Heterogeneity in cardiac tissue microstructure is a potential mechanism for the generation and maintenance of arrhythmias. Abnormal changes in fiber orientation increase the likelihood of arrhythmia. We present optical coherence tomography (OCT) as a method to image myofibers in excised intact heart preparations. Three-dimensional (3-D) image sets were gathered from the rabbit right ventricular free wall (RVFW) using a microscope-integrated OCT system. An automated algorithm for fiber orientation quantification in the plane parallel to the wall surface was developed. The algorithm was validated by comparison with manual measurements. Quantifying fiber orientation in the plane parallel to the wall surface from OCT images can be used to help ...
The ventricular myocardium is known to exhibit a complex spatial organization, with fiber orientatio...
The human heart is composed of a helical network of musclefibers. Anisotropic least squares filterin...
It is challenging to recover local optic axis orientation from samples probed with fiber-based polar...
Heterogeneity in cardiac tissue microstructure is a potential mechanism for the generation and maint...
Abnormal changes in orientation of myofibers are associated with various cardiac diseases such as ar...
Myocardial infarction leads to complex changes in the fiber architecture of the heart. Here, we pres...
The human heart has a heterogeneous structure, which is characterized by different cell types and th...
Transgenic mouse models have been instrumental in the elucidation of the molecular mechanism behind ...
The assessment of disrupted myocardial fiber arrangement may help to understand and diagnose hypertr...
The development of systems physiology is hampered by the limited ability to relate tissue structure ...
International audienceMyocardial fiber orientation determines the propagation of electrical waves in...
Development and progression of coronary atherosclerotic lesions is mediated by a number of cellular ...
We therefore hypothesize that fiber reorientation could be a local adaptive mechanism by which the s...
ABSTRACT Information about intramural propagation of electrical excitation is crucial to understandi...
AbstractInformation about intramural propagation of electrical excitation is crucial to understandin...
The ventricular myocardium is known to exhibit a complex spatial organization, with fiber orientatio...
The human heart is composed of a helical network of musclefibers. Anisotropic least squares filterin...
It is challenging to recover local optic axis orientation from samples probed with fiber-based polar...
Heterogeneity in cardiac tissue microstructure is a potential mechanism for the generation and maint...
Abnormal changes in orientation of myofibers are associated with various cardiac diseases such as ar...
Myocardial infarction leads to complex changes in the fiber architecture of the heart. Here, we pres...
The human heart has a heterogeneous structure, which is characterized by different cell types and th...
Transgenic mouse models have been instrumental in the elucidation of the molecular mechanism behind ...
The assessment of disrupted myocardial fiber arrangement may help to understand and diagnose hypertr...
The development of systems physiology is hampered by the limited ability to relate tissue structure ...
International audienceMyocardial fiber orientation determines the propagation of electrical waves in...
Development and progression of coronary atherosclerotic lesions is mediated by a number of cellular ...
We therefore hypothesize that fiber reorientation could be a local adaptive mechanism by which the s...
ABSTRACT Information about intramural propagation of electrical excitation is crucial to understandi...
AbstractInformation about intramural propagation of electrical excitation is crucial to understandin...
The ventricular myocardium is known to exhibit a complex spatial organization, with fiber orientatio...
The human heart is composed of a helical network of musclefibers. Anisotropic least squares filterin...
It is challenging to recover local optic axis orientation from samples probed with fiber-based polar...