Literature DB >> 25521711

Dynamic intravoxel incoherent motion imaging of skeletal muscle at rest and after exercise.

Lukas Filli1, Andreas Boss, Moritz C Wurnig, David Kenkel, Gustav Andreisek, Roman Guggenberger.   

Abstract

The purpose of this work was to demonstrate the feasibility of intravoxel incoherent motion imaging (IVIM) for non-invasive quantification of perfusion and diffusion effects in skeletal muscle at rest and following exercise. After IRB approval, eight healthy volunteers underwent diffusion-weighted MRI of the forearm at 3 T and eight different b values between 0 and 500 s/mm(2) with a temporal resolution of 57 s per dataset. Dynamic images were acquired before and after a standardized handgrip exercise. Diffusion (D) and pseudodiffusion (D*) coefficients as well as the perfusion fraction (FP ) were measured in regions of interest in the flexor digitorum superficialis and profundus (FDS/FDP), brachioradialis, and extensor carpi radialis longus and brevis muscles by using a multi-step bi-exponential analysis in MATLAB. Parametrical maps were calculated voxel-wise. Differences in D, D*, and FP between muscle groups and between time points were calculated using a repeated measures analysis of variance with post hoc Bonferroni tests. Mean values and standard deviations at rest were the following: D*, 28.5 ± 11.4 × 10(-3) mm(2) /s; FP , 0.03 ± 0.01; D, 1.45 ± 0.09 × 10(-3) mm(2) /s. Changes of IVIM parameters were clearly visible on the parametrical maps. In the FDS/FDP, D* increased by 289 ± 236% (p < 0.029), FP by 138 ± 58% (p < 0.01), and D by 17 ± 9% (p < 0.01). A significant increase of IVIM parameters could also be detected in the brachioradialis muscle, which however was significantly lower than in the FDS/FDP. After 20 min, all parameters were still significantly elevated in the FDS/FDP but not in the brachioradialis muscle compared with the resting state. The IVIM approach allows simultaneous quantification of muscle perfusion and diffusion effects at rest and following exercise. It may thus provide a useful alternative to other non-invasive methods such as arterial spin labeling. Possible fields of interest for this technique include perfusion-related muscle diseases, such as peripheral arterial occlusive disease.
Copyright © 2014 John Wiley & Sons, Ltd.

Entities:  

Keywords:  MRI; diffusion-weighted imaging; exercise; intravoxel incoherent motion; skeletal muscle

Mesh:

Year:  2014        PMID: 25521711     DOI: 10.1002/nbm.3245

Source DB:  PubMed          Journal:  NMR Biomed        ISSN: 0952-3480            Impact factor:   4.044


  14 in total

1.  Dynamic diffusion-tensor measurements in muscle tissue using the single-line multiple-echo diffusion-tensor acquisition technique at 3T.

Authors:  Steven H Baete; Gene Y Cho; Eric E Sigmund
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Review 2.  Skeletal Muscle Quantitative Nuclear Magnetic Resonance Imaging and Spectroscopy as an Outcome Measure for Clinical Trials.

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4.  Diffusion-weighted MRI with intravoxel incoherent motion modeling for assessment of muscle perfusion in the thigh during post-exercise hyperemia in younger and older adults.

Authors:  Fatemeh Adelnia; Michelle Shardell; Christopher M Bergeron; Kenneth W Fishbein; Richard G Spencer; Luigi Ferrucci; David A Reiter
Journal:  NMR Biomed       Date:  2019-03-12       Impact factor: 4.044

Review 5.  Intravoxel Incoherent Motion Magnetic Resonance Imaging in Skeletal Muscle: Review and Future Directions.

Authors:  Erin K Englund; David A Reiter; Bahar Shahidi; Eric E Sigmund
Journal:  J Magn Reson Imaging       Date:  2021-08-14       Impact factor: 5.119

6.  Intravoxel incoherent motion analysis of abdominal organs: computation of reference parameters in a large cohort of C57Bl/6 mice and correlation to microvessel density.

Authors:  Christian Eberhardt; Moritz C Wurnig; Andrea Wirsching; Cristina Rossi; Markus Rottmar; Pinar S Özbay; Lukas Filli; Mickael Lesurtel; Andreas Boss
Journal:  MAGMA       Date:  2016-04-19       Impact factor: 2.310

7.  Spatially resolved kinetics of skeletal muscle exercise response and recovery with multiple echo diffusion tensor imaging (MEDITI): a feasibility study.

Authors:  E E Sigmund; S H Baete; K Patel; D Wang; D Stoffel; R Otazo; P Parasoglou; J Bencardino
Journal:  MAGMA       Date:  2018-05-14       Impact factor: 2.310

8.  Physiological responses of human skeletal muscle to acute blood flow restricted exercise assessed by multimodal MRI.

Authors:  Bryan Haddock; Sofie K Hansen; Ulrich Lindberg; Jakob Lindberg Nielsen; Ulrik Frandsen; Per Aagaard; Henrik B W Larsson; Charlotte Suetta
Journal:  J Appl Physiol (1985)       Date:  2020-08-27

9.  MRI assessment of the thigh musculature in dermatomyositis and healthy subjects using diffusion tensor imaging, intravoxel incoherent motion and dynamic DTI.

Authors:  E E Sigmund; S H Baete; T Luo; K Patel; D Wang; I Rossi; A Duarte; M Bruno; D Mossa; A Femia; S Ramachandran; D Stoffel; J S Babb; A G Franks; J Bencardino
Journal:  Eur Radiol       Date:  2018-06-04       Impact factor: 5.315

10.  Parsimonious modeling of skeletal muscle perfusion: Connecting the stretched exponential and fractional Fickian diffusion.

Authors:  David A Reiter; Fatemeh Adelnia; Donnie Cameron; Richard G Spencer; Luigi Ferrucci
Journal:  Magn Reson Med       Date:  2021-03-16       Impact factor: 3.737

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