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听觉对象的皮质分析方法。

Approaches to the cortical analysis of auditory objects.

作者信息

Griffiths Timothy D, Kumar Sukhbinder, Warren Jason D, Stewart Lauren, Stephan Klaas Enno, Friston Karl J

机构信息

Auditory Group, Medical School, Framlington Place, University of Newcastle, Newcastle upon Tyne, UK.

出版信息

Hear Res. 2007 Jul;229(1-2):46-53. doi: 10.1016/j.heares.2007.01.010. Epub 2007 Jan 16.

Abstract

We describe work that addresses the cortical basis for the analysis of auditory objects using 'generic' sounds that do not correspond to any particular events or sources (like vowels or voices) that have semantic association. The experiments involve the manipulation of synthetic sounds to produce systematic changes of stimulus features, such as spectral envelope. Conventional analyses of normal functional imaging data demonstrate that the analysis of spectral envelope and perceived timbral change involves a network consisting of planum temporale (PT) bilaterally and the right superior temporal sulcus (STS). Further analysis of imaging data using dynamic causal modelling (DCM) and Bayesian model selection was carried out in the right hemisphere areas to determine the effective connectivity between these auditory areas. Specifically, the objective was to determine if the analysis of spectral envelope in the network is done in a serial fashion (that is from HG to PT to STS) or parallel fashion (that is PT and STS receives input from HG simultaneously). Two families of models, serial and parallel (16 in total) that represent different hypotheses about the connectivity between HG, PT and STS were selected. The models within a family differ with respect to the pathway that is modulated by the analysis of spectral envelope. After the models are identified, Bayesian model selection procedure is then used to select the 'optimal' model from the specified models. The data strongly support a particular serial model containing modulation of the HG to PT effective connectivity during spectral envelope variation. Parallel work in neurological subjects addresses the effect of lesions to different parts of this network. We have recently studied in detail subjects with 'dystimbria': an alteration in the perceived quality of auditory objects distinct from pitch or loudness change. The subjects have lesions of the normal network described above with normal perception of pitch strength but abnormal perception of the analysis of spectral envelope change.

摘要

我们描述了一项研究工作,该工作利用不对应于任何具有语义关联的特定事件或声源(如元音或声音)的“通用”声音来探讨听觉对象分析的皮质基础。实验涉及对合成声音进行操控,以产生刺激特征的系统性变化,如频谱包络。对正常功能成像数据的传统分析表明,频谱包络分析和感知到的音色变化涉及一个由双侧颞平面(PT)和右侧颞上沟(STS)组成的网络。在右侧半球区域使用动态因果模型(DCM)和贝叶斯模型选择对成像数据进行了进一步分析,以确定这些听觉区域之间的有效连接。具体而言,目标是确定网络中频谱包络的分析是以串行方式(即从颞横回(HG)到PT再到STS)还是并行方式(即PT和STS同时从HG接收输入)进行的。选择了两个模型家族,串行和并行(共16个),它们代表了关于HG、PT和STS之间连接性的不同假设。一个家族中的模型在由频谱包络分析调制的通路上有所不同。在确定模型后,然后使用贝叶斯模型选择程序从指定模型中选择“最优”模型。数据有力地支持了一个特定的串行模型,该模型包含在频谱包络变化期间HG到PT有效连接的调制。对神经学受试者的并行研究探讨了该网络不同部位损伤的影响。我们最近详细研究了患有“音色障碍”的受试者:听觉对象感知质量的改变,不同于音高或响度变化。这些受试者具有上述正常网络的损伤,对音高强度有正常感知,但对频谱包络变化分析的感知异常。

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