National Institutes of Health Clinical Center
Bethesda, Maryland, 20892, United States
Location status: Recruiting
NCT Number: NCT06998134
People with cerebral palsy (CP), muscular dystrophy (MD), spina bifida, or spinal cord injury often have muscle weakness, and problems moving their arms and legs. The NIH designed a new brace device, called an exoskeleton, that is worn on the legs and helps people walk. This study is investigating new ways the exoskeleton can be used in multiple settings while performing different walking or movement tasks, which we call ubiquitous use. For example, we will ask you to walk on a treadmill at different speeds, walk up and down a ramp, or walk through an obstacle course. Optionally, the exoskeletons may also use functional electrical stimulation (FES), a system that sends electrical pulses to the muscle to help it move the limb.
Interested in participating?
Request Info5 year–25 year
All sexes
Observational
Bethesda, Maryland, 20892, United States
Location status: Recruiting
STUDY DESCRIPTION:
The following exploratory observational study is designed to create a framework that permits rapid development, piloting, and acute evaluation of pediatric exoskeleton control paradigms for daily, ubiquitous use across multiple settings. Most existing evaluations of pediatric exoskeleton control modes are limited to a flat walking task.The novelty of this study design is the translation of control modes to different functional tasks and comparisons between fixed and adaptive parameters across the tasks. Across all participants, three main control modes will be tested: assist, resist, and interleaved (alternating assist and resist). Control parameters will either be fixed for all tasks conducted or may adapt based on the motions of a given activity. Following informed consent and assent, screening, and calibration of control parameters, an acclimation period to the exoskeleton and control modes will occur. Each control mode will be tested across ubiquitous activities of daily living and outcomes will be compared to baseline (without wearing the exoskeleton). Our central hypothesis is that existing control paradigms that have been previously validated in walking can be successfully translated to improve knee extension deficiency and/or knee extensor muscle activity in multiple different functional mobility tasks.
OBJECTIVES:
ENDPOINTS:
Primary Endpoints:
Secondary Endpoints:
-To evaluate functional performance in:
These endpoints will be measured and compared between each control strategy used within each task during the assessment visit.
To characterize muscle activation, we will use 1) peak knee extensor activation during the task and 2) area under the normalized EMG curve over the duration of the task. These endpoints will be measured and compared between each control strategy used within each task during the assessment visit.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
In order to be eligible to participate in this study, an individual must meet all of the following criteria:
Exclusion criteria
An individual who meets any of the following criteria will be excluded from participation in this study:
A lower limb exoskeleton that has one actuated degree of freedom at the knee (flexion/extension) and a passive degree of freedom at the ankle (plantar/dorsiflexion).
Time frame: 4 months
To evaluate knee extension deficiency, we will use:1) Peak knee extension and2) Range of knee angle excursion (difference between maximum extension and flexion).These endpoints will be measured and compared between each control strategy within each task during the assessment visit.
Time frame: 4 months
To ensure controllers are appropriately developed for ubiquitous use, it is vital to determine whether their intended behavior is consistent with design specifications across tasks.
Contact information is provided by the study sponsor or research team.
Jesse H Matsubara
CONTACT
Thomas C Bulea, Ph.D.
CONTACT
National Institutes of Health Clinical Center (CC)
Nih
Toward Ubiquitous Lower Limb Exoskeleton Use in Children and Young Adults: Exploratory Observational Analysis of Novel Robotic Control Strategies
OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.
View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
Published trials that share one or more normalized conditions with this study.
NCT03818152
Brain Damage, Chronic, Brain Diseases
Ghent, Belgium
View Trial DetailsNCT06064292
Aging, Behavior
Salamanca, Spain
View Trial DetailsNCT04154098
Congenital, Hereditary, and Neonatal Diseases and Abnormalities, Genetic Diseases, Inborn
Konstanz, Basen-Wuerttemberg, Germany
View Trial DetailsNCT05537298
Critical Illness, Disease Attributes
Birmingham, Alabama, United States
View Trial Details