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Effects of the EMG-driven Hand Robot Training in Patients With Hand Dysfunction Due to Nerve Damage From Burns

Effects of the EMG-driven Hand Robot Training in Patients With Hand Dysfunction Due to Nerve Damage From Burns

Status
Recruiting
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT06563336
Enrollment
60
Registered
2024-08-20
Start date
2023-12-06
Completion date
2024-12-30
Last updated
2024-08-20

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

Conditions

Burn Hand, Rehabilitation

Keywords

hand burn, robot training, hand functions, skin characteristics

Brief summary

Hands are the most frequent burn injury sites. Appropriate rehabilitation is essential to ensure good functional recovery. The aim of this study was to investigate the effects of EMG driven robotic rehabilitation on hand functions and skin characteristics of patients with nerve damage caused by burns. A randomized controlled, single blind trial recruited the patients with hand dysfunction after burn injury. The participants were randomly allocated to experimental group (EG) and control group (CG) for 5 days a week and totally 60 sessions for 12 weeks. The EG received robotic assisted hand training with the EMG-driven exoskeleton hand robot (Hand of Hope®.Rehab-Robotics Company) and conventional occupational therapy. The CG performed conventional occupational therapy, including hand range of motion (ROM) exercises and hand functional training twice a day for 12 weeks. Outcome measures were as follows: 10-point visual analog scale for pain, Jebsen-Taylor hand function test, grip strength, Purdue Pegboard test, joint ROMs, ultrasound measurement of scar thickness, and skin characteristics before and immediately after 12 weeks of treatment. There is still no established protocol for burn injury rehabilitation. The aim of this study was to investigate the effects of EMG driven robotic rehabilitation on hand functions and skin characteristics of patients with nerve damage and scarring caused by burns.

Detailed description

The hand represents the area of the body most common affected by burns, accounting for 80% of all burn injuries. The deformities and scarring that occur when the affected area is the hand can result in the loss of function such as grip strength, range of motion (ROM), dexterity. While early excision and grafting have been shown to reduce the loss of function in cases of burns, up to 30% of affected joints have been found to have a limited ROM.Acute hand rehabilitation tailored to the patient's condition is essential after a burn injury.However, there is still no proven hand rehabilitation protocol in burn centers, new rehabilitation modalities are being attempted to improve hand function.Robot training is being attempted to improve function in musculoskeletal diseases including burns,and the researchers have confirmed the clinical effectiveness of applying a soft glove-type hand robot for hand burns.There is still no established protocol for burn injury rehabilitation. This study was designed as a prospective, randomized controlled single-blind, case control study. The participants were randomly allocated to experimental group (EG) and control group (CG) for 5 days a week and totally 60 sessions for 12 weeks. The EG received robotic assisted hand training with the EMG-driven exoskeleton hand robot (Hand of Hope®.Rehab-Robotics Company) and conventional occupational therapy. The CG performed conventional occupational therapy, including hand range of motion (ROM) exercises and hand functional training twice a day for 12 weeks. Outcome measures were as follows: 10-point visual analog scale for pain, Jebsen-Taylor hand function test, grip strength, Purdue Pegboard test, joint ROMs, ultrasound measurement of scar thickness, and skin characteristics before and immediately after 12 weeks of treatment. The aim of this study was to investigate the effects of EMG driven robotic rehabilitation on hand functions and skin characteristics of patients with nerve damage and scarring caused by burns.

Interventions

OTHEREMG-driven hand robot training

Robot rehabilitation program was applied with Hand of Hope®(Rehab-Robotics Company, Hong Kong), and EMG-driven exoskeleton. The biggest advantage of this system is that it measures the residual muscle activity values with surface EMG(sEMG) sensors. The residual muscles activity is used by giving feedback to the patient. This treatment program, which was applied to both groups in the study, consisted of joint range of motion (ROM) exercises, stretching exercises for burn scars, strengthening exercises using putty or bands, and fine motor training such as writing and using a chopstick.

OTHERconventional occupational training

This treatment program, which was applied to both groups in the study, consisted of joint range of motion (ROM) exercises, stretching exercises for burn scars, strengthening exercises using putty or bands, and fine motor training such as writing and using a chopstick.

Sponsors

Hangang Sacred Heart Hospital
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
SINGLE_GROUP
Primary purpose
TREATMENT
Masking
SINGLE (Outcomes Assessor)

Masking description

Outcome measurements were performed at baseline and immediately after 12 weeks rehabilitation. The outcome measurements and data analyses were performed by a trained and blinded outcome assessor who was not involved in the intervention.

Eligibility

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

Inclusion criteria

* ≥ 18 years old * more than 50% of the hand is burned * burns occurred on the right hand, which is the dominant hand * had a deep partial-thickness (second-degree) or a full-thickness (third-degree) burn, which had been treated with a split-thickness skin graft (STSG) after the burn injury * nerve injury to the hand was confirmed by electromyography * all patients were in the re-epithelialization phase

Exclusion criteria

* other causes of musculoskeletal diseases (rheumatoid arthritis and degenerative joint diseases et al) that may affect hand dysfunctions * unstable scars (acute infection or coagulopathy) that may cause damage to the scar area during hand treatment

Design outcomes

Primary

MeasureTime frameDescription
A 10-point visual analog scale (VAS)12 weekswas used to measure the scar pain severity, with ratings ranging from 0 (no pain) to 10 (unbearable pain).

Secondary

MeasureTime frameDescription
Jebsen-Taylor hand function test (JTT)12 weeksperformance speed of standardized seven tasks, each scored on a 0-15-point scale (with higher scores indicating better hand function)
the Purdue Pegboard test (PPT)12 weeksmotor function was measured as the number of pins that could be placed on the board in 30 s, with dextrity measured as the number of pins, washers, and collars that could be assembled in 60 s
Scar thickness12 weekswas objectively quantified using ultrasonography (128 BW1 US system, Medison, Korea).
Patients were assessed using the total active motion (TAM)12 weeksThe sum of the angles of flexion and extension of the metacarpophalangeal joint, proximal interphalangeal joint, and distal interphalangeal joint of each finger. A maximum of 260 degrees to a minimum of -260 degrees for each finger.
erythema and pigmentation12 weeksMexameter®(MX18, Courage-Khazaka Electronics GmbH, Germany) was used to measure the melanin levels and the severity of erythema. Higher values mean more pigmentation and reddness.
Sebum12 weekswas measured with the Sebumeter® (Courage-Khazaka Electronic GmbH, Germany). The microprocessor calculated the results, which were on display, in mg/cm2.
Distensibility12 weeksmeasured using Cutometer SEM 580® (Courage-Khazaka Electronic GmbH, Cologne, Germany). Two seconds of negative pressure at 450 mbar was followed by 2 s of recess, which consisted of a complete cycle.The higher the measurement value, the better the expansion.
Trans-epidermal water loss (TEWL)12 weekswas measured using a Tewameter® (Courage-Khazaka Electronic GmbH, Germany) to evaluate water evaporation.Higher numbers mean drier skin.

Countries

South Korea

Contacts

Primary ContactSung Rakyum
sung6652@hallym.or.kr82-2-2639-5900

Outcome results

None listed

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