A method for three-dimensional quantification of vascular smooth muscle orientation: application in viable murine carotid arteries
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[1] R. Cimrman,et al. Segmental differences in the orientation of smooth muscle cells in the tunica media of porcine aortae , 2014, Biomechanics and Modeling in Mechanobiology.
[2] Maarten H. G. Heusinkveld,et al. A constitutive modeling interpretation of the relationship among carotid artery stiffness, blood pressure, and age in hypertensive subjects. , 2015, American journal of physiology. Heart and circulatory physiology.
[3] R. Koenen,et al. Hyperreactivity of Junctional Adhesion Molecule A-Deficient Platelets Accelerates Atherosclerosis in Hyperlipidemic Mice , 2022 .
[4] Tammo Delhaas,et al. Three-dimensional vascular smooth muscle orientation as quantitatively assessed by multiphoton microscopy: Mouse carotid arteries do show a helix , 2014, 2014 36th Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[5] F. Kiessling,et al. MicroRNA-126-5p promotes endothelial proliferation and limits atherosclerosis by suppressing Dlk1 , 2014, Nature Medicine.
[6] T. Delhaas,et al. Ureter Smooth Muscle Cell Orientation in Rat Is Predominantly Longitudinal , 2014, PloS one.
[7] M. V. van Zandvoort,et al. Endothelial Junctional Adhesion Molecule-A Guides Monocytes Into Flow-Dependent Predilection Sites of Atherosclerosis , 2013, Circulation.
[8] John P. Snyder,et al. Map Projections: A Working Manual , 2012 .
[9] T Christian Gasser,et al. Spatial orientation of collagen fibers in the abdominal aortic aneurysm's wall and its relation to wall mechanics. , 2012, Acta biomaterialia.
[10] D. Slaaf,et al. Endothelial glycocalyx thickness and platelet-vessel wall interactions during atherogenesis , 2011, Thrombosis and Haemostasis.
[11] D. Slaaf,et al. Endothelial Glycocalyx Structure in the Intact Carotid Artery: A Two-Photon Laser Scanning Microscopy Study , 2011, Journal of Vascular Research.
[12] Jay D. Humphrey,et al. Carotid artery mechanical properties and stresses quantified using in vivo data from normotensive and hypertensive humans , 2011, Biomechanics and modeling in mechanobiology.
[13] M. Doblaré,et al. On the use of the Bingham statistical distribution in microsphere-based constitutive models for arterial tissue , 2010 .
[14] M. V. van Zandvoort,et al. Lysophosphatidic Acid Receptors LPA1 and LPA3 Promote CXCL12-Mediated Smooth Muscle Progenitor Cell Recruitment in Neointima Formation , 2010, Circulation research.
[15] Alexandre Kabla,et al. Strain-Induced Alignment in Collagen Gels , 2009, PloS one.
[16] T. Delhaas,et al. Left ventricular apical torsion and architecture are not inverted in situs inversus totalis. , 2008, Progress in biophysics and molecular biology.
[17] Charles A. Taylor,et al. The three-dimensional micro- and nanostructure of the aortic medial lamellar unit measured using 3D confocal and electron microscopy imaging. , 2008, Matrix Biology.
[18] D. Slaaf,et al. Two-Photon Microscopy of Vital Murine Elastic and Muscular Arteries , 2006, Journal of Vascular Research.
[19] R. Ogden,et al. Hyperelastic modelling of arterial layers with distributed collagen fibre orientations , 2006, Journal of The Royal Society Interface.
[20] Nikos Stergiopulos,et al. A constitutive formulation of arterial mechanics including vascular smooth muscle tone. , 2004, American journal of physiology. Heart and circulatory physiology.
[21] Graham J. Borradaile,et al. Statistics of Earth Science Data: Their Distribution in Time, Space and Orientation , 2003 .
[22] Jerome Mertz,et al. Two-photon microscopy in brain tissue: parameters influencing the imaging depth , 2001, Journal of Neuroscience Methods.
[23] Hidefumi Tanaka,et al. Circular asymmetry of the paleomagnetic directions observed at low latitude volcanic sites , 1999 .
[24] Alejandro F. Frangi,et al. Muliscale Vessel Enhancement Filtering , 1998, MICCAI.
[25] T. Ushiki,et al. Cytoarchitecture of the smooth muscles and pericytes of rat cerebral blood vessels. A scanning electron microscopic study. , 1990, Journal of neurosurgery.
[26] John P. Snyder,et al. An Album of Map Projections , 1989 .
[27] N. Fisher,et al. Statistical Analysis of Spherical Data. , 1987 .
[28] P. J. Green,et al. Density Estimation for Statistics and Data Analysis , 1987 .
[29] J. G. Walmsley,et al. Vascular smooth muscle orientation in straight portions of human cerebral arteries , 1983, Journal of microscopy.
[30] P. Canham,et al. Coalignment of the muscle cell and nucleus, cell geometry and Vv in the tunica media of monkey cerebral arteries, by electron microscopy , 1982, Journal of microscopy.
[31] Tullis C. Onstott,et al. Application of the Bingham distribution function in paleomagnetic studies , 1980 .
[32] Christopher Bingham. An Antipodally Symmetric Distribution on the Sphere , 1974 .
[33] K. Goerttler,et al. Konstruktionsprinzipien der Aortenwand im Ursprungsbereich der interkostalen, intestinalen und renalen Aortenäste , 1970, Archiv für Kreislaufforschung.
[34] W. Lazarini,et al. Über schraubenförmige Struktur von Arterien , 1953, Naunyn-Schmiedebergs Archiv für experimentelle Pathologie und Pharmakologie.
[35] Kenneth C. Strong,et al. A study of the structure of the media of the distributing arteries by the method of microdissection , 1938 .
[36] A. Benninghoff. Über die Beziehungen zwischen elastischem Gerüst und glatter Muskulatur in der Arterienwand und ihre funktionelle Bedeutung , 1927, Zeitschrift für Zellforschung und Mikroskopische Anatomie.
[37] Wilhelm Burger,et al. Digital Image Processing - An Algorithmic Introduction using Java , 2008, Texts in Computer Science.
[38] Graham J. Borradaile,et al. Statistics of Earth Science Data , 2003 .
[39] G. Holzapfel,et al. A structural model for the viscoelastic behavior of arterial walls: Continuum formulation and finite element analysis , 2002 .
[40] Bernd Jähne,et al. Spatio-Temporal Image Processing , 1993, Lecture Notes in Computer Science.
[41] B. J Hne,et al. Spatio - temporal Image Processing: Theory and Scientific Applications , 1991 .
[42] M W Peters,et al. Circumferential alignment of muscle cells in the tunica media of the human brain artery. , 1983, Blood vessels.
[43] E. Pichler,et al. ber schraubenfrmige Struktur von Arterien: IV. Mitteilung: Pharmakologische Strukturanalyse von Nabelschnurarterien , 1953 .