Sach Andrew J, Bailey Peter J
University of York, York, England.
Percept Psychophys. 2004 Nov;66(8):1379-87. doi: 10.3758/bf03195005.
The tuning of auditory spatial attention with respect to interaural level and time difference cues (ILDs and ITDs) was explored using a rhythmic masking release (RMR) procedure. Listeners heard tone sequences defining one of two simple target rhythms, interleaved with arhythmic masking tones, presented over headphones. There were two conditions, which differed only in the ILD of the tones defining the target rhythm: For one condition, ILD was 0 dB and the perceived lateral position was central, and for the other, ILD was 4 dB and the perceived lateral position was to the right; target tone ITD was always zero. For the masking tones, ILD was fixed at 0 dB and ITDs were varied, giving rise to a range of lateral positions determined by ITD. The listeners' task was to attend to and identify the target rhythm. The data showed that target rhythm identification accuracy was low, indicating that maskers were effective, when target and masker shared spatial position, but not when they shared only ITD. A clear implication is that at least within the constraints of the RMR paradigm, overall spatial position, and not ITD, is the substrate for auditory spatial attention.
采用节奏掩蔽释放(RMR)程序,研究了听觉空间注意对耳间声级和时间差线索(耳间声级差和耳间时间差)的调谐。听众通过耳机听到定义两种简单目标节奏之一的音调序列,这些序列与无节奏的掩蔽音调交错呈现。有两种条件,它们仅在定义目标节奏的音调的耳间声级差方面有所不同:一种条件下,耳间声级差为0分贝,感知到的侧向位置在中央;另一种条件下,耳间声级差为4分贝,感知到的侧向位置在右侧;目标音调的耳间时间差始终为零。对于掩蔽音调,耳间声级差固定为0分贝,耳间时间差变化,从而产生由耳间时间差决定的一系列侧向位置。听众的任务是关注并识别目标节奏。数据表明,当目标和掩蔽音共享空间位置时,目标节奏识别准确率较低,表明掩蔽音是有效的,但当它们仅共享耳间时间差时则不然。一个明确的暗示是,至少在RMR范式的限制范围内,整体空间位置而非耳间时间差是听觉空间注意的基础。