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Myocardial T2* Mapping with Ultrahigh Field Magnetic Resonance: Physics and Frontier Applications

机译:具有超高场磁共振的心肌T2 *映射:物理和前沿应用

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Cardiovascular magnetic resonance imaging (CMR) has become an indispensable clinical tool for the assessment of morphology, function and structure of the heart muscle. By exploiting quantification of the effective transverse relaxation time (T2*) CMR also affords myocardial tissue characterization and probing of cardiac physiology, both being in the focus of ongoing research. These developments are fueled by the move to ultrahigh magnetic field strengths, which permits enhanced sensitivity and spatial resolution that help to overcome limitations of current clinical MR systems with the goal to contribute to a better understanding of myocardial (patho)physiology in vivo. In this context, the aim of this report is to introduce myocardial T2* mapping at ultrahigh magnetic fields as a promising technique to non-invasively assess myocardial (patho)physiology. For this purpose the basic principles of T2* assessment, the biophysical mechanisms determining T2* and (pre)clinical applications of myocardial T2* mapping are presented. Technological challenges and solutions for T2* sensitized CMR at ultrahigh magnetic field strengths are discussed followed by a review of acquisition techniques and post processing approaches. Preliminary results derived from myocardial T2* mapping in healthy subjects and cardiac patients at 7.0 Tesla are presented. A concluding section discusses remaining questions and challenges and provides an outlook on future developments and potential clinical applications.
机译:心血管磁共振成像(CMR)已成为评估心肌的形态,功能和结构必不可少的临床工具。通过利用有效横向弛豫时间(T2 *)的量化,CMR还提供了心肌组织的表征和心脏生理学的探究,这两项都是当前研究的重点。向超高磁场强度的转移推动了这些发展,超强磁场强度使灵敏度和空间分辨率得以提高,从而有助于克服当前临床MR系统的局限性,从而有助于更好地了解体内心肌(病理)生理学。在这种情况下,本报告的目的是介绍超高磁场下的心肌T2 *定位技术,作为无创评估心肌(病理)生理学的一种有前途的技术。为此,介绍了T2 *评估的基本原理,确定T2 *的生物物理机制以及心肌T2 *定位的(临床前)应用。讨论了在超高磁场强度下T2 *敏化CMR的技术挑战和解决方案,然后回顾了采集技术和后处理方法。介绍了健康受试者和心脏病患者在7.0 Tesla时的心肌T2 *定位得出的初步结果。结论部分讨论了尚存的问题和挑战,并对未来的发展和潜在的临床应用提供了展望。

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