Myocardial T1 mapping at 3.0T using inversion recovery FLASH readout

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Myocardial T1 mapping at 3.0T using inversion recovery FLASH readout

Background Myocardial T1 mapping methods such as modified Look-Locker inversion-recovery (MOLLI) typically use balanced steady state free precession (bSSFP) readout, which is known to be particularly sensitive to off resonance and thus limits its utility at higher field strengths. Fast low angle shot (FLASH) imaging is known to be more robust against susceptibility artifacts than bSSFP. However...

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T1 mapping of myocardium using inversion recovery cine at 3.0T

Methods The sequence, IR-rttfl, performs realtime turboflash acquisition after an inversion pulse to capture the recovery of inverted magnetization. It is immune to T1 unrelated issues (e.g., field inhomogeneity). Diastolic images (about 12) are selected for T1 calculation using [4]. A trigger delay (about 300-400 ms) is applied before the inversion pulse so that initial magnetization recovery ...

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Myocardial iron quantification using modified Look-Locker inversion recovery (MOLLI) T1 mapping at 3 Tesla

Background Quantification of myocardial iron overload is critical for the management of patients with hemochromatosis. The effects of excess iron on T1 and T2* relaxation times correlate directly with tissue iron concentration. T2* became the clinical standard at 1.5T as it can be easily obtained in a fast one breath-hold ECG gated multi-echo GRE sequence. At 3T, however, T2* quantification can...

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Fast T1 Mapping using modified Double-Inversion Recovery pre-pulse

INTRODUCTION The rapid measurement of the longitudinal relaxation time (T1) would allow for dynamic quantification of tissue perfusion or therapy response after administration of an extracellular or target specific T1 lowering contrast agent. Currently used T1 mapping methods are based on Inversion Recovery (IR) approaches and the subsequent sampling of the recovery of the Mz magnetization [1]....

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Adiabatic inversion pulses for myocardial T1 mapping.

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ژورنال

عنوان ژورنال: Journal of Cardiovascular Magnetic Resonance

سال: 2015

ISSN: 1532-429X

DOI: 10.1186/1532-429x-17-s1-w2