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Research Article

Effect of musical stimuli on design thinking: Differences between expert and student designers

& | (Reviewing editor)
Article: 1510298 | Received 05 Feb 2018, Accepted 06 Aug 2018, Published online: 28 Aug 2018

References

  • Aichelburg, C., Urbanski, M., de Schotten, M. T., Humbert, F., Levy, R., & Volle, E. (2016). Morphometry of left frontal and temporal poles predicts analogical reasoning abilities. Cerebral Cortex, 26, 915–932. doi:10.1093/cercor/bhu254
  • Alexiou, K., Zamenopoulos, T., Johnson, J. H., & Gilbert, S. J. (2009). Exploring the neurological basis of design cognition using brain imaging: Some preliminary results. Design Studies, 30(6), 623–647. doi:10.1016/j.destud.2009.05.002
  • Benedek, M., Jauk, E., Fink, A., Koschutnig, K., Reishofer, G., Ebner, F., & Neubauer, A. C. (2014). To create or to recall? Neural mechanisms underlying the generation of creative new ideas. NeuroImage, 88, 125–133. doi:10.1016/j.neuroimage.2013.11.021
  • Boccia, M., Piccardi, L., Palermo, L., Nori, R., & Palmiero, M. (2015). Where do bright ideas occur in our brain? Meta-analytic evidence from neuroimaging studies of domain-specific creativity. Frontiers in Psychology, 6(article), 1195. doi:10.3389/fpsyg.2015.01195
  • Brattico, E., & Pearce, M. (2013). The neuroaesthetics of music. Psychology of Aesthetics, Creativity, and the Arts, 7(1), 48–61. doi:10.1037/a0031624
  • Brunet, N., Bosman, C. A., Roberts, M., Oostenveld, R., Womelsdorf, T., De Weerd, P., & Fries, P. (2015). Visual cortical gamma-band activity during free viewing of natural images. Cerebral Cortex, 25(4), 918–926. doi:10.1093/cercor/bht280
  • Casasanto, D. (2003). Hemispheric specialization in prefrontal cortex: Effects of verbalizability, imageability and meaning. Journal of Neurolinguistics, 16, 361–382. doi:10.1016/S0911-6044(03)00020-4
  • Chanda, M. L., & Levitin, D. J. (2013). The neurochemistry of music. Trends in Cognitive Sciences, 17(4), 179–193. doi:10.1016/j.tics.2013.02.007
  • Chrysikou, G. E., Hamilton, R. H., Coslett, H. B., Datta, A., Bikson, M., & Thompson-Schill, S. L. (2013). Noninvasive transcranial direct current stimulation over the left prefrontal cortex facilitates cognitive flexibility in tool use. Cognitive Neuroscience, 4(2), 81–89. doi:10.1080/17588928.2013.768221
  • Cross, N. (2011). Design thinking: Understanding how designers think and work. Oxford, England: Berg Publishers.
  • Delorme, A., Palmer, J., Onton, J., Oostenveld, R., & Makeig, S. (2012). Independent EEG sources are dipolar. PLoS ONE, 7(2), e30135. doi:10.1371/journal.pone.0030135
  • Gallup, G. G. J., & Platek, S. M. (2002). Cognitive empathy presupposes self-awareness: Evidence from phylogeny, ontogeny, neuropsychology and mental illness. Behavioral and Brain Sciences, 25(1), 36–37.
  • Goldschmidt, G., & Smolkov, M. (2006). Variances in the impact of visual stimuli on design problem solving performance. Design Studies, 27(5), 549–569. doi:10.1016/j.destud.2006.01.002
  • Gordon, R. L., Schön, D., Magne, C., Astésano, C., & Besson, M. (2010). Words and melody are intertwined in perception of sung words: EEG and behavioral evidence. PLoS ONE, 5(3), e9889. doi:10.1371/journal.pone.0009889
  • Gougoux, F., Lepore, F., Lassonde, M., Voss, P., Zatorre, R. J., & Belin, P. (2004). Pitch discrimination in the early blind. Nature, 430(6997), 309. doi:10.1038/430309a
  • Henry, J. D., & Crawford, J. R. (2004). A meta-analytic review of verbal fluency performance following focal cortical lesions. Neuropsychology, 18, 284–295. doi:10.1037/0894-4105.18.2.284
  • Herrmann, C. S., Fründ, I., & Lenz, D. (2010). Human gamma-band activity: A review on cognitive and behavioural correlates and network models. Neuroscience & Biobehavioural Reviews, 34(7), 981–992. doi:10.1016/j.neubiorev.2009.09.001
  • Janata, P. (2009). The neural architecture of music-evoked autobiographical memories. Cerebral Cortex, 19(11), 2579–2594. doi:10.1093/cercor/bhp008
  • Kreutz, G., & Lotze, M. (2008). Neuroscience of music and emotion. In W. Gruhn & F. Rauscher (Eds.), The neuroscience of music education (pp. 145–169). New York, NY: Nova Publishers.
  • Kutas, M., Van Petten, C. K., & Besson, M. (1988). Event-related potentials asymmetries during the reading of sentences. Electroencephalography and Clinical Neurophysiology, 69, 218–233.
  • Li, C.-W., Chen, J.-H., & Tsai, C.-G. (2015). Listening to music in a risk-reward context: The roles of the temporoparietal junction and the orbitofrontal/insular cortices in reward-anticipation, reward-gain, and reward-loss. Brain Research, 1629, 160–170. doi:10.1016/j.brainres.2015.10.024
  • Li, Y., Long, J., Huang, B., Yu, T., Wu, W., Li, P., … Sun, P. (2015). Selective audiovisual semantic integration enabled by feature-selective attention. Scientific Reports, 6, Article No. 18914, https://www.nature.com/articles/srep18914.
  • Liang, C., Lin, C.-T., Yao, S.-N., Chang, W.-S., Liu, Y.-C., & Chen, S.-A. (2017). Visual attention and association: An electroencephalography study in expert designers. Design Studies, 48, 76–95. doi:10.1016/j.destud.2016.11.002
  • Liang, C., Liu, Y.-C., & Chang, W.-S. (2018). Designer experience transfer: Overlapping and distinct brain activity at different levels of creativity. Neurological Science Journal, 2(1), 1–8.
  • Limb, C. J. (2006). Structural and functional neural correlates of music perception. The Anatomical Record Part A, 288(4), 435–446. doi:10.1002/ar.a.20316
  • Lin, C.-T., Chuang, C.-H., Kerick, S., Mullen, T., Jung, T.-P., Ko, L.-W., … McDowell, K. 2016. Mind-wandering tends to occur under low perceptual demands during driving. Scientific Reports, 6, Article number: 21353, https://www.nature.com/articles/srep21353.
  • Liu, Y.-C., Chang, -C.-C., Yang, Y.-H., & Liang, C. (2018). Spontaneous analogising caused by text stimuli in design thinking: Differences between higher- and lower-creativity groups. Cognitive Neurodynamics, 12(1), 55–71. doi:10.1007/s11571-017-9454-0
  • Liu, Y.-C., Yang, Y.-H., & Liang, C. (2017). How do creativity levels and stimulus types matter? A preliminary investigation of designer visual association. Journal of Neurology & Neuroscience-iMedPub, 8(2), article 185.1–13.
  • Mayseless, N., & Shamay-Tsoory, S. G. (2015). Enhancing verbal creativity: Modulating creativity by altering the balance between right and left inferior frontal gyrus with tDGS. Neuroscience, 291, 167–176. doi:10.1016/j.neuroscience.2015.01.061
  • Rogenmoser, L., Zollinger, N., Elmer, S., & Jäncke, L. (2016). Independent component processes underlying emotions during natural music listening. Social Cognitive and Affective Neuroscience, 11(9), 1428–1439. doi:10.1093/scan/nsw048
  • Seitamaa-Hakkarainen, P., Huotilainen, M., Mäkelä, M., Groth, C., & Hakkarainen, K. (2014). The promise of cognitive neuroscience in design studies. In Y. Lim, K. Niedderer, J. Redström, E. Stolterman, & A. Valtonen (Eds..), Proceedings of DRS 2014: Design’s big debates: Design research society biennial international conference 16–19June (pp. 834–846). Umeå, Sweden.
  • Stewart, L., von Kriegstein, K., Warren, J. D., & Griffiths, T. D. (2006). Music and the brain: Disorders of musical listening. Brain, 129, 2533–2553. doi:10.1093/brain/awl171
  • Tagg, P. (1982). Analysing popular music: Theory, method and practice. Popular Music, 2, 37–65. doi:10.1017/S0261143000001227
  • Uddin, L. Q., Kelly, A. M. C., Biswal, B. B., Xavier Castellanos, F., & Milham, M. P. (2009). Functional connectivity of default mode network components: Correlation, anticorrelation, and causality. Human Brain Mapping, 30, 625–637. doi:10.1002/hbm.20531
  • Visser, W. (2006). The cognitive artifacts of designing. New York, NY: Lawrence Erlbaum Associates.
  • Wang, Y.-K., Jung, T.-P., & Lin, C.-T. (2015). EEG-based attention tracking during distracted driving. IEEE Transactions on Neural Systems & Rehabilitation Engineering, 23(6), 1085–1094. doi:10.1109/TNSRE.2015.2415520
  • Wisniewski, I., Wendling, A. S., Manning, L., & Steinhoff, B. J. (2012). Visuo-spatial memory tests in right temporal lobe epilepsy foci: Clinical validity. Epilepsy & Behavior, 23(3), 254–260. doi:10.1016/j.yebeh.2011.12.006
  • Yao, S.-N., Lin, C.-T., King, J.-T., Liu, Y.-C., & Liang, C. (2017). Learning in the visual association of novice and expert designers. Cognitive Systems Research, 43, 76–88. doi:10.1016/j.cogsys.2017.01.005