Andrew Nordin, Ph.D.
Affiliations: | 2015-2017 | School of Kinesiology | University of Michigan, Ann Arbor, Ann Arbor, MI |
2017-2020 | Biomedical Engineering | University of Florida | |
2020- | Texas A&M - College Station |
Area:
biomechanics, EEG, locomotionGoogle:
"Andrew Nordin"Mean distance: 17.93 (cluster 49) | S | N | B | C | P |
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Publications
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Schlink BR, Nordin AD, Diekfuss JA, et al. (2022) Quantification of Global Myoelectric Spatial Activations to Delineate Normal Hamstring Function at Progressive Running Speeds: A Technical Report. Journal of Strength and Conditioning Research. 36: 867-870 |
Schlink BR, Nordin AD, Brooks CN, et al. (2021) Fatigue induces altered spatial myoelectric activation patterns in the medial gastrocnemius during locomotion. Journal of Neurophysiology |
Schlink BR, Nordin AD, Ferris DP. (2020) Comparison of Signal Processing Methods for Reducing Motion Artifacts in High-Density Electromyography During Human Locomotion. Ieee Open Journal of Engineering in Medicine and Biology. 1: 156-165 |
Schlink BR, Nordin AD, Ferris DP. (2020) Human myoelectric spatial patterns differ among lower limb muscles and locomotion speeds. Physiological Reports. 8: e14652 |
Richer N, Downey RJ, Hairston WD, et al. (2020) Motion and Muscle Artifact Removal Validation Using an Electrical Head Phantom, Robotic Motion Platform, and Dual Layer Mobile EEG. Ieee Transactions On Neural Systems and Rehabilitation Engineering : a Publication of the Ieee Engineering in Medicine and Biology Society. 28: 1825-1835 |
Nordin AD, Hairston WD, Ferris DP. (2019) Faster gait speeds reduce alpha and beta EEG spectral power from human sensorimotor cortex. Ieee Transactions On Bio-Medical Engineering |
Nordin AD, Hairston WD, Ferris DP. (2019) Human electrocortical dynamics while stepping over obstacles. Scientific Reports. 9: 4693 |
Nordin AD, Hairston WD, Ferris DP. (2018) Dual-electrode motion artifact cancellation for mobile electroencephalography. Journal of Neural Engineering |
Symeonidou ER, Nordin AD, Hairston WD, et al. (2018) Effects of Cable Sway, Electrode Surface Area, and Electrode Mass on Electroencephalography Signal Quality during Motion. Sensors (Basel, Switzerland). 18 |