Scott Sophie K, Rosen Stuart, Beaman C Philip, Davis Josh P, Wise Richard J S
Institute of Cognitive Neuroscience, University College London, London, United Kingdom.
J Acoust Soc Am. 2009 Mar;125(3):1737-43. doi: 10.1121/1.3050255.
It has been previously demonstrated that extensive activation in the dorsolateral temporal lobes associated with masking a speech target with a speech masker, consistent with the hypothesis that competition for central auditory processes is an important factor in informational masking. Here, masking from speech and two additional maskers derived from the original speech were investigated. One of these is spectrally rotated speech, which is unintelligible and has a similar (inverted) spectrotemporal profile to speech. The authors also controlled for the possibility of "glimpsing" of the target signal during modulated masking sounds by using speech-modulated noise as a masker in a baseline condition. Functional imaging results reveal that masking speech with speech leads to bilateral superior temporal gyrus (STG) activation relative to a speech-in-noise baseline, while masking speech with spectrally rotated speech leads solely to right STG activation relative to the baseline. This result is discussed in terms of hemispheric asymmetries for speech perception, and interpreted as showing that masking effects can arise through two parallel neural systems, in the left and right temporal lobes. This has implications for the competition for resources caused by speech and rotated speech maskers, and may illuminate some of the mechanisms involved in informational masking.
先前的研究已经表明,在背外侧颞叶存在广泛激活,这与用语音掩蔽器掩蔽语音目标有关,这与以下假设一致:对中枢听觉过程的竞争是信息掩蔽中的一个重要因素。在此,研究了来自语音的掩蔽以及从原始语音派生的另外两种掩蔽器。其中一种是频谱旋转语音,它无法理解,并且具有与语音相似(倒置)的频谱时间分布。作者还通过在基线条件下使用语音调制噪声作为掩蔽器,控制了在调制掩蔽声音期间“瞥见”目标信号的可能性。功能成像结果显示,相对于噪声中的语音基线,用语音掩蔽语音会导致双侧颞上回(STG)激活,而相对于基线,用频谱旋转语音掩蔽语音仅会导致右侧STG激活。从语音感知的半球不对称性方面讨论了这一结果,并解释为表明掩蔽效应可以通过左右颞叶中的两个并行神经系统产生。这对语音和旋转语音掩蔽器引起的资源竞争具有启示意义,并且可能阐明信息掩蔽中涉及的一些机制。