Publication Cover
Cognitive Neuroscience
Current Debates, Research & Reports
Volume 10, 2019 - Issue 1
235
Views
0
CrossRef citations to date
0
Altmetric
Articles

From goals to muscles: motor familiarity shapes the representation of action-related sounds in the human motor system

ORCID Icon, &

References

  • Aglioti, S. M., Cesari, P., Romani, M., & Urgesi, C. (2008). Action anticipation and motor resonance in elite basketball players. Nature Neuroscience, 11, 1109–1116.
  • Aglioti, S. M., & Pazzaglia, M. (2011). Sounds and scents in (social) action. Trends Cognition Sciences, 15, 47–55.
  • Alexander, G. E., & Crutcher, M. D. (1990a). Neural representations of the target (goal) of visually guided arm movements in three motor areas of the monkey. Journal of Neurophysiology, 64, 164–178.
  • Alexander, G. E., & Crutcher, M. D. (1990b). Preparation for movement: Neural representations of intended direction in three motor areas of the monkey. Journal of Neurophysiology, 64, 133–150.
  • Aziz-Zadeh, L., Iacoboni, M., Zaidel, E., Wilson, S., & Mazziotta, J. (2004). Left hemisphere motor facilitation in response to manual action sounds. The European Journal of Neuroscience, 19, 2609–2612.
  • Aziz-Zadeh, L., Wilson, S. M., Rizzolatti, G., & Iacoboni, M. (2006). Congruent embodied representations for visually presented actions and linguistic phrases describing actions. Current Biology, 16, 1818–1823.
  • Bangert, M., & Altenmüller, E. O. (2003). Mapping perception to action in piano practice: A longitudinal DC-EEG study. BMC Neuroscience, 4, 26.
  • Bangert, M., Peschel, T., Schlaug, G., Rotte, M., Drescher, D., Hinrichs, H., … Altenmüller, E. (2005). Shared networks for auditory and motor processing in professional pianists: Evidence from fMRI conjunction. Neuroimage, 30, 917–926.
  • Buccino, G, Riggio, L, Melli, G, Binkofski, F, Gallese, V, & Rizzolatti, G. (2005). Listening to action-related sentences modulates the activity of the motor system: a combined tms and behavioral study. Brain Research, Cognitive Brain Research, 24, 355–363. doi:
  • Caetano, G., Jousmäki, V., & Hari, R. (2007). Actor’s and observer’s primary motor cortices stabilize similarly after seen or heard motor actions. Proceedings National Academic Sciences USA, 104, 9058–9062.
  • Calvo-Merino, B., Grèzes, J., Glaser, D. E., Passingham, R. E., & Haggard, P. (2006). Seeing or doing? Influence of visual and motor familiarity in action observation. Current Biology, 16, 1905–1910.
  • Cattaneo, L., Caruana, F., Jezzini, A., & Rizzolatti, G. (2009). Representation of goal and movements without overt motor behavior in the human motor cortex: A transcranial magnetic stimulation study. The Journal of Neuroscience, 29(36), 11134–11138.
  • Classen, J., Liepert, J., Wise, S. P., Hallett, M., & Cohen, L. G. (1998). Rapid plasticity of human cortical movement representation induced by practice. Journal of Neurophysiology, 79(2), 1117–1123.
  • Cross, E. S., Hamilton, A. F., & Grafton, S. T. (2006). Building a motor simulation de novo: Observation of dance by dancers. NeuroImage, 31, 1257–1267.
  • D’ausilio, A., Altenmüller, E., Olivetti Belardinelli, M., &Lotze, M. (2006). Cross-modal plasticity of the motor cortex while listening to a rehearsed musical piece. European Journal of Neuroscience, 24(3), 955–958.
  • D’Ausilio, A., Pulvermüller, F., Salmas, P., Bufalari, I., Begliomini, C., & Fadiga, L. (2009). The motor somatotopy of speech perception. Current Biology, 19, 381–385.
  • Dum, R. P., & Strick, P. L. (2005). Frontal lobe inputs to the digit representations of the motor areas on the lateral surface of the hemisphere. The Journal of Neuroscience, 25, 1375–1386.
  • Elsner, B., & Hommel, B. (2001). Effect anticipation and action control. Journal of Experimental Psychology. Human Perception and Performance, 27, 229–240.
  • Fadiga, L., Craighero, L., Buccino, G., & Rizzolatti, G. (2002). Speech listening specifically modulates the excitability of tongue muscles: A TMS study. The European Journal of Neuroscience, 15, 399–402.
  • Fadiga, L., Fogassi, L., Gallese, V., & Rizzolatti, G. (2000). Visuomotor neurons: Ambiguity of the discharge or ‘motor’ perception? International Journal of Psychophysiology, 35(2–3), 165.
  • Fadiga, L., Fogassi, L., Pavesi, G., & Rizzolatti, G. (1995). Motor facilitation during action observation: A magnetic stimulation study. Journal of Neurophysiology, 73, 2608–2611.
  • Faul, F., Erdfelder, E., Buchner, A., & Lang, A. (2009). Statistical power analyses using G*Power 3.1: Tests for correlation and regression analyses. Behavior Research Methods, 41, 1149–1160.
  • Fernandino, L., & Iacoboni, M. (2010). Are cortical motor maps based on body parts or coordinated actions? Implications for embodied semantics. Brain and Language, 112, 44–53.
  • Gazzola, V., Aziz-Zadeh, L., & Keysers, C. (2006). Empathy and the somatotopic auditory mirror system in humans. Current Biology, 16, 1824–1829.
  • Gentilucci, M., & Dalla Volta, R. (2008). Spoken language and arm gestures are controlled by the same motor control system. The Quarterly Journal of Experimental Psychology, 61, 944–957.
  • Graziano, M. (2006). The organization of behavioral repertoire in motor cortex. Annual Review of Neuroscience, 29, 105.
  • Graziano, M., & Aflalo, T. (2007). Mapping behavioral repertoire onto the cortex. Neuron, 56, 239–251.
  • Graziano, M., Taylor, C., & Moore, T. (2002). Complex movements evoked by microstimulation of precentral cortex. Neuron, 34, 841.
  • Haueisen, J., & Knösche, T. R. (2001). Involuntary motor activity in pianists evoked by music perception. Journal of Cognitive Neuroscience, 13, 786–792.
  • Hauk, O., Shtyrov, Y., & Pulvermueller, F. (2006). The sound of actions as reflected by mismatch negativity: Rapid activation of cortical sensory-motor networks by sounds associated with finger and tongue movements. The European Journal of Neuroscience, 23, 811–821.
  • Hebb, D. (1949).
  • Herwig, A., Prinz, W., & Waszak, F. (2007). Two modes of sensorimotor integration in intention-based and stimulus-based actions. The Quarterly Journal of Experimental Psychology, 60(11), 1540–1554.
  • Hikosaka, O., Nakahara, H., Rand, M. K., Sakai, K., Lu, X., Nakamura, K., … Doya, K. (1999). Parallel neural networks for learning sequential procedures. Trends in Neurosciences, 22(10), 464–471.
  • Hikosaka, O., Nakamura, K., Sakai, K., & Nakahara, H. (2002). Central mechanisms of motor skill learning. Current Opinion in Neurobiology, 12(2), 217–222.
  • Hommel, B., Müsseler, J., Aschersleben, G., & Prinz, W. (2001). The Theory of Event Coding (TEC): A framework for perception and action planning. Behavioral Brain Sciences, 24(5), 849–878.
  • James, W. (1890). The principles of psychology. New York, NY: Holt.
  • Jastorff, J., Begliomini, C., Fabbri-Destro, M., Rizzolatti, G., & Orban, G. A. (2010). Coding observed motor acts: Different organizational principles in the parietal and premotor cortex of humans. Journal of Neurophysiology, 104, 128–140.
  • Kakei, S., Hoffman, D. S., & Strick, P. L. (1999). Muscle and movement representations in the primary motor cortex. Science, 285, 2136–2139.
  • Kakei, S., Hoffman, D. S., & Strick, P. L. (2001). Direction of action is represented in the ventral premotor cortex. Nature Neuroscience, 4, 1020–1025.
  • Kakei, S., Hoffman, D. S., & Strick, P. L. (2003). Sensorimotor transformations in cortical motor areas. Neuroscience Research, 46, 1–10.
  • Keysers, C., Kohler, E., Umilta`, M. A., Nanetti, L., Fogassi, L., & Gallese, V. (2003). Audiovisual mirror neurons and action recognition. Experiments Brain Researcher, 153, 628–636.
  • Keysers, C., & Perrett, D. I. (2004). Demystifying social cognition: A Hebbian perspective. Trends in Cognitive Science, 8(11), 501–507.
  • Keysers, C., Perrett, D. I., & Gazzola, V. (2014). Hebbian learning is about contingency, not contiguity, and explains the emergence of predictive mirror neurons. Behavioral and Brain Sciences, 37(02), 205–206.
  • Kohler, E., Keysers, C., Umilta`, M. A., Fogassi, L., Gallese, V., & Rizzolatti, G. (2002). Hearing sounds, understanding actions: Action representation in mirror neurons. Science, 297, 846–848.
  • Krakauer, J. W., & Shadmehr, R. (2006). Consolidation of motor memory. Trends in Neurosciences, 29(1), 58–64.
  • Lahav, A., Saltzman, E., & Schlaug, G. (2007). Action representation of sound: Audiomotor recognition network while listening to newly acquired actions. Journal of Neuroscience, 27, 308–314.
  • Lepage, J. F, Tremblay, S, Nguyen, D. K, Champoux, F, Lassonde, M, & Théoret, H. (2010). Action related sounds induce early and late modulations of motor cortex activity. Neuroreport, 21, 250–253.
  • Lotze, M., Scheler, G., Tan, H. R., Braun, C., & Birbaumer, N. (2003). The musician’s brain: Functional imaging of amateurs and professionals during performance and imagery. Neuroimage, 20, 1817–1829.
  • Matelli, M., Camarda, R., Glickstein, M., & Rizzolatti, G. (1986). Afferent and efferent projections of the inferior area 6 in the macaque monkey. The Journal of Comparative Neurology, 251, 281–298.
  • Melcher, T., Weidema, M., Eenshuistra, R. M., Hommel, B., & Gruber, O. (2008). The neural substrate of the ideomotor principle: An event-related fMRI analysis. NeuroImage, 39(3), 1274–1288.
  • Möttönen, R., & Watkins, K. E. (2009). Motor representations of articulators contribute to categorical perception of speech sounds. Journal of Neuroscience, 29, 9819–9825.
  • Murthy, V. N., & Fetz, E. E. (1992). Coherent 25- to 35-Hz oscillations in the sensorimotor cortex of awake behaving monkeys. Proceedings National Academic Sciences USA, 89, 5670–5674.
  • Pazzaglia, M., Pizzamiglio, L., Pes, E., & Aglioti, S. M. (2008). The sound of actions in apraxia. Current Biology, 18, 1766–1772.
  • Pizzamiglio, L., Aprile, T., Spitoni, G., Pitzalis, S., Bates, E., D’Amico, S., & Di Russo, F. (2005). Separate neural systems for processing action- or non-action-related sounds. Neuroimage, 24, 852–861.
  • Rizzolatti, G., & Arbib, M. A. (1998). Language within our grasp. Trends in Neurosciences, 21, 188–194.
  • Rizzolatti, G., & Craighero, L. (2004). The mirror-neuron system. Annual Review of Neuroscience, 27, 169–192.
  • Rizzolatti, G., & Matelli, M. (2003). Two different streams form the dorsal visual system: Anatomy and functions. Experimental Brain Research, 153, 146–157.
  • Rouder, J. N., Morey, R. D., Speckman, P. L., & Province, J. M. (2012). Default Bayes factors for ANOVA designs. Journal of Mathemtaical Psychology, 56, 356e374.
  • Rouder, J. N., Speckman, P. L., Sun, D., Morey, R. D., & Iverson, G. (2009). Bayesian t tests for accepting and rejecting the null hypothesis. Psychonomic Bulletin & Review, 16(2), 225–237.
  • Salmelin, R., & Hari, R. (1994). Spatiotemporal characteristics of sensorimotor neuromagnetic rhythms related to thumb movement. Neuroscience, 60, 537–550.
  • Schieber, M. H. (2001). Constraints on somatotopic organization in the primary motor cortex. Journal of Neurophysiology, 86, 2125–2143.
  • Schütz-Bosbach, S., & Prinz, W. (2007). Perceptual resonance: Action-induced modulation of perception. Trends in Cognitive Sciences, 11, 349–355.
  • Shimazu, H., Maier, M. A., Cerri, G., Kirkwood, P. A., & Lemon, R. N. (2004). Macaque ventral premotor cortex exerts powerful facilitation of motor cortex outputs to upper limb motoneurons. The Journal of Neuroscience, 24, 1200–1211.
  • Tettamanti, M., Buccino, G., Saccuman, M. C., Gallese, V., Danna, M., et al (2005). Listening to action-related sentences activates fronto- parietal motor circuits. Journal of Cognitive Neuroscience, 17, 273–281.
  • Ticini, L. F., Schuetz-Bosbach, S., & Waszak, F. (2017). Mirror and (absence of) counter-mirror responses to action sounds measured with transcranial magnetic stimulation. Social Cognitive and Affective Neuroscience. doi:10.1093/scan/nsx106
  • Ticini, L. F., Schütz-Bosbach, S., Weiss, C., Casile, A., & Waszak, F. (2012). When sounds become actions: Higher-order representation of newly learned action sounds in the human motor system. Journal of Cognitive Neuroscience, 24(2), 464–474.
  • Umiltà, M. A., Kohler, E., Gallese, V., Fogassi, L., Fadiga, L., Keysers, C., & Rizzolatti, G. (2001). I know what you are doing. A neurophysiological study. Neuron, 31, 155–165.
  • Umilta`, M. A., Escola, L., Intskirveli, I., Grammont, F., Rochat, M., Caruana, F., … Rizzolatti, G. (2008). When pliers become fingers in the monkey motor system. Proceedings of the National Academy of Sciences of the United States of America, 105, 2209–2213.
  • Walker, M. P., Brakefield, T., Hobson, J. A., & Stickgold, R. (2003). Dissociable stages of human memory consolidation and reconsolidation. Nature, 425, 616–620.
  • Waszak, F., Wascher, E., Keller, P., Koch, I., Aschersleben, G., Rosenbaum, D. A., & Prinz, W. (2005). Intention-based and stimulus-based mechanisms in action selection. Experimental Brain Research, 162(3), 346–356.
  • Watkins, K. E., Strafella, A. P., & Paus, T. (2003). Seeing and hearing speech excites the motor system involved in speech production. Neuropsychologia, 41, 989–994.
  • Wilson, S. M., Saygin, A. P., Sereno, M. I., & Iacoboni, M. (2004). Listening to speech activates motor areas involved in speech production. Nature Neuroscience, 7, 701–702.
  • Wolpert, D. M., Diedrichsen, J., & Flanagan, J. R. (2011). Principles of sensorimotor learning. Nature Reviews. Neuroscience, 12(12), 739.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.