Loss of Muscle Mass is Poorly Reflected in Grip Strength Performance in Healthy Young Men

Abstract

Isometric maximal handgrip strength (GS max) has been used as an expedient test of overall muscle strength and index of fat-free mass (FFM). We tested this relationship in 55 fit young men undergoing high rates of FFM loss in an 8.5-wk military training course involving multiple stressors including nutritionally uncomplicated energy deficit. GS(max) was measured by a hand dynamometer interfaced with a computer providing visual feedback; another strength test, measuring dynamic strength of larger muscle groups (Clean(sim)), was also performed. GS(max) did not change (530 + or - 57 vs 529 + or - 63 N) in the face of a 15.6% loss of body weight (12.1 + or - 3.4 (SD) kg), including 6. 9% loss of FFM (4.6 + or - 2.6 kg), but Clean(sim) decremented significantly (77.4 + or - 9.6 to 58.7 + or - 8.9 kg) and changes were significantly correlated with Delta FFM for GS(max) (r = 0.31) and Clean(sim) (r = 0.49). We conclude that GS(max) is not a good representation of changes in total FFM in healthy young men even though it appears to be useful in more severely catabolic patients with extreme losses of FFM and in pubertal boys making large gains in FFM. Other aspects of physical performance are clearly affected by high rates of weight loss, as demonstrated by decrements in the Clean(sim) and its stronger relationship to Delta FFM.

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Document Details

Document Type
Technical Report
Publication Date
Jan 01, 1994
Accession Number
ADA285686

Entities

People

  • Karl E. Kriedl
  • Michael J. Johnson
  • Peter N. Frykman
  • Robert J. Moore

Organizations

  • United States Army Research Institute of Environmental Medicine

Tags

Communities of Interest

  • Biomedical
  • Energy and Power Technologies
  • Human Systems

DTIC Thesaurus Topics

  • Body Composition
  • Body Water
  • Body Weight
  • Computers
  • Data Storage Systems
  • Feedback
  • Human Factors Engineering
  • Measurement
  • Medical Personnel
  • Military Personnel
  • Military Research
  • Military Training
  • Musculoskeletal Physiology
  • Students
  • Test And Evaluation
  • Weight Reduction
  • X Rays

Readers

  • Exercise and Sports Science.