Novel Accelerated Contrast-Enhanced High Resolution Coronary MRI
Novel Accelerated Contrast-Enhanced High Resolution Coronary MRI
批准号:
8848174
负责人:
Mehmet Akcakaya
金额:
$24.9万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-06-01 至 2018-08-31
关键词:
AccelerationAcuteAlgorithmsAngiographyCalciumCardiacCathetersCause of DeathChronicClinicalContrast MediaCoronaryCoronary ArteriosclerosisDefectDetectionDiagnosisDiagnosticEnsureEvaluationGadoliniumGoldHeartImageImaging TechniquesInferiorIonizing radiationLearningMagnetic Resonance ImagingMethodologyMethodsMorphologic artifactsMotionMyocardialMyocardial InfarctionMyocardial perfusionPatientsPerfusionPhasePreventionProtocols documentationRecoveryResolutionRiskSamplingScanningSensitivity and SpecificityStenosisStructureTechniquesTestingTimeUnited StatesVariantWorkbasecontrast enhanceddata acquisitiondata spacediagnosis standardfollow-upgadolinium oxideimage reconstructionimprovedmethod developmentnovelreconstructionspatiotemporaltemporal measurementtwo-dimensional
中文摘要
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英文摘要
Project Summary
Coronary artery disease (CAD) is the leading cause of death in the United States, even though significant
efforts have been made in prevention and diagnosis. The clinical gold standard for diagnosis of CAD is
catheter-based invasive x-ray angiography, performed more than a million times per year. Of these
examinations, up to 35% have been found to have no significant stenosis, yet these patients had to go through
the potential risks and complications of an invasive test that further exposes the patient to ionizing radiation
and iodinated contrast. Thus, non-invasive diagnostic alternatives are highly desirable.
Cardiac MRI (CMR) provides a method for comprehensive non-invasive cardiac exam, including contractile
functional assessment (cine CMR) to detect wall-motion abnormality, myocardial CMR perfusion for
diagnosing perfusion defects, viability assessment using late gadolinium enhancement (LGE) for evaluation of
acute and chronic myocardial infarction, and coronary MRI for the identification of stenosis. CMR is
advantageous in several respects, since it does not require ionizing radiation or iodinated contrast, thereby
facilitating repeated or follow-up scanning. However, long data acquisition time remains as one of its main
limitations. Several approaches have been studied to facilitate rapid CMR acquisition. Nonetheless, the
acquisition time for high-resolution CMR remains long, and spatial and temporal resolution is traded off for
acquisition time in cine and perfusion imaging. Therefore, developments of methods to reduce data acquisition
time beyond what is available now are appealing. We will develop novel reconstruction methodologies for
high-resolution CMR that learn the anatomical structures in the images being reconstructed. We will
validate these techniques in a range of contrast-enhanced CMR imaging protocols, providing better
volumetric coverage of the heart, efficient use of the contrast agents, and higher spatial and temporal
resolution.
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依托单位:
海外基金