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Mitral Valve Mechanics
Department of Cardiothoracic Surgery, Stanford University School of Medicine; Research Institute of the Palo Alto Medical Foundation, Palo Alto, USA.
Linköping University, Department of Management and Engineering, Applied Thermodynamics and Fluid Mechanics. Linköping University, Faculty of Science & Engineering. Linköping University, Center for Medical Image Science and Visualization (CMIV).ORCID iD: 0000-0001-5526-2399
2016 (English)Book (Other academic)
Abstract [en]

The goal of this book is to develop a working hypothesis for mitral valve function in the beating heart. We have been studying the 4-D dynamics of the heart using biplane radiography of surgically implanted radiopaque markers for the past forty years,1 with emphasis on the mitral and aortic valves during the past 20 years, and dense leaflet and annular marker arrays during the past several years. Data from the control runs in these studies comprise the substrate for this book.

Place, publisher, year, edition, pages
Linköping University Electronic Press, 2016.
National Category
Fluid Mechanics and Acoustics
URN: urn:nbn:se:liu:diva-117057DOI: 10.3384/book.diva-117057ISBN: 978-91-7685-952-0OAI: diva2:896325
Available from: 2016-01-21 Created: 2015-04-14 Last updated: 2016-03-14

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Publisher's full textChapter: IntroductionChapter 01: Anatomy and Marker SitesChapter 02:Fibrous Mitral AnnulusChapter 03: Fibrous Annulus-Papillary Tip-LV RelationshipChapter 04:Anterior Leaflet TranpolinesChapter 05: Anterior Leaflet MobilityChapter 06: Anterior Leaflet CurvaturesChapter 07: Anterior Leaflet Chordal Safety NetChapter 08:Anterior Leaflet ShapesChapter 09:Anterior Leaflet Systolic Shape InvarianceChatper 10: Anterior Leaflet AreaChapter 11: Anterior Leaflet StrainsChapter 12: Mitral LV RelationshipChapter 13: Anterior Leaflet LV PositionChapter 14: Annular Size VariationChapter 15: Annular and Anterior Leaflet Area and PerimeterChapter 16: LV-Mitral Annular CouplingChapter 17: Mitral Annular FlexionChapter 18: Annular and Leaflet Shape and PlanarityChapter 19: Hinge ChordaeChapter 20: Papillary VectorsChapter 21: Papillary ForcesChapter 22: Papillary ChimeraChapter 23: Posterior Mitral Leaflet Anatomy and Marker SitesChapter 24: Posterior Leaflet OpenChapter 25: Posterior Leaflet ClosedChapter 26: Posterior Leaflet Pleats and ScallopsChapter 27: CoaptationChapter 28: Anterior Leaflet IndependenceChapter 29: Anterior Leaflet StiffnessChapter 30: Active Anterior LeafletChapter 31: Valvular Interstitial CellsChapter 32: Anterior Leaflet PerfusionChapter 33: Leaflet Angles and SeparationChapter 34: Left Ventricualr FlowChapter 35: Closure and AnimationsChapter 36: Coaptation Repeatability and RigidityChapter 37: Four BalloonsChapter 38: The CommissuresChapter 39: Suspenders, BeltChapter 40: Leaflet TentChapter 41: P2 Shape and Tertiary ChordsChapter 42: Left Atrial FlowChapter 43: The Normal Valve-Concept SummariesAppendix A: Marker Sites and Datafile ColumnsAppendix B: NAC-MAD Composite DatasetAppendix C: Computational DetailsAppendix D: Mitral Valve AnimationsAppendix E: COM StudiesAppendix F: Flap StudiesAppendix P: Pull Study Markers, Datasets, Protocol SchematicAppendix S: SOD and DOS Studies

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