Scinovex
articleTop 10% cited

A cross-sectional study of muscle strength and mass in 45- to 78-yr-old men and women

Journal of Applied Physiology · 1991 · Vol. 71(2) · pp. 644–650
Walter R. FronteraVirginia HughesKaryn J. LutzW. J. Evans

Abstract

The isokinetic strength of the elbow and knee extensors and flexors was measured in 200 healthy 45- to 78-yr-old men and women to examine the relationship between muscle strength, age, and body composition. Peak torque was measured at 60 and 240 degrees/s in the knee and at 60 and 180 degrees/s in the elbow by use of a Cybex II isokinetic dynamometer. Fat-free mass (FFM) was estimated by hydrostatic weighing in all subjects, and muscle mass (MM) was determined in 141 subjects from urinary creatinine excretion. FFM and MM were significantly lower (P less than 0.001) in the oldest group. Strength of all muscle groups at both testing speeds was significantly (P less than 0.006) lower (range 15.5-26.7%) in the 65- to 78- than in the 45- to 54-yr-old men and women. When strength was adjusted for FFM or MM, the age-related differences were not significant in all muscle groups except the knee extensors tested at 240 degrees/s. Absolute strength of the women ranged from 42.2 to 62.8% that of men. When strength was expressed per kilogram of MM, these gender differences were smaller and/or not present. These data suggest that MM is a major determinant of the age- and gender-related differences in skeletal muscle strength. Furthermore, this finding is, to a large extent, independent of muscle location (upper vs. lower extremities) and function (extension vs. flexion).

Musculoskeletal pain and rehabilitationBody Composition Measurement TechniquesSports Performance and TrainingMuscle massCross-sectional studyMuscle strengthMedicineInternal medicineAnatomyPhysical therapyCardiologyPhysiologyPathology

MeSH terms

Adipose TissueAgedAgingBody CompositionBody WeightCreatinineElbowFemaleHumansKneeMaleMiddle AgedMusclesSex Factors
Citations
1,019
FWCI
6.85
field-weighted impact
References
32
Percentile
98%
vs. same field & year
Citations per year
Cited by
Attenuation of skeletal muscle and strength in the elderly: The Health ABC Study
Journal of Applied Physiology · 2001 · 1,206 citations
Progression Models in Resistance Training for Healthy Adults
Medicine & Science in Sports & Exercise · 2009 · 4,115 citations
Aging of skeletal muscle: a 12-yr longitudinal study
Journal of Applied Physiology · 2000 · 1,435 citations
Progression Models in Resistance Training for Healthy Adults
Medicine & Science in Sports & Exercise · 2002 · 2,977 citations
Invited Review: Aging and sarcopenia
Journal of Applied Physiology · 2003 · 1,762 citations
References
What is the cause of the ageing atrophy?
Journal of the Neurological Sciences · 1988 · 2,053 citations
Physiological changes in ageing muscles
Journal of Neurology Neurosurgery & Psychiatry · 1973 · 727 citations
Muscle strength and speed of movement in relation to age and muscle morphology
Journal of Applied Physiology · 1979 · 1,130 citations
Creatinine assay by a reaction-kinetic principle
Clinica Chimica Acta · 1972 · 651 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.