Literature DB >> 2773724

1989 ARRS Executive Council Award. Exercise-enhanced MR imaging of variations in forearm muscle anatomy and use: importance in MR spectroscopy.

J L Fleckenstein1, L A Bertocci, R L Nunnally, R W Parkey, R M Peshock.   

Abstract

31P MR spectroscopic studies of forearm exercise frequently assume that the volume sampled is appropriate for the muscle of interest and that individual variations in muscle anatomy and use are not important. Postexercise MR imaging was used to assess variations in the size, location, and use of forearm flexors and the accuracy of palpation as a method for locating the muscle of interest. By using the information obtained with MR, the effects of errors in surface-coil position relative to the muscle of interest on 31P MR spectroscopy were examined. In the midforearm of seven men, the greatest diameter of the flexor carpi ulnaris was 29 +/- 4 mm, and that of the flexor digitorum superficialis was 28 +/- 6 mm. However, in the proximal forearm, 58 +/- 10% of the diameter was covered by the palmaris longus, when present (79% of subjects). An unexpected finding was that a focal portion of the superficial finger flexor was used primarily as a wrist flexor in 26% of subjects. Palpation incorrectly identified flexor muscle margins by more than 15 mm in 50% of attempts. When a surface coil was positioned over wrist flexors during handgrip, attenuation of exercise-induced changes in 31P spectra resulted. Exercise-enhanced MR imaging reveals variations in forearm muscle anatomy and use that are common and difficult to appreciate by palpation. It therefore allows improved localization of the sensitive volume for MR spectroscopic studies of muscle physiology.

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Year:  1989        PMID: 2773724     DOI: 10.2214/ajr.153.4.693

Source DB:  PubMed          Journal:  AJR Am J Roentgenol        ISSN: 0361-803X            Impact factor:   3.959


  4 in total

1.  Association between regional differences in muscle activation in one session of resistance exercise and in muscle hypertrophy after resistance training.

Authors:  Taku Wakahara; Naokazu Miyamoto; Norihide Sugisaki; Koichiro Murata; Hiroaki Kanehisa; Yasuo Kawakami; Tetsuo Fukunaga; Toshimasa Yanai
Journal:  Eur J Appl Physiol       Date:  2011-08-21       Impact factor: 3.078

2.  31P-magnetic resonance spectroscopy assessment of subnormal oxidative metabolism in skeletal muscle of renal failure patients.

Authors:  G E Moore; L A Bertocci; P L Painter
Journal:  J Clin Invest       Date:  1993-02       Impact factor: 14.808

3.  3D 23Na MRI of human skeletal muscle at 7 Tesla: initial experience.

Authors:  Gregory Chang; Ligong Wang; Mark E Schweitzer; Ravinder R Regatte
Journal:  Eur Radiol       Date:  2010-03-23       Impact factor: 5.315

4.  The time course of calf muscle fluid volume during prolonged running.

Authors:  Steffen Willwacher; David A Sleboda; Daniela Mählich; Gert-Peter Brüggemann; Thomas J Roberts; Grischa Bratke
Journal:  Physiol Rep       Date:  2020-05
  4 in total

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