The visceral pericardium: macromolecular structure and contribution to passive mechanical properties of the left ventricle

scientific article

The visceral pericardium: macromolecular structure and contribution to passive mechanical properties of the left ventricle is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1152/AJPHEART.00967.2007
P932PMC publication ID2878718
P698PubMed publication ID17933976
P5875ResearchGate publication ID5911281

P50authorHiroshi AshikagaQ41121842
P2093author name stringKeith A Horvath
Elliot R McVeigh
Han Wen
Robert S Balaban
Emily C Rothstein
Paul D Jöbsis
P2860cites workComparison of biaxial mechanical properties of excised endocardium and epicardiumQ71418438
Titin develops restoring force in rat cardiac myocytesQ71469016
Fiber Orientation in the Canine Left Ventricle during Diastole and SystoleQ72342396
Differential expression of cardiac titin isoforms and modulation of cellular stiffnessQ73333652
Alterations in the determinants of diastolic suction during pacing tachycardiaQ74113996
Delineation of normal human left ventricular twist throughout systole by tagged cine magnetic resonance imagingQ74483490
Equivalent radius of paracellular "pores" of the mesotheliumQ78117850
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Live tissue intrinsic emission microscopy using multiphoton-excited native fluorescence and second harmonic generationQ24680802
3-dimensional imaging of collagen using second harmonic generation.Q31130928
Two-photon excitation fluorescence pH detection using 2,3-dicyanohydroquinone: a spectral ratiometric approachQ31149106
Multi-photon excitation microscopy in intact animalsQ33245136
A computational study of the interaction between coronary blood flow and myocardial mechanicsQ33432149
Magnetic resonance imaging assessment of myocardial elastic modulus and viscosity using displacement imaging and phase-contrast velocity mappingQ33916515
Mixed echo train acquisition displacement encoding with stimulated echoes: an optimized DENSE method for in vivo functional imaging of the human heartQ33932368
Physiology of diastolic function and transmitral pressure-flow relationsQ34032401
Connective tissue and the heart. Functional significance and regulatory mechanismsQ34032407
Passive tension in cardiac muscle: contribution of collagen, titin, microtubules, and intermediate filamentsQ34128718
Interpreting second-harmonic generation images of collagen I fibrilsQ34188985
Demonstration of all connective tissue elements in a single section; pentachrome stains.Q34237133
The origin, formation and developmental significance of the epicardium: a review.Q34278378
New concepts in diastolic dysfunction and diastolic heart failure: Part I: diagnosis, prognosis, and measurements of diastolic functionQ34568727
Structure and function of connective tissue in cardiac muscle: collagen types I and III in endomysial struts and pericellular fibersQ39714134
The pericardium and cardiac functionQ39807638
The need to account for residual strains and composite nature of heart wall in mechanical analysesQ40929351
Effect of residual stress on transmural sarcomere length distributions in rat left ventricleQ42621669
Contained myocardial rupture: a variant linking complete and incomplete ruptureQ43012989
Transmural changes in stress-free myocyte morphology during pressure overload hypertrophy in the rat.Q43609804
Effect of myocyte necrosis on strength, strain, and stiffness of isolated myocardial stripsQ43640986
Correlation of structure and viscoelastic properties in the pericardia of four mammalian speciesQ44299136
The pericardium substantially affects the left ventricular diastolic pressure-volume relationship in the dogQ45239698
Residual strain in rat left ventricle.Q45958914
Mitral valve opening in the ovine heart.Q46035684
Factors influencing diastolic function. Possible role of the extracellular matrixQ46101772
Complex distributions of residual stress and strain in the mouse left ventricle: experimental and theoretical modelsQ46676053
Acute displacement of the diastolic pressure-volume curve of the left ventricle: role of the pericardium and the right ventricleQ67462902
The ultrastructure of human and rat pericardium. I. Parietal and visceral mesotheliumQ69838816
The effect of the pericardium on pressure-volume relations in the canine left ventricleQ70711294
The significance of the intact pericardium for cardiac performance in the dogQ71208985
Histologic and ultrastructural features of normal human parietal pericardiumQ71385720
P433issue6
P921main subjectmacromoleculeQ178593
macromolecular structureQ55568946
P304page(s)H3379-87
P577publication date2007-10-12
P1433published inAmerican Journal of Physiology Heart and Circulatory PhysiologyQ3193662
P1476titleThe visceral pericardium: macromolecular structure and contribution to passive mechanical properties of the left ventricle
P478volume293

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