Literature DB >> 18463875

Assessment of calf muscle contraction by diffusion tensor imaging.

J F Deux1, P Malzy, N Paragios, G Bassez, A Luciani, P Zerbib, F Roudot-Thoraval, A Vignaud, H Kobeiter, A Rahmouni.   

Abstract

The goal of this study was to assess the changes of water diffusion during contraction and elongation of calf muscles using diffusion tensor (DT) MRI in normal volunteers. Twenty volunteers (mean age, 29+/-4 years) underwent DT MRI examination of the right calf. Echo planar imaging sequence was performed at rest, during dorsal flexion and during plantar flexion. The three eigenvalues (lambda1, lambda2, and lambda3), apparent diffusion coefficient (ADC) and fractional anisotropy (FA) of the diffusion tensor were calculated for medial gastrocnemius (mGM) and tibialis anterior (TA). A fiber tractography was performed on both muscles. Non-parametric Wilcoxon and Mann Whitney tests were used for statistical evaluation. At rest, lambda1, lambda2 and ADC of mGM were higher than their counterparts of TA (P<0.01). During dorsal flexion, the three eigenvalues and ADC of TA significantly increased (P<0.05) as their counterparts of mGM slightly decreased (P=NS). Opposite variations were detected during plantar flexion of the foot. Visual analysis evidenced a relationship between 3D representations of MRI fibers and physiological state of muscles. Contraction of calf muscles produces changes in DT parameters, which are related to the physiological state of the muscle.

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Year:  2008        PMID: 18463875     DOI: 10.1007/s00330-008-1012-z

Source DB:  PubMed          Journal:  Eur Radiol        ISSN: 0938-7994            Impact factor:   5.315


  22 in total

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6.  Diffusive sensitivity to muscle architecture: a magnetic resonance diffusion tensor imaging study of the human calf.

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Authors:  R H Fitts; K S McDonald; J M Schluter
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Authors:  Bruce M Damon; Zhaohua Ding; Adam W Anderson; Andrea S Freyer; John C Gore
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  24 in total

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4.  Clinical application of diffusion tensor magnetic resonance imaging in skeletal muscle.

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5.  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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6.  In vivo morphological and functional evaluation of the lateral pterygoid muscle: a diffusion tensor imaging study.

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7.  Time-dependent diffusion in skeletal muscle with the random permeable barrier model (RPBM): application to normal controls and chronic exertional compartment syndrome patients.

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8.  Dynamic DTI (dDTI) shows differing temporal activation patterns in post-exercise skeletal muscles.

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9.  Stimulated echo diffusion tensor imaging and SPAIR T2 -weighted imaging in chronic exertional compartment syndrome of the lower leg muscles.

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