Wachholz, F.; Kockum, T.; Haid, T.; Federolf, P.
Changed Temporal Structure of Neuromuscular Control, Rather Than Changed Intersegment Coordination, Explains Altered Stabilographic Regularity after a Moderate Perturbation of the Postural Control System. Entropy 2019, 21, 614.
https://doi.org/10.3390/e21060614
AMA Style
Wachholz F, Kockum T, Haid T, Federolf P.
Changed Temporal Structure of Neuromuscular Control, Rather Than Changed Intersegment Coordination, Explains Altered Stabilographic Regularity after a Moderate Perturbation of the Postural Control System. Entropy. 2019; 21(6):614.
https://doi.org/10.3390/e21060614
Chicago/Turabian Style
Wachholz, Felix, Tove Kockum, Thomas Haid, and Peter Federolf.
2019. "Changed Temporal Structure of Neuromuscular Control, Rather Than Changed Intersegment Coordination, Explains Altered Stabilographic Regularity after a Moderate Perturbation of the Postural Control System" Entropy 21, no. 6: 614.
https://doi.org/10.3390/e21060614
APA Style
Wachholz, F., Kockum, T., Haid, T., & Federolf, P.
(2019). Changed Temporal Structure of Neuromuscular Control, Rather Than Changed Intersegment Coordination, Explains Altered Stabilographic Regularity after a Moderate Perturbation of the Postural Control System. Entropy, 21(6), 614.
https://doi.org/10.3390/e21060614