| 2025 | CogSci | All you ever wanted to ask about Dynamic Field Theory. | Gregor Schner, Yulia Sandamirskaya, Aaron T. Buss |
| 2024 | CogSci | Visual selective attention: Priority is all you need. | Raul Grieben, John P. Spencer, Gregor Schner |
| 2024 | CogSci | A Neural Process Model of Structure Mapping Accounts for Children's Development of Analogical Mapping by Change in Inhibitory Control. | Minseok Kang, Daniel Sabinasz, Gregor Schner |
| 2024 | CogSci | Interaction of polarity and truth value - A neural dynamic architecture of negation processing. | Lea Kati, Daniel Sabinasz, Gregor Schner, Barbara Kaup |
| 2024 | CogSci | How does the sensory-motor brain integrate and give rise to cognition and learning? | Gregor Schner, Iliyana Trifonova, John P. Spencer, Maria Mercedes Piango, Jason A. Shaw, Michael C. Stern, Aaron T. Buss, Larissa K. Samuelson, Jelmer P. Borst |
| 2024 | CogSci | A Neural Dynamic Model Autonomously Drives a Robot to Perform Structured Sequences of Action Intentions. | Stephan Sehring, Richard Julius Paul Koebe, Sophie Aerdker, Gregor Schner |
| 2024 | CogSci | Is Deep Learning the Answer for Understanding Human Cognitive Dynamics? | John P. Spencer, Brenden M. Lake, Raul Grieben, Gregor Schner, Mariya Toneva, Gina R. Kuperberg |
| 2024 | IROS | ROBOVERINE: A human-inspired neural robotic process model of active visual search and scene grammar in naturalistic environments. | Raul Grieben, Stephan Sehring, Jan Teklve, John P. Spencer, Gregor Schner |
| 2022 | CogSci | Bridging DFT and DNNs: A neural dynamic process model of scene representation, guided visual search and scene grammar in natural scenes. | Raul Grieben, Gregor Schner |
| 2022 | CogSci | A Perceptually Grounded Neural Dynamic Architecture Establishes Analogy Between Visual Object Pairs. | Matthis Hesse, Daniel Sabinasz, Gregor Schner |
| 2022 | CogSci | A Neural Dynamic Model Perceptually Grounds Nested Noun Phrases. | Daniel Sabinasz, Gregor Schner |
| 2021 | CogSci | A neural dynamic process model of combined bottom-up and top-down guidance in triple conjunction visual search. | Raul Grieben, Gregor Schner |
| 2020 | CogSci | Grounding Spatial Language in Perception by Combining Concepts in a Neural Dynamic Architecture. | Daniel Sabinasz, Mathis Richter, Jonas Lins, Gregor Schner |
| 2020 | CogSci | Building neural processing accounts of higher cognition in Dynamic Field Theory. | Gregor Schner, Aaron T. Buss |
| 2019 | CogSci | How Productivity and Compositionality May Emerge from a Neural Dynamics of Perceptual Grounding. | Daniel Sabinasz, Mathis Richter, Jonas Lins, Gregor Schner |
| 2019 | CogSci | Neural dynamic concepts for intentional systems. | Jan Teklve, Gregor Schner |
| 2018 | CogSci | Sequences of discrete attentional shifts emerge from a neural dynamic architecture for conjunctive visual search that operates in continuous time. | Raul Grieben, Jan Teklve, Stephan K. U. Zibner, Sebastian Schneegans, Gregor Schner |
| 2018 | CogSci | A neural dynamic architecture that autonomously builds mental models. | Parthena Kounatidou, Mathis Richter, Gregor Schner |
| 2017 | CogSci | Mouse Tracking Shows Attraction to Alternative Targets While Grounding Spatial Relations. | Jonas Lins, Gregor Schner |
| 2016 | CogSci | A Neural Dynamic Model Parses Object-Oriented Actions. | Mathis Richter, Jonas Lins, Gregor Schner |
| 2014 | CogSci | Autonomous Neural Dynamics to Test Hypotheses in a Model of Spatial Language. | Mathis Richter, Jonas Lins, Sebastian Schneegans, Yulia Sandamirskaya, Gregor Schner |
| 2014 | ICANN | Instance-Based Object Recognition with Simultaneous Pose Estimation Using Keypoint Maps and Neural Dynamics. | Oliver Lomp, Kasim Terzic, Christian Faubel, J. M. Hans du Buf, Gregor Schner |
| 2014 | ICANN | A Neural Dynamic Architecture Resolves Phrases about Spatial Relations in Visual Scenes. | Mathis Richter, Jonas Lins, Sebastian Schneegans, Gregor Schner |
| 2014 | IROS | A neural dynamics architecture for grasping that integrates perception and movement generation and enables on-line updating. | Guido Knips, Stephan K. U. Zibner, Hendrik Reimann, Irina Popova, Gregor Schner |
| 2013 | CogSci | Dynamic Field Theory: Conceptual Foundations and Applications in the Cognitive and Developmental Sciences. | John P. Spencer, Gregor Schner, Yulia Sandamirskaya |
| 2013 | ICAART | Autonomous Timed Movement based on Attractor Dynamics in a Ball Hitting Task. | Farid Oubbati, Gregor Schner |
| 2013 | ICANN | A Software Framework for Cognition, Embodiment, Dynamics, and Autonomy in Robotics: Cedar. | Oliver Lomp, Stephan Klaus Ulrich Zibner, Mathis Richter, Iaki Ra, Gregor Schner |
| 2013 | SMC | Autonomous Robot Hitting Task Using Dynamical System Approach. | Farid Oubbati, Mathis Richter, Gregor Schner |
| 2012 | ICANN | The Counter-Change Model of Motion Perception: An Account Based on Dynamic Field Theory. | Michael Berger, Christian Faubel, Joseph Norman, Howard S. Hock, Gregor Schner |
| 2012 | ICANN | A Dynamic Field Architecture for the Generation of Hierarchically Organized Sequences. | Boris Durn, Yulia Sandamirskaya, Gregor Schner |
| 2012 | IROS | A robotic architecture for action selection and behavioral organization inspired by human cognition. | Mathis Richter, Yulia Sandamirskaya, Gregor Schner |
| 2012 | RO-MAN | A neural-dynamic architecture for flexible spatial language: Intrinsic frames, the term "between", and autonomy. | Ulja van Hengel, Yulia Sandamirskaya, Sebastian Schneegans, Gregor Schner |
| 2011 | ICRA | Autonomous movement generation for manipulators with multiple simultaneous constraints using the attractor dynamics approach. | Hendrik Reimann, Ioannis Iossifidis, Gregor Schner |
| 2010 | IJCNN | Learning objects on the fly - object recognition for the here and now. | Christian Faubel, Gregor Schner |
| 2010 | IROS | Generating collision free reaching movements for redundant manipulators using dynamical systems. | Hendrik Reimann, Ioannis Iossifidis, Gregor Schner |
| 2010 | RO-MAN | Natural human-robot interaction through spatial language: A Dynamic Neural Field approach. | Yulia Sandamirskaya, John Lipinski, Ioannis Iossifidis, Gregor Schner |
| 2009 | IROS | A neuro-dynamic architecture for one shot learning of objects that uses both bottom-up recognition and top-down prediction. | Christian Faubel, Gregor Schner |
| 2009 | ICRA | Temporal stabilization of discrete movement in variable environments: An attractor dynamics approach. | Matthias Tuma, Ioannis Iossifidis, Gregor Schner |
| 2009 | KI | Behaviorally Flexible Spatial Communication: Robotic Demonstrations of a Neurodynamic Framework. | John Lipinski, Yulia Sandamirskaya, Gregor Schner |
| 2006 | IROS | Dynamical Systems Approach for the Autonomous Avoidance of Obstacles and Joint-limits for an Redundant Robot Arm. | Ioannis Iossifidis, Gregor Schner |
| 2004 | ICRA | Autonomous Reaching and Obstacle Avoidance with the Anthropomorphic Arm of a Robotic Assistant using the Attractor Dynamics Approach. | Ioannis Iossifidis, Gregor Schner |
| 2003 | IROS | Anthropomorphism as a pervasive design concept for a robotic assistant. | Ioannis Iossifidis, Christoph Theis, Claudia Grote, Christian Faubel, Gregor Schner |
| 2003 | IGARSS | Multiple classifier system based on attractor dynamics. | Andrey V. Bogdanov, Gregor Schner, Axel Steinhage, Stein Sandven |
| 2002 | IROS | WAD project where attractor dynamics aids wheelchair navigation. | Pierre Mallet, Gregor Schner |
| 1996 | ICANN | Neural Field Dynamics for Motion Perception. | Martin A. Giese, Gregor Schner, Howard S. Hock |
| 1996 | ICANN | Population Coding in Cat Visual Cortex Reveals Nonlinear Interactions as Predicted by a Neural Field Model. | Dirk Jancke, Amir C. Akhavan, Wolfram Erlhagen, Martin A. Giese, Axel Steinhage, Gregor Schner, Hubert R. Dinse |
| 1990 | IJCNN | Information in a dynamic theory of behavioral patterns. | Gregor Schner |