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Hypoxia Adaptation Promotes Cerebral Functional Connectivity With Neuromuscular Efficiency Decrement

A Trimodal Study on Hypoxia Adaptation: Promotion of Cerebral Functional Connectivity and Decrement of Neuromuscular Efficiency

Status
Completed
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT07018817
Enrollment
80
Registered
2025-06-13
Start date
2023-07-15
Completion date
2024-12-15
Last updated
2025-06-13

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

Conditions

Altitude Sickness, Hypoxia

Keywords

Brain

Brief summary

The study utilized a trimodal setup comprising EEG, EMG, and fNIRS modules. Participants wore a 64-channel dry EEG cap, while EMG electrodes were placed on the right biceps brachii, the flexor digitorum profundus of the forearm, and the gastrocnemius muscle. fNIRS probes were positioned on the forehead to monitor cerebral hemodynamic responses. The experimental paradigm included two tasks: motor execution (ME) and motor imagery (MI). During ME, participants performed 15 trials of actual movements. In MI, participants completed 60 trials of imagined movements. Each trial involved a randomly presented stimulus-left-hand clenching, right-hand clenching, or bilateral heel raising-with each movement type occurring an equal number of times across the session.

Detailed description

This study employed a multimodal acquisition system comprising EEG, EMG, and fNIRS modules. Participants were fitted with a 64-channel dry EEG cap for the measurement of cortical electrical activity. Surface EMG electrodes were attached to three muscle groups: the right biceps brachii, the flexor digitorum profundus of the forearm, and the gastrocnemius muscle, to record muscle activation signals. Simultaneously, fNIRS probes were positioned on the participants' foreheads to monitor cerebral hemodynamic responses. The experimental paradigm was divided into two tasks: motor execution (ME) and motor imagery (MI). During the ME task, participants performed 15 trials of actual movements, whereas the MI task involved 60 trials of imagined movements. Each trial randomly presented one of three stimuli-left-hand clenching, right-hand clenching, or bilateral heel raising-with an equal distribution of the three movement types across the session. The order of stimuli was randomized to prevent prediction bias.

Interventions

BEHAVIORALmotor execution motor imagery

Participants will perform motor execution tasks and motor imagery tasks following standardized instructions under controlled conditions.

Sponsors

Peking Union Medical College
Lead SponsorOTHER

Study design

Observational model
CASE_CONTROL
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Healthy volunteers
Yes

Inclusion criteria

* People who can withstand altitude sickness

Exclusion criteria

* Plateau Native

Design outcomes

Primary

MeasureTime frame
EEG Power Spectrum in Motor Imagery and Motor Execution Tasksup to 2 weeks

Secondary

MeasureTime frame
Surface EMG Amplitude of Upper Limb Muscles during Motor Tasksup to 2 weeks
Cerebral Oxygenation Measured by Near-Infrared Spectroscopy (NIRS) in Prefrontal Cortexup to 2 weeks

Countries

China

Outcome results

None listed

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