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Tempo and walking speed with music in the urban context

. 2014 ; 5 () : 1361. [epub] 20141202

Status PubMed-not-MEDLINE Language English Country Switzerland Media electronic-ecollection

Document type Journal Article

The study explored the effect of music on the temporal aspects of walking behavior in a real outdoor urban setting. First, spontaneous synchronization between the beat of the music and step tempo was explored. The effect of motivational and non-motivational music (Karageorghis et al., 1999) on the walking speed was also studied. Finally, we investigated whether music can mask the effects of visual aspects of the walking route environment, which involve fluctuation of walking speed as a response to particular environmental settings. In two experiments, we asked participants to walk around an urban route that was 1.8 km in length through various environments in the downtown area of Hradec Králové. In Experiment 1, the participants listened to a musical track consisting of world pop music with a clear beat. In Experiment 2, participants were walking either with motivational music, which had a fast tempo and a strong rhythm, or with non-motivational music, which was slower, nice music, but with no strong implication to movement. Musical beat, as well as the sonic character of the music listened to while walking, influenced walking speed but did not lead to precise synchronization. It was found that many subjects did not spontaneously synchronize with the beat of the music at all, and some subjects synchronized only part of the time. The fast, energetic music increases the speed of the walking tempo, while slower, relaxing music makes the walking tempo slower. Further, it was found that listening to music with headphones while walking can mask the influence of the surrounding environment to some extent. Both motivational music and non-motivational music had a larger effect than the world pop music from Experiment 1. Individual differences in responses to the music listened to while walking that were linked to extraversion and neuroticism were also observed. The findings described here could be useful in rhythmic stimulation for enhancing or recovering the features of movement performance.

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Anshel M. H., Marisi D. Q. (1978). Effect of music and rhythm on physical performance. Res. Q. 49, 109–113. PubMed

Brodsky W. (2001). The effects of music tempo on simulated driving performance and vehicular control. Transport. Res. F 4, 219–241 10.1016/S1369-8478(01)00025-0 DOI

Brown B. B., Werner C. M., Amburgey J. W., Szalay C. (2007). Walkable route perceptions and physical features: converging evidence for en route walking experiences. Environ. Behav. 39, 34–61 10.1177/0013916506295569 DOI

Bull M. (2001). The world according to sound investigating the world of walkman users. New Media Soc. 3, 179–197 10.1177/14614440122226047 DOI

Bull M. (2004). Automobility and the power of sound. Theor. Cult. Soc. 21, 243–259 10.1177/0263276404046069 DOI

Bull M. (2005). No dead air! The iPod and the culture of mobile listening. Leisure Stud. 24, 343–355 10.1080/0261436052000330447 DOI

Chamorro-Premuzic T., Furnham A. (2007). Personality and music: can traits explain how people use music in everyday life? Brit. J. Psychol. 98, 175–185. 10.1348/000712606X111177 PubMed DOI

Chamorro-Premuzic T., Swami V., Furnham A., Maakip I. (2009). The big five personality traits and uses of music: a replication in Malaysia using structural equation modeling. J. Individ. Differ. 30, 20–27 10.1027/1614-0001.30.1.20 DOI

Dibben N., Williamson V. J. (2007). An exploratory survey of in-vehicle music listening. Psychol. Music 35, 571–589 10.1177/0305735607079725 DOI

Duvall J. (2011). Enhancing the benefits of outdoor walking with cognitive engagement strategies. J. Environ. Psychol. 31, 27–35 10.1016/j.jenvp.2010.09.003 DOI

Franěk M. (2013). Environmental factors influencing pedestrian walking speed. Percept. Mot. Skills 116, 992–1019. 10.2466/06.50.PMS.116.3.992-1019 PubMed DOI

Franěk M., Režný L. (2014). Analýza faktorů ovlivňujících kolísání rychlosti chuůze v městském prostředí s přírodními prvky [Analysis of factors affecting variations in walking speed in urban environment with natural elements]. Cesk Psychol. 58, 1, 14–30.

Gaston E. T. (1951). Musical factors influencing social behavior. Kansas Welfare Digest 10, 2–4.

Greasley A. E., Lamont A. (2011). Exploring engagement with music in everyday life using experience sampling methodology. Music Sci. 15, 45–71 10.1177/1029864910393417 DOI

Hausdorff J. M., Lowenthal J., Herman T., Gruendlinger L., Peretz C., Giladi N. (2007). Rhythmic auditory stimulation modulates gait variability in Parkinson's disease. Eur. J. Neurosci. 26, 2369–2375. 10.1111/j.1460-9568.2007.05810.x PubMed DOI

Hayashi A., Nagaoka M., Mizuno Y. (2006). Music therapy in Parkinson's disease: improvements of parkinsonian gait and depression with rhythmic auditory stimulation. Parkinsonism Relat. Disord. 12, S76 10.1016/j.parkreldis.2006.05.026 DOI

Heye A., Lamont A. (2010). Mobile listening situations in everyday life: the use of MP3 players while travelling. Music Sci. 14, 95–120 10.1177/102986491001400104 DOI

Hoffer C. (2014). Music Listening Today. Belmont, CA: Schirmer Cengage Learning.

Hove M. J., Suzuki K., Uchitomi H., Orimo S., Miyake Y. (2012). Interactive rhythmic auditory stimulation reinstates natural 1/f timing in gait of Parkinson's patients. PLoS ONE 7:e32600. 10.1371/journal.pone.0032600 PubMed DOI PMC

Hřebíčková M., Urbánek T. (2001). Big five. NEO Pětifaktorový Osobnostní Inventář [NEO Five-factor Personality Inventory]. Praha: Testcentrum.

Juslin P. N., Liljeström S., Västfjäll D., Barradas G., Silva A. (2008). An experience sampling study of emotional reactions to music: listener, music, and situation. Emotion 8, 668–683. 10.1037/a0013505 PubMed DOI

Karageorghis C. I., Mouzourides D. A., Priest D. L., Sasso T. A., Morrish D. J., Walley C. L. (2009). Psychophysical and ergogenic effects of synchronous music during treadmill walking. J. Sport Exerc. Psychol. 31, 18–36. PubMed

Karageorghis C. I., Priest D. L. (2012). Music in the exercise domain: a review and synthesis (Part I). Int. Rev. Sport Exerc. Psychol. 5, 44–66. 10.1080/1750984X.2011.631026 PubMed DOI PMC

Karageorghis C. I., Priest D. L., Terry P. C., Chatzisarantis N. L., Lane A. M. (2006). Redesign and initial validation of an instrument to assess the motivational qualities of music in exercise: the brunel music rating inventory-2. J. Sports Sci. 24, 899–909. 10.1080/02640410500298107 PubMed DOI

Karageorghis C. I., Terry P. C., Lane A. M. (1999). Development and initial validation of an instrument to assess the motivational qualities of music in exercise and sport: the Brunel Music Rating Inventory. J. Sports Sci. 17, 713–724. 10.1080/026404199365579 PubMed DOI

Lane A. M., Davis P. A., Devonport T. J. (2011). Effects of music interventions on emotional states and running performance. J. Sports Sci. Med. 10, 400–407. PubMed PMC

Laukka P., Quick L. (2013). Emotional and motivational uses of music in sports and exercise: a questionnaire study among athletes. Psychol. Music 41, 198–215 10.1177/0305735611422507 DOI

Leman M., Moelants D., Varewyck M., Styns F., van Noorden L., Martens J. -P. (2013). Activating and relaxing music entrains the speed of beat synchronized walking. PLoS ONE 8:e67932. 10.1371/journal.pone.006793 PubMed DOI PMC

Lyons G., Jain J., Susilo Y., Atkins S. (2012). Comparing rail passengers' travel time use in Great Britain between 2004 and 2010. Mobilities 8, 560–579 10.1080/17450101.2012.743221 DOI

Mehrabian A., Russell J. A. (1974). An Approach to Environmental Psychology. Cambridge, MA: The MIT Press.

Mendonça C., Oliveira M., Fontes L., Santos J. (2014). The effect of instruction to synchronize over step frequency while walking with auditory cues on a treadmill. Hum. Mov. Sci. 33, 33–42. 10.1016/j.humov.2013.11.006 PubMed DOI

Moens B., Muller C. H., van Noorden L., Franěk M., Celie B., Boone J., et al. (in press). Encouraging spontaneous synchronisation with D-Jogger, an adaptive music player that aligns movement and music. PLoS ONE. 10.1371/journal.pone.0114234 PubMed DOI PMC

Moens B., van Noorden L., Leman M. (2010). D-jogger: syncing music with walking, in 7th Sound and Music Computing Conference (Barcelona: Universitat Pompeu Fabra; ), 451–456.

Nakamura P. M., Pereira G., Papini C. B., Nakamura F. Y., Kokubun E. (2010). Effects of preferred and nonpreferred music on continuous cycling exercise performance. Percept. Mot. Skills 110, 257–264. 10.2466/pms.110.1.257-264 PubMed DOI

Napier M. A., Brown B. B., Werner C. M., Gallimore J. (2011). Walking to school: community design and child and parent barriers. J. Environ. Psychol. 31, 45–51 10.1016/j.jenvp.2010.04.005 DOI

North A. C., Hargreaves D. J., Hargreaves J. J. (2004). Uses of music in everyday life. Music Percept. 22, 41–77 10.1525/mp.2004.22.1.41 DOI

Pettijohn T. F. II., Williams G. M., Carter T. C. (2010). Music for the seasons: seasonal music preferences in college students. Curr. Psychol. 29, 328–345 10.1007/s12144-010-9092-8 DOI

Prokop T., Schuberet M., Berger W. (1997). Visual influence on human locomotion modulation to changes in optic flow. Exp. Brain Res. 114, 63–70. 10.1007/PL00005624 PubMed DOI

Rentfrow P. J., Gosling S. D. (2003). The do re mi's of everyday life: the structure and personality correlates of music preferences. J. Pers. Soc. Psychol. 84, 1236–1256. 10.1037/0022-3514.84.6.1236 PubMed DOI

Repp B. H. (2005). Sensorimotor synchronization: a review of the tapping literature. Psychon. Bull. Rev. 12, 969–992. 10.3758/BF03206433 PubMed DOI

Repp B. H., Su Y. H. (2013). Sensorimotor synchronization: a review of recent research (2006–2012). Psychon. Bull. Rev. 20, 403–452. 10.3758/s13423-012-0371-2 PubMed DOI

Sejdić E., Jeffery R., Vanden Kroonenberg A., Chau T. (2012). An investigation of stride interval stationarity while listening to music or viewing television. Hum. Mov. Sci. 31, 695–706. 10.1016/j.humov.2011.05.007 PubMed DOI PMC

Simpson S. D., Karageorghis C. I. (2006). The effects of synchronous music on 400-m sprint performance. J. Sports Sci. 24, 1095–1102. 10.1080/02640410500432789 PubMed DOI

Simun M. (2009). My music, my world: using the MP3 player to shape experience in London. New Media Soc. 11, 921–941 10.1177/1461444809336512 DOI

Styns F., van Noorden L., Moelants D., Leman M. (2007). Walking on music. Hum. Mov. Sci. 26, 769–785. 10.1016/j.humov.2007.07.007 PubMed DOI

Wiesenthal D. L., Hennessy D. A., Totten B. (2003). The influence of music on mild driver aggression. Transport. Res. F 6, 125–134 10.1016/S1369-8478(03)00020-2 DOI

Yamasaki T., Yamada K., Laukka P. (2013). Viewing the world through the prism of music: effects of music on perceptions of the environment. Psychol. Music. 10.1177/0305735613493954 DOI

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