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Tom Froese
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2020 – today
- 2024
- [j32]Tom Froese:
Irruption and Absorption: A 'Black-Box' Framework for How Mind and Matter Make a Difference to Each Other. Entropy 26(4): 288 (2024) - 2023
- [j31]Tom Froese, Natalya Weber, Ivan Shpurov, Takashi Ikegami:
From autopoiesis to self-optimization: Toward an enactive model of biological regulation. Biosyst. 230: 104959 (2023) - [j30]Tom Froese:
Irruption Theory: A Novel Conceptualization of the Enactive Account of Motivated Activity. Entropy 25(5): 748 (2023) - [c33]Kazuma Takada, Nanako Kumasaki, Tom Froese, Kazuhisa Shibata, Jun Nishida, Shunichi Kasahara:
ShadowClones: an Interface to Maintain a Multiple Sense of Body-space Coordination in Multiple Visual Perspectives. AHs 2023: 171-178 - [c32]Ekaterina Sangati, Lorena Lobo, Stephen Estelle, Federico Sangati, Samira Tavassoli, Tom Froese:
Uncovering the Role of Intention in Active and Passive Perception. CogSci 2023 - [c31]Natalya Weber, Werner Koch, Ozan Erdem, Tom Froese:
On the Use of Associative Memory in Hopfield Networks Designed to Solve Propositional Satisfiability Problems. SSCI 2023: 1352-1358 - [i8]Natalya Weber, Werner Koch, Ozan Erdem, Tom Froese:
On the use of associative memory in Hopfield networks designed to solve propositional satisfiability problems. CoRR abs/2307.16807 (2023) - 2022
- [j29]Ivan Shpurov, Tom Froese:
Evidence of Critical Dynamics in Movements of Bees inside a Hive. Entropy 24(12): 1840 (2022) - [j28]Julian Kiverstein, Michael D. Kirchhoff, Tom Froese:
The Problem of Meaning: The Free Energy Principle and Artificial Agency. Frontiers Neurorobotics 16 (2022) - [c30]Natalya Weber, Werner Koch, Tom Froese:
Scaling up the self-optimization model by means of on-the-fly computation of weights. SSCI 2022: 1276-1282 - [c29]Kazuma Takada, Nanako Kumasaki, Tom Froese, Kazuhisa Shibata, Shunichi Kasahara:
Shadow Clones: an Unattended Visual Interface to Enhance the Task Performance in Multiple Space using Gaze-Switching. SUI 2022: 34:1-34:2 - [i7]Natalya Weber, Werner Koch, Tom Froese:
Scaling up the self-optimization model by means of on-the-fly computation of weights. CoRR abs/2211.01698 (2022) - 2021
- [j27]Tom Froese:
Epilogue to "Questioning Life and Cognition" by John Stewart. Adapt. Behav. 29(5) (2021) - [j26]Georgina Montserrat Reséndiz-Benhumea, Ekaterina Sangati, Federico Sangati, Soheil Keshmiri, Tom Froese:
Shrunken Social Brains? A Minimal Model of the Role of Social Interaction in Neural Complexity. Frontiers Neurorobotics 15: 634085 (2021) - [c28]Dan Bennett, Alan J. Dix, Parisa Eslambolchilar, Feng Feng, Tom Froese, Vassilis Kostakos, Sébastien Lerique, Niels van Berkel:
Emergent Interaction: Complexity, Dynamics, and Enaction in HCI. CHI Extended Abstracts 2021: 119:1-119:7 - [c27]Chen Lam Loh, Tom Froese:
An Oscillator Model for Interbrain Synchrony: Slow Interactional Rhythms Entrain Fast Neural Activity. CIBCB 2021: 1-8 - [c26]Alex Baranski, Tom Froese:
Efficient Spike Timing Dependent Plasticity rule for Complex-Valued Neurons. ALIFE 2021: 76 - [c25]Ivan Shpurov, Tom Froese:
Combining Self-critical dynamics and Hebbian learning to explain utility of bursty dynamics in neural networks. SSCI 2021: 1-6 - 2020
- [j25]Alejandro Morales, Tom Froese:
Unsupervised Learning Facilitates Neural Coordination Across the Functional Clusters of the C. elegans Connectome. Frontiers Robotics AI 7: 40 (2020) - [c24]Susana Ramírez-Vizcaya, Tom Froese:
Agents of Habit: Refining the Artificial Life Route to Artificial Intelligence. ALIFE 2020: 78-86 - [c23]Dobromir Dotov, Tom Froese:
Dynamic Interactive Artificial Intelligence: Sketches for a Future AI Based on Human-Machine Interaction. ALIFE 2020: 139-145 - [c22]Alejandro Morales, Tom Froese:
The distribution of inhibitory neurons in the C. elegans connectome facilitates self-optimization of coordinated neural activity. SSCI 2020: 1195-1201 - [c21]Georgina Montserrat Reséndiz-Benhumea, Ekaterina Sangati, Tom Froese:
Levels of Coupling in Dyadic Interaction: An Analysis of Neural and Behavioral Complexity. SSCI 2020: 2250-2256 - [i6]Alejandro Morales, Tom Froese:
The distribution of inhibitory neurons in the C. elegans connectome facilitates self-optimization of coordinated neural activity. CoRR abs/2010.15272 (2020) - [i5]Georgina Montserrat Reséndiz-Benhumea, Ekaterina Sangati, Tom Froese:
Levels of Coupling in Dyadic Interaction: An Analysis of Neural and Behavioral Complexity. CoRR abs/2011.01727 (2020)
2010 – 2019
- 2019
- [c20]Jorge I. Campos, Tom Froese:
From embodied interaction to compositional referential communication: A minimal agent-based model without dedicated communication channels. ALIFE 2019: 79-86 - [c19]Alejandro Morales, Tom Froese:
Self-optimization in a Hopfield neural network based on the C. elegans connectome. ALIFE 2019: 448-453 - [c18]Georgina Montserrat Reséndiz-Benhumea, Tom Froese, Gabriel Ramos-Fernandez, Sandra E. Smith Aguilar:
Applying Social Network Analysis to Agent-Based Models: A Case Study of Task Allocation in Swarm Robotics Inspired by Ant Foraging Behavior. ALIFE 2019: 616-623 - 2018
- [j24]Tom Froese, Iwin Leenen, Tomas Palenicek:
A role for enhanced functions of sleep in psychedelic therapy? Adapt. Behav. 26(3): 129-135 (2018) - [j23]Ximena Gonzalez-Grandón, Tom Froese:
Grounding 4E Cognition in Mexico: introduction to special issue on spotlight on 4E Cognition research in Mexico. Adapt. Behav. 26(5): 189-198 (2018) - [j22]Jesús Mario Siqueiros-García, Tom Froese, Carlos Gershenson, Wendy Aguilar, Hiroki Sayama, Eduardo Izquierdo:
ALife and Society: Editorial Introduction to the Artificial Life Conference 2016 Special Issue. Artif. Life 24(1) (2018) - [j21]Tom Froese, Linda R. Manzanilla:
Modeling collective rule at ancient Teotihuacan as a complex adaptive system: Communal ritual makes social hierarchy more effective. Cogn. Syst. Res. 52: 862-874 (2018) - [j20]Mario Zarco, Tom Froese:
Self-Optimization in Continuous-Time Recurrent Neural Networks. Frontiers Robotics AI 5: 96 (2018) - [c17]Dobromir Dotov, Tom Froese:
Mutual synchronization and control between artificial chaotic system and human. ALIFE 2018: 109-110 - [c16]Tom Froese, Jorge I. Campos, Nathaniel Virgo:
An iterated learning approach to the origins of the standard genetic code can help to explain its sequence of amino acid assignments. ALIFE 2018: 137-144 - 2017
- [j19]Ezequiel A. Di Paolo, Tom Froese:
Editorial. Adapt. Behav. 25(1): 3-4 (2017) - [j18]Michael D. Kirchhoff, Tom Froese:
Where There is Life There is Mind: In Support of a Strong Life-Mind Continuity Thesis. Entropy 19(4): 169 (2017) - [c15]Mario Zarco, Tom Froese:
Self-modeling in Hopfield Neural Networks with Continuous Activation Function. BICA 2017: 573-578 - [c14]Jorge I. Campos, Tom Froese:
Referential communication as a collective property of a brain-body-environment-body-brain system: A minimal cognitive model. SSCI 2017: 1-8 - 2016
- [j17]Tim Taylor, Mark A. Bedau, Alastair Channon, David H. Ackley, Wolfgang Banzhaf, Guillaume Beslon, Emily L. Dolson, Tom Froese, Simon J. Hickinbotham, Takashi Ikegami, Barry McMullin, Norman H. Packard, Steen Rasmussen, Nathaniel Virgo, Eran Agmon, Edward Clark, Simon McGregor, Charles Ofria, Glen E. P. Ropella, Lee Spector, Kenneth O. Stanley, Adam Stanton, Christopher Steven Timperley, Anya E. Vostinar, Michael J. Wiser:
Open-Ended Evolution: Perspectives from the OEE Workshop in York. Artif. Life 22(3): 408-423 (2016) - [c13]Roberto Ulloa, Tom Froese:
Nobility-targeting raids among the Classic Maya: Cooperation in scale-free networks persists under tournament attack when population size fluctuates. ALIFE 2016: 472-479 - [e1]Tom Froese, Jesús Mario Siqueiros-García, Wendy Aguilar, Eduardo J. Izquierdo, Hiroki Sayama, Carlos Gershenson:
Fifteenth International Conference on the Simulation and Synthesis of Living Systems, ALIFE 2016, Cancun, Mexico, July 4-6, 2016. MIT Press 2016 [contents] - 2015
- [j16]Tom Froese, Franklenin Sierra:
Book Review: Contemporary Sensorimotor Theory. Frontiers Robotics AI 2: 26 (2015) - [j15]Alexander Woodward, Tom Froese, Takashi Ikegami:
Neural coordination can be enhanced by occasional interruption of normal firing patterns: A self-optimizing spiking neural network model. Neural Networks 62: 39-46 (2015) - [c12]Tom Froese:
Toward a behavior-based approach to the origins of life and the genetic system. ECAL 2015: 397 - 2014
- [j14]Tom Froese, Alexander Woodward, Takashi Ikegami:
Are altered states of consciousness detrimental, neutral or helpful for the origins of symbolic cognition? A response to Hodgson and Lewis-Williams. Adapt. Behav. 22(1): 89-95 (2014) - [j13]Tom Froese, Alexander Woodward, Takashi Ikegami:
People in the Paleolithic could access the whole spectrum of consciousness: response to Helvenston. Adapt. Behav. 22(4): 282-285 (2014) - [j12]Tom Froese, Nathaniel Virgo, Takashi Ikegami:
Motility at the Origin of Life: Its Characterization and a Model. Artif. Life 20(1): 55-76 (2014) - [j11]Wendy Aguilar, Guillermo Santamaría Bonfil, Tom Froese, Carlos Gershenson:
The Past, Present, and Future of Artificial Life. Frontiers Robotics AI 1: 8 (2014) - [i4]Tom Froese, Hiroyuki Iizuka, Takashi Ikegami:
Embodied social interaction constitutes social cognition in pairs of humans: A minimalist virtual reality experiment. CoRR abs/1401.4158 (2014) - [i3]Alexander Woodward, Tom Froese, Takashi Ikegami:
Neural coordination can be enhanced by occasional interruption of normal firing patterns: A self-optimizing spiking neural network model. CoRR abs/1409.0470 (2014) - 2013
- [j10]Tom Froese, Alexander Woodward, Takashi Ikegami:
Turing instabilities in biology, culture, and consciousness? On the enactive origins of symbolic material culture. Adapt. Behav. 21(3): 199-214 (2013) - [c11]Tom Froese, Carlos Gershenson, David A. Rosenblueth:
The dynamically extended mind. IEEE Congress on Evolutionary Computation 2013: 1419-1426 - [c10]Nathaniel Virgo, Tom Froese, Takashi Ikegami:
The positive role of parasites in the origins of life. ALIFE 2013: 1-4 - [i2]Tom Froese, Carlos Gershenson, David A. Rosenblueth:
The Dynamically Extended Mind -- A Minimal Modeling Case Study. CoRR abs/1305.1958 (2013) - [i1]Tom Froese, Nathaniel Virgo, Takashi Ikegami:
Motility at the origin of life: Its characterization and a model. CoRR abs/1311.2531 (2013) - 2012
- [j9]Tom Froese:
From adaptive behavior to human cognition: a review of Enaction. Adapt. Behav. 20(3): 209-221 (2012) - [j8]Tom Froese, John Stewart:
Enactive Cognitive Science and Biology of Cognition: A Response to Humberto Maturana. Cybern. Hum. Knowing 19(4): 61-74 (2012) - [j7]Tom Froese, Keisuke Suzuki, Yuta Ogai, Takashi Ikegami:
Using Human-Computer Interfaces to Investigate 'Mind-As-It-Could-Be' from the First-Person Perspective. Cogn. Comput. 4(3): 365-382 (2012) - [j6]Tom Froese, Marek McGann, William Bigge, Adam Spiers, Anil K. Seth:
The Enactive Torch: A New Tool for the Science of Perception. IEEE Trans. Haptics 5(4): 365-375 (2012) - [c9]Tom Froese, Takashi Ikegami, Nathaniel Virgo:
The Behavior-Based Hypercycle: From Parasitic Reaction to Symbiotic Behavior. ALIFE 2012 - 2011
- [c8]Tom Froese, Nathaniel Virgo, Takashi Ikegami:
Life as a process of open-ended becoming: Analysis of a minimal model. ECAL 2011: 250-257 - 2010
- [j5]Tom Froese, John Stewart:
Life After Ashby: Ultrastability and the Autopoietic Foundations of Biological Autonomy. Cybern. Hum. Knowing 17(4): 7-49 (2010) - [j4]Tom Froese, Ezequiel A. Di Paolo:
Modelling social interaction as perceptual crossing: an investigation into the dynamics of the interaction process. Connect. Sci. 22(1): 43-68 (2010) - [c7]Bruno A. Santos, Phil Husbands, Tom Froese:
Accommodating Homeostatically Stable Dynamical Regimes to Cope with Different Environmental Conditions. ALIFE 2010: 395-402 - [c6]Jose A. Fernandez-Leon, Tom Froese:
What is the relationship between behavioral robustness and distributed mechanisms of cognitive behavior? IEEE Congress on Evolutionary Computation 2010: 1-8
2000 – 2009
- 2009
- [j3]Hanne De Jaegher, Tom Froese:
On the Role of Social Interaction in Individual Agency. Adapt. Behav. 17(5): 444-460 (2009) - [j2]Tom Froese, Tom Ziemke:
Enactive artificial intelligence: Investigating the systemic organization of life and mind. Artif. Intell. 173(3-4): 466-500 (2009) - [c5]Nathaniel Virgo, Matthew D. Egbert, Tom Froese:
The Role of the Spatial Boundary in Autopoiesis. ECAL (1) 2009: 240-247 - [c4]Tom Froese, Ezequiel A. Di Paolo:
Toward Minimally Social Behavior: Social Psychology Meets Evolutionary Robotics. ECAL (1) 2009: 426-433 - 2008
- [c3]Tom Froese, Ezequiel A. Di Paolo:
Stability of Coordination Requires Mutuality of Interaction in a Model of Embodied Agents. SAB 2008: 52-61 - 2007
- [c2]Tom Froese, Nathaniel Virgo, Eduardo Izquierdo:
Autonomy: A Review and a Reappraisal. ECAL 2007: 455-464 - 2006
- [j1]Tom Froese, Sillas Hadjiloucas, Roberto Kawakami Harrop Galvão, Victor M. Becerra, Clarimar José Coelho:
Comparison of extrasystolic ECG signal classifiers using discrete wavelet transforms. Pattern Recognit. Lett. 27(5): 393-407 (2006) - [c1]Tom Froese:
On the Role of AI in the Ongoing Paradigm Shift within the Cognitive Sciences. 50 Years of Artificial Intelligence 2006: 63-75
Coauthor Index
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