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处理工具声音与动物声音的不同皮质通路。

Distinct cortical pathways for processing tool versus animal sounds.

作者信息

Lewis James W, Brefczynski Julie A, Phinney Raymond E, Janik John J, DeYoe Edgar A

机构信息

Department of Physiology and Pharmacology, West Virginia University, Morgantown, West Virginia 26506, USA.

出版信息

J Neurosci. 2005 May 25;25(21):5148-58. doi: 10.1523/JNEUROSCI.0419-05.2005.

Abstract

Human listeners can effortlessly categorize a wide range of environmental sounds. Whereas categorizing visual object classes (e.g., faces, tools, houses, etc.) preferentially activates different regions of visually sensitive cortex, it is not known whether the auditory system exhibits a similar organization for different types or categories of complex sounds outside of human speech. Using functional magnetic resonance imaging, we show that hearing and correctly or incorrectly categorizing animal vocalizations (as opposed to hand-manipulated tool sounds) preferentially activated middle portions of the left and right superior temporal gyri (mSTG). On average, the vocalization sounds had much greater harmonic and phase-coupling content (acoustically similar to human speech sounds), which may represent some of the signal attributes that preferentially activate the mSTG regions. In contrast, correctly categorized tool sounds (and even animal sounds that were miscategorized as being tool-related sounds) preferentially activated a widespread, predominantly left hemisphere cortical "mirror network." This network directly overlapped substantial portions of motor-related cortices that were independently activated when participants pantomimed tool manipulations with their right (dominant) hand. These data suggest that the recognition processing for some sounds involves a causal reasoning mechanism (a high-level auditory "how" pathway), automatically evoked when attending to hand-manipulated tool sounds, that effectively associates the dynamic motor actions likely to have produced the sound(s).

摘要

人类听众能够轻松地对各种环境声音进行分类。虽然对视觉对象类别(如面孔、工具、房屋等)进行分类会优先激活视觉敏感皮层的不同区域,但对于人类语音之外的不同类型或类别的复杂声音,听觉系统是否表现出类似的组织方式尚不清楚。通过功能磁共振成像,我们发现,听到并正确或错误地对动物叫声进行分类(与手动操作工具的声音相对)会优先激活左右颞上回中部(mSTG)。平均而言,叫声的谐波和相位耦合内容要多得多(在声学上类似于人类语音),这可能代表了一些优先激活mSTG区域的信号属性。相比之下,正确分类的工具声音(甚至被错误分类为与工具相关声音的动物声音)优先激活了一个广泛的、主要位于左半球的皮质“镜像网络”。当参与者用右手(优势手)模仿工具操作时,这个网络与运动相关皮质的大部分区域直接重叠,这些区域会被独立激活。这些数据表明,对某些声音的识别处理涉及一种因果推理机制(一种高级听觉“如何”通路),在关注手动操作工具声音时会自动诱发,这种机制有效地将可能产生声音的动态运动动作联系起来。

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