The roles of motion, gesture, and embodied action in the processing of mathematical concepts
- Omid Khatin-Zadeh,
- ,
- Zahra Eskandari,
- Fernando Marmolejo-Ramos
- University of Electronic Science and Technology of China,
- ,
- ,
- ,
- ,
- Universidade Estadual Paulista Júlio de Mesquita Filho
Open access
Publication Information
Output type
Original language
EnglishArticle number
969341Journal (Volume, Issue Number)
Frontiers in Psychology (Volume 13)Publication milestones
- Published - 14/10/2022
Publication status
Publication IDs
- Scopus: 85140997105
Abstract
This article discusses perspective and frame of reference in the metaphorical description of mathematical concepts in terms of motions, gestures, and embodied actions. When a mathematical concept is described metaphorically in terms of gestures, embodied actions, or fictive motions, the motor system comes into play to ground and understand that concept. Every motion, gesture, or embodied action involves a perspective and a frame of reference. The flexibility in taking perspective and frame of reference allows people to embody a mathematical concept or idea in various ways. Based on the findings of past studies, it is suggested that the graphical representation of a mathematical concept may activate those areas of the motor system that are involved in the production of that graphical representation. This is supported by studies showing that when observers look at a painting or handwritten letters, they simulate the painter’s or writer’s hand movements during painting or writing. Likewise, the motor system can contribute to the grounding of abstract mathematical concepts, such as functions, numbers, and arithmetic operations.
