Skip to content

Robotic Balance Training to Improve Postural Control and Balance Post-Traumatic Brain Injury

Robotic Balance Training to Improve Postural Control and Balance Post-Traumatic Brain

Status
Recruiting
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT06184295
Enrollment
30
Registered
2023-12-28
Start date
2024-01-01
Completion date
2024-12-31
Last updated
2024-12-05

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

Conditions

Traumatic Brain Injury

Brief summary

The purpose of this study is to assess a balance training program to see if it can be helpful to improve balance and avoid falls in people who have had traumatic brain injuries (TBIs). The study will involve three groups of research subjects: 1) TBI-intervention group, 2) TBI- non-intervention group and 3) the participants without disability group. The TBI intervention Group will participate in 10 robotic balance training sessions. Data will collected pre and post-training. TBI- non-intervention group will not receive any training. They will participate in two data collection sessions which are about 5 weeks apart. The participants without disability group will not receive any training. They will participate in one data collection session.

Interventions

DEVICETBI - Intervention Group

The participants will receive 10 customized robotic balance training sessions to improve balance using the Hunova robotic device. Each session will last for up to 1.5 hours. The training may include standing or sitting on the robotic balance platform and performing the following tasks: maintaining balance when the platform becomes unstable or moving in various directions, or in an inclination; these tasks may be performed as instructed with eyes open or eyes closed condition; move in different directions to reach targets with my hands; stand on one leg or heel to toe and maintain balance; perform head or torso rotation while standing or sitting. All training will be performed with an overhead harness and a spotter will be present at all times.

Sponsors

Kessler Foundation
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
18 Years to 65 Years
Healthy volunteers
Yes

Inclusion criteria

Participants with TBI: Inclusion Criteria: * Be between the ages of 18 and 65. * Have been diagnosed with a TBI by a physician and be at least 6 months post injury and not more than 5 years post injury. * Have been medically stable for 3 months prior to the most recent TBI. * Not plan to make any drastic changes to medications (as determined by study staff) for at least 4 weeks. * Be able to stand unsupported for 5 minutes. * Be willing and able to give informed consent. * Be able and willing to comply with study procedures, verbal instructions, and follow-up requirements.

Exclusion criteria

* Weight above 300 lbs. * Have severe cardiac disease such as heart attack or moderate or severe congestive heart failure. * Have a pre-existing condition resulting in significant disruption in alignment or function of the lower limb during standing. * Have additional medical conditions that affect the bones, muscles or nerves that would interfere with the balance. * Have any previously diagnosed history of balance problems prior to TBI. * Have fluctuating blood pressure. * Be on any medication that may affect balance, strength, or muscle coordination (e.g. Botox). * Be currently enrolled in another research study that is likely to affect participation in this research study. * Have seizure disorder. Participants without a disability: Inclusion Criteria: * Be between the ages of 18 and 65. * Not plan to make any drastic changes to medications for at least 4 weeks. * Not have an orthopedic, cognitive or neuromuscular disease. * Be able to stand unsupported for 5 minutes. * Be willing and able to give informed consent. * Be able and willing to comply with study procedures, including follow-up requirements.

Design outcomes

Primary

MeasureTime frameDescription
Balance5 weeksQuantitative measures of static and dynamic balance will be assessed using the Hunova balance platform.
Berg Balance Assessment5 weeksA task performance test consisting of 14 items of increasing difficulty graded on a five-point ordinal scale of 0 to 4 (0 = subject is unable to perform task; 4 = subject is independent in performance of task) giving the best possible score of 56 for healthy balance.
Dynamic Gait Index5 weeksDynamic Gait Index (DGI) is a measurement tool commonly used to assess dynamic balance, gait and risk for falls. It consists of a total of eight gait assessments which can be scored on a four-point ordinal scale, ranging from 0-3, where '0' indicates the lowest level of function and '3' the highest level of function, allowing for a total possible score of 24.
Timed Up and Go5 weeksIt is a clinical test of functional gait abilities and dynamic balance. The participants will be asked to walk a distance of 3 meters from a seated position, turn around, walk back to the chair and sit back in the chair. The time taken to perform the task will be recorded using a stopwatch.
10 Meter walk test5 weeksParticipants will be asked to walk about 12 meters. The time taken to walk 10 meters will be recorded.
Fall Efficacy Scale -International5 weeksThis questionnaire is a widely accepted tool for the assessment of fear of falling and has excellent reliability and validity. It is a self-reported questionnaire that provides information on the level of concern about falls for a range of daily living activities. The original questionnaire contains 16 items and is scored on a four-point scale (1 = not very concerned to 4 = very concerned). Therefore the best possible value is 16 and the worst is 64.
Community Balance and Mobility Scale5 weeksUsed to detect 'high level' balance and mobility deficits based on tasks commonly encountered in community environments. Composed of 13 challenging tasks (scaled from 0 = complete inability to perform task to 5 = most successful completion of item available).
Temporal- spatial characteristics5 weeksParticipants will be asked to walk about 10 meters on a pressure mat. Pressure mat (ZenoMat, Protokinetics LLC) will be used to collect gait cycle times and step length, in order to determine inter- and intra-limb temporal and spatial characteristics.
Electromyography5 weekssurface Electromyography (EMG) wireless sensors will be used to measure the activation of tibialis anterior, soleus, vastus lateralis, rectus femoris, bicep femoris, and gastrocnemius.
Cortical activity5 weeksCortical activity will be measured using NIRSport 2 (NIRX Medical Technologies, LLC ), an Functional Near Infrared Spectroscopy (fNIRS) system. NIRSport 2 is a portable, non-invasive optical imaging technique to measure the cerebral hemodynamic response.

Secondary

MeasureTime frameDescription
community ambulation5 weeksSensors will be provided to be worn in wrist, leg and waist to collect gait cycle times and step length during community ambulation of the participants between baseline and follow-up. The participants will also wear the sensor during testing walking and balancing tasks at baseline and follow-up.

Countries

United States

Contacts

Primary ContactKiran Karunakaran, Ph.D.
kkarunakaran@kesslerfoundation.org973-324-3590

Outcome results

None listed

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