Challenging human locomotion: stability and modular organisation in unsteady conditions A Santuz, A Ekizos, N Eckardt, A Kibele, A Arampatzis Scientific reports 8 (1), 2740, 2018 | 112 | 2018 |
On the methodological implications of extracting muscle synergies from human locomotion A Santuz, A Ekizos, L Janshen, V Baltzopoulos, A Arampatzis International journal of neural systems 27 (05), 1750007, 2017 | 87 | 2017 |
Ultrasound does not provide reliable results for the measurement of the patellar tendon cross sectional area A Ekizos, F Papatzika, G Charcharis, S Bohm, F Mersmann, A Arampatzis Journal of Electromyography and Kinesiology 23 (6), 1278-1282, 2013 | 55 | 2013 |
Transition from shod to barefoot alters dynamic stability during running A Ekizos, A Santuz, A Arampatzis Gait & posture 56, 31-36, 2017 | 53 | 2017 |
A pressure plate-based method for the automatic assessment of foot strike patterns during running A Santuz, A Ekizos, A Arampatzis Annals of biomedical engineering 44, 1646-1655, 2016 | 52 | 2016 |
Modular control of human movement during running: an open access data set A Santuz, A Ekizos, L Janshen, F Mersmann, S Bohm, V Baltzopoulos, ... Frontiers in physiology 9, 1509, 2018 | 48 | 2018 |
Neuromotor dynamics of human locomotion in challenging settings A Santuz, L Brüll, A Ekizos, A Schroll, N Eckardt, A Kibele, M Schwenk, ... Iscience 23 (1), 2020 | 44 | 2020 |
The influence of footwear on the modular organization of running A Santuz, A Ekizos, L Janshen, V Baltzopoulos, A Arampatzis Frontiers in physiology 8, 958, 2017 | 41 | 2017 |
Muscle activation patterns are more constrained and regular in treadmill than in overground human locomotion I Mileti, A Serra, N Wolf, V Munoz-Martel, A Ekizos, E Palermo, ... Frontiers in Bioengineering and Biotechnology 8, 1169, 2020 | 34 | 2020 |
The maximum Lyapunov exponent during walking and running: Reliability assessment of different marker-sets A Ekizos, A Santuz, A Schroll, A Arampatzis Frontiers in physiology 9, 1101, 2018 | 33 | 2018 |
Neuromuscular organisation and robustness of postural control in the presence of perturbations V Munoz-Martel, A Santuz, A Ekizos, A Arampatzis Scientific reports 9 (1), 12273, 2019 | 32 | 2019 |
Lower complexity of motor primitives ensures robust control of high-speed human locomotion A Santuz, A Ekizos, Y Kunimasa, K Kijima, M Ishikawa, A Arampatzis Heliyon 6 (10), 2020 | 31 | 2020 |
Modular control during incline and level walking in humans L Janshen, A Santuz, A Ekizos, A Arampatzis Journal of experimental biology 220 (5), 807-813, 2017 | 24 | 2017 |
Fuzziness of muscle synergies in patients with multiple sclerosis indicates increased robustness of motor control during walking L Janshen, A Santuz, A Ekizos, A Arampatzis Scientific Reports 10 (1), 7249, 2020 | 22 | 2020 |
Short-and long-term effects of altered point of ground reaction force application on human running energetics A Ekizos, A Santuz, A Arampatzis Journal of Experimental Biology 221 (15), jeb176719, 2018 | 21 | 2018 |
Swaying slower reduces the destabilizing effects of a compliant surface on voluntary sway dynamics DA Patikas, A Papavasileiou, A Ekizos, V Hatzitaki, A Arampatzis PLoS One 14 (12), e0226263, 2019 | 12 | 2019 |
Reliability and limits of agreement of the supraspinatus muscle anatomical cross-sectional area assessment by ultrasonography F Papatzika, M Papandreou, A Ekizos, C Panteli, A Arampatzis Ultrasound in Medicine & Biology 41 (7), 1821-1826, 2015 | 9 | 2015 |
Runners employ different strategies to cope with increased speeds based on their initial strike patterns A Ekizos, A Santuz, A Arampatzis Frontiers in Physiology, 1908, 2021 | 3 | 2021 |
Challenging human locomotion A Santuz, A Ekizos, N Eckardt, A Kibele, A Arampatzis Humboldt-Universität zu Berlin, 2018 | 2 | 2018 |
Humans exploit robust locomotion by improving the stability of control signals A Santuz, L Brüll, A Ekizos, A Schroll, N Eckardt, A Kibele, M Schwenk, ... bioRxiv, 625855, 2019 | 1 | 2019 |