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Description
Although music is regarded as a universal language, it is rare to find musicians of different ages, ability levels, and backgrounds interacting with each other in collaborative performances. There is a dearth of mixed-ability-level wind band and string orchestra repertoire, and the few pieces that exist fail to celebrate the

Although music is regarded as a universal language, it is rare to find musicians of different ages, ability levels, and backgrounds interacting with each other in collaborative performances. There is a dearth of mixed-ability-level wind band and string orchestra repertoire, and the few pieces that exist fail to celebrate the talents of the youngest and least-experienced performers. Composers writing music for school-age ensembles have also been excluded from the collaborative process, rarely communicating with the young musicians for whom they are writing.

This project introduced twenty-nine compositions into the wind band and string orchestra repertoire via a collaboration that engaged multiple constituencies. Students of wind and string instruments from Phoenix’s El Sistema-inspired Harmony Project and the Tijuana-based Niños de La Guadalupana Villa Del Campo worked together with students at Arizona State University and composers from Canada, Finland, and across the United States to learn and record concertos for novice-level soloists with intermediate-level accompaniment ensembles.

This project was influenced by the intergenerational ensembles common in Finnish music institutes. The author provides a document which includes a survey of the existing concerto repertoire for wind bands and previous intergenerational and multicultural studies in the field of music. The author then presents each of the mixed-ability concertos created and recorded in this project and offers biographical information on the composers. Finally, the author reflects upon qualitative surveys completed by the project’s participants.

Most the new concertos are available to the public. This music can be useful in the development and implementation of similar collaborations of musicians of all ages and abilities.
ContributorsBrooks, Melanie Jane (Author) / Hill, Gary W. (Thesis advisor) / Caslor, Jason K (Thesis advisor) / Belgrave, Melita (Committee member) / Holbrook, Amy (Committee member) / Swoboda, Deanna (Committee member) / Arizona State University (Publisher)
Created2018
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Description
Music training is associated with measurable physiologic changes in the auditory pathway. Benefits of music training have also been demonstrated in the areas of working memory, auditory attention, and speech perception in noise. The purpose of this study was to determine whether long-term auditory experience secondary to music

Music training is associated with measurable physiologic changes in the auditory pathway. Benefits of music training have also been demonstrated in the areas of working memory, auditory attention, and speech perception in noise. The purpose of this study was to determine whether long-term auditory experience secondary to music training enhances the ability to detect, learn, and recall new words.

Participants consisted of 20 young adult musicians and 20 age-matched non-musicians. In addition to completing word recognition and non-word detection tasks, each participant learned 10 nonsense words in a rapid word-learning task. All tasks were completed in quiet and in multi-talker babble. Next-day retention of the learned words was examined in isolation and in context. Cortical auditory evoked responses to vowel stimuli were recorded to obtain latencies and amplitudes for the N1, P2, and P3a components. Performance was compared across groups and listening conditions. Correlations between the behavioral tasks and the cortical auditory evoked responses were also examined.

No differences were found between groups (musicians vs. non-musicians) on any of the behavioral tasks. Nor did the groups differ in cortical auditory evoked response latencies or amplitudes, with the exception of P2 latencies, which were significantly longer in musicians than in non-musicians. Performance was significantly poorer in babble than in quiet on word recognition and non-word detection, but not on word learning, learned-word retention, or learned-word detection. CAEP latencies collapsed across group were significantly longer and amplitudes were significantly smaller in babble than in quiet. P2 latencies in quiet were positively correlated with word recognition in quiet, while P3a latencies in babble were positively correlated with word recognition and learned-word detection in babble. No other significant correlations were observed between CAEPs and performance on behavioral tasks.

These results indicated that, for young normal-hearing adults, auditory experience resulting from long-term music training did not provide an advantage for learning new information in either favorable (quiet) or unfavorable (babble) listening conditions. Results of the present study suggest that the relationship between music training and the strength of cortical auditory evoked responses may be more complex or too weak to be observed in this population.
ContributorsStewart, Elizabeth (Author) / Pittman, Andrea (Thesis advisor) / Cone, Barbara (Committee member) / Zhou, Yi (Committee member) / Arizona State University (Publisher)
Created2017