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Arm and Leg Cycling Exercise After Stroke

Adjunct Locomotor Training to Improve Walking Ability After Stroke

Status
UNKNOWN
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT02232867
Enrollment
20
Registered
2014-09-05
Start date
2011-07-31
Completion date
2015-03-31
Last updated
2014-09-05

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

Conditions

Stroke

Keywords

rehabilitation, stroke, walking, interlimb connections

Brief summary

It has been found that arm and leg cycling is similar to walking in terms of the muscle activation patterns and joint ranges of motion. In addition, arm and leg cycling and walking activate similar neural pathways. Another advantage of arm and leg cycling is that it involves coordination of all four limbs in a rhythmic movement. This may be particularly beneficial given previous findings that arm movement contributes to the activation of leg muscles during walking in humans. This is achieved with interconnected neural pathways that link the arms to the legs. These neural interlimb connections remain intact in stroke victims, such that maximizing the contribution of the arms to the legs may increase coordination for walking. Thus, the objectives of this research are to determine if arm and leg cycling can be used to increase the strength of interlimb connections and if this helps to improve walking ability in a post-stroke population. It is hypothesized that arm and leg cycling will transfer to improvements in walking in a post stroke population.

Detailed description

For those who have suffered a stroke, damage to the brain can result in a decreased ability to walk, thus decreasing quality of life in a significant way. Traditionally, body weight supported treadmill training has been used for walking rehabilitation; however, this therapy requires specialized technicians, equipment, and facilities. Arm and leg cycle ergometers, a device commonly found in a gym, could provide an inexpensive and readily accessible means for walking rehabilitation.

Interventions

BEHAVIORALArm and Leg Cycling Exercise Program

Participants will perform arm and leg cycling training three times a week, with 30 minutes of aggregate exercise time per session. To evaluate the physiological cost of exercise, heart rate and a rating of perceived exertion will be collected. The progressive element of this training will include increasing the resistance of the ergometer over the six weeks in order to maintain the same relative exercise stress.

Sponsors

Heart and Stroke Foundation of Canada
CollaboratorOTHER
Canadian Stroke Network
CollaboratorOTHER
University of Victoria
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
TREATMENT
Masking
NONE

Eligibility

Sex/Gender
ALL
Healthy volunteers
No

Inclusion criteria

* stroke * lives within the Victoria, Vancouver Island, and Vancouver mainland communities

Exclusion criteria

* inability to stand for 5 minutes unassisted

Design outcomes

Primary

MeasureTime frameDescription
Change in Treadmill Walking CharacteristicsBaseline, immediately post-intervention (average of 4 days following last exercise session)Treadmill walking characteristics will be gauged via a customized analysis of muscle activity patterns and lower limb joint kinematics. Walking frequency, symmetry, and timing will also be analyzed

Secondary

MeasureTime frameDescription
Fugl-Meyer AssessmentBaseline, immediately post-intervention (average of 4 days following the last exercise session)The Fugl-Meyer Assessment is a stroke-specific, performance-based impairment index. It is designed to assess motor functioning, balance, sensation and joint functioning in patients with post-stroke hemiplegia.
Brunnstrom recovery stagesBaseline, immediately post-intervention (average of 4 days following the last exercise session)The Brunnstrom Approach emphasises the synergic pattern of movement which develops during recovery from hemiplegia.
Interlimb ConnectionsBaseline, immediately post-intervention (average of 4 days following the last exercise session)To assess the strength of inter-limb coupling, simultaneous electrical stimulation will be applied to (5x1.0ms trains at 300Hz) the cutaneous nerves in the hand (superficial radial) and foot (superficial peroneal). The reflex responses recorded in all four limbs will be evaluated at different phases of the walking cycle.
10 meter walk testBaseline, immediately post-intervention (average of 4 days following the last exercise session)The 10 meter walk test is a timed test to evaluate walking speed
Six minute walk testBaseline, immediately post-intervention (average of 4 days following last exercise session)The six-minute walk test (6MWT) measures the distance an individual is able to walk over a total of six minutes on a hard, flat surface. The goal is for the individual to walk as far as possible in six minutes. The individual is allowed to self-pace and rest as needed as they traverse back and forth along a marked walkway.
Timed up and go testBaseline, immediately post-intervention (average of 4 days following the last exercise session)The Timed Up and Go test is a simple test used to assess a person's mobility and requires both static and dynamic balance. It uses the time that a person takes to rise from a chair, walk three metres, turn around, walk back to the chair, and sit down. During the test, the person is expected to wear their regular footwear and use any mobility aids that they would normally require.

Countries

Canada

Contacts

Primary ContactTaryn Klarner, M.Sc.
rnl@uvic.ca(250) 472-5487

Outcome results

None listed

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