Riadok 48: Riadok 48:
 
!Topic
 
!Topic
 
!References
 
!References
 +
<!--=============================================================================================-->
 
|-
 
|-
 
|(1) <br> 24.09.
 
|(1) <br> 24.09.
Riadok 56: Riadok 57:
 
♦ Margolis E., Laurence S. (2014)
 
♦ Margolis E., Laurence S. (2014)
 
[https://plato.stanford.edu/entries/concepts/ Concepts], The Stanford Encyclopedia of Philosophy. <br>
 
[https://plato.stanford.edu/entries/concepts/ Concepts], The Stanford Encyclopedia of Philosophy. <br>
 +
<!--=============================================================================================-->
 
|-
 
|-
 
|(2) <br>03.10.
 
|(2) <br>03.10.
Riadok 68: Riadok 70:
 
<!--♦ Barsalou L. (2008).  
 
<!--♦ Barsalou L. (2008).  
 
[http://www.cogsci.ucsd.edu/~ajyu/Teaching/Cogs202_sp12/Readings/barsalou08_grounded.pdf Grounded cognition]. Annual Reviews of Psychology, 59: 617-45.-->
 
[http://www.cogsci.ucsd.edu/~ajyu/Teaching/Cogs202_sp12/Readings/barsalou08_grounded.pdf Grounded cognition]. Annual Reviews of Psychology, 59: 617-45.-->
 +
<!--=============================================================================================-->
 
|-
 
|-
 
|(3) <br>08.10.
 
|(3) <br>08.10.
Riadok 79: Riadok 82:
 
<!--Giese M. & Rizzolatti G. (2015).  
 
<!--Giese M. & Rizzolatti G. (2015).  
 
[http://dai.fmph.uniba.sk/courses/GC/References/giese.visual-motor-reps.neuron15.pdf Neural and computational mechanisms of action processing: Interaction between visual and motor representations]. <i>Neuron,</i> 88, 167-180. -->
 
[http://dai.fmph.uniba.sk/courses/GC/References/giese.visual-motor-reps.neuron15.pdf Neural and computational mechanisms of action processing: Interaction between visual and motor representations]. <i>Neuron,</i> 88, 167-180. -->
 +
<!--=============================================================================================-->
 
|-
 
|-
 
|(4) <br>15.10.
 
|(4) <br>15.10.
Riadok 87: Riadok 91:
 
[http://dai.fmph.uniba.sk/courses/GC/References/jeannerod.simul-action.nimg01.pdf Neural simulation of action: A unifying mechanism for motor cognition], <i>NeuroImage</i>, 14, 103–109, doi:10.1006/nimg.2001.0832  <br>-->
 
[http://dai.fmph.uniba.sk/courses/GC/References/jeannerod.simul-action.nimg01.pdf Neural simulation of action: A unifying mechanism for motor cognition], <i>NeuroImage</i>, 14, 103–109, doi:10.1006/nimg.2001.0832  <br>-->
 
♦ Smith A.H. (2006)  
 
♦ Smith A.H. (2006)  
[http://dai.fmph.uniba.sk/courses/GC/References/smith.motor-cogn-simul.chap06.pdf Motor cognition and mental simulation]. Chapter in Smith E. & Kosslyn S. (eds.): Cognitive Psychology: Mind and Brain, Prentice Hall, pp. 451-481. <br>
+
[http://dai.fmph.uniba.sk/courses/GC/References/smith.motor-cogn-simul.chap06.pdf Motor cognition and mental simulation]. Chapter in Smith E. & Kosslyn S. (eds.): Cognitive Psychology: Mind and Brain, Prentice Hall, pp. 451-481. [http://dai.fmph.uniba.sk/courses/GC/Slides/motor-cognition.4x.pdf slides]    <br>
 
<!--(<a href="courses/GroundedCog/Moderation/knez.motor-cog.pdf">Simon K.</a>)<br-->
 
<!--(<a href="courses/GroundedCog/Moderation/knez.motor-cog.pdf">Simon K.</a>)<br-->
 
♦ van der Wel R., Sebanz N., Knoblich G. (2013)  
 
♦ van der Wel R., Sebanz N., Knoblich G. (2013)  
 
[http://dai.fmph.uniba.sk/courses/GC/References/vanderwel.common-coding.xx11.pdf Action perception from a common coding perspective]. Chapter in K. Johnson and M. Schiffrar (Eds.), <i>People Watching: Social, Perceptual, and Neurophysiological Studies of Body Perception</i>, Oxford University Press  <b>(Rebecca)</b> <br>
 
[http://dai.fmph.uniba.sk/courses/GC/References/vanderwel.common-coding.xx11.pdf Action perception from a common coding perspective]. Chapter in K. Johnson and M. Schiffrar (Eds.), <i>People Watching: Social, Perceptual, and Neurophysiological Studies of Body Perception</i>, Oxford University Press  <b>(Rebecca)</b> <br>
 +
<!--=============================================================================================-->
 
|-
 
|-
 
|(5) <br>22.10.
 
|(5) <br>22.10.
Riadok 103: Riadok 108:
 
[http://dai.fmph.uniba.sk/courses/GC/References/pulvermueller.lang-action.nrn05.pdf Brain mechanisms linking language and action]. <i>Nature Rev. Neurosci.,</i> 6(7), 576-582.<br>-->
 
[http://dai.fmph.uniba.sk/courses/GC/References/pulvermueller.lang-action.nrn05.pdf Brain mechanisms linking language and action]. <i>Nature Rev. Neurosci.,</i> 6(7), 576-582.<br>-->
 
♦ Arbib M., Gasser B., Barrès V. (2014)  
 
♦ Arbib M., Gasser B., Barrès V. (2014)  
[http://dai.fmph.uniba.sk/courses/GC/References/arbib.lang-emb.npsy14.pdf Language is handy but is it embodied?]. <i>Neuropsychologia,</i> 55, 57–70.  <b>(Ozan *)</b>
+
[http://dai.fmph.uniba.sk/courses/GC/References/arbib.lang-emb.npsy14.pdf Language is handy but is it embodied?]. <i>Neuropsychologia,</i> 55, 57–70.  <b>(Ozan + Viki)</b>
 
<!--(<a href="courses/GroundedCog/Moderation/reichl.arbib.pdf">Dominik R.</a>)<br-->
 
<!--(<a href="courses/GroundedCog/Moderation/reichl.arbib.pdf">Dominik R.</a>)<br-->
 +
<!--=============================================================================================-->
 
|-
 
|-
 
|(6) <br>31.10.  
 
|(6) <br>31.10.  
Riadok 115: Riadok 121:
 
♦ Evans V. (2009)  
 
♦ Evans V. (2009)  
 
[http://dai.fmph.uniba.sk/courses/GC/References/evans.lccm.ch09.pdf Semantic representation in LCCM Theory]. In: New Directions in Cognitive Linguistics, ed. By V. Evans & S. Pourcel. John Benjamins.  <b>(Dina + Alan)</b>
 
[http://dai.fmph.uniba.sk/courses/GC/References/evans.lccm.ch09.pdf Semantic representation in LCCM Theory]. In: New Directions in Cognitive Linguistics, ed. By V. Evans & S. Pourcel. John Benjamins.  <b>(Dina + Alan)</b>
 +
<!--=============================================================================================-->
 
|-
 
|-
 
|(7) <br>05.11.
 
|(7) <br>05.11.
Riadok 124: Riadok 131:
 
♦ Ohta S., Fukui N., Sakai K. (2013) [https://doi.org/10.3389/fnbeh.2013.00204 Computational principles of syntax in the regions specialized for language: integrating theoretical linguistics and functional neuroimaging], <i>Frontiers in Behavioral Neuroscience</i>, https://doi.org/10.3389/fnbeh.2013.00204 <b>(Patricija)</b> <br>
 
♦ Ohta S., Fukui N., Sakai K. (2013) [https://doi.org/10.3389/fnbeh.2013.00204 Computational principles of syntax in the regions specialized for language: integrating theoretical linguistics and functional neuroimaging], <i>Frontiers in Behavioral Neuroscience</i>, https://doi.org/10.3389/fnbeh.2013.00204 <b>(Patricija)</b> <br>
 
♦ Sakai, K.L., Perlovsky, L., eds. (2015) [https://www.frontiersin.org/articles/10.3389/fnbeh.2014.00436/full Language and Cognition]. Lausanne: Frontiers Media. The articles can be found [http://mind.c.u-tokyo.ac.jp/Sakai_Lab_files/Papers/Language_and_Cognition_2015.PDF here].<br>
 
♦ Sakai, K.L., Perlovsky, L., eds. (2015) [https://www.frontiersin.org/articles/10.3389/fnbeh.2014.00436/full Language and Cognition]. Lausanne: Frontiers Media. The articles can be found [http://mind.c.u-tokyo.ac.jp/Sakai_Lab_files/Papers/Language_and_Cognition_2015.PDF here].<br>
 +
<!--=============================================================================================-->
 
|-
 
|-
 
|(8) <br>12.11.  
 
|(8) <br>12.11.  
Riadok 132: Riadok 140:
 
♦ Coradeschi S., Loutfi A., Wrede B. (2013)  
 
♦ Coradeschi S., Loutfi A., Wrede B. (2013)  
 
[http://dai.fmph.uniba.sk/courses/GC/References/coradeschi.sgp-review.ki13.pdf A short review of symbol grounding in robotic and intelligent systems]. <i>Künstliche Intelligenz</i>, 27:129–136  <b>(Oskar)</b> <br>
 
[http://dai.fmph.uniba.sk/courses/GC/References/coradeschi.sgp-review.ki13.pdf A short review of symbol grounding in robotic and intelligent systems]. <i>Künstliche Intelligenz</i>, 27:129–136  <b>(Oskar)</b> <br>
 +
<!--=============================================================================================-->
 
|-
 
|-
 
|(9) <br>19.11.
 
|(9) <br>19.11.
Riadok 149: Riadok 158:
 
♦ Bruni E.,  Tran N.K., Baroni M. (2014)
 
♦ Bruni E.,  Tran N.K., Baroni M. (2014)
 
[http://dai.fmph.uniba.sk/courses/GC/References/bruni.multimodal-distr-sem.jair14.pdf Multimodal distributional semantics]. <i>Journal of Artificial Intelligence Research</i>,  49, 1-47 <b>(Matej)</b>
 
[http://dai.fmph.uniba.sk/courses/GC/References/bruni.multimodal-distr-sem.jair14.pdf Multimodal distributional semantics]. <i>Journal of Artificial Intelligence Research</i>,  49, 1-47 <b>(Matej)</b>
 +
<!--=============================================================================================-->
 
|-
 
|-
 
|(10) <br>26.11.
 
|(10) <br>26.11.
Riadok 158: Riadok 168:
 
♦ Dove G. (2011)  
 
♦ Dove G. (2011)  
 
[http://dx.doi.org/10.3389/fpsyg.2010.00242 On the need for embodied and dis-embodied cognition]. <i>Frontiers in Psychology,</i> 1:242 <b>(Julia)</b>
 
[http://dx.doi.org/10.3389/fpsyg.2010.00242 On the need for embodied and dis-embodied cognition]. <i>Frontiers in Psychology,</i> 1:242 <b>(Julia)</b>
 +
<!--=============================================================================================-->
 
|-
 
|-
 
|(11) <br>03.12.
 
|(11) <br>03.12.
Riadok 167: Riadok 178:
 
<!--Barsalou L.W., Dutriaux L., Scheepers C. (2018)  
 
<!--Barsalou L.W., Dutriaux L., Scheepers C. (2018)  
 
[http://dx.doi.org/10.1098/rstb.2017.0144 Moving beyond the distinction between concrete and abstract concepts]. <i>Phil. Trans. R. Soc. B</i>, 373: 20170144 -->
 
[http://dx.doi.org/10.1098/rstb.2017.0144 Moving beyond the distinction between concrete and abstract concepts]. <i>Phil. Trans. R. Soc. B</i>, 373: 20170144 -->
 +
<!--=============================================================================================-->
 
|-
 
|-
 
|(12) <br>10.12.
 
|(12) <br>10.12.

Verzia zo dňa a času 14:29, 15. október 2019

Grounded Cognition – 2-IKV-236/15

The course objective is to provide students with deeper insight into up-to-date research trends in cognitive science, from the perspective of various disciplines (psychological, neural and computational). The course focus is on grounded (embodied) cognition, and its relation to language. The course should also help students in their ability to interpret scientific papers, to formulate, present and defend ideas.

The course is a part of Master Programme in Cognitive Science.


Syllabus

Date Topic References
(1)
24.09.
Introduction to language and concepts

slides1 slides2

♦ Wiki: Language
♦ Margolis E., Laurence S. (2014) Concepts, The Stanford Encyclopedia of Philosophy.

(2)
03.10.
Towards embodied cognition

♦ Wilson M. (2002) Six views of embodied cognition. Psychonomics Bulletin Review, 9(4), 625-636. slides
♦ Ziemke T. (2003) What's that thing called embodiment? Proc. of the 25th Annual Conf. of the Cog. Sci. Society, 1134-1139. (Maša)

(3)
08.10.
Mirror neuron system and its role(s) in cognition

♦ Rizzolatti G. & Sinigaglia C. (2010) The functional role of the parieto-frontal mirror circuit: Interpretations and misinterpretations. Nature Rev. Neurosci., 11, 264-274. slides
♦ Casile A., Caggiano V., Ferrari P.F. (2011) The Mirror Neuron System: A Fresh View. The Neuroscientist, 17(5): 524-38. (Ena)

(4)
15.10.
Common coding theory, motor simulation, mental simulation

♦ Smith A.H. (2006) Motor cognition and mental simulation. Chapter in Smith E. & Kosslyn S. (eds.): Cognitive Psychology: Mind and Brain, Prentice Hall, pp. 451-481. slides
♦ van der Wel R., Sebanz N., Knoblich G. (2013) Action perception from a common coding perspective. Chapter in K. Johnson and M. Schiffrar (Eds.), People Watching: Social, Perceptual, and Neurophysiological Studies of Body Perception, Oxford University Press (Rebecca)

(5)
22.10.
Language as action

♦ Martin H. Fischer M.H., Zwaan R.A. (2008) Embodied language: A review of the role of the motor system in language comprehension. The Quaterly Journal of Exp. Psych., 61 (6), 825-850
♦ Arbib M., Gasser B., Barrès V. (2014) Language is handy but is it embodied?. Neuropsychologia, 55, 57–70. (Ozan + Viki)

(6)
31.10.
Conceptual and linguistic systems - two theories

♦ Barsalou L. et al. (2008) Language and simulation in conceptual processing. In: de Vega, Glenberg & Graesser (eds), Symbols and Embodiment: Debates on Meaning and Cognition, OUP, 245-283.
♦ Evans V. (2009) Semantic representation in LCCM Theory. In: New Directions in Cognitive Linguistics, ed. By V. Evans & S. Pourcel. John Benjamins. (Dina + Alan)

(7)
05.11.
Role(s) of language in cognition

♦ Mirolli M., Parisi D. (2009) Towards a Vygotskyan cognitive robotics: The role of language as a cognitive tool. New Ideas in Psychology, doi:10.1016/j.newideapsych.2009.07.001
♦ Ohta S., Fukui N., Sakai K. (2013) Computational principles of syntax in the regions specialized for language: integrating theoretical linguistics and functional neuroimaging, Frontiers in Behavioral Neuroscience, https://doi.org/10.3389/fnbeh.2013.00204 (Patricija)
♦ Sakai, K.L., Perlovsky, L., eds. (2015) Language and Cognition. Lausanne: Frontiers Media. The articles can be found here.

(8)
12.11.
Symbol grounding problem

♦ Steels L. (2008) The symbol grounding problem has been solved, so what’s next?. In: de Vega, Glenberg & Graesser (eds), Symbols and Embodiment: Debates on Meaning and Cognition, OUP, 223-244.
♦ Coradeschi S., Loutfi A., Wrede B. (2013) A short review of symbol grounding in robotic and intelligent systems. Künstliche Intelligenz, 27:129–136 (Oskar)

(9)
19.11.
Meaning as statistical covariation

♦ Landauer T., Dumais D. (2008) Latent semantic analysis, Scholarpedia, 3(11):4356. wiki
♦ Glenberg, A. M., & Mehta, S. (2008) Constraint on covariation: It’s not meaning. Italian Journal of Linguistics, 20, 33-53.
♦ Bruni E., Tran N.K., Baroni M. (2014) Multimodal distributional semantics. Journal of Artificial Intelligence Research, 49, 1-47 (Matej)

(10)
26.11.
Unification attempts

♦ Louwerse M. (2010) Symbol interdependency in symbolic and embodied cognition. Topics in Cognitive Science, 1-30
♦ Dove G. (2011) On the need for embodied and dis-embodied cognition. Frontiers in Psychology, 1:242 (Julia)

(11)
03.12.
Grounding abstract concepts

♦Borghi A.M., Barca L., Binkofski F., Tummolini L. (2018) Varieties of abstract concepts: development, use and representation in the brain. Phil. Trans. R. Soc. B, 373: 20170121
♦ Pulvermüller F. (2018) The case of CAUSE: neurobiological mechanisms for grounding an abstract concept. Phil. Trans. R. Soc. B, 373: 20170129 (Milagros)

(12)
10.12.
Group presentations, summary available references

Grading

  • Activity during the semester (40%). This includes weekly submitting inputs to the moderator and an active participation during discussions.
  • Paper presentation and moderation (30%). You will select a topic for presentation (one of the papers in the syllabus), collect by email the inputs (one question or a discussion point) from other students in advance (until Saturday, 20:00), and organize them by topic. The inputs should be sent to the moderator, with the subject "author" (use the first author's surname). You will give a short intro and then moderate the discussion. The students will be divided into small groups.
  • Final group presentation (10%). You will prepare a group presentation (3-4 people) on a topic relevant for the course, something you would like to emphasize.
  • Final reflection (20%). You will write a two-page essay (30 lines per page), that will include answers to two points: 1. How you understood the main issues we dealt with (trying to include open questions, if any), 2. How the learnt content enriched your existing knowledge. Your paper (in PDF) can include references. Deadline: 15th January 2020 (delayed submissions will be penalized, by one point less per day).
  • Overall grading (in %): A > 90, B > 80, C > 70, D > 60, E > 50, else Fx.