Articles with "fat fraction" as a keyword



Changes in inflammatory edema and fat fraction of thigh muscles following a half‐marathon in recreational marathon runners

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Published in 2024 at "European Journal of Sport Science"

DOI: 10.1002/ejsc.12189

Abstract: Abstract It is known that microtrauma exists in the thigh muscles after long‐distance running such as the half‐marathon. Moreover, training characteristics of long‐distance runners may influence the specificity of the distribution of muscle fiber types… read more here.

Keywords: half marathon; marathon runners; recreational marathon; thigh muscles ... See more keywords

Evaluation of Hepatic Steatosis and Fibrosis in Steatotic Liver Disease Ultrasound‐Derived Fat Fraction (UDFF) and Auto pSWE by Using Deep Abdominal Transducer (DAX) and Liver Biopsy Correlation

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Published in 2025 at "Journal of Ultrasound in Medicine"

DOI: 10.1002/jum.70005

Abstract: To evaluate the diagnostic performance of ultrasound‐derived fat fraction (UDFF) in detecting and grading hepatosteatosis using liver histology as the reference, and to assess the effectiveness of point shear wave elastography (pSWE), UDFF, and auto‐pSWE… read more here.

Keywords: pswe; fraction udff; fat fraction; derived fat ... See more keywords

Quantification of spinal bone marrow fat fraction using three-material decomposition technique on dual-energy CT: A phantom study.

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Published in 2023 at "Medical physics"

DOI: 10.1002/mp.16442

Abstract: BACKGROUND Two-material decomposition is insufficient to quantify the fat fraction of spinal bone marrow, which is comprised of a mixture of bone minerals, water, and yellow marrow (fat). PURPOSE To develop an accurate three-material decomposition-based… read more here.

Keywords: bone marrow; bone; marrow; material decomposition ... See more keywords

Exploiting multicompartment effects in triple‐echo steady‐state T2 mapping for fat fraction quantification

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Published in 2018 at "Magnetic Resonance in Medicine"

DOI: 10.1002/mrm.26680

Abstract: To investigate and exploit the effect of intravoxel off‐resonance compartments in the triple‐echo steady‐state (TESS) sequence without fat suppression for T2 mapping and to leverage the results for fat fraction quantification. read more here.

Keywords: fat fraction; triple echo; steady state; fraction quantification ... See more keywords

Myocardial T1, T2, T2*, and fat fraction quantification via low‐rank motion‐corrected cardiac MR fingerprinting

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Published in 2022 at "Magnetic Resonance in Medicine"

DOI: 10.1002/mrm.29171

Abstract: Develop a novel 2D cardiac MR fingerprinting (MRF) approach to enable simultaneous T1, T2, T2*, and fat fraction (FF) myocardial tissue characterization in a single breath‐hold scan. read more here.

Keywords: myocardial fat; quantification via; fraction quantification; cardiac fingerprinting ... See more keywords

Free‐breathing, non‐ECG, simultaneous myocardial T1, T2, T2*, and fat‐fraction mapping with motion‐resolved cardiovascular MR multitasking

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Published in 2022 at "Magnetic Resonance in Medicine"

DOI: 10.1002/mrm.29351

Abstract: To develop a free‐breathing, non‐electrocardiogram technique for simultaneous myocardial T1, T2, T2*, and fat‐fraction (FF) mapping in a single scan. read more here.

Keywords: free breathing; breathing non; myocardial fat; simultaneous myocardial ... See more keywords

Motion-resolved fat-fraction mapping with whole-heart free-running multiecho GRE and pilot tone.

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Published in 2022 at "Magnetic resonance in medicine"

DOI: 10.1002/mrm.29680

Abstract: PURPOSE To develop a free-running 3D radial whole-heart multiecho gradient echo (ME-GRE) framework for cardiac- and respiratory-motion-resolved fat fraction (FF) quantification. METHODS (NTE  = 8) readouts optimized for water-fat separation and quantification were integrated within a… read more here.

Keywords: motion resolved; gre; motion; free running ... See more keywords
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The effect of fat model variation on muscle fat fraction quantification in a cross‐sectional cohort

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Published in 2024 at "NMR in Biomedicine"

DOI: 10.1002/nbm.5217

Abstract: Spectroscopic imaging, rooted in Dixon's two‐echo spin sequence to distinguish water and fat, has evolved significantly in acquisition and processing. Yet precise fat quantification remains a persistent challenge in ongoing research. With adequate phase characterization… read more here.

Keywords: fat model; composition; quantification; muscle ... See more keywords

Influence of imaging method on fat fraction estimation for assessing bone marrow in metastatic prostate cancer

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Published in 2025 at "European Radiology"

DOI: 10.1007/s00330-025-11564-7

Abstract: This study aimed to assess the accuracy of fat fraction estimation with clinically available Dixon sequences in normal-appearing marrow and bone metastases in the pelvis of metastatic prostate cancer patients. A prospective single-centre study was… read more here.

Keywords: fraction; dixon sequences; fat fraction; fraction estimates ... See more keywords
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Brown adipose tissue fat-fraction is associated with skeletal muscle adiposity.

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Published in 2021 at "European journal of applied physiology"

DOI: 10.1007/s00421-021-04816-z

Abstract: PURPOSE While brown adipose tissue (BAT) activity is known to be associated with both muscle and adipose tissue volumes, the association between BAT and muscle composition remains unclear, especially in adults. Therefore, the present study… read more here.

Keywords: fat fraction; muscle; bat; tissue ... See more keywords

Proton-density fat fraction measurement: A viable quantitative biomarker for differentiating adrenal adenomas from nonadenomas.

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Published in 2017 at "European journal of radiology"

DOI: 10.1016/j.ejrad.2016.11.001

Abstract: PURPOSE This study aims to compare the accuracy of proton-density fat fraction (PDFF) measurements with chemical shift magnetic resonance imaging (CSI) for quantifying the fat content of adrenal nodules and for differentiating adenomas from nonadenomas.… read more here.

Keywords: fat fraction; density fat; proton density; adenomas nonadenomas ... See more keywords