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Clinical Trial Details — Status: Completed

Administrative data

NCT number NCT01475448
Other study ID # FR-262790
Secondary ID
Status Completed
Phase N/A
First received November 3, 2011
Last updated May 2, 2015
Start date January 2012
Est. completion date October 2012

Study information

Verified date November 2011
Source University of Sao Paulo
Contact n/a
Is FDA regulated No
Health authority Brazil: National Committee of Ethics in Research
Study type Interventional

Clinical Trial Summary

The goal of this project is to understand the effect of regular practice of long distance running on the posture and movement control of older adults.

For such, the investigators will conduct an experiment with longitudinal design where sedentary elderly individuals will be trained in long distance running for about 4 months.


Description:

In a study the investigators conducted about elderly runners, the main observed difference by the first time was that elderly individuals present greater foot abduction (toe-out) during running than young adults. This alteration has been observed in elderly individuals in general during walking, and identified as a protective mechanism to not overload the medial compartment of the knee joint. It is also known that elderly individuals present a different joint torque distribution in the lower limbs during walking in comparison with young adults. However, it's not known the relation between the movement patterns, particularly the foot abduction pattern, and the mechanical load on the knee joint during running by elderly individuals and neither the longitudinal effect of running practice on this relation and on the mechanical joint load distribution. Another unknown aspect is the actual effect of the running practice on the posture control of elderly individuals.

With this project, the investigators want to understand why elderly individuals change their movement pattern during running, to determine for the same subjects if this altered pattern is also present during walking and standing, and to determine the effect of running practice on the elderly posture control. Our hypotheses are that the strategy of greater foot abduction is present in all movement tasks and that the use of this strategy is related to the integrity of the knee joint, even considering the highly active elderly individuals and that the practice of running contributes for a better postural control in this population.

These findings will contribute for a greater understanding of the benefits of the practice of running and the adaptations developed by the elderly runners and in this way to contribute for the prescription of this activity to the elderly population.


Recruitment information / eligibility

Status Completed
Enrollment 34
Est. completion date October 2012
Est. primary completion date August 2012
Accepts healthy volunteers Accepts Healthy Volunteers
Gender Both
Age group 60 Years to 85 Years
Eligibility Inclusion Criteria:

- Sedentary

- Independent bipedal locomotion

Exclusion Criteria:

- Inapt for practicing physical activity

- Severe alteration of the muscle-skeletal system

- Cognitive or neurological deficit

- Use of orthosis for locomotion

Study Design

Allocation: Randomized, Intervention Model: Parallel Assignment, Masking: Open Label, Primary Purpose: Basic Science


Related Conditions & MeSH terms


Intervention

Other:
Long distance training
Long distance training during four months, 3 times per week
Walking training
Walking training during four months, three times per week

Locations

Country Name City State
Brazil Laboratory of Biophysics Sao Paulo

Sponsors (2)

Lead Sponsor Collaborator
University of Sao Paulo Fundação de Amparo à Pesquisa do Estado de São Paulo

Country where clinical trial is conducted

Brazil, 

Outcome

Type Measure Description Time frame Safety issue
Primary Change from baseline of posture and movement patterns at 16 weeks biomechanical and physiological measures of the posture and movement patterns Two weeks before and two weeks after the training for sixteen months No
Secondary Change from baseline of mechanical joint moments estimated by inverse dynamics at 16 weeks Estimated joint moments by inverse dynamics at the ankle, knee, and hip joints during the support phase of walking and running Two weeks before and two weeks after the training for four months No
Secondary Change from baseline of muscle activity measured by surface electromyography of selected muscles of the lower limb at 16 weeks Electromyographic activity of lower limb muscles during walking and running Two weeks before and two weeks after the training for four months No
Secondary Change from baseline of body sway measured by estabilography with a force plate during standing at 16 weeks Measurements of balance control during quiet and unconstrained standing using a force platform. Two weeks before and two weeks after the training for four months No
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