Cardiac architecture is fundamental to cardiac function and can be assessed non-invasively with diffusion tensor imaging (DTI). Here, we aimed to overcome technical challenges in ex vivo DTI in order to extract fine anatomical details and to provide novel insights in the 3D structure of the heart. An integrated set of methods was implemented in ex vivo rat hearts, including dynamic receiver gain adjustment, gradient system scaling calibration, prospective adjustment of diffusion gradients, and interleaving of diffusion-weighted and non-diffusion-weighted scans. Together, these methods enhanced SNR and spatial resolution, minimised orientation bias in diffusion-weighting, and reduced temperature variation, enabling detection of tissue struct...
We characterized the microstructural response of the myocardium to cardiovascular disease using diff...
Imaging of cardiac structure is thus essential for understanding both electrical propagation and eff...
We characterized the microstructural response of the myocardium to cardiovascular disease using diff...
Cardiac architecture is fundamental to cardiac function and can be assessed non-invasively with diff...
Cardiac architecture is fundamental to cardiac function and can be assessed non-invasively with diff...
Cardiac architecture is fundamental to cardiac function and can be assessed non-invasively with diff...
Background: Cardiac diffusion tensor imaging (DTI) is limited by scan time and signal-to-noise (SNR)...
Abstract Background Cardiac diffusion tensor imaging (DTI) is limited by scan time and signal-to-noi...
Background: Cardiovascular magnetic resonance (CMR) can through the two methods 3D FLASH and diffusi...
Myocardial microstructure and its macroscopic materialisation are fundamental to the function of the...
Background: Cardiovascular magnetic resonance (CMR) can through the two methods 3D FLASH and diffusi...
Diffusion tensor magnetic resonance imaging (MRI) reveals valuable insights into tissue histo-anatom...
AbstractDiffusion tensor magnetic resonance imaging (MRI) reveals valuable insights into tissue hist...
Diffusion tensor magnetic resonance imaging (MRI) reveals valuable insights into tissue histo-anatom...
AbstractDiffusion tensor magnetic resonance imaging (MRI) reveals valuable insights into tissue hist...
We characterized the microstructural response of the myocardium to cardiovascular disease using diff...
Imaging of cardiac structure is thus essential for understanding both electrical propagation and eff...
We characterized the microstructural response of the myocardium to cardiovascular disease using diff...
Cardiac architecture is fundamental to cardiac function and can be assessed non-invasively with diff...
Cardiac architecture is fundamental to cardiac function and can be assessed non-invasively with diff...
Cardiac architecture is fundamental to cardiac function and can be assessed non-invasively with diff...
Background: Cardiac diffusion tensor imaging (DTI) is limited by scan time and signal-to-noise (SNR)...
Abstract Background Cardiac diffusion tensor imaging (DTI) is limited by scan time and signal-to-noi...
Background: Cardiovascular magnetic resonance (CMR) can through the two methods 3D FLASH and diffusi...
Myocardial microstructure and its macroscopic materialisation are fundamental to the function of the...
Background: Cardiovascular magnetic resonance (CMR) can through the two methods 3D FLASH and diffusi...
Diffusion tensor magnetic resonance imaging (MRI) reveals valuable insights into tissue histo-anatom...
AbstractDiffusion tensor magnetic resonance imaging (MRI) reveals valuable insights into tissue hist...
Diffusion tensor magnetic resonance imaging (MRI) reveals valuable insights into tissue histo-anatom...
AbstractDiffusion tensor magnetic resonance imaging (MRI) reveals valuable insights into tissue hist...
We characterized the microstructural response of the myocardium to cardiovascular disease using diff...
Imaging of cardiac structure is thus essential for understanding both electrical propagation and eff...
We characterized the microstructural response of the myocardium to cardiovascular disease using diff...