Identification of elderly fallers by muscle strength measures
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Open Access
- 11 December 2007
- journal article
- research article
- Published by Springer Nature in European Journal of Applied Physiology
- Vol. 102 (5), 585-592
- https://doi.org/10.1007/s00421-007-0613-6
Abstract
For efficient prevention of falls among older adults, individuals at a high risk of falling need to be identified. In this study, we searched for muscle strength measures that best identified those individuals who would fall after a gait perturbation and those who recovered their balance. Seventeen healthy older adults performed a range of muscle strength tests. We measured maximum and rate of development of ankle plantar flexion moment, knee extension moment and whole leg push-off force, as well as maximum jump height and hand grip strength. Subsequently, their capacity to regain balance after tripping over an obstacle was determined experimentally. Seven of the participants were classified as fallers based on the tripping outcome. Maximum isometric push-off force in a leg press apparatus was the best measure to identify the fallers, as cross-validation of a discriminant model with this variable resulted in the best classification (86% sensitivity and 90% specificity). Jump height and hand grip strength were strongly correlated to leg press force (r = 0.82 and 0.59, respectively) and can also be used to identify fallers, although with slightly lower specificity. These results indicate that whole leg extension strength is associated with the ability to prevent a fall after a gait perturbation and might be used to identify the elderly at risk of falling.Keywords
This publication has 47 references indexed in Scilit:
- Tripping without falling; lower limb strength, a limitation for balance recovery and a target for training in the elderlyJournal of Electromyography and Kinesiology, 2008
- The costs of fatal and non-fatal falls among older adultsInjury Prevention, 2006
- A risk profile for identifying community-dwelling elderly with a high risk of recurrent falling: results of a 3-year prospective studyOsteoporosis International, 2006
- Plasticity of dynamic muscle performance with strength training in elderly humansMuscle & Nerve, 2005
- Is muscle power output a key factor in the age‐related decline in physical performance? A comparison of muscle cross section, chair‐rising test and jumping powerClinical Physiology and Functional Imaging, 2004
- Effect of resistance training on skeletal muscle-specific force in elderly humansJournal of Applied Physiology, 2004
- Effects of Resistance Training on Older AdultsSports Medicine, 2004
- Reproducibility of the Jumping Mechanography As a Test of Mechanical Power Output in Physically Competent Adult and Elderly SubjectsJournal of the American Geriatrics Society, 2003
- Interventions for preventing falls in elderly peoplePublished by Wiley ,2003
- How the power of MANOVA can both increase and decrease as a function of the intercorrelations among the dependent variables.Psychological Bulletin, 1994