Leibniz Institute for Neurobiology, Brenneckestr. 6, 39118 Magdeburg, Germany.
Hear Res. 2010 Jun 14;265(1-2):30-7. doi: 10.1016/j.heares.2010.03.005. Epub 2010 Mar 15.
An important aspect of auditory scene analysis is the sequential grouping of similar sounds into one "auditory stream" while keeping competing streams separate. In the present low-noise fMRI study we presented sequences of alternating high-pitch (A) and low-pitch (B) complex harmonic tones using acoustic parameters that allow the perception of either two separate streams or one alternating stream. However, the subjects were instructed to actively and continuously segregate the A from the B stream. This was controlled by the additional instruction to listen for rare level deviants only in the low-pitch stream. Compared to the control condition in which only one non-separable stream was presented the active segregation of the A from the B stream led to a selective increase of activation in the left auditory cortex (AC). Together with a similar finding from a previous study using a different acoustic cue for streaming, namely timbre, this suggests that the left auditory cortex plays a dominant role in active sequential stream segregation. However, we found cue differences within the left AC: Whereas in the posterior areas, including the planum temporale, activation increased for both acoustic cues, the anterior areas, including Heschl's gyrus, are only involved in stream segregation based on pitch.
听觉场景分析的一个重要方面是将相似的声音按顺序组合成一个“听觉流”,同时将竞争的流分开。在本项低噪声 fMRI 研究中,我们使用允许感知两个独立流或一个交替流的声学参数呈现交替的高音(A)和低音(B)复谐波音序列。然而,要求受试者主动并持续地将 A 从 B 流中分离出来。这是通过仅在低音流中聆听罕见的电平偏差的附加指令来控制的。与仅呈现一个不可分离流的对照条件相比,主动将 A 从 B 流中分离出来导致左听觉皮层(AC)的激活选择性增加。这与使用不同的流线索,即音色,进行的先前研究中的类似发现一起表明,左听觉皮层在主动顺序流分离中起主导作用。然而,我们发现左 AC 内存在线索差异:在后区,包括颞平面,两种声学线索的激活均增加,而在前区,包括 Heschl 回,仅参与基于音高的流分离。