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Please use this identifier to cite or link to this item: http://tdudspace.texicon.in:8080/jspui/handle/123456789/652
Title: Cardiomyocyte orientation recovery at micrometer scale reveals long-axis fiber continuum in heart walls
Authors: Dileep, Drisya
Syed, Tabish A
Sloan, Tyler FW
Dhandapany, Perundurai S
Siddiqi, Kaleem
Sirajuddin, Minhajuddin
Keywords: Cardiovascular System
Computational Biology
Methods & Resources
3D reconstruction
cardiomyocyte geometry
computer vision
fluorescent microscopy
heart wall structure
Issue Date: Sep-2023
Publisher: The EMBO Journal
Abstract: Coordinated cardiomyocyte contraction drives the mammalian heart to beat and circulate blood. No consensus model of cardiomyocyte geometrical arrangement exists, due to the limited spatial resolution of whole heart imaging methods and the piecemeal nature of studies based on histological sections. By combining microscopy and computer vision, we produced the first-ever threedimensional cardiomyocyte orientation reconstruction across mouse ventricular walls at the micrometer scale, representing a gain of three orders of magnitude in spatial resolution. We recovered a cardiomyocyte arrangement aligned to the long-axis direction of the outer ventricular walls. This cellular network lies in a thin shell and forms a continuum with longitudinally arranged cardiomyocytes in the inner walls, with a complex geometry at the apex. Our reconstruction methods can be applied at fine spatial scales to further understanding of heart wall electrical function and mechanics, and set the stage for the study of micron-scale fiber remodeling in heart disease.
URI: http://tdudspace.texicon.in:8080/jspui/handle/123456789/652
Appears in Collections:Researcher/Student Publications

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