Neuroarchitecture of Verbal and Tonal Working Memory in Nonmusicians and Musicians

被引:169
作者
Schulze, Katrin [2 ,3 ]
Zysset, Stefan [2 ]
Mueller, Karsten [2 ]
Friederici, Angela D. [2 ]
Koelsch, Stefan [1 ,2 ]
机构
[1] Free Univ Berlin, D-14195 Berlin, Germany
[2] Max Planck Inst Human Cognit & Brain Sci, Leipzig, Germany
[3] UCL Inst Child Hlth, Dev Cognit Neurosci Unit, London, England
关键词
working memory; auditory processing; language; music; functional plasticity; SHORT-TERM-MEMORY; BASAL GANGLIA; FUNCTIONAL-ANATOMY; MOTOR CORTEX; PITCH; SPEECH; FMRI; INTERFERENCE; PERCEPTION; NETWORKS;
D O I
10.1002/hbm.21060
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Working memory (WM) for auditory information has been thought of as a unitary system, but whether WM for verbal and tonal information relies on the same or different functional neuroarchitectures has remained unknown. This fMRI study examines verbal and tonal WM in both nonmusicians (who are trained in speech, but not in music) and highly trained musicians (who are trained in both domains). The data show that core structures of WM are involved in both tonal and verbal WM (Broca's area, premotor cortex, pre-SMA/SMA, left insular cortex, inferior parietal lobe), although with significantly different structural weightings, in both nonmusicians and musicians. Additionally, musicians activated specific subcomponents only during verbal (right insular cortex) or only during tonal WM (right globus pallidus, right caudate nucleus, and left cerebellum). These results reveal the existence of two WM systems in musicians: A phonological loop supporting rehearsal of phonological information, and a tonal loop supporting rehearsal of tonal information. Differences between groups for tonal WM, and between verbal and tonal WM within musicians, were mainly related to structures involved in controlling, programming and planning of actions, thus presumably reflecting differences in action-related sensorimotor coding of verbal and tonal information. Hum Brain Mapp 32: 771-783, 2011. (C) 2010 Wiley-Liss, Inc.
引用
收藏
页码:771 / 783
页数:13
相关论文
共 58 条
[31]   Absolute pitch and planum temporale [J].
Keenan, JP ;
Thangaraj, V ;
Halpern, AR ;
Schlaug, G .
NEUROIMAGE, 2001, 14 (06) :1402-1408
[32]   Functional Architecture of Verbal and Tonal Working Memory: An fMRI Study [J].
Koelsch, Stefan ;
Schulze, Katrin ;
Sammler, Daniela ;
Fritz, Thomas ;
Mueller, Karsten ;
Gruber, Oliver .
HUMAN BRAIN MAPPING, 2009, 30 (03) :859-873
[33]   Action representation of sound: Audiomotor recognition network while listening to newly acquired actions [J].
Lahav, Amir ;
Saltzman, Elliot ;
Schlaug, Gottfried .
JOURNAL OF NEUROSCIENCE, 2007, 27 (02) :308-314
[34]   Competition between feedback loops underlies normal and pathological dynamics in the basal ganglia [J].
Leblois, A ;
Boraud, T ;
Meissner, W ;
Bergman, H ;
Hansel, D .
JOURNAL OF NEUROSCIENCE, 2006, 26 (13) :3567-3583
[35]   LIPSIA -: a new software system for the evaluation of functional magnetic resonance images of the human brain [J].
Lohmann, G ;
Müller, K ;
Bosch, V ;
Mentzel, H ;
Hessler, S ;
Chen, L ;
Zysset, S ;
von Cramon, DY .
COMPUTERIZED MEDICAL IMAGING AND GRAPHICS, 2001, 25 (06) :449-457
[36]   Musician children detect pitch violations in both music and language better than nonmusician children:: Behavioral and electrophysiological approaches [J].
Magne, C ;
Schön, D ;
Besson, M .
JOURNAL OF COGNITIVE NEUROSCIENCE, 2006, 18 (02) :199-211
[37]   Basal ganglia output and cognition: Evidence from anatomical, behavioral, and clinical studies [J].
Middleton, FA ;
Strick, PL .
BRAIN AND COGNITION, 2000, 42 (02) :183-200
[38]   The musician's brain as a model of neuroplasticity [J].
Münte, TF ;
Altenmüller, E ;
Jäncke, L .
NATURE REVIEWS NEUROSCIENCE, 2002, 3 (06) :473-478
[39]   A Rapid Sound-Action Association Effect in Human Insular Cortex [J].
Mutschler, Isabella ;
Schulze-Bonhage, Andreas ;
Glauche, Volkmar ;
Demandt, Evariste ;
Speck, Oliver ;
Ball, Tonio .
PLOS ONE, 2007, 2 (02)
[40]   Absolute Pitch-Functional Evidence of Speech-Relevant Auditory Acuity [J].
Oechslin, Mathias S. ;
Meyer, Martin ;
Jaencke, Lutz .
CEREBRAL CORTEX, 2010, 20 (02) :447-455