A large infero-lateral perfusion defect and anteroseptal ischemia in the apex is seen. Due to the very high spatial resolution, endocardial dark rim artifacts are minimal and the spatial extent of the perfusion defects is clearly delineated.<p><b>Copyright information:</b></p><p>Taken from "Accelerated CMR using zonal, parallel and prior knowledge driven imaging methods"</p><p>http://www.jcmr-online.com/content/10/1/29</p><p>Journal of Cardiovascular Magnetic Resonance 2008;10(1):29-29.</p><p>Published online 5 Jun 2008</p><p>PMCID:PMC2426690.</p><p></p
<p>(A) Volumetric renderings of μCT, PET, and the merged acquisitions are shown (left to right). The...
Background: Myocardial perfusion imaging with cardiovascular magnetic resonance (CMR) is bound by sp...
Aim: To assess the ability of 3D speckle tracking echo to differentiate transmural extent of myocard...
<p>As a reference, short axis view late enhancement MR images are shown (d) presenting partly transm...
Magnetic resonance imaging of myocardial perfusion during the first-pass of a contrast agent has bee...
Abstract Background Dark rim artifacts in first-pass cardiovascular magnetic resonance (CMR) perfusi...
Three-dimensional (3-D) myocardial contrast echocardiography (MCE) is able to derive parallel cuttin...
The top row illustrates the region of infarction from MRI. White lines denote the slice position of ...
A: Short axis stress-perfusion image showing anteroseptal perfusion deficit (arrow). B: Correspondin...
Magnetic resonance imaging of myocardial perfusion during the first-pass of a contrast agent has be...
<p>A, CMR late gadolinium hyperenhancement slices of left ventricular short axis showing non transmu...
van den Wijngaard JP, van Horssen P, ter Wee R, Coronel R, de Bakker JM, de Jonge N, Siebes M, Spaan...
Aims To evaluate the feasibility and diagnostic performance of high spatial resolution myocardial pe...
It has been shown by histology that cardiac myocytes are organized into laminae and this structure i...
The dark-rim artefact (DRA) is well known in 2D first-pass perfusion (FPP). The in-plane features of...
<p>(A) Volumetric renderings of μCT, PET, and the merged acquisitions are shown (left to right). The...
Background: Myocardial perfusion imaging with cardiovascular magnetic resonance (CMR) is bound by sp...
Aim: To assess the ability of 3D speckle tracking echo to differentiate transmural extent of myocard...
<p>As a reference, short axis view late enhancement MR images are shown (d) presenting partly transm...
Magnetic resonance imaging of myocardial perfusion during the first-pass of a contrast agent has bee...
Abstract Background Dark rim artifacts in first-pass cardiovascular magnetic resonance (CMR) perfusi...
Three-dimensional (3-D) myocardial contrast echocardiography (MCE) is able to derive parallel cuttin...
The top row illustrates the region of infarction from MRI. White lines denote the slice position of ...
A: Short axis stress-perfusion image showing anteroseptal perfusion deficit (arrow). B: Correspondin...
Magnetic resonance imaging of myocardial perfusion during the first-pass of a contrast agent has be...
<p>A, CMR late gadolinium hyperenhancement slices of left ventricular short axis showing non transmu...
van den Wijngaard JP, van Horssen P, ter Wee R, Coronel R, de Bakker JM, de Jonge N, Siebes M, Spaan...
Aims To evaluate the feasibility and diagnostic performance of high spatial resolution myocardial pe...
It has been shown by histology that cardiac myocytes are organized into laminae and this structure i...
The dark-rim artefact (DRA) is well known in 2D first-pass perfusion (FPP). The in-plane features of...
<p>(A) Volumetric renderings of μCT, PET, and the merged acquisitions are shown (left to right). The...
Background: Myocardial perfusion imaging with cardiovascular magnetic resonance (CMR) is bound by sp...
Aim: To assess the ability of 3D speckle tracking echo to differentiate transmural extent of myocard...