Skip to content

Interactive Exoskeleton Robot for Walking - Ankle Joint

Interactive Exoskeleton Robot for Walking - Ankle Joint

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT02471248
Enrollment
25
Registered
2015-06-15
Start date
2015-05-27
Completion date
2016-12-31
Last updated
2017-09-18

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

Conditions

Stroke

Brief summary

A novel interactive exoskeleton robotic system with embedded force and motion sensors will be developed to facilitate walking of stroke patients with hemiparesis. The robot will synchronise with the gait pattern of the stroke patient to provide assistance in ankle dorsiflexion during swing phase. It is hypothesised that the robot can facilitate stable and longer walking distance for stroke patients with drop foot problem. It can be applied on unilateral side, which is suitable for stroke patients with hemiparesis. The whole system design is lightweight, compact, comfortable, and user-friendly in hospital or at home settings.

Detailed description

In this clinical trial, participated stroke patients will be divided into two groups: Robotic group and Sham group. Stroke patients in both groups will participate in a 20-session gait training program, which includes overground walking and stair climbing exercises. Robotic group will walk with the powered Ankle Robot, which provide ankle dorsiflexion support during swing phase of walking; Sham group will walk with the Ankle Robot with very low assistance level, which provide only tactile feedback but no ankle support in order to evaluate the placebo effect. A series of clinical assessments will be carried out to assess the functional recovery in stroke patients before and after the gait training program.

Interventions

DEVICEAnkle Robot with Power Assistance

Stroke patients will enrol in a 20-session gait training program for at least two sessions per week. In each session, the stroke patient will walk overground continuously for 2 \* 10 minutes and walk up/down a staircase (about 10 steps per flight) for 10 minutes, rest will be provided in between each round of walking or stair climbing. This training can promote gait recovery and physical fitness. They will wear the Ankle Robot during the gait training. The motor will synchronise with the paretic-side gait pattern to provide dorsiflexion moment during swing phase, and free the ankle joint when the sole is loaded.

DEVICESham

Stroke patients will enrol in a 20-session gait training program for at least two sessions per week. In each session, the stroke patient will walk overground continuously for 2 \* 10 minutes and walk up/down a staircase (about 10 steps per flight) for 10 minutes, rest will be provided in between each round of walking or stair climbing. This training can promote physical fitness. They will wear the Ankle Robot during the gait training. The robot will synchronise with the paretic-side gait pattern to the Ankle Robot provides very low assistance which can be barely perceived by the stroke patient but does not suffice to support the ankle dorsiflexion.

Sponsors

Innovation and Technology Commission, Hong Kong
CollaboratorOTHER
Chinese University of Hong Kong
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
TRIPLE (Subject, Caregiver, Outcomes Assessor)

Eligibility

Sex/Gender
ALL
Age
18 Years to 85 Years
Healthy volunteers
No

Inclusion criteria

1. Ischemic or hemorrphagic stroke with drop foot problem. 2. Sufficient cognition to follow simple instructions and to understand the content and purpose of the study. (Mini-Mental State Examination \> 21) 3. Capable of standing and walking independently for an extended period of time. (Functional Ambulation Category \> 3, Berg Balance Scale \> 40)

Exclusion criteria

1. Any medical or psychological dysfunctions that would affect their ability to comply with test study protocol, such as lower back pain, neuralgia, rotational vertigo, muscloskeletal disorders, injuries, and pregnancy. 2. Any severe contractures in hip, knee, or ankle joint that would preclude passive range of motion in the lower extremity. 3. Participation in any therapeutic treatment (outside therapy) performed with the lower extremity during the planned study, including the baseline and the follow-up.

Design outcomes

Primary

MeasureTime frameDescription
6-minute Walk Test3-month follow-upAssesses distance walked over 6 minutes as a sub-maximal test of aerobic capacity/endurance
Functional Ambulation Category3-month follow-upAssesses postural stability during various walking tasks

Secondary

MeasureTime frameDescription
Berg Balance Scale3-month follow-upA 14-item objective measure designed to assess static balance and fall risk in adult populations
Modified Ashworth Scale3-month follow-upMeasures spasticity in patients with lesions of the Central Nervous System
Timed 10 Meter Walk Test3-month follow-upAssesses walking speed in meters per second over a short duration
Subjective Feedback Questionnaire3-month follow-upStroke patients will provide subjective feedback about the performance of the Ankle Robot in terms of safety, effectiveness, and their satisfaction after the gait training
Kinematic and Kinetic Gait Motion Capture3-month follow-upGait pattern will be recorded when the stroke patient is walking under three conditions: (1) without the Ankle Robot, (2) with the Idle Ankle Robot, and (3) with the Powered Ankle Robot.
Fugl-Meyer Assessment of Motor Recovery after Stroke (Lower Extremity)3-month follow-upEvaluates and measures recovery in post-stroke hemiplegic patients

Countries

Hong Kong

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 24, 2026