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Energy Consumption and Cardiorespiratory Load During Overground Gait Training With a Wearable Exoskeleton After Stroke

Primary Purpose

Stroke

Status
Terminated
Phase
Not Applicable
Locations
Belgium
Study Type
Interventional
Intervention
Ekso GT gait training with high swing assistance
Ekso GT gait training with neutral swing assistance
Ekso GT gait training with high swing resistance
Sponsored by
Vrije Universiteit Brussel
About
Eligibility
Locations
Arms
Outcomes
Full info

About this trial

This is an interventional basic science trial for Stroke focused on measuring Wearable Exoskeleton, Stroke, Energy Consumption, Cardiorespiratory Load

Eligibility Criteria

18 Years - undefined (Adult, Older Adult)All SexesDoes not accept healthy volunteers

Included will be persons who

  • Had a stroke
  • Cannot walk independently or can walk independently on level ground, but still require help on stairs, slopes or uneven surfaces (FAC 0 - 4)

Excluded will be persons who

  • Can walk independently on level ground, stairs, slopes and uneven surfaces (FAC 5)
  • Have musculoskeletal problems (other than stroke) affecting the ability to walk
  • Have concurrent pulmonary diseases (e.g. asthma)
  • Have unstable cardiovascular conditions
  • Have concurrent neurological diseases (e.g. Parkinson's Disease)
  • Have communicative and/or cognitive problems affecting the ability to understand or follow instructions
  • Present contra-indications for using the Ekso GT (according to manufacturer's instructions)

    • Severe concurrent medical diseases (infections, circulatory, heart or lung, pressure sores)
    • Severe spasticity (Ashworth 4)
    • Range of motion restrictions that would prevent a patient from achieving normal, reciprocal gait pattern, or would restrict a patient from completing normal sit-to-stand or stand-to-sit transitions

      • Bilateral hip flexion < 110°
      • Knee flexion contracture > 12°
      • Inability to achieve 0° neutral angle dorsiflexion with knee flexion ≤ 12°
    • Weight ≥ 100 kg
    • Hip width < 35.8 cm or > 45.6 cm
    • Upper leg length < 51 cm or > 61.4 cm
    • Lower leg length < 48 cm or > 63.4 cm
    • Upper leg length discrepancy > 0.5 inch (1.3 cm)
    • Lower leg length discrepancy > 0.75 inch (1.9 cm)
    • Unstable spine, unhealed limbs or pelvic fractures
    • Unhealthy bone density
    • Heterotopic ossification
    • Significant contractures
    • Elbows and shoulders are unable to support crutches, walker or cane
    • Psychiatric or cognitive situations that may interfere with proper operation of the device

Sites / Locations

  • REVAlution center

Arms of the Study

Arm 1

Arm Type

Experimental

Arm Label

Ekso GT gait training

Arm Description

Participants will be measured during three Ekso GT gait trainings: 20-minute Ekso GT gait training with high swing assistance 20-minute Ekso GT gait training with neutral swing assistance 20-minute Ekso GT gait training with high swing resistance. Each training will be performed on a separate day in a randomized order (within one week and controlled for time of day).

Outcomes

Primary Outcome Measures

Net oxygen cost (OC, ml/kg/m) at minute 5 of walking
Net oxygen consumption (oxygen consumption (ml/kg/min) during walking minus during rest) divided by the walking speed (m/min)
Net oxygen cost (OC, ml/kg/m) at minute 10 of walking
Net oxygen consumption (oxygen consumption (ml/kg/min) during walking minus during rest) divided by the walking speed (m/min)
Net oxygen cost (OC, ml/kg/m) at minute 15 of walking
Net oxygen consumption (oxygen consumption (ml/kg/min) during walking minus during rest) divided by the walking speed (m/min)
Net oxygen cost (OC, ml/kg/m) at minute 20 of walking
Net oxygen consumption (oxygen consumption (ml/kg/min) during walking minus during rest) divided by the walking speed (m/min)
Net heart rate (HR, beats/min) at minute 5 of walking
Heart rate during walking (beats/min) minus resting heart rate
Net heart rate (HR, beats/min) at minute 10 of walking
Heart rate during walking (beats/min) minus resting heart rate
Net heart rate (HR, beats/min) at minute 15 of walking
Heart rate during walking (beats/min) minus resting heart rate
Net heart rate (HR, beats/min) at minute 20 of walking
Heart rate during walking (beats/min) minus resting heart rate
Net minute ventilation (VE, L/min) at minute 5 of walking
The amount of air in- or exhaled per minute (L/min) during walking minus during rest
Net minute ventilation (VE, L/min) at minute 10 of walking
The amount of air in- or exhaled per minute (L/min) during walking minus during rest
Net minute ventilation (VE, L/min) at minute 15 of walking
The amount of air in- or exhaled per minute (L/min) during walking minus during rest
Net minute ventilation (VE, L/min) at minute 20 of walking
The amount of air in- or exhaled per minute (L/min) during walking minus during rest

Secondary Outcome Measures

Net Rating of Perceived Exertion (RPE, 6-20) at minute 5 of walking
Rating of perceived effort, strain and/or fatigue during walking, pointed on a 15-point Borg scale (6-20) during walking minus during rest
Net Rating of Perceived Exertion (RPE, 6-20) at minute 10 of walking
Rating of perceived effort, strain and/or fatigue during walking, pointed on a 15-point Borg scale (6-20) during walking minus during rest
Net Rating of Perceived Exertion (RPE, 6-20) at minute 15 of walking
Rating of perceived effort, strain and/or fatigue during walking, pointed on a 15-point Borg scale (6-20) during walking minus during rest
Net Rating of Perceived Exertion (RPE, 6-20) at minute 20 of walking
Rating of perceived effort, strain and/or fatigue during walking, pointed on a 15-point Borg scale (6-20) during walking minus during rest
Percentage maximal heart rate (%HRmax) at minute 5 of walking
Heart rate divided by predicted maximum heart rate.
Percentage maximal heart rate (%HRmax) at minute 10 of walking
Heart rate divided by predicted maximum heart rate.
Percentage maximal heart rate (%HRmax) at minute 15 of walking
Heart rate divided by predicted maximum heart rate.
Percentage maximal heart rate (%HRmax) at minute 20 of walking
Heart rate divided by predicted maximum heart rate.
Percentage heart rate reserve (%HRR) at minute 5 of walking
Heart rate during walking minus during rest divided by predicted heart rate reserve (i.e. predicted maximum heart rate minus resting heart rate)
Percentage heart rate reserve (%HRR) at minute 10 of walking
Heart rate during walking minus during rest divided by predicted heart rate reserve (i.e. predicted maximum heart rate minus resting heart rate)
Percentage heart rate reserve (%HRR) at minute 15 of walking
Heart rate during walking minus during rest divided by predicted heart rate reserve (i.e. predicted maximum heart rate minus resting heart rate)
Percentage heart rate reserve (%HRR) at minute 20 of walking
Heart rate during walking minus during rest divided by predicted heart rate reserve (i.e. predicted maximum heart rate minus resting heart rate)
Metabolic Equivalent of Task (MET) at minute 5 of walking
Expression of the intensity of walking defined as the oxygen consumption (ml/kg/min) during walking divided by the oxygen consumption (ml/kg/min) in rest
Metabolic Equivalent of Task (MET) at minute 10 of walking
Expression of the intensity of walking defined as the oxygen consumption (ml/kg/min) during walking divided by the oxygen consumption (ml/kg/min) in rest
Metabolic Equivalent of Task (MET) at minute 15 of walking
Expression of the intensity of walking defined as the oxygen consumption (ml/kg/min) during walking divided by the oxygen consumption (ml/kg/min) in rest
Metabolic Equivalent of Task (MET) at minute 20 of walking
Expression of the intensity of walking defined as the oxygen consumption (ml/kg/min) during walking divided by the oxygen consumption (ml/kg/min) in rest

Full Information

First Posted
November 30, 2017
Last Updated
February 5, 2019
Sponsor
Vrije Universiteit Brussel
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1. Study Identification

Unique Protocol Identification Number
NCT03367091
Brief Title
Energy Consumption and Cardiorespiratory Load During Overground Gait Training With a Wearable Exoskeleton After Stroke
Official Title
Energy Consumption and Cardiorespiratory Load During Overground Gait Training With a Wearable Exoskeleton After Stroke: the Effect of the Level of Swing Assistance
Study Type
Interventional

2. Study Status

Record Verification Date
February 2019
Overall Recruitment Status
Terminated
Why Stopped
Organisational/Recruitment Issues
Study Start Date
July 9, 2018 (Actual)
Primary Completion Date
December 31, 2018 (Actual)
Study Completion Date
December 31, 2018 (Actual)

3. Sponsor/Collaborators

Responsible Party, by Official Title
Principal Investigator
Name of the Sponsor
Vrije Universiteit Brussel

4. Oversight

Studies a U.S. FDA-regulated Drug Product
No
Studies a U.S. FDA-regulated Device Product
No
Data Monitoring Committee
No

5. Study Description

Brief Summary
To investigate acute metabolic and cardiorespiratory responses during overground gait training with a wearable exoskeleton in persons after stroke
Detailed Description
RESEARCH AIMS: To investigate the effect of the level of swing assistance on the acute metabolic and cardiorespiratory responses during overground gait training with a wearable exoskeleton in persons after stroke To investigate if there is an interaction-effect between the level of swing assistance and the duration of walking To compare the exercise intensity to aerobic training recommendations STUDY DESIGN: An experimental, 1-group trial with randomized crossover design. PATIENT RECRUITMENT: Participants will be recruited at the AZ Herentals (Herentals, Belgium). LOCATION: The trial will be conducted at the REVAlution Center (Herentals, Belgium). ELIGIBILITY CRITERIA: See section "Eligibility" PROCEDURES: Before the start of the study, informed consent and baseline patient characteristics will be collected. Next, participants will be measured during three training sessions with the Ekso GT SmartAssist: 20-minute training with high swing assistance 20-minute training with neutral swing assistance 20-minute training with high swing resistance Trainings will be performed on a separate day in a randomized order (within one week and controlled for time of day). Following settings will be used in all three conditions: sitting program ("Min lean"); standing program ("Auto lean"); step initiation program ("ProStep+"), training mode ("Off"), SmartAssist option ("2Free"); and stance support ("Low"). The level of stance support and swing assistance will be set symmetrically for the affected and non-affected side. During training, participants will walk back and forth at a self-selected walking speed in a 30m hall way using a cane at the non-affected side. Prior to the experimental conditions, participants will have had three training sessions in the Ekso GT. RESTRICTIONS & PROHIBITIONS: Participants will be instructed to not consume food, alcohol, caffeine or nicotine at least 3h prior to the intervention. Usual medication intake will be allowed with small amounts of water. MATERIALS: The Ekso GT robotic exoskeleton with SmartAssist (Ekso Bionics Inc., USA) will be used during the overground training sessions. A flexible facemask (adult facemask, small/medium, Cortex, Germany), lightweight chest carrying gas analysis system (Metamax 3B, Cortex, Germany) and Bluetooth heart rate belt (Polar H7, Polar Electro, Finland) will be used to measure metabolic and cardiorespiratory parameters. At the start of each measurement, gas (room air and reference gas (17.4% O2 and 5.1% CO2)) and volume (3L syringe) calibrations of the breath-by-breath gas analysis system will be performed in accordance with the manufacturer's instructions. OUTCOMES: See section "Outcome Measures" DATA-ANALYSES: Descriptive statistics will be calculated for baseline patient characteristics. To investigate the effect of level of swing assistance and duration, a repeated measures ANOVA (within factor duration and within factor assistance level) will be conducted (interaction-effect time x duration, main effect assistance level and main effect duration). In case of significant differences, posthoc analyses will be interpreted. The walking speed will be considered as a covariate in the ANOVA analysis (in case significant different between conditions). Significance level will be set at 5%.

6. Conditions and Keywords

Primary Disease or Condition Being Studied in the Trial, or the Focus of the Study
Stroke
Keywords
Wearable Exoskeleton, Stroke, Energy Consumption, Cardiorespiratory Load

7. Study Design

Primary Purpose
Basic Science
Study Phase
Not Applicable
Interventional Study Model
Single Group Assignment
Masking
None (Open Label)
Allocation
N/A
Enrollment
1 (Actual)

8. Arms, Groups, and Interventions

Arm Title
Ekso GT gait training
Arm Type
Experimental
Arm Description
Participants will be measured during three Ekso GT gait trainings: 20-minute Ekso GT gait training with high swing assistance 20-minute Ekso GT gait training with neutral swing assistance 20-minute Ekso GT gait training with high swing resistance. Each training will be performed on a separate day in a randomized order (within one week and controlled for time of day).
Intervention Type
Other
Intervention Name(s)
Ekso GT gait training with high swing assistance
Intervention Description
Participant will walk for 20-minutes in the Ekso GT SmartAssist with the swing assistance set at "high assistance"
Intervention Type
Other
Intervention Name(s)
Ekso GT gait training with neutral swing assistance
Intervention Description
Participant will walk for 20-minutes in the Ekso GT SmartAssist with the swing assistance set at "neutral"
Intervention Type
Other
Intervention Name(s)
Ekso GT gait training with high swing resistance
Intervention Description
Participant will walk for 20-minutes in the Ekso GT SmartAssist with the swing assistance set at "high resistance"
Primary Outcome Measure Information:
Title
Net oxygen cost (OC, ml/kg/m) at minute 5 of walking
Description
Net oxygen consumption (oxygen consumption (ml/kg/min) during walking minus during rest) divided by the walking speed (m/min)
Time Frame
Minute 5 of 20-minute walking period
Title
Net oxygen cost (OC, ml/kg/m) at minute 10 of walking
Description
Net oxygen consumption (oxygen consumption (ml/kg/min) during walking minus during rest) divided by the walking speed (m/min)
Time Frame
Minute 10 of 20-minute walking period
Title
Net oxygen cost (OC, ml/kg/m) at minute 15 of walking
Description
Net oxygen consumption (oxygen consumption (ml/kg/min) during walking minus during rest) divided by the walking speed (m/min)
Time Frame
Minute 15 of 20-minute walking period
Title
Net oxygen cost (OC, ml/kg/m) at minute 20 of walking
Description
Net oxygen consumption (oxygen consumption (ml/kg/min) during walking minus during rest) divided by the walking speed (m/min)
Time Frame
Minute 20 of 20-minute walking period
Title
Net heart rate (HR, beats/min) at minute 5 of walking
Description
Heart rate during walking (beats/min) minus resting heart rate
Time Frame
Minute 5 of 20-minute walking period
Title
Net heart rate (HR, beats/min) at minute 10 of walking
Description
Heart rate during walking (beats/min) minus resting heart rate
Time Frame
Minute 10 of 20-minute walking period
Title
Net heart rate (HR, beats/min) at minute 15 of walking
Description
Heart rate during walking (beats/min) minus resting heart rate
Time Frame
Minute 15 of 20-minute walking period
Title
Net heart rate (HR, beats/min) at minute 20 of walking
Description
Heart rate during walking (beats/min) minus resting heart rate
Time Frame
Minute 20 of 20-minute walking period
Title
Net minute ventilation (VE, L/min) at minute 5 of walking
Description
The amount of air in- or exhaled per minute (L/min) during walking minus during rest
Time Frame
Minute 5 of 20-minute walking period
Title
Net minute ventilation (VE, L/min) at minute 10 of walking
Description
The amount of air in- or exhaled per minute (L/min) during walking minus during rest
Time Frame
Minute 10 of 20-minute walking period
Title
Net minute ventilation (VE, L/min) at minute 15 of walking
Description
The amount of air in- or exhaled per minute (L/min) during walking minus during rest
Time Frame
Minute 15 of 20-minute walking period
Title
Net minute ventilation (VE, L/min) at minute 20 of walking
Description
The amount of air in- or exhaled per minute (L/min) during walking minus during rest
Time Frame
Minute 20 of 20-minute walking period
Secondary Outcome Measure Information:
Title
Net Rating of Perceived Exertion (RPE, 6-20) at minute 5 of walking
Description
Rating of perceived effort, strain and/or fatigue during walking, pointed on a 15-point Borg scale (6-20) during walking minus during rest
Time Frame
Minute 5 of 20-minute walking period
Title
Net Rating of Perceived Exertion (RPE, 6-20) at minute 10 of walking
Description
Rating of perceived effort, strain and/or fatigue during walking, pointed on a 15-point Borg scale (6-20) during walking minus during rest
Time Frame
Minute 10 of 20-minute walking period
Title
Net Rating of Perceived Exertion (RPE, 6-20) at minute 15 of walking
Description
Rating of perceived effort, strain and/or fatigue during walking, pointed on a 15-point Borg scale (6-20) during walking minus during rest
Time Frame
Minute 15 of 20-minute walking period
Title
Net Rating of Perceived Exertion (RPE, 6-20) at minute 20 of walking
Description
Rating of perceived effort, strain and/or fatigue during walking, pointed on a 15-point Borg scale (6-20) during walking minus during rest
Time Frame
Minute 20 of 20-minute walking period
Title
Percentage maximal heart rate (%HRmax) at minute 5 of walking
Description
Heart rate divided by predicted maximum heart rate.
Time Frame
Minute 5 of 20-minute walking period
Title
Percentage maximal heart rate (%HRmax) at minute 10 of walking
Description
Heart rate divided by predicted maximum heart rate.
Time Frame
Minute 10 of 20-minute walking period
Title
Percentage maximal heart rate (%HRmax) at minute 15 of walking
Description
Heart rate divided by predicted maximum heart rate.
Time Frame
Minute 15 of 20-minute walking period
Title
Percentage maximal heart rate (%HRmax) at minute 20 of walking
Description
Heart rate divided by predicted maximum heart rate.
Time Frame
Minute 20 of 20-minute walking period
Title
Percentage heart rate reserve (%HRR) at minute 5 of walking
Description
Heart rate during walking minus during rest divided by predicted heart rate reserve (i.e. predicted maximum heart rate minus resting heart rate)
Time Frame
Minute 5 of 20-minute walking period
Title
Percentage heart rate reserve (%HRR) at minute 10 of walking
Description
Heart rate during walking minus during rest divided by predicted heart rate reserve (i.e. predicted maximum heart rate minus resting heart rate)
Time Frame
Minute 10 of 20-minute walking period
Title
Percentage heart rate reserve (%HRR) at minute 15 of walking
Description
Heart rate during walking minus during rest divided by predicted heart rate reserve (i.e. predicted maximum heart rate minus resting heart rate)
Time Frame
Minute 15 of 20-minute walking period
Title
Percentage heart rate reserve (%HRR) at minute 20 of walking
Description
Heart rate during walking minus during rest divided by predicted heart rate reserve (i.e. predicted maximum heart rate minus resting heart rate)
Time Frame
Minute 20 of 20-minute walking period
Title
Metabolic Equivalent of Task (MET) at minute 5 of walking
Description
Expression of the intensity of walking defined as the oxygen consumption (ml/kg/min) during walking divided by the oxygen consumption (ml/kg/min) in rest
Time Frame
Minute 5 of 20-minute walking period
Title
Metabolic Equivalent of Task (MET) at minute 10 of walking
Description
Expression of the intensity of walking defined as the oxygen consumption (ml/kg/min) during walking divided by the oxygen consumption (ml/kg/min) in rest
Time Frame
Minute 10 of 20-minute walking period
Title
Metabolic Equivalent of Task (MET) at minute 15 of walking
Description
Expression of the intensity of walking defined as the oxygen consumption (ml/kg/min) during walking divided by the oxygen consumption (ml/kg/min) in rest
Time Frame
Minute 15 of 20-minute walking period
Title
Metabolic Equivalent of Task (MET) at minute 20 of walking
Description
Expression of the intensity of walking defined as the oxygen consumption (ml/kg/min) during walking divided by the oxygen consumption (ml/kg/min) in rest
Time Frame
Minute 20 of 20-minute walking period
Other Pre-specified Outcome Measures:
Title
Walking speed (m/min) at minute 5 of walking
Description
The distance (meters) walked per minute
Time Frame
Minute 5 of 20-minute walking period
Title
Walking speed (m/min) at minute 10 of walking
Description
The distance (meters) walked per minute
Time Frame
Minute 10 of 20-minute walking period
Title
Walking speed (m/min) at minute 15 of walking
Description
The distance (meters) walked per minute
Time Frame
Minute 15 of 20-minute walking period
Title
Walking speed (m/min) at minute 20 of walking
Description
The distance (meters) walked per minute
Time Frame
Minute 20 of 20-minute walking period

10. Eligibility

Sex
All
Minimum Age & Unit of Time
18 Years
Accepts Healthy Volunteers
No
Eligibility Criteria
Included will be persons who Had a stroke Cannot walk independently or can walk independently on level ground, but still require help on stairs, slopes or uneven surfaces (FAC 0 - 4) Excluded will be persons who Can walk independently on level ground, stairs, slopes and uneven surfaces (FAC 5) Have musculoskeletal problems (other than stroke) affecting the ability to walk Have concurrent pulmonary diseases (e.g. asthma) Have unstable cardiovascular conditions Have concurrent neurological diseases (e.g. Parkinson's Disease) Have communicative and/or cognitive problems affecting the ability to understand or follow instructions Present contra-indications for using the Ekso GT (according to manufacturer's instructions) Severe concurrent medical diseases (infections, circulatory, heart or lung, pressure sores) Severe spasticity (Ashworth 4) Range of motion restrictions that would prevent a patient from achieving normal, reciprocal gait pattern, or would restrict a patient from completing normal sit-to-stand or stand-to-sit transitions Bilateral hip flexion < 110° Knee flexion contracture > 12° Inability to achieve 0° neutral angle dorsiflexion with knee flexion ≤ 12° Weight ≥ 100 kg Hip width < 35.8 cm or > 45.6 cm Upper leg length < 51 cm or > 61.4 cm Lower leg length < 48 cm or > 63.4 cm Upper leg length discrepancy > 0.5 inch (1.3 cm) Lower leg length discrepancy > 0.75 inch (1.9 cm) Unstable spine, unhealed limbs or pelvic fractures Unhealthy bone density Heterotopic ossification Significant contractures Elbows and shoulders are unable to support crutches, walker or cane Psychiatric or cognitive situations that may interfere with proper operation of the device
Overall Study Officials:
First Name & Middle Initial & Last Name & Degree
Eric Kerckhofs, Prof, PhD
Organizational Affiliation
Vrije Universiteit Brussel
Official's Role
Study Chair
First Name & Middle Initial & Last Name & Degree
Eva Swinnen, Prof, PhD
Organizational Affiliation
Vrije Universiteit Brussel
Official's Role
Study Director
First Name & Middle Initial & Last Name & Degree
Nina Lefeber, PhD student
Organizational Affiliation
Vrije Universiteit Brussel
Official's Role
Principal Investigator
Facility Information:
Facility Name
REVAlution center
City
Herentals
State/Province
Antwerp
ZIP/Postal Code
2200
Country
Belgium

12. IPD Sharing Statement

Plan to Share IPD
Undecided

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Energy Consumption and Cardiorespiratory Load During Overground Gait Training With a Wearable Exoskeleton After Stroke

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