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Variability and Specificity in Reactive Stabilization Movements to Diverse Slip Perturbations

Variability and Specificity in Reactive Stabilization Movements to Diverse Slip Perturbations

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT03755336
Enrollment
44
Registered
2018-11-27
Start date
2019-12-01
Completion date
2024-01-01
Last updated
2025-05-25

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

Conditions

Slip Perturbations

Brief summary

Recent research on slips has shown that use of perturbation training to improve specific motor skills to resist slips can vastly reduce falls. However, these interventions have only addressed slips occurring at heel-strike, and not the diverse range of slipping disturbances presented by a complex environment. This project will focus on slips that occur across the gait cycle, and the reactive stabilization movements that follow. Participants from two age groups will be enrolled: younger (19 - 35 years of age) and older (65-79 years of age). Each participant will participate in 3 visits within the span of 1 week. On the initial visit, participants will perform informed consent, have demographic and body measurement information collected and complete medical and physical activity questionnaires. Upper and lower body strength will be measured using a hand-held dynamometer during the first and last visits. On each of the three visits, subjects will perform a gait variability assessment followed by a diverse slip perturbation assessment. Participants will complete four slips in each of early, middle, and late stance on each visit. Measures of falls, slip severity, and reactive stabilization movements will be calculated.

Detailed description

Recent research on slips has shown that use of perturbation training to improve specific motor skills to resist slips can vastly reduce falls. However, these interventions have only addressed slips occurring at heel-strike, and not the diverse range of slipping disturbances presented by a complex environment. This study will focus on slips that occur across the gait cycle, and the reactive stabilization movements that follow. Slips at different phases of the gait cycle have unique biomechanical contexts, and successful reactive stabilization movements are likely to be highly specific to that context. Yet nothing is known about the specificity of the repertoire of reactive stabilization movements to resist different slip conditions. Furthermore, variability in the repertoire of reactive stabilization movements is likely to affect the success/failure rate of resisting these disturbances. Thus, the objective of the proposed study is to determine the roles of variability and specificity in reactive stabilization movements to resist falling in diverse slipping conditions. A novel wearable apparatus for slipping perturbations (WASP) will deliver lifelike, unexpected slips in early, middle and late stance in younger (19 - 35 years of age) and older adults. Biomechanical analysis based on three-dimensional motion capture data of the reactive stabilization movements will generate novel results on the specificity and variability of protective stepping and arm swinging responses. The central hypothesis is that increases in specificity and decreases in variability of reactive stabilization movements will reduce fall rates. The long-term objective of this research is to support future studies into the repertoire of reactive stabilization movements across the full range of disturbances faced in navigating the environment. Each participant will participate in 3 visits within the span of 1 week. On the initial visit, participants will perform informed consent, have demographic and body measurement information collected and complete medical and physical activity questionnaires. Upper and lower body strength will be measured using a hand-held dynamometer during the first and last visits. On each of the three visits, subjects will perform a gait variability assessment followed by a diverse slip perturbation assessment. Before recording data, retroreflective markers will be placed on specific anatomical locations. These locations are defined to create a full-body dynamics model. For gait variability assessment, participants will be familiarized with the activity, then they will walk on a treadmill for 5 minutes at a prescribed pace of 1.3 meters per second while whole body kinematics are collected. Both linear and nonlinear measures of gait variability will be calculated to determine possible relationships between these measures and other outcome variables such as learning rate for reactive movements and fall rate. For diverse slip perturbation assessment, participants will walk overground back and forth across a large motion capture area. Previous studies show that walking speed is highly correlated with some outcome measures, specifically variations in whole body angular momentum, gait variability measures, and loss of balance following a slip. Therefore, gait speed will be controlled to 1.3 ± 0.2 m/s, a typically comfortable speed for both younger and older adults. Participants will be informed that a slip may occur, and that if slipped, they should attempt to maintain balance and continue walking. Participants will then be slipped without warning at a randomly chosen time after 1 to 3 minutes of walking. Slips will be administered to both feet simultaneously during early, middle or late stance in a randomized order. After each slip, participants will rest seated for 5 minutes. During this rest period, motion capture data and force data from the harness will be recorded, and the WASP will be reset for the next trial. Participants will complete four slips in each of early, middle, and late stance on each visit. Measures of falls, slip severity, and reactive stabilization movements will be calculated.

Interventions

OTHERAdministered Slip Perturbations

Participants will be exposed to a series of 12 unannounced slip perturbations while walking overground. These perturbations will be delivered at 3 different times within the gait cycle - early phase, middle phase, and late phase.

Sponsors

National Institute of General Medical Sciences (NIGMS)
CollaboratorNIH
University of Nebraska
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
BASIC_SCIENCE
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
19 Years to 79 Years
Healthy volunteers
Yes

Inclusion criteria

* Age 19-35 years for younger adults group, or age 65-79 years for older adults group.

Exclusion criteria

* Uncontrolled hypertension * Peripheral arterial disease * Vertigo * Meniere's disease * Chronic dizziness * History of back or lower extremity injury * Surgery that affects the subject's mobility * Any neurological disease or impairment that affects limits the ability to walk, e.g. Stroke, Parkinson's disease, Multiple sclerosis

Design outcomes

Primary

MeasureTime frameDescription
Fall RatesUp to 7 daysPercentage of trials which result in a fall. Falls are classified when the maximum force on the load cell in the harness system exceeds 30% body weight.

Secondary

MeasureTime frameDescription
Trunk Angular Momentum Following Slip PerturbationUp to 7 daysAngular momentum of the trunk is assessed during the period of time from the onset of slip perturbation until the subject recovers or falls.
Position of the Recovery Step Following Slip PerturbationUp to 7 daysPosition of the placement of the swing foot relative to the center of mass in the transverse plane following slip perturbation will be assessed.
Coefficient of Variation of Stride Time Time SeriesUp to 7 daysThe coefficient of variation of the time series of stride times during treadmill walking is assessed.
Total Heel Displacement of the Slipping Foot Following Slip PerturbationUp to 7 daysThe total displacement of the slipping foot from the point of administered slip perturbation, until the foot stops sliding is assessed.
Time of the Recovery Step Following Slip PerturbationUp to 7 daysTime of the placement of the swing foot relative to the onset of the administered slip perturbation is assessed
Sample Entropy of Stride Time Time SeriesUp to 7 daysThe sample entropy of the time series of stride times during treadmill walking is assessed.
Maximum Heel Sliding Velocity of the Slipping Foot Following Slip PerturbationUp to 7 daysThe maximum velocity of the slipping foot will be assessed within the period from the administered slip perturbation, until the foot stops sliding.

Countries

United States

Participant flow

Participants by arm

ArmCount
Slipping Perturbations - Younger Adults
The intervention involves exposing younger adult participants to a series of 12 unannounced slip perturbations while walking overground. These perturbations will be delivered at 3 different times within the gait cycle - early phase, middle phase, and late phase. Administered Slip Perturbations: Slips will be administered in early, middle or late phases of stance during overground walking.
22
Slipping Perturbations - Older Adults
The intervention involves exposing older adult participants to a series of 12 unannounced slip perturbations while walking overground. These perturbations will be delivered at 3 different times within the gait cycle - early phase, middle phase, and late phase. Administered Slip Perturbations: Slips will be administered in early, middle or late phases of stance during overground walking.
22
Total44

Baseline characteristics

CharacteristicSlipping Perturbations - Younger AdultsTotalSlipping Perturbations - Older Adults
Age, Categorical
<=18 years
0 Participants0 Participants0 Participants
Age, Categorical
>=65 years
0 Participants22 Participants22 Participants
Age, Categorical
Between 18 and 65 years
22 Participants22 Participants0 Participants
Ethnicity (NIH/OMB)
Hispanic or Latino
1 Participants1 Participants0 Participants
Ethnicity (NIH/OMB)
Not Hispanic or Latino
21 Participants43 Participants22 Participants
Ethnicity (NIH/OMB)
Unknown or Not Reported
0 Participants0 Participants0 Participants
Height171.3 centimeters
STANDARD_DEVIATION 15.2
170.6 centimeters
STANDARD_DEVIATION 13
169.9 centimeters
STANDARD_DEVIATION 11
Race (NIH/OMB)
American Indian or Alaska Native
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Asian
6 Participants6 Participants0 Participants
Race (NIH/OMB)
Black or African American
1 Participants1 Participants0 Participants
Race (NIH/OMB)
More than one race
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Native Hawaiian or Other Pacific Islander
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Unknown or Not Reported
0 Participants0 Participants0 Participants
Race (NIH/OMB)
White
15 Participants37 Participants22 Participants
Sex: Female, Male
Female
10 Participants21 Participants11 Participants
Sex: Female, Male
Male
12 Participants23 Participants11 Participants
Weight73.6 kilograms
STANDARD_DEVIATION 12.8
77.5 kilograms
STANDARD_DEVIATION 15.6
81.3 kilograms
STANDARD_DEVIATION 17.3

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
deaths
Total, all-cause mortality
0 / 220 / 22
other
Total, other adverse events
0 / 220 / 22
serious
Total, serious adverse events
0 / 220 / 22

Outcome results

Primary

Fall Rates

Percentage of trials which result in a fall. Falls are classified when the maximum force on the load cell in the harness system exceeds 30% body weight.

Time frame: Up to 7 days

Population: Participants were administered slips 12 times in a session for each of 3 sessions.

ArmMeasureValue (NUMBER)
Slipping Perturbations - Younger AdultsFall Rates18.3 Percentage of trials resulting in falls.
Slipping Perturbations - Older AdultsFall Rates16.0 Percentage of trials resulting in falls.
Secondary

Coefficient of Variation of Stride Time Time Series

The coefficient of variation of the time series of stride times during treadmill walking is assessed.

Time frame: Up to 7 days

Secondary

Maximum Heel Sliding Velocity of the Slipping Foot Following Slip Perturbation

The maximum velocity of the slipping foot will be assessed within the period from the administered slip perturbation, until the foot stops sliding.

Time frame: Up to 7 days

Secondary

Position of the Recovery Step Following Slip Perturbation

Position of the placement of the swing foot relative to the center of mass in the transverse plane following slip perturbation will be assessed.

Time frame: Up to 7 days

Secondary

Sample Entropy of Stride Time Time Series

The sample entropy of the time series of stride times during treadmill walking is assessed.

Time frame: Up to 7 days

Secondary

Time of the Recovery Step Following Slip Perturbation

Time of the placement of the swing foot relative to the onset of the administered slip perturbation is assessed

Time frame: Up to 7 days

Secondary

Total Heel Displacement of the Slipping Foot Following Slip Perturbation

The total displacement of the slipping foot from the point of administered slip perturbation, until the foot stops sliding is assessed.

Time frame: Up to 7 days

Secondary

Trunk Angular Momentum Following Slip Perturbation

Angular momentum of the trunk is assessed during the period of time from the onset of slip perturbation until the subject recovers or falls.

Time frame: Up to 7 days

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