Hodges Donald A, Hairston W David, Burdette Jonathan H
Music Research Institute, School of Music, University of North Carolina at Greensboro, P.O. Box 26170, 27402-6170, USA.
Ann N Y Acad Sci. 2005 Dec;1060:175-85. doi: 10.1196/annals.1360.012.
One of the requirements for being a successful musical conductor is to be able to locate sounds instantaneously in time and space. Because this requires the integration of auditory and visual information, the purpose of this study was to examine multisensory processing in conductors and a matched set of control subjects. Subjects participated in a series of behavioral tasks, including pitch discrimination, temporal-order judgment (TOJ), and target localization. Additionally, fMRI scans were done on a subset of subjects who performed a multisensory TOJ task. Analyses of behavioral data indicate that, in the auditory realm, conductors were more accurate in both pitch discrimination and TOJs as well as in locating targets in space. Furthermore, these same subjects also demonstrated a benefit from the combination of auditory and visual information that was not observed in control subjects when locating visual targets. Finally, neural substrates in BA 37, 39/40 were identified as potential areas underlying the conductors' superior multisensory TOJs. Data collection and analyses are ongoing and will lead to an improved understanding of multisensory integration in a complex, musical behavior.
成为一名成功的音乐指挥家的要求之一是能够在时间和空间上瞬间定位声音。由于这需要整合听觉和视觉信息,本研究的目的是检查指挥家以及一组匹配的对照受试者的多感官处理能力。受试者参与了一系列行为任务,包括音高辨别、时间顺序判断(TOJ)和目标定位。此外,对执行多感官TOJ任务的一部分受试者进行了功能磁共振成像扫描。行为数据分析表明,在听觉领域,指挥家在音高辨别、时间顺序判断以及空间目标定位方面都更准确。此外,在定位视觉目标时,这些受试者还表现出了听觉和视觉信息结合带来的优势,而对照受试者未观察到这一点。最后,BA 37、39/40区的神经基质被确定为指挥家卓越的多感官时间顺序判断的潜在区域。数据收集和分析正在进行中,这将有助于更好地理解复杂音乐行为中的多感官整合。