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Dynamic and Static Balance and the Speed of Reaction in the Elderly

Analysis of the Impact of Uncomplicated Physiotherapeutic Procedures on the Correlation of Static and Dynamic Balance and the Speed of Reaction in the Elderly - a Randomized Observational Study

Status
Completed
Phases
Unknown
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05442944
Enrollment
60
Registered
2022-07-05
Start date
2011-03-02
Completion date
2012-03-14
Last updated
2026-01-27

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Spondyloarthritis

Keywords

elderly,, physiotherapy,, static balance,, dynamic balance,, reaction speed,, risk of falls

Brief summary

The balance of the body in the elderly is disturbed for various reasons and relatively often. The aim of our research was to analyze the effect of five simple physiotherapeutic procedures on the reaction speed as well as static and dynamic balance in the elderly. 60 people (women and men diagnosed with degenerative changes of the spine, chronic period of the disease) aged 65-95 years were analyzed. Patients were randomly assigned to the study group (30 people - participating in the three-week physiotherapy program) and the control group (30 people - not participating in the program). The test consisted in checking the state of static (postural stability) and dynamic (risk of falls) balance on the Biodex SD dynamic platform and the assessment of speed in the Timed Up-and-Go (TUG) test. The results of our research showed that five simple physiotherapy treatments can significantly improve the reaction speed and the dynamic and static balance in the sagittal plane in the elderly.

Detailed description

The balance of the human body is the result of a properly developed musculoskeletal system, an efficiently functioning nervous system and labyrinth, organs of deep feeling, and the organ of vision. The speed of reaction is an important factor in maintaining the body's balance and reduces the risk of falls, not only in the elderly. The aim of the study is to analyze the influence of uncomplicated physiotherapeutic procedures on the reaction speed as well as static and dynamic balance in the elderly. 60 people (degenerative changes of the spine) in the chronic period of the disease were analyzed. Age of respondents: 65-95 years, women and men. Patients were randomly assigned to the study group (30 people - participating in the three-week physiotherapy program) and the control group (30 people - not participating in the program). The test consisted in checking the state of static (postural stability) and dynamic (risk of falls) balance on the Biodex SD dynamic platform. Additionally, each patient participated in the Timed Up-and-Go (TUG) test. In the study group, most of the studied variables, analyzed before and after rehabilitation, differed significantly (frontal plane inclinations p = 0.024; QuadsL p = 0.002; TUG p = 0.022). Significant differences were also noted between the groups after the end of the therapy (QuadsL 1 p = 0.015; PostL p = 0.011). Moreover, the correlation between TUG and anterior and lateral (p = 0.032) was confirmed. Conclusions: The use of simple physiotherapeutic procedures significantly improves the reaction speed as well as dynamic and static balance in the sagittal plane in the elderly. Improvement in sagittal static stability and deterioration in the coronal plane contribute to a reduction in TUG time.

Interventions

PROCEDUREPhysiotherapeutic procedures

As part of the rehabilitation program, the patients performed two exercises in the Universal Therapeutic Rehabilitation Room (UTRR) system. The patient's task was to perform simultaneous abduction and adduction of the upper and lower limbs. The duration of the procedure was 10 minutes, the patient performed the exercises at a comfortable pace. In the second exercise - the patient's task was to alternately bend and straighten the opposite lower and upper limbs. The duration of the exercise was 10 minutes. The combined duration of both procedures used was 20 minutes. In addition, each patient underwent three physical therapy treatments. The procedures were carried out 5 days a week (Monday to Friday) for three weeks.

Sponsors

Anna Olczak
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
TRIPLE (Subject, Caregiver, Outcomes Assessor)

Eligibility

Sex/Gender
ALL
Age
65 Years to 90 Years
Healthy volunteers
No

Inclusion criteria

* 1\) age over 65, 2) generalized degenerative disease, 3) osteoarthritis of the lumbar spine, 4) possibility of walking at least 6 meters without orthopedic support, 5) ability to stand up and sit on a chair independently.

Exclusion criteria

* 1\) other than the required disease entity, 2) neurological diseases, labyrinth diseases, vascular imbalances, 3) use of psychotropic drugs, 4) cognitive disorders, 5) people who do not meet the requirements of the equipment used for measurements (weight over 136 kg, height under 130 cm, height over 178 cm), 6) high, low blood pressure, dizziness, malaise.

Design outcomes

Primary

MeasureTime frameDescription
Postural stability - static balance on Biodex SD dynamic platform.Before therapyPostural stability was investigated by forward deflections in the sagittal plane.
Risk of falls - dynamic balance on Biodex SD dynamic platform.Before therapyThe evaluation of the dynamic equilibrium was carried out by measuring the mean deviations of the center of gravity of the subject (overall) on an unstable substrate, the lability of which varied with time, from a more stable state to unstable ground. The Biodex SD platform has a twelve-point instability scale, where level 12 corresponds to a rigid and stable setting and level 1 to a hypermobility setting. For the purposes of the study, levels from 8 to 4 were used.
Speed of reaction as measured by the functional Timed Up and Go (TUG) test.Before therapyThe task of the subject during the test was, on the command "start" given by the examiner, to perform the following activities as soon as possible: get up from the chair, walk three meters straight, go around the cone, return the same way to the place, and sit on the chair again. The investigator measured the time of all performed motor tasks from giving the command and starting them until returning to the chair.

Secondary

MeasureTime frameDescription
Postural stability - static balance on Biodex SD dynamic platform.After 3 weeks of therapyPostural stability was investigated by forward deflections in the sagittal plane.
Postural stability- static balance on Biodex SD dynamic platform3 weeks after therapyPostural stability was investigated by backward deflection in the sagittal plane
Risk of falls - dynamic balance on Biodex SD dynamic platform.3 weeks after therapyThe evaluation of the dynamic equilibrium was carried out by measuring the mean deviations of the center of gravity of the subject (overall) on an unstable substrate, the lability of which varied with time, from a more stable state to an unstable ground. The Biodex SD platform has a twelve-point instability scale, where level 12 corresponds to a rigid and stable setting and level 1 to a hypermobility setting. For the purposes of the study, levels from 8 to 4 were used.
Speed of reaction as measured by the functional Timed Up and Go (TUG) test.3 weeks after therapyThe task of the subject during the test was, on the command "start" given by the examiner, to perform the following activities as soon as possible: get up from the chair, walk three meters straight, go around the cone, return the same way to the place, and sit on the chair again. The investigator measured the time of all performed motor tasks from giving the command and starting them until returning to the chair.

Contacts

PRINCIPAL_INVESTIGATORAnna Olczak, PhD

Rehabilitation Clinic, Military Institute of Medicine

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026