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Nicholas Szczecinski
Nicholas Szczecinski
Assistant Professor, West Virginia University
Verified email at mix.wvu.edu - Homepage
Title
Cited by
Cited by
Year
A neuromechanical simulation of insect walking and transition to turning of the cockroach Blaberus discoidalis
NS Szczecinski, AE Brown, JA Bender, RD Quinn, RE Ritzmann
Biological cybernetics 108 (1), 1-21, 2014
772014
A functional subnetwork approach to designing synthetic nervous systems that control legged robot locomotion
NS Szczecinski, AJ Hunt, RD Quinn
Frontiers in neurorobotics 11, 37, 2017
622017
Design process and tools for dynamic neuromechanical models and robot controllers
NS Szczecinski, AJ Hunt, RD Quinn
Biological cybernetics 111 (1), 105-127, 2017
602017
Development and training of a neural controller for hind leg walking in a dog robot
A Hunt, N Szczecinski, R Quinn
Frontiers in neurorobotics 11, 18, 2017
582017
Static stability predicts the continuum of interleg coordination patterns in Drosophila
NS Szczecinski, T Bockemühl, AS Chockley, A Büschges
Journal of Experimental Biology 221 (22), jeb189142, 2018
492018
Neurodynamic modeling of the fruit fly Drosophila melanogaster
CA Goldsmith, NS Szczecinski, RD Quinn
Bioinspiration & biomimetics 15 (6), 065003, 2020
362020
Introducing MantisBot: hexapod robot controlled by a high-fidelity, real-time neural simulation
NS Szczecinski, DM Chrzanowski, DW Cofer, AS Terrasi, DR Moore, ...
2015 IEEE/RSJ International Conference on Intelligent Robots and Systems …, 2015
362015
Mantisbot is a robotic model of visually guided motion in the praying mantis
NS Szczecinski, AP Getsy, JP Martin, RE Ritzmann, RD Quinn
Arthropod structure & development 46 (5), 736-751, 2017
352017
Neuromechanical model of rat hindlimb walking with two-layer CPGs
K Deng, NS Szczecinski, D Arnold, E Andrada, MS Fischer, RD Quinn, ...
Biomimetics 4 (1), 21, 2019
302019
Using animal data and neural dynamics to reverse engineer a neuromechanical rat model
AJ Hunt, NS Szczecinski, E Andrada, M Fischer, RD Quinn
Biomimetic and Biohybrid Systems: 4th International Conference, Living …, 2015
302015
A neural network with central pattern generators entrained by sensory feedback controls walking of a bipedal model
W Li, NS Szczecinski, RD Quinn
Bioinspiration & biomimetics 12 (6), 065002, 2017
232017
A model of exploration and goal-searching in the cockroach, Blaberus discoidalis
KA Daltorio, BR Tietz, JA Bender, VA Webster, NS Szczecinski, ...
Adaptive Behavior 21 (5), 404-420, 2013
212013
Drosophibot: a fruit fly inspired bio-robot
C Goldsmith, N Szczecinski, R Quinn
Biomimetic and Biohybrid Systems: 8th International Conference, Living …, 2019
172019
Leg-local neural mechanisms for searching and learning enhance robotic locomotion
NS Szczecinski, RD Quinn
Biological Cybernetics 112 (1), 99-112, 2018
172018
A synthetic nervous system controls a simulated cockroach
S Rubeo, N Szczecinski, R Quinn
Applied Sciences 8 (1), 6, 2017
172017
Template for the neural control of directed stepping generalized to all legs of MantisBot
NS Szczecinski, RD Quinn
Bioinspiration & Biomimetics 12 (4), 045001, 2017
152017
A stochastic algorithm for explorative goal seeking extracted from cockroach walking data
KA Daltorio, BR Tietz, JA Bender, VA Webster, NS Szczecinski, ...
2012 IEEE International Conference on Robotics and Automation, 2261-2268, 2012
152012
A computational model of insect campaniform sensilla predicts encoding of forces during walking
NS Szczecinski, CJ Dallmann, RD Quinn, SN Zill
Bioinspiration & Biomimetics 16 (6), 065001, 2021
142021
Phase shift between joint rotation and actuation reflects dominant forces and predicts muscle activation patterns
GP Sutton, NS Szczecinski, RD Quinn, HJ Chiel
PNAS nexus 2 (10), pgad298, 2023
132023
A perspective on the neuromorphic control of legged locomotion in past, present, and future insect-like robots
NS Szczecinski, CA Goldsmith, WRP Nourse, RD Quinn
Neuromorphic Computing and Engineering 3 (2), 023001, 2023
122023
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