PURPOSE: In MR image analysis, T1 , T2 , and T2* maps are generally calculated using magnitude MR data. Without knowledge of the underlying noise variance, parameter estimates at low signal to noise ratio (SNR) are usually biased. This leads to confounds in studies that compare parameters across SNRs and or across scanners. This article compares several estimation techniques which use real or complex-valued MR data to achieve unbiased estimation of MR relaxation parameters without the need for additional preprocessing. THEORY AND METHODS: Several existing and new techniques to estimate relaxation parameters using complex-valued data were compared with widely used magnitude-based techniques. Their bias, variance and processing times were stu...
© 2013 Dr. Kelvin LaytonOver the last 30 years, magnetic resonance imaging (MRI) has revolutionised ...
International audienceIn clinical and biological applications of T2 relaxom-etry, a multi-exponentia...
Previously published T1 relaxation times for brain tissue at 7T vary greatly in results and in metho...
PURPOSE: In MR image analysis, T1 , T2 , and T2* maps are generally calculated using magnitude MR da...
Magnetic Resonance (MR) imaging techniques are used to measure biophysical properties of tissues. As...
Magnetic Resonance Imaging is a very powerful techniques for soft tissue diagnosis. At the present, ...
Recent years have witnessed a considerable interest in quantitative Magnetic Resonance Imaging (qMRI...
Magnetic Resonance Imaging (MRI) is an important diagnostic tool for imaging soft tissue without the...
Background: T1 mapping is widely used today in CMR, however, it underestimates true T1 values and it...
This work concerns practical quantitative magnetic resonance (MR) imaging techniques and their imple...
Background: Determination of the relaxation time constants T1 and T2 with quantitative magnetic reso...
In magnetic resonance imaging, the raw data, which are acquired in spatial fre-quency space, are int...
In functional magnetic resonance imaging, voxel time courses are complex valued but are traditionall...
In this work, a novel estimator of proton density and relaxation times in Magnetic Resonance Imaging...
Quantitative processing of NMR relaxation images depends on the characteristics of the used fitting ...
© 2013 Dr. Kelvin LaytonOver the last 30 years, magnetic resonance imaging (MRI) has revolutionised ...
International audienceIn clinical and biological applications of T2 relaxom-etry, a multi-exponentia...
Previously published T1 relaxation times for brain tissue at 7T vary greatly in results and in metho...
PURPOSE: In MR image analysis, T1 , T2 , and T2* maps are generally calculated using magnitude MR da...
Magnetic Resonance (MR) imaging techniques are used to measure biophysical properties of tissues. As...
Magnetic Resonance Imaging is a very powerful techniques for soft tissue diagnosis. At the present, ...
Recent years have witnessed a considerable interest in quantitative Magnetic Resonance Imaging (qMRI...
Magnetic Resonance Imaging (MRI) is an important diagnostic tool for imaging soft tissue without the...
Background: T1 mapping is widely used today in CMR, however, it underestimates true T1 values and it...
This work concerns practical quantitative magnetic resonance (MR) imaging techniques and their imple...
Background: Determination of the relaxation time constants T1 and T2 with quantitative magnetic reso...
In magnetic resonance imaging, the raw data, which are acquired in spatial fre-quency space, are int...
In functional magnetic resonance imaging, voxel time courses are complex valued but are traditionall...
In this work, a novel estimator of proton density and relaxation times in Magnetic Resonance Imaging...
Quantitative processing of NMR relaxation images depends on the characteristics of the used fitting ...
© 2013 Dr. Kelvin LaytonOver the last 30 years, magnetic resonance imaging (MRI) has revolutionised ...
International audienceIn clinical and biological applications of T2 relaxom-etry, a multi-exponentia...
Previously published T1 relaxation times for brain tissue at 7T vary greatly in results and in metho...