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Balance and Leg Function After Hip Replacement

Effect of Task-Specific Exercise on Balance and Leg Function in Patients After Total Hip Replacement

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05343195
Enrollment
40
Registered
2022-04-25
Start date
2021-03-15
Completion date
2022-02-01
Last updated
2022-04-26

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

Conditions

Coxarthrosis, Hip Injuries, Hip Replacement

Keywords

balance, hip function, hip replacement, elderly, physical functioning

Brief summary

Task-oriented leg exercise are commonly used after joint surgeries in various hip pathologies. Based on this theory, it was hypothesized that task-oriented exercise without conventional physiotherapy can have better result in recovery of balance and leg function than with a conventional post-hip physiotherapy program after hip replacement surgery. The aim of the study was to determine the effect of task-oriented exercise on balance and leg function after total hip replacement.

Detailed description

Study included 40 subjects. All subjects were randomly divided into control and intervention groups. VAS scale was used to assess the pain, hip range of motion were measured using a goniometer, strength of the muscles was assessed on the Oxford 5 point scale, leg function was evaluated with modified Harris hip scale, Abili balance analyzer was used to assess static balance and Berg balance scale was used to measure dynamic balance. Intervention duration was 18 days.

Interventions

OTHERTask-oriented exercise

Task-oriented exercise program for patients after total hip replacement.

OTHERControl

Control intervention: conventional physiotherapy after hip replacement

Sponsors

Lithuanian Sports University
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
55 Years to 75 Years
Healthy volunteers
No

Inclusion criteria

* BMI \< 40; * Hip coxarthrosis; * Hip total replacement; * Posterior incision; * Surgery performed no more than 1 week ago; * Ability to comprehend and execute the tasks.

Exclusion criteria

* Revision surgery; * Surgery intervention for other reasons (fracture, arthritis); * Severe cardiovascular disease; * Vestibular disorders; * Vision disorders; * Proprioception disorders; * Neurological disorders.

Design outcomes

Primary

MeasureTime frameDescription
Change from baseline Pain at 18 daysBaseline and after 18 dayswas evaluated using the Visual Analogue Pain Scale (VAS). Participants were asked to report current pain intensity. A higher score indicates greater pain intensity: no pain (0-4 mm), mild pain (5-44 mm), moderate pain (45-74 mm), and severe pain (75- 100 mm).
Change from baseline Hip range of motions at 18 daysBaseline and after 18 daysUsing goniometer the range of hip motions were evaluated: flexion, extension, abduction. Each motion was measured three times and averaged value was used.
Change from baseline Hip Muscle Strength at 18 daysBaseline and after 18 daysThe muscle strength of hip flexion, extension, and abduction was evaluated using manual muscle testing technique (Oxford 5 point scale).
Change from baseline Leg Function at 18 daysBaseline and after 18 daysTo evaluate the function of leg after hip replacement surgery the modified Harris Hip Score (mHHS) was used. MHHS is reliable and valid tool to evaluate leg function after hip replacement and to monitor the leg function during recovery. The questionnaire was completed by a physiotherapist together with the patient. This questionnaire consists of 8 questions / topics, where each answer has a score: * Pain description (maximum 44 points); * Limping (max 11 points); * Assistive devices (max 11 points); * Walking distance (max 11 points); * Stair climbing (max 4 points); * Putting on shoes/socks (max 4 points); * Sitting (max 5 points); * Using public transport (1 point). The higher the score, the better the leg function. The maximum number of points is 91.
Change from baseline Dynamic Balance at 18 daysBaseline and after 18 daysDynamic Balance was assessed using the Berg Balance Scale (BBS). This scale is used to assess the subjects' imbalance in 14 different tasks, where each task is scored on a scale from 0 (does not perform at all) to 4 (performs excellent). The higher the score, the better the balance, with a maximum score of 56.
Change from baseline Static Balance at 18 daysBaseline and after 18 daysStatic Balance was assessed using the Abili balance analyzer system. Abili balance analyzer is a platform that can be adapted for both patient testing and training. The Abili analyzer system consists of two parts: the Abili analyzer platform and the Balance trainer app. The Abili analyzer platform plate moves in a horizontal plane, making it safe to use for patients of all capacities. Thus, using this balance platform, three levels of difficulty can be selected: light, medium and advanced, as well as the handles are adjustable according to the patient's height. After three tests, the gadget calculates a total stability index. The lower the number, the better the stability and the lower the fluctuation.

Countries

Lithuania

Outcome results

None listed

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