Background Phase contrast velocimetry cardiovascular magnetic resonance (PC-CMR) is a powerful and versatile tool allowing assessment of in vivo motion of the myocardium. However, PC-CMR is sensitive to motion related artifacts causing errors that are geometrically systematic, rendering regional analysis of myocardial function challenging. The objective of this study was to establish an optimized PC-CMR method able to provide novel insight in the complex regional motion and strain of the rodent myocardium, and provide a proof-of-concept in normal and diseased rat hearts with higher temporal and spatial resolution than previously reported. Methods A PC-CMR protocol...
AIMS: Transthoracic murine echocardiography is a cornerstone of small animal research, but conventio...
Many studies have shown that strain measurements are becoming viable for diagnostic and clinical pur...
In this paper we introduce an improved harmonic phase (HARP) analysis for complementary spatial modu...
BACKGROUND: Phase contrast velocimetry cardiovascular magnetic resonance (PC-CMR) is a powerful and ...
Heart failure (HF) is one of the major causes of mortality in the Western world, recognized by a com...
The function of the right ventricle (RV) is linked to clinical outcome in many cardiovascular diseas...
The pumping performance of the heart is affected by the mechanical properties of the muscle fibre pa...
Phase-contrast magnetic resonance imaging is a technique that allows for characterization of regiona...
Phase-contrast magnetic resonance imaging is a technique that allows for characterization of regiona...
Myocardial strain is a well-validated parameter for evaluating myocardial contraction. Cardiovascula...
Dissertation (Ph.D)--University of Kansas, Physics & Astronomy, 2007.Magnetic resonance imaging (MRI...
Purpose To measure cardiac blood flow patterns and ventricular wall velocities through the cardiac ...
Mouse models have contributed significantly to understanding genetic and physiological factors invol...
This review is intended to give a comprehensive overview over new cardiovascular magnetic resonance ...
Ultrasound assessment of myocardial strain can provide valuable information on regional cardiac func...
AIMS: Transthoracic murine echocardiography is a cornerstone of small animal research, but conventio...
Many studies have shown that strain measurements are becoming viable for diagnostic and clinical pur...
In this paper we introduce an improved harmonic phase (HARP) analysis for complementary spatial modu...
BACKGROUND: Phase contrast velocimetry cardiovascular magnetic resonance (PC-CMR) is a powerful and ...
Heart failure (HF) is one of the major causes of mortality in the Western world, recognized by a com...
The function of the right ventricle (RV) is linked to clinical outcome in many cardiovascular diseas...
The pumping performance of the heart is affected by the mechanical properties of the muscle fibre pa...
Phase-contrast magnetic resonance imaging is a technique that allows for characterization of regiona...
Phase-contrast magnetic resonance imaging is a technique that allows for characterization of regiona...
Myocardial strain is a well-validated parameter for evaluating myocardial contraction. Cardiovascula...
Dissertation (Ph.D)--University of Kansas, Physics & Astronomy, 2007.Magnetic resonance imaging (MRI...
Purpose To measure cardiac blood flow patterns and ventricular wall velocities through the cardiac ...
Mouse models have contributed significantly to understanding genetic and physiological factors invol...
This review is intended to give a comprehensive overview over new cardiovascular magnetic resonance ...
Ultrasound assessment of myocardial strain can provide valuable information on regional cardiac func...
AIMS: Transthoracic murine echocardiography is a cornerstone of small animal research, but conventio...
Many studies have shown that strain measurements are becoming viable for diagnostic and clinical pur...
In this paper we introduce an improved harmonic phase (HARP) analysis for complementary spatial modu...