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Ankle Robot to Reduce Foot Drop in Stroke

8 mei 2020 bijgewerkt door: VA Office of Research and Development

Adaptive Ankle Robot Control System to Reduce Foot-drop in Chronic Stroke

Deficits in ankle control after stroke can lead to foot drop, resulting in inefficient, aberrant gait and an elevated falls risk. Using a novel ankle robot and newly invented adaptive control system, this study tests whether robotic-assisted treadmill training will improve gait and balance functions in chronic stroke survivors with foot drop impairment. It is hypothesized that, compared to treadmill training alone, integrating adaptive ankle robotics with treadmill training will reduce drop foot during independent overground walking, resulting in greater mobility, improved postural control, and reduced fall risk.

Studie Overzicht

Gedetailleerde beschrijving

This proposal investigates a novel ankle robot (anklebot) adaptive control approach integrated with treadmill training to reduce foot drop and improve mobility function in chronic hemiparetic stroke survivors. Currently, stroke survivors with foot drop are trained to live with a cane or other assistive device, and often ankle foot orthotics (AFOs) for safety. Neither mediates task-practice or neuromotor recovery.

The investigators have developed an adaptive anklebot controller that detects gait cycle sub-events for precise timing of graded robotics assistance to enable deficit severity-adjusted ankle motor learning in the context of walking. The investigators' pilot findings show that 6 weeks treadmill training with anklebot (TMR) timed to assist swing phase dorsiflexion only is more effective than treadmill alone (TM) to improve free-walking swing dorsiflexion at foot strike, floor-walking speed, and the benefits are retained at 6 weeks post-training. Notably, swing-phase TMR training improved paretic leg push-off, and reduced center-of-pressure sway on standing balance, indicating potential benefits to other elements of gait and balance, beyond those robotically targeted toward foot drop.

This randomized study investigates the hypothesis that 6 weeks TMR is more effective to improve durably gait biomechanics, static, and dynamic balance, and mobility function in chronic stroke survivors with dorsiflexion deficits, compared to TM alone. Aims are to determine the compare effectiveness of 6 weeks TMR vs. TM alone on:

  1. Independent gait function indexed by gait velocity, swing-phase DF (dorsiflexion), terminal stance push-off.
  2. Balance function indexed by measures of postural sway (CoP), asymmetric loading in quiet standing, peak paretic A-P forces in non-paretic gait initiation, and standardized scales for balance and fall risk.
  3. Long-term mobility outcomes, assessed by repeated measures of all key gait and balance outcomes at 6 weeks and 3 months after formal training cessation.

Studietype

Ingrijpend

Inschrijving (Werkelijk)

45

Fase

  • Niet toepasbaar

Contacten en locaties

In dit gedeelte vindt u de contactgegevens van degenen die het onderzoek uitvoeren en informatie over waar dit onderzoek wordt uitgevoerd.

Studie Locaties

    • Maryland
      • Baltimore, Maryland, Verenigde Staten, 21201
        • Baltimore VA Medical Center VA Maryland Health Care System, Baltimore, MD

Deelname Criteria

Onderzoekers zoeken naar mensen die aan een bepaalde beschrijving voldoen, de zogenaamde geschiktheidscriteria. Enkele voorbeelden van deze criteria zijn iemands algemene gezondheidstoestand of eerdere behandelingen.

Geschiktheidscriteria

Leeftijden die in aanmerking komen voor studie

18 jaar en ouder (Volwassen, Oudere volwassene)

Accepteert gezonde vrijwilligers

Nee

Geslachten die in aanmerking komen voor studie

Allemaal

Beschrijving

Inclusion Criteria:

  • Ischemic or hemorrhagic stroke > 2 months prior in men or women
  • Residual hemiparesis of the lower extremity that includes symptoms of foot drop
  • Capable of ambulating on a treadmill with handrail support
  • Already completed all conventional physical therapy
  • Adequate language and cognitive function to provide informed consent and participate in testing and training

Exclusion Criteria:

  • Cardiac history of:

    • Unstable angina
    • Recent (< 3 months) myocardial infarction
    • Congestive heart failure (NYHA category II or higher)
    • Hemodynamic valvular dysfunction
    • Hypertension that is a contraindication for a bout of treadmill training (>160/100 mmHg on two assessments)
  • Medical history of:

    • Recent hospitalization (< 3 months) for any serious condition leading to significant bed-rest or reduction in mobility function
    • Symptomatic peripheral arterial occlusive disease
    • Orthopedic or chronic pain conditions restricting exercise
    • Pulmonary failure requiring oxygen
    • Uncompensated renal failure
    • Active cancer
  • Neurological history and exam consistent with:

    • Dementia
    • Receptive or global aphasia that confounds testing and training, operationally defined as unable to follow 2-point commands
    • Non-stroke neurological disorder restricting exercise (e.g. Parkinson's Syndrome, myopathy)
    • Untreated major depression

Studie plan

Dit gedeelte bevat details van het studieplan, inclusief hoe de studie is opgezet en wat de studie meet.

Hoe is de studie opgezet?

Ontwerpdetails

  • Primair doel: Behandeling
  • Toewijzing: Gerandomiseerd
  • Interventioneel model: Parallelle opdracht
  • Masker: Enkel

Wapens en interventies

Deelnemersgroep / Arm
Interventie / Behandeling
Experimenteel: Treadmill+anklebot
This group will receive gait training on a treadmill while wearing the anklebot with the adaptive control system.
This intervention employs the use of the adaptive anklebot control system to complement treadmill exercise training over a 6-week intervention period.
Andere namen:
  • TMR
Actieve vergelijker: Treadmill only
This group will receive gait training on a treadmill, without use of the anklebot.
This intervention employs the use of a treadmill for gait exercise training over a 6-week intervention period
Andere namen:
  • TM

Wat meet het onderzoek?

Primaire uitkomstmaten

Uitkomstmaat
Maatregel Beschrijving
Tijdsspanne
Gait Velocity During Self-selected Overground Walking
Tijdsspanne: Change from baseline to: Post 6-week training, 6 weeks after completion, and 3 (or 6) months after completion
Gait velocity during self-selected overground walking measured in cm/sec
Change from baseline to: Post 6-week training, 6 weeks after completion, and 3 (or 6) months after completion
Anterior-posterior Propulsion Forces of Paretic Side During Gait
Tijdsspanne: Change from baseline to: Post 6-weeks training, 6 weeks after completion, and 3 (or 6) months
Newtons: anterior-posterior force generated during push-off phase of the gait cycle
Change from baseline to: Post 6-weeks training, 6 weeks after completion, and 3 (or 6) months
Peak Dorsiflexion Angle During Swing Phase of Gait
Tijdsspanne: Change from baseline to: Post 6-week training, 6 weeks after completion, and 3 (or 6) months after completion
Degrees; extent of ankle dorsiflexion to enable foot clearance
Change from baseline to: Post 6-week training, 6 weeks after completion, and 3 (or 6) months after completion
Postural Sway Areas During Quiet Standing
Tijdsspanne: Change from baseline to: Post 6-week training, 6 weeks after completion, and 3 (or 6) months
cm^2; extent of postural deviations to assess static postural control
Change from baseline to: Post 6-week training, 6 weeks after completion, and 3 (or 6) months
Ratio of Asymmetric Loading in Quiet Standing
Tijdsspanne: Change from baseline to: Post 6-week training, 6 weeks after completion, and 3 (or 6) months
Ratio of Newtons of force per each leg (paretic/nonparetic) while standing quietly
Change from baseline to: Post 6-week training, 6 weeks after completion, and 3 (or 6) months
Peak Paretic Push Off Forces During Gait Initiation
Tijdsspanne: Change from baseline to: Post 6-week training, 6 weeks after completion, and 3 (or 6) months
Newtons; magnitude of forward ground reaction forces
Change from baseline to: Post 6-week training, 6 weeks after completion, and 3 (or 6) months

Medewerkers en onderzoekers

Hier vindt u mensen en organisaties die betrokken zijn bij dit onderzoek.

Onderzoekers

  • Hoofdonderzoeker: Steven J Kittner, Baltimore VA Medical Center VA Maryland Health Care System, Baltimore, MD

Studie record data

Deze datums volgen de voortgang van het onderzoeksdossier en de samenvatting van de ingediende resultaten bij ClinicalTrials.gov. Studieverslagen en gerapporteerde resultaten worden beoordeeld door de National Library of Medicine (NLM) om er zeker van te zijn dat ze voldoen aan specifieke kwaliteitscontrolenormen voordat ze op de openbare website worden geplaatst.

Bestudeer belangrijke data

Studie start (Werkelijk)

1 september 2015

Primaire voltooiing (Werkelijk)

1 april 2019

Studie voltooiing (Werkelijk)

30 juni 2019

Studieregistratiedata

Eerst ingediend

19 juni 2015

Eerst ingediend dat voldeed aan de QC-criteria

24 juni 2015

Eerst geplaatst (Schatting)

29 juni 2015

Updates van studierecords

Laatste update geplaatst (Werkelijk)

20 mei 2020

Laatste update ingediend die voldeed aan QC-criteria

8 mei 2020

Laatst geverifieerd

1 mei 2020

Meer informatie

Termen gerelateerd aan deze studie

Plan Individuele Deelnemersgegevens (IPD)

Bent u van plan om gegevens van individuele deelnemers (IPD) te delen?

NEE

Informatie over medicijnen en apparaten, studiedocumenten

Bestudeert een door de Amerikaanse FDA gereguleerd geneesmiddel

Nee

Bestudeert een door de Amerikaanse FDA gereguleerd apparaatproduct

Ja

product vervaardigd in en geëxporteerd uit de V.S.

Nee

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