From measurement to analysis.
Examine EMG envelopes, RMS, activation onset and frequency features alongside force and joint motion. EEG–EMG studies require particular attention to motion artifacts, shared timing and standardized muscle placement.

EEG–EMG · Force · Motion
Relate muscle activity, force and movement to brain signals in motor learning, muscle fatigue, balance and neurorehabilitation research.

Examine EMG envelopes, RMS, activation onset and frequency features alongside force and joint motion. EEG–EMG studies require particular attention to motion artifacts, shared timing and standardized muscle placement.
Choose muscleBAN for EMG and motion, force platforms and load cells for force, and goniometers for joint angles. The IMU Smart Sensor requires the PRO platform. Consider g.ESTIM FES for functional electrical stimulation research with appropriate protocols and expertise.

Activity · Wearable acquisition
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biosignalsplux · EMG
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Modular biosignal acquisition
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Modular biosignal acquisition
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Dual-axis joint angle sensor
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Biosignals PRO · Smart sensor
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Wearable EEG headset, for research only
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Functional electrical stimulator
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Low-artefact EEG while running, jumping and exercising: research on athletic performance, motor learning and high-altitude medicine.
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Real-time EEG in vehicles and driving simulators: monitoring driver attention, fatigue and cognitive load.
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Study pilot attention, mental workload, stress and fatigue in flight simulators using EEG, eye tracking, fNIRS and biosignals.
Learn moreOur specialists will help you choose the devices, software configuration and installation plan that best fit your research.
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