Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 103 checked references that resolve
resolves10.1137/17M1125571Gait Transitions in a Phase Oscillator Model of an Insect Central Pattern Generator
resolves10.1137/1.9781611971392Computer Methods for Ordinary Differential Equations and Differential-Algebraic Equations
resolves10.1016/j.cois.2015.07.004The comparative investigation of the stick insect and cockroach models in the study of insect locomotion
resolves10.1038/nbt.4314Dimensionality reduction for visualizing single-cell data using UMAP
resolves10.1242/jeb.056481Kinematic and behavioral evidence for a distinction between trotting and ambling gaits in the cockroach<i>Blaberus discoidalis</i>
resolves10.1242/jeb.146720Speed-dependent interplay between local pattern-generating activity and sensory signals during walking in<i>Drosophila</i>
resolves10.1139/f65-039Respiratory Metabolism of Pumpkinseed (<i>Lepomis gibbosus</i>) in Relation to Swimming Speed
resolves10.7554/eLife.34275Optogenetic dissection of descending behavioral control in Drosophila
resolves10.1007/BF00197312A group-theoretic approach to rings of coupled biological oscillators
resolves10.1242/jeb.112805Intersegmental coupling and recovery from perturbations in freely running cockroaches
resolves10.1007/BF00337442A new model describing the coordination pattern of the legs of a walking stick insect
resolves10.1007/BF00355452A quantitative model of walking incorporating central and peripheral influences
resolves10.1007/BF00201417A modular artificial neural net for controlling a six-legged walking system
resolves10.3791/50192Optogenetic Stimulation of Escape Behavior in <em>Drosophila melanogaster</em>
resolves10.1007/s00265-017-2412-3Motor flexibility in insects: adaptive coordination of limbs in locomotion and near-range exploration
resolves10.1242/jeb.01637The behavioural transition from straight to curve walking: kinetics of leg movement parameters and the initiation of turning
resolves10.1038/nmeth.1561A versatile in vivo system for directed dissection of gene expression patterns
resolves10.1007/BF00693548A behavioural analysis of the temporal organisation of walking movements in the 1st instar and adult stick insect (Carausius morosus)
resolves10.1007/BF00605519The effect of amputation and leg restraint on the free walking coordination of the stick insectCarausius morosus
resolves10.7554/eLife.13799Body side-specific control of motor activity during turning in a walking animal
resolves10.1002/jemt.10033Impact of descending brain neurons on the control of stridulation, walking, and flight in orthoptera
resolves10.1242/jeb.133652Recovery of locomotion after injury in<i>Drosophila</i>depends on proprioception
resolves10.1038/ncomms2908Leg-tracking and automated behavioural classification in Drosophila
resolves10.1063/1.3141306Neuromechanical models for insect locomotion: Stability, maneuverability, and proprioceptive feedback
resolves10.1016/j.jtbi.2009.07.036A model for insect locomotion in the horizontal plane: Feedforward activation of fast muscles, stability, and robustness
resolves10.7554/eLife.00231Quantification of gait parameters in freely walking wild type and sensory deprived Drosophila melanogaster
resolves10.1007/s00359-005-0029-xKinematics and motor activity during tethered walking and turning in the cockroach, Blaberus discoidalis
resolves10.1242/jeb.114280Body saccades of <i>Drosophila</i> consist of stereotyped banked turns
resolves10.7554/eLife.34272The functional organization of descending sensory-motor pathways in Drosophila
resolves10.1007/s004220000175Legged insects select the optimal locomotor pattern based on the energetic cost
resolves10.1163/156856897X00366The VideoToolbox software for visual psychophysics: transforming numbers into movies
resolves10.1098/rsta.2010.0134A phase-reduced neuro-mechanical model for insect locomotion: feed-forward stability and proprioceptive feedback
resolves10.1007/s00422-018-0762-1The effects of feedback on stability and maneuverability of a phase-reduced model for cockroach locomotion
resolves10.1038/321162a0Vortex flow visualizations reveal change in upstroke function with flight speed in bats
resolves10.1021/ac60214a047Smoothing and Differentiation of Data by Simplified Least Squares Procedures.
resolves10.7554/eLife.02951A suppression hierarchy among competing motor programs drives sequential grooming in Drosophila
resolves10.1242/jeb.174151Thermosensory perception regulates speed of movement in response to temperature changes in<i>Drosophila melanogaster</i>
resolves10.1038/nature04113Computer optimization of a minimal biped model discovers walking and running
resolves10.1007/BF00192575Coordination of legs during straight walking and turning in Drosophila melanogaster
resolves10.1242/jeb.189142Static stability predicts the continuum of interleg coordination patterns in
<i>Drosophila</i>
resolves10.1007/BF00297860Laufen und Stehen der Stabheuschrecke Carausius morosus: Sinnesborstenfelder in den Beingelenken als Glieder von Regelkreisen
resolves10.1242/jeb.078139Inter-leg coordination in the control of walking speed in<i>Drosophila</i>
resolves10.1007/BF00631970Kinematik der phototaktischen Drehung bei der HonigbieneApis mellifera L.
The 10 references without a DOI — listed, not checked
no DOI — not checkedAminzare Z, Holmes P. 2018. Heterogeneous inputs to central pattern generators can shape insect gaits. arXiv. https://arxiv.org/abs/1807.05142.
no DOI — not checkedCircular Statistics in Biology
no DOI — not checkedTime Frequency Signal Analysis: Methods and Applications
no DOI — not checkedThe OpenCV Library
no DOI — not checkedDeAngelis B, Zavatone-Veth JA, Clark DA. 2019. GaitPaperCode. GitHub. 63c43fb. https://github.com/ClarkLabCode/GaitPaperCode.
no DOI — not checkedTheory of communication
no DOI — not checkedWhat’s new in Psychtoolbox-3?
no DOI — not checkedMcInnes L, Healy J, Melville J. 2018. UMAP: uniform manifold approximation and projection for dimension reduction. arXiv. https://arxiv.org/abs/1802.03426.
no DOI — not checkedPedregosa F, Varoquaux G, Gramfort A, Thirion B, Grisel O, Blondel M, Prettenhofer P, Weiss R, Dubourg V, Vanderplas J. 2011. Scikit-learn. Machine Learning in Python.
no DOI — not checkedRighetti L, Ijspeert AJ. 2008. Pattern generators with sensory feedback for the control of quadruped locomotion. IEEE International Conference on Robotics and Automation.
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