## Abstract The ability to measure skeletal muscle motion with phaseβcontrast magnetic resonance (MR) imaging was tested with a motion phantom that simulated muscle activity. Quantitative analytic data on unidimensional, bidirectional skeletal muscle motion measured in vivo was obtained in four hea
In vivo elasticity measurements of extremity skeletal muscle with MR elastography
β Scribed by Kai Uffmann; Stefan Maderwald; Waleed Ajaj; Craig G. Galban; Serban Mateiescu; Harald H. Quick; Mark E. Ladd
- Publisher
- John Wiley and Sons
- Year
- 2004
- Tongue
- English
- Weight
- 286 KB
- Volume
- 17
- Category
- Article
- ISSN
- 0952-3480
- DOI
- 10.1002/nbm.887
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β¦ Synopsis
Abstract
MR elastography (MRE) has been shown to be capable of nonβinvasively measuring tissue elasticity even in deepβlying regions. Although limited studies have already been published examining in vivo muscle elasticity, it is still not clear over what range the in vivo elasticity values vary. The present study intends to produce further information by examining four different skeletal muscles in a group of 12 healthy volunteers in the age range of 27β38 years. The examinations were performed in the biceps brachii, the flexor digitorum profundus, the soleus and the gastrocnemius. The average shear modulus was determined to be 17.9 (βΒ±β5.5), 8.7 (βΒ±β2.8), 12.5 (βΒ±β7.3) and 9.9 (βΒ±β6.8) kPa for each muscle, respectively. To ascertain the reproducibility of the examination, the stiffness measurements in two volunteers were repeated seven times for the biceps brachii. These examinations yielded a mean shear modulus of 11.3βΒ±β.7 and 13.3βΒ±β4.7βkPa for the two subjects. For elasticity reconstruction, an automated reconstruction algorithm is introduced which eliminates variation due to subjective manual image analysis. This study yields new information regarding the expected variation in muscle elasticity in a healthy population, and also reveals the expected variability of the MRE technique in skeletal muscle. Copyright Β© 2004 John Wiley & Sons, Ltd.
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