RATIONALE AND OBJECTIVES
The left ventricle (LV) myocardial wall contractibility can be evaluated using cine magnetic resonance imaging (MRI) in a qualitative or quantitative manner. Meanwhile, myocardial perfusion can be assessed using contrast-enhanced first-pass MRI. The authors propose a method of automatically fusing the complementary information from these two cardiac MRI modalities into one single image, from which a match or mismatch between contraction and perfusion could be extracted.
METHODS
The authors developed a registration algorithm based on the combined use of the global affine transformation and intrinsic landmarks to match images from the same sequence or from two imaging sequences. Contraction and perfusion information was fused by combining a myocardial contour image and a parametric image of the slope of the intensity-time curve, respectively. The fusion paradigm was applied to four patients' data as a demonstration of feasibility of the proposed approach and as a preliminary evaluation.
RESULTS
Cine MR and contrast-enhanced MR images were well aligned. The contractibility of the LV was displayed by the myocardial contour image. The parametric slope image was consistent with the known coronary artery status of each patient. The combined contraction-perfusion representation of the LV showed the correspondence between regional LV contraction and myocardial perfusion at a one slice level.
CONCLUSIONS
Left ventricle contraction and myocardial perfusion can be represented conjointly in one single fused image. The fusion paradigm should be evaluated for a larger number of patients to evaluate the clinical relevance of this approach in assessing coronary artery disease.
[1]
C Baldy,et al.
Automated myocardial edge detection from breath-hold cine-MR images: evaluation of left ventricular volumes and mass.
,
1994,
Magnetic resonance imaging.
[2]
C Baldy,et al.
Noninvasive assessment of no-reflow phenomenon in a canine model of reperfused infarction by contrast-enhanced magnetic resonance imaging.
,
1995,
American Heart Journal.
[3]
K. Uğurbil,et al.
Contrast‐enhanced first pass myocardial perfusion imaging: Correlation between myocardial blood flow in dogs at rest and during hyperemia
,
1993,
Magnetic resonance in medicine.
[4]
E. Braunwald,et al.
The Stunned Myocardium: Prolonged, Postischemic Ventricular Dysfunction
,
1982,
Circulation.
[5]
R. Mccoll,et al.
Spatial and temporal registration of cardiac SPECT and MR images: methods and evaluation.
,
1991,
Radiology.
[6]
H. Schelbert,et al.
Noninvasive assessment of myocardial perfusion and metabolism: feasibility of registering gated MR and PET images.
,
1995,
AJR. American journal of roentgenology.