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Plantar Pressure and Electroencephalographic Signals During Pedal and Vision-deprived Walking in Stroke Patients.

Changes of Plantar Pressure and Electroencephalographic Signals During Pedal Walking and Vision-deprivation Walking in Stroke Patients.

Status
Completed
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT06395142
Enrollment
60
Registered
2024-05-02
Start date
2023-08-01
Completion date
2024-06-30
Last updated
2024-07-03

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

Conditions

Stroke

Keywords

Electroencephalography, pedal walking, visual deprivation, challenging task

Brief summary

Complex task training may be more effective than simple task training in promoting functional recovery and brain restructuring in stroke participants. The researchers intend to investigate the real-time changes in plantar pressure and electroencephalographic signals in stroke participants during two complex tasks: pedal walking and visual-deprivation walking. The research hypothesis is that pedal walking and visual-deprivation walking can improve the difference of plantar pressure between the affected and unaffected lower limbs of stroke participants, and cause corresponding electroencephalographic changes.

Detailed description

Stroke participants perform the following tasks after wearing a plantar pressure device and a 32-lead electroencephalographic cap. First, stroke participants walk on the pedal on the lower limbs of the affected side. Then the researchers cover the participants' eyes with an eye mask, the participants perform the task of visual-deprivation walking. Finally, the participants walk on a flat surface. Each walking task lasts for 60 seconds. The participants can rest for 3-5 minutes between tasks.

Interventions

Pedal walking is a challenging task for stroke participants and can be used as a means of stroke rehabilitation. A cross-sectional study is conducted to investigate the real-time changes in plantar pressure and electroencephalogram during pedal walking in stroke participants.

OTHERvisual-deprivation walking

visual-deprivation walking is a challenging task for stroke participants and can be used as a means of stroke rehabilitation.A cross-sectional study is conducted to investigate the real-time changes in plantar pressure and electroencephalogram during visual-deprivation walking in stroke participants.

Sponsors

Geriatric Hospital of Nanjing Medical University
Lead SponsorOTHER

Study design

Observational model
CASE_ONLY
Time perspective
CROSS_SECTIONAL

Eligibility

Sex/Gender
ALL
Age
18 Years to 70 Years
Healthy volunteers
No

Inclusion criteria

* MRI or CT diagnosis of the first stroke onset; * The onset of the stroke occurred more than 30 days; * Safely walk 50 meters without assistance.

Exclusion criteria

* Cerebellar injury; * Brain stem injury; * Visual impairment.

Design outcomes

Primary

MeasureTime frameDescription
phase-amplitude couplingReal-time monitoring of electroencephalography data will occur while participants are walking. The Time Frame for data collection will encompass the entire duration of each participant's walking session, which lasts for 60 seconds.Phase-amplitude coupling is a type of cross-phase coupling that represents the coupling between the phase of slow oscillations and the amplitude of fast oscillations.
phase-frequency couplingReal-time monitoring of electroencephalography data will occur while participants are walking. The Time Frame for data collection will encompass the entire duration of each participant's walking session, which lasts for 60 seconds.Phase-frequency coupling is a generic form of the cross-frequency coupling model, representing the coupling between the slow oscillations phase and the fast oscillations frequency.
phase-phase couplingReal-time monitoring of electroencephalography data will occur while participants are walking. The Time Frame for data collection will encompass the entire duration of each participant's walking session, which lasts for 60 seconds.Phase-phase coupling is a special form of cross-phase coupling that represents the coupling between the phases of slow and fast oscillations, which can occur even when the coupling is very weak.
Amplitude-amplitude couplingReal-time monitoring of electroencephalography data will occur while participants are walking. The Time Frame for data collection will encompass the entire duration of each participant's walking session, which lasts for 60 seconds.Amplitude-amplitude coupling is a form of cross-phase coupling that represents the coupling between the amplitudes of slow oscillations and fast oscillations .
relative powerReal-time monitoring of electroencephalography data will occur while participants are walking. The Time Frame for data collection will encompass the entire duration of each participant's walking session, which lasts for 60 seconds.Relative power reflects the frequency domain changes of electroencephalogram.
weight Phase Lag IndexReal-time monitoring of electroencephalography data will occur while participants are walking. The Time Frame for data collection will encompass the entire duration of each participant's walking session, which lasts for 60 seconds.The weight phase lag index is an index of brain functional connectivity, can continuously measure the connectivity of the coupling of neural oscillatory activity.
peak pressureThrough study completion, an average of 2 months.Peak pressure reflects the maximum pressure on the entire sole of the foot.

Countries

China

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Mar 29, 2026