Advanced Respiratory Motion Compensation for Coronary MR Angiography
نویسندگان
چکیده
منابع مشابه
Advanced Respiratory Motion Compensation for Coronary MR Angiography
Despite technical advances, respiratory motion remains a major impediment in a substantial amount of patients undergoing coronary magnetic resonance angiography (CMRA). Traditionally, respiratory motion compensation has been performed with a one-dimensional respiratory navigator positioned on the right hemi-diaphragm, using a motion model to estimate and correct for the bulk respiratory motion ...
متن کاملCoronary MR Angiography in patients with coronary artery disease using image-based respiratory motion compensation
Background Respiratory motion remains a major impediment in a substantial amount of patients undergoing coronary magnetic resonance angiography (CMRA). Studies in healthy subjects have shown that image-based navigation (iNAV) improves respiratory motion compensation compared to the state-of-the art method. Here, we used iNAV for respiratory motion compensated CMRA in 22 patients with known or s...
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PURPOSE The purpose of this study was to evaluate a new inline motion compensation approach called image-based navigation with Constant Respiratory efficiency UsIng Single End-expiratory threshold (iNAV-CRUISE) for coronary MR angiography (CMRA). METHODS The CRUISE gating technique was combined with iNAV motion correction and implemented inline for motion-compensated CMRA on a 1.5 Tesla scann...
متن کاملReal-Time Adaptive Motion Correction for Coronary MR Angiography
Introduction: Artifacts due to residual coronary motion remain an impediment to diagnostic coronary MRA in a small but substantial amount of patients. Wang et al. [1] have shown that for the general population a linear relationship between the diaphragmatic and cardiac motion can be assumed. The study also shows that the principal motion of the heart can be compensated for by using the so calle...
متن کاملNovel prospective respiratory motion correction approach for free-breathing coronary MR angiography using a patient-adapted affine motion model.
A novel technique is presented which enables the calibration of a 3D affine respiratory motion model to the individual motion pattern of the patient. The concept of multiple navigators and precursory navigators is introduced to address nonlinear properties and hysteresis effects of the model parameters with respect to the conventional diaphragmatic navigator. The optimal combination and weighti...
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ژورنال
عنوان ژورنال: Sensors
سال: 2013
ISSN: 1424-8220
DOI: 10.3390/s130606882