca2+ Release in Rat Atrial Myocytes
- Sun-Hee Woo, Lars Cleemann, and Martin Morad
Circ. Res. published December 12, 2002, doi:10.1161/01.RES.0000051887.97625.07
[Abstract]
- Cellular Biology
Spatial and Temporal Inhomogeneities During Ca2+ Release From the Sarcoplasmic Reticulum in Pig Ventricular Myocytes
- Frank R. Heinzel, Virginie Bito, Paul G.A. Volders, Gudrun Antoons, Kanigula Mubagwa, and Karin R. Sipido
Circ. Res. 2002;91:1023-1030; published online before print as doi:10.1161/01.RES.0000045940.67060.DD
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[Full text]
- Articles
Spatial and Temporal Inhomogeneities During Ca2+ Release From the Sarcoplasmic Reticulum in Pig Ventricular Myocytes
- Frank R. Heinzel, Virginie Bito, Paul G.A. Volders, Gudrun Antoons, Kanigula Mubagwa, and Karin R. Sipido
Circ. Res. published November 7, 2002, doi:10.1161/01.RES.0000045940.67060.DD
[Abstract]
- Cellular Biology
Carbon Monoxide Dilates Cerebral Arterioles by Enhancing the Coupling of Ca2+ Sparks to Ca2+-Activated K+ Channels
- Jonathan H. Jaggar, Charles W. Leffler, Serguei Y. Cheranov, Dilyara Tcheranova, Shuyu E, and Xiaoyang Cheng
Circ. Res. 2002;91:610-617; published online before print as doi:10.1161/01.RES.0000036900.76780.95
[Abstract]
[Full text]
- Reports
Evoked and Spontaneous Purinergic Junctional Ca2+ Transients (jCaTs) in Rat Small Arteries
- Christine Lamont and W. Gil Wier
Circ. Res. 2002;91:454-456; published online before print as doi:10.1161/01.RES.0000035060.98415.4B
[Abstract]
[Full text]
- Articles
Carbon Monoxide Dilates Cerebral Arterioles by Enhancing the Coupling of Ca2+ Sparks to Ca2+-Activated K+ Channels
- Jonathan H. Jaggar, Charles W. Leffler, Serguei Y. Cheranov, Dilyara Tcheranova, Shuyu E, and Xiaoyang Cheng
Circ. Res. published September 12, 2002, doi:10.1161/01.RES.0000036900.76780.95
[Abstract]
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