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Myocardial T1 Mapping Techniques for Quantification of Myocardial Fibrosis

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Release : 2012
Genre : Heart
Kind : eBook
Book Rating : /5 ( reviews)

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Book Synopsis Myocardial T1 Mapping Techniques for Quantification of Myocardial Fibrosis by : Xiaopeng Zhou

Download or read book Myocardial T1 Mapping Techniques for Quantification of Myocardial Fibrosis written by Xiaopeng Zhou. This book was released on 2012. Available in PDF, EPUB and Kindle. Book excerpt: Identifying and quantifying diffuse myocardial fibrosis is important to provide insights into the relationship between myocardial fibrosis, diastolic and systolic dysfunction, as well as clinical outcomes. T1 mapping is a promising technique for noninvasively identifying diffuse myocardial fibrosis in heart failure. A quantitative T1 map provides sensitivity to the full range of T1 values and is advantageous over the traditional T1-weighted imaging by reducing the reliance on visual interpretation of the signal intensity in the myocardium. However, in-vivo myocardial T1 quantification is challenging because of cardiac and respiratory motion. During the past few years, a variety of T1 mapping techniques, including the modified Look Locker inversion recovery (MOLLI) sequence, have been developed and optimized to measure the myocardial T1 value. Importantly, there have been significant differences between the T1 values determined by various methods, and several aspects of T1 mapping are incompletely understood. The accuracy of T1 mapping is sensitive to several confounding factors, such as the types of T1 mapping acquisition sequence and individual physiologic parameters. It also remains unclear if myocardial T1 values are constant throughout the cardiac cycle or the cyclic variation from the error of the variable flip angle (VFA) technique. Lastly, it is necessary to validate these techniques against the endomyocardial biopsy. The work intends to validate several aspects of T1 mapping. Firstly, whether there is significant cyclic variation of myocardial T1 at 1.5T was assessed in healthy volunteers and patients without myocardial disease. Secondly, a fast 3D DFA technique with B1 correction was developed to measure T1 comparably with gold standard in a wide range of T1 values, which showed it is necessary to incorporate B1 correction at 3T. Thirdly, Look Locker and MOLLI were compared to evaluate their agreement and difference in 3 patient groups precontrast and postcontrast situations. Finally, the T1 mapping technique was applied in a group of patients with diffuse myocardial fibrosis eligible for myectomy surgery. Precontrast and postcontrast myocardial T1 values were assessed to identify and quantify myocardial fibrosis, with subsequent histological validation based on intraoperative biopsies. The extracelluar volume calculated from T1 values positively correlated with histological analysis, which can help to guide the decision-making regarding when to send patients for invasive surgery and follow changes of fibrosis in the myocardium over time with noninvasive assessment.

Myocardial Tissue Characterization Using Magnetic Resonance Imaging

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Release : 2019-02-18
Genre :
Kind : eBook
Book Rating : 834/5 ( reviews)

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Book Synopsis Myocardial Tissue Characterization Using Magnetic Resonance Imaging by : Sofia Kvernby

Download or read book Myocardial Tissue Characterization Using Magnetic Resonance Imaging written by Sofia Kvernby. This book was released on 2019-02-18. Available in PDF, EPUB and Kindle. Book excerpt: In cardiovascular disease, which is the most common cause of death in the world, early diagnosis is crucial for disease outcome. Diagnosis of cardiovascular disease can be challenging, though. Quantification of myocardial T1 and T2 relaxation times with MRI has demonstrated to be a promising method for characterizing myocardial tissue, but long measurement times have hampered clinical use. The overall aim of this doctoral thesis was to develop, validate and, in patient studies, evaluate a very fast three-dimensional method for simultaneous quantification of myocardial T1 and T2 relaxation times with whole coverage of the left ventricle. The 3D-QALAS method is presented in Paper I of this thesis. It is a method that simultaneous measures both T1 and T2 relaxation times in a three-dimensional volume of the heart. The method requires 15 heartbeats, to produce 13 short-axis slices of the left ventricle with voxelwise information of both T1 and T2 relaxation times. The 3D-QALAS method was validated in phantoms and in 10 healthy volunteers by comparing the method with reference methods and demonstrated good accuracy and robustness both in-vitro and in-vivo. In Paper II, the 3D-QALAS method was carefully validated in-vivo by investigating accuracy and precision in 10 healthy volunteers, while the clinical feasibility of the method was investigated in 23 patients with various cardiac pathologies. Repeated independent and dependent scans together with the intra-scan repeatability, demonstrated all a very good precision for the 3D-QALAS method in healthy volunteers. In Paper III and IV, the 3D-QALAS method was applied and evaluated in patient cohorts where the heart muscle alters over time. In Paper III, patients with severe aortic stenosis underwent MRI examinations with 3D-QALAS before, 3 months after and 12 months after aortic valve surgery. Changes in T1 and T2 were observed, which might be used as markers of myocardial changes with respect to edema and fibrosis, which may develop due to increased workload over a long period of time. In study IV, 3D-QALAS was used to investigate 10 breast cancer patients treated with radiation therapy prior to treatment, 2-3 weeks into treatment, and one and 6 months after completion of treatment, to investigate any changes in T1 and T2 and further if they can be correlated to unwanted irradiation of the heart during radiation therapy.

T1-Mapping in Myocardial Disease

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Release : 2018-08-28
Genre : Medical
Kind : eBook
Book Rating : 104/5 ( reviews)

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Book Synopsis T1-Mapping in Myocardial Disease by : Phillip C. Yang

Download or read book T1-Mapping in Myocardial Disease written by Phillip C. Yang. This book was released on 2018-08-28. Available in PDF, EPUB and Kindle. Book excerpt: This book details the advances in cardiac MRI that have enabled quantitative tissue characterization of the myocardium using myocardial and blood T1 measurements, which have enabled reliable detection of diffuse pathological processes in both the cardiomyocytes and the interstitial cells of the myocardium. Evaluation of the native myocardial and interstitial fibrosis, and measurement of the extracellular volume fraction has allowed an unprecedented opportunity to elucidate the pathology, diagnosis and prognosis of cardiovascular disease. T1-Mapping in Myocardial Disease: Principles and Applications reviews a wide spectrum of significant cardiovascular disease and provides relevant guidance for the clinical implementation of this innovative technique. The specific topics covered include principles of T1-mapping in cardiovascular disease and the role of T1-mapping in hypertensive heart disease and hypertrophic cardiomyopathy, cardiotoxicity from cancer treatment, cardiacfibrosis, left ventricular hypertrophy in aortic stenosis, peri-infarct injury in ischemic cardiomyopathy, and stem cell therapy. This comprehensive coverage of the utility of T1-mapping in cardiovascular diseases will greatly appeal to the entire cardiovascular medicine and imaging communities.

Cardiac Magnetic Resonance T1 Mapping in Cardiomyopathies

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Release : 2017
Genre : Medicine
Kind : eBook
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Book Synopsis Cardiac Magnetic Resonance T1 Mapping in Cardiomyopathies by : Christian R. Hamilton-Craig

Download or read book Cardiac Magnetic Resonance T1 Mapping in Cardiomyopathies written by Christian R. Hamilton-Craig. This book was released on 2017. Available in PDF, EPUB and Kindle. Book excerpt: Cardiac magnetic resonance (CMR) imaging has been widely used to assess myocardial perfusion and scar and is the noninvasive reference standard for identification of focal myocardial fibrosis. However, the late gadolinium enhancement (LGE) technique is limited in its accuracy for absolute quantification and assessment of diffuse myocardial fibrosis by technical and pathophysiological features. CMR relaxometry, incorporating T1 mapping, has emerged as an accurate, reproducible, highly sensitive, and quantitative technique for the assessment of diffuse myocardial fibrosis in a number of disease states. We comprehensively review the physics behind CMR relaxometry, the evidence base, and the clinical applications of this emerging technique.

Advanced Quantitative Indexes in Cardiovascular Magnetic Resonance Imaging

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Release : 2024-08-28
Genre : Medical
Kind : eBook
Book Rating : 680/5 ( reviews)

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Book Synopsis Advanced Quantitative Indexes in Cardiovascular Magnetic Resonance Imaging by : Xiaoyue Zhou

Download or read book Advanced Quantitative Indexes in Cardiovascular Magnetic Resonance Imaging written by Xiaoyue Zhou. This book was released on 2024-08-28. Available in PDF, EPUB and Kindle. Book excerpt: In the past decades, advanced quantitative indexes obtained by cardiovascular magnetic resonance imaging (CMRI), such as myocardial strain, myocardial T1/ECV/T2/T2* relaxation value, myocardial blood flow quantification index and hemodynamics indexes, have been proposed as an alternative for non-invasive quantitative evaluation in various cardiovascular diseases. Those quantitative indexes have been proven to be more sensitive in assessing the early change of myocardial tissue, ventricular function, or hemodynamics, compared to the conventional qualitative methods. However, there are many challenges in the accurate measurement of those indexes as well as the evaluation of their clinical significance in the diagnosis and prognosis of a certain disease. Besides, quality control and standardization of those indexes become crucial when promoting them into clinical practice. This Research Topic will offer comprehensive reviews and original research articles of the newly emerged quantitative CMRI methods and the clinical insights of the diagnostic and prognostic value of those advanced CMRI indexes. CMRI techniques such as myocardial strain analysis, quantitative myocardial tissue mapping, 2-dimensional / 4-dimensional flow quantification and quantitative perfusion will be of our interest. The aim of this Research Topic will be to highlight the promising technical improvements in the accurate measurement of the CMRI indexes, and/or the added value of those indexes in disease diagnosis and prognosis. Meanwhile, quality control and standardization of the advanced CMRI indexes in multi-centre / multi-vendor research projects will be discussed.

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