An Embodied Theory of Transfer of Mathematical Learning
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[1] Joanne Lobato. Alternative Perspectives on the Transfer of Learning: History, Issues, and Challenges for Future Research , 2006 .
[2] Laura E. Thomas. Spatial working memory is necessary for actions to guide thought. , 2013, Journal of experimental psychology. Learning, memory, and cognition.
[3] G. Fauconnier,et al. The Way We Think: Conceptual Blending and the Mind''s Hidden Complexities. Basic Books , 2002 .
[4] Rogers Hall,et al. Introduction to the Special Issue: Modalities of Body Engagement in Mathematical Activity and Learning , 2012 .
[5] Ji Yeon Son,et al. A well-grounded education: the role of perception in science and mathematics , 2008 .
[6] L. Barsalou. Grounded cognition. , 2008, Annual review of psychology.
[7] Scott K. Liddell,et al. Grounded blends, gestures, and conceptual shifts , 1998 .
[8] S. Goldin-Meadow,et al. The mismatch between gesture and speech as an index of transitional knowledge , 1986, Cognition.
[9] James D. Slotta,et al. Misconceived Causal Explanations for Emergent Processes , 2012, Cogn. Sci..
[10] Martha W. Alibali,et al. Relational Equity and Mathematics Learning: Mutual Construction During Collaborative Problem Solving , 2018, J. Numer. Cogn..
[11] Dor Abrahamson,et al. Bringing forth mathematical concepts: signifying sensorimotor enactment in fields of promoted action , 2014, ZDM.
[12] Robert L. Goldstone,et al. Analogical transfer from a simulated physical system. , 2011, Journal of experimental psychology. Learning, memory, and cognition.
[13] Martha W. Alibali,et al. Creating a Context for Learning: Activating Children's Whole Number Knowledge Prepares Them to Understand Fraction Division , 2017, J. Numer. Cogn..
[14] U. Neisser. Cognition and reality: principles and implications , 1976 .
[15] Mitchell J. Nathan,et al. Managing common ground in the classroom: teachers use gestures to support students’ contributions to classroom discourse , 2019, ZDM.
[16] Wolff‐Michael Roth. Gestures: Their Role in Teaching and Learning , 2001 .
[17] E. Freitas,et al. Mathematics and the Body: Material Entanglements in the Classroom , 2014 .
[18] R. A. Brooks,et al. Intelligence without Representation , 1991, Artif. Intell..
[19] M. Alibali,et al. Transitions in concept acquisition: using the hand to read the mind. , 1993, Psychological review.
[20] Mitchell J. Nathan,et al. Threading mathematics through symbols, sketches, software, silicon, and wood: Teachers produce and maintain cohesion to support STEM integration , 2017 .
[21] G. Lakoff,et al. Where mathematics comes from : how the embodied mind brings mathematics into being , 2002 .
[22] Mitchell J. Nathan,et al. Grounded and embodied mathematical cognition: Promoting mathematical insight and proof using action and language , 2017, Cognitive research: principles and implications.
[23] Mitchell J. Nathan. Chapter 8. One function of gesture is to make new ideas: The action-cognition transduction hypothesis , 2017 .
[24] Daniel L. Schwartz,et al. Chapter 3: Rethinking Transfer: A Simple Proposal With Multiple Implications , 1999 .
[25] Autumn B. Hostetter,et al. Gesture as simulated action: Revisiting the framework , 2018, Psychonomic Bulletin & Review.
[26] John R. Anderson,et al. The Transfer of Cognitive Skill , 1989 .
[27] Margaret Wilson,et al. Six views of embodied cognition , 2002, Psychonomic bulletin & review.
[28] J. Gibson. The Senses Considered As Perceptual Systems , 1967 .
[29] J. Gibson. The Ecological Approach to Visual Perception , 1979 .
[30] E. Thorndike,et al. The influence of improvement in one mental function upon the efficiency of other functions. (I). , 1901 .
[31] James J. Gibson,et al. The Ecological Approach to Visual Perception: Classic Edition , 2014 .
[32] N. Taatgen. The nature and transfer of cognitive skills. , 2013, Psychological review.
[33] D. Mareschal,et al. Analogy as relational priming: The challenge of self-reflection , 2008, Behavioral and Brain Sciences.
[34] A. Glenberg,et al. What memory is for: Creating meaning in the service of action , 1997, Behavioral and Brain Sciences.
[35] Daniel L. Schwartz,et al. Rethinking transfer: A simple proposal with multiple implica-tions , 1999 .
[36] James D. Slotta,et al. Helping Students Understand Challenging Topics in Science Through Ontology Training , 2006 .
[37] Susan Goldin-Meadow,et al. Transitional knowledge in the acquisition of concepts , 1988 .
[38] R. Kozma. The material features of multiple representations and their cognitive and social affordances for science understanding , 2003 .
[39] Mitchell J. Nathan,et al. Chapter 13. Making and breaking common ground: How teachers use gesture to foster learning in the classroom , 2017 .
[40] Daniel L. Schwartz,et al. Physically Distributed Learning: Adapting and Reinterpreting Physical Environments in the Development of Fraction Concepts , 2005, Cogn. Sci..
[41] Mitchell J. Nathan,et al. HIGH SCHOOL PRE-ENGINEERING CURRICULA:: ASSESSING TEACHER BELIEFS, INTENDED CURRICULUM, AND ENACTED INSTRUCTION , 2014 .
[42] S. Goldin-Meadow,et al. Assessing Knowledge Through Gesture: Using Children's Hands to Read Their Minds , 1992 .
[43] Amy B. Ellis,et al. How "Focusing Phenomena" in the Instructional Environment Support Individual Students' Generalizations , 2003 .
[44] Mitchell J. Nathan. Rethinking Formalisms in Formal Education , 2012 .
[45] Autumn B. Hostetter,et al. Visible embodiment: Gestures as simulated action , 2008, Psychonomic bulletin & review.
[46] Martha W. Alibali,et al. How Teachers Link Ideas in Mathematics Instruction Using Speech and Gesture: A Corpus Analysis , 2014 .
[47] Robert F. Williams. Gesture as a conceptual mapping tool , 2008 .
[48] Martha W. Alibali,et al. Does Understanding the Equal Sign Matter? Evidence from Solving Equations , 2006 .
[49] Clarissa A. Thompson,et al. Implicit Analogies in Learning: Supporting Transfer by Warming Up , 2019, Current Directions in Psychological Science.
[50] Robert L. Goldstone,et al. Concreteness Fading in Mathematics and Science Instruction: a Systematic Review , 2014 .
[51] Joanne Lobato,et al. How Design Experiments Can Inform a Rethinking of Transfer andViceVersa , 2003 .
[52] David McNeill,et al. Language and Gesture: Catchments and contexts: non-modular factors in speech and gesture production , 2000 .
[53] Dor Abrahamson,et al. Learning Is Moving in New Ways: The Ecological Dynamics of Mathematics Education , 2016 .
[54] C. Goodwin. The co-operative, transformative organization of human action and knowledge , 2013 .
[55] Gilles Fauconnier,et al. Conceptual Integration Networks , 1998, Cogn. Sci..
[56] B. Rittle-Johnson,et al. Promoting transfer: effects of self-explanation and direct instruction. , 2006, Child development.
[57] Mitchell J. Nathan,et al. Gesture as model enactment: the role of gesture in mental model construction and inference making when learning from text , 2015 .
[58] Vladimir M Sloutsky,et al. The cost of concreteness: the effect of nonessential information on analogical transfer. , 2013, Journal of experimental psychology. Applied.
[59] Herbert H. Clark,et al. Contributing to Discourse , 1989, Cogn. Sci..
[60] Nicole M. McNeil. A Change–Resistance Account of Children's Difficulties Understanding Mathematical Equivalence , 2014 .
[61] Ricardo Nemirovsky,et al. Episodic Feelings and Transfer of Learning , 2011 .
[62] Martha W. Alibali,et al. Actions speak louder with words: The roles of action and pedagogical language for grounding mathematical proof , 2014 .
[63] Martha W. Alibali,et al. Building Cohesion Across Representations: A Mechanism for STEM Integration , 2013 .
[64] R. Sternberg,et al. Transfer on Trial: Intelligence, Cognition and Instruction , 1993 .
[65] E. Rosch,et al. The Embodied Mind: Cognitive Science and Human Experience , 1993 .
[66] A. Clark,et al. The Extended Mind , 1998, Analysis.