Autor der Publikation

Muscles reduce neuronal information load : quantification of control effort in biological vs. robotic pointing and walking

, , , , , und . Frontiers in Robotics and AI, (2020)
DOI: 10.3389/frobt.2020.00077

Bitte wählen Sie eine Person um die Publikation zuzuordnen

Um zwischen Personen mit demselben Namen zu unterscheiden, wird der akademische Grad und der Titel einer wichtigen Publikation angezeigt. Zudem lassen sich über den Button neben dem Namen einige der Person bereits zugeordnete Publikationen anzeigen.

 

Weitere Publikationen von Autoren mit dem selben Namen

Muscles reduce neuronal information load : quantification of control effort in biological vs. robotic pointing and walking, , , , , und . Frontiers in Robotics and AI, (2020)Exhaustion of Skeletal Muscle Fibers Within Seconds : Incorporating Phosphate Kinetics Into a Hill-Type Model, , , , , , , , und . Frontiers in Physiology, (2020)Muscles Reduce Neuronal Information Load : Quantification of Control Effort in Biological vs. Robotic Pointing and Walking, , , , , und . Frontiers In Robotics and AI, (2020)Optimality Principles in Human Point-to-Manifold Reaching Accounting for Muscle Dynamics, , , , , und . Frontiers in Computational Neuroscience, (2020)Four considerations on interdisciplinary learning at the boundaries of human and engineering sciences, , , und . Frontiers in education, (2022)The Benefit of Combining Neuronal Feedback and Feed-Forward Control for Robustness in Step Down Perturbations of Simulated Human Walking Depends on the Muscle Function, , , , und . Frontiers in computational neuroscience, (2018)The control effort to steer self-propelled microswimmers depends on their morphology : comparing symmetric spherical versus asymmetric L-shaped particles, , , und . Royal Society Open Science, 8 (9): 201839 (2021)Muscle prestimulation tunes velocity preflex in simulated perturbed hopping, , , , und . Scientific reports, 13 (1): 4559 (2023)Specific Gait Changes in Prodromal Hereditary Spastic Paraplegia Type 4 : preSPG4 Study, , , , , , , , , und . Movement disorders, 37 (12): 2417-2426 (2022)Can Robots Help to Understand Human Locomotion?, , , und . Automatisierungstechnik, 60 (11): 653-661 (2012)