Mobile Brain Body Imaging (MoBI)

The NINE Lab pioneers Mobile Brain Body Imaging (MoBI) techniques to understand how the brain controls and adapts movement in naturalistic settings. By combining high-density EEG with motion capture, EMG, and biomechanical sensors, we study the neural mechanisms underlying human movement and motor learning.

Publications & Projects

Mobile Brain Body Imaging (MoBI)
Age-related Reorganization of Corticomuscular Connectivity During Locomotor Perturbations

Young and older adults show fundamentally different patterns of brain-muscle communication during …

Sep 2025

Mobile Brain Body Imaging (MoBI)
Older adults use fewer muscles to overcome perturbations during a seated locomotor task

Older adults use fewer muscles to drive a stepper during a seated locomotor task, demonstrating …

May 2024

Mobile Brain Body Imaging (MoBI)
Differential Theta-Band Signatures of the Anterior Cingulate and Motor Cortices During Seated Locomotor Perturbations

We show that seated locomotor tasks can elicit perturbation-related cortical dynamics similar to …

Feb 2021