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Completed

NCT Number: NCT03731572

Hip Muscle Power, Lateral Balance Function, and Falls in Aging

Falls and their consequences are among the major problems in the medical care of older individuals. The long-term goal of this research is to develop a mechanistically based therapeutic intervention to enhance muscle power, weight-shifting capability, and lateral balance function through protective stepping to prevent falls. When human balance is challenged, protective stepping is a vital strategy for preventing a fall during activities of daily life. Many older people at risk for falls have particular difficulties with successfully stepping sideways as a protective response to loss of balance in the lateral direction. Age-related declines in lateral balance function result from neuromuscular and biomechanical limitations in hip abductor-adductor muscle power generation. This study will test whether these impairments can be improved with high-velocity hip muscle resistance power training that will be more effective than conventional resistance strength training.

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Key information

Conditions

Age range

65 year and older

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

VA Maryland Health Care System

Baltimore, Maryland, 21201, United States

About this study

Falls and their consequences are among the major problems in the medical care of older individuals. The long-term goal of this research is to develop a mechanistically based therapeutic intervention to enhance muscle power, weight-shifting capability, and lateral balance function through protective stepping to prevent falls. When human balance is challenged, protective stepping is a vital strategy for preventing a fall during activities of daily life. Many older people at risk for falls have particular difficulties with successfully stepping sideways as a protective response to loss of balance in the lateral direction. The investigators propose that age-related declines in lateral balance function through impaired weight transfer and protective stepping linked with falls, result from neuromuscular and biomechanical limitations in hip abductor-adductor (AB-AD) muscle power generation. Moreover, the investigators hypothesize that these balance and neuromotor impairments can be improved with high-velocity muscle resistance power training that will be more effective than conventional muscle resistance strength training. The specific aims are, Aim 1: To conduct a single blind, randomized, and controlled trial comparing the effects of 12 weeks of hip AB-AD muscle power training against strength training, and the rate of retention after 3 months of no training in community living older adults by determining a) the changes in neuromotor performance (kinetics, kinematics, muscle activation patterns) of pre-step weight transfer during waist-pull induced side stepping, and rapid voluntary reaction time (RT) sidestepping; and by b) the changes in isolated hip AB-AD muscle neuromotor performance. Weight shifting and stepping ability will be tested with different initial induced stepping limb load conditions, and by varying voluntary stepping limb selection certainty with simple and choice RT tasks; Aim 2: To compare the effectiveness of hip AB-AD muscle power and strength training in reducing the rate of prospective falls over a one-year monitoring period post-training. Secondary analyses will assess the number of in-task falls, and the effect of muscle power versus strength training on changes in functional balance and mobility. Overall, the studies are expected to establish support for the superiority of velocity dependent power training over strength training on enhancing muscle performance, protective balance control and functional mobility outcomes, and for the prevention of falls among older adults.

Who can participate

Healthy volunteers accepted: Yes

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • 65 years of age or older
  • Functionally independent
  • Living in the community
  • Generally healthy

Exclusion criteria

  • Cognitive impairment (Mini Mental Score Exam less than 24)
  • Sedative use
  • Non-ambulatory
  • Any clinically significant musculoskeletal impairment
  • Any clinically significant neurological impairment
  • Any clinically significant cardiopulmonary impairment
  • Any clinically significant metabolic impairment
  • Any general medical problem that will interfere with testing or training
  • Diabetes, renal, or liver disease by identified by routine chemistry

Treatment and study plan

Power Training

Other

Hip abductor-adductor resistance exercises at maximum execution speed

Strength training

Other

Hip abductor-adductor resistance exercises at reduced execution speed

Primary outcomes

  1. Incidence of single lateral steps

    Time frame: At 3 months

    Change in number of single steps between pre and post tests

Secondary outcomes

  1. Hip muscle power

    Time frame: At 3 months

    Change in maximum hip power between pre and post tests

  2. Number of Falls

    Time frame: 12 months

    Total number of falls reported at 1 year follow up.

Sponsors and collaborators

Lead sponsor

University of Maryland, Baltimore

Other

Collaborators

  • VA Maryland Health Care System

Registry information

Acronym: HIPS

Important dates

Study start
2019
Primary completion
2026
Study completion
2026
First posted
Nov 6, 2018
Registry last updated
Jan 26, 2026

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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