Institute of Ecology and Evolution, Russian Academy of Sciences, 33 Leninsky Prospect, 119071 Moscow, Russian Federation.
Hear Res. 2010 Feb;260(1-2):109-16. doi: 10.1016/j.heares.2009.12.018. Epub 2009 Dec 22.
Using rippled noise probes, spectrum-pattern resolution was measured with and without a narrow-band noise masker. Diotic presentation of both the probe and masker (S(0)N(0) mode) resulted in decreased spectrum resolution as compared to the control (no masker) conditions. The effects of the low- and on-frequency maskers differed quantitatively, however in both cases the ability to discriminate the probe spectrum pattern was suppressed completely when the masker/probe level ratio exceeded 10dB (on-frequency masker) or 10-25dB, depending on the probe level (low-frequency masker). The effect of the high-frequency masker was negligible. Slight but noticeable releasing of the spectrum-pattern resolution was found when the probe was presented to both ears in-phase and the masker counter-phase (S(0)N(pi) mode). In conditions of the probe delivered to one ear and the masker to the other ear (S(L)N(R) mode), the effect on the spectrum-pattern resolution was slight or negligible within a wide range of the noise/probe ratio.
使用纹波噪声探针,在有无窄带噪声掩蔽器的情况下测量了频谱图案分辨率。与对照(无掩蔽器)条件相比,探针和掩蔽器(S(0)N(0)模式)的双声道呈现导致频谱分辨率降低。然而,低频和同频掩蔽器的影响在数量上有所不同,在这两种情况下,当掩蔽器/探针电平比超过 10dB(同频掩蔽器)或 10-25dB(取决于探针电平)时,完全抑制了探针频谱图案的辨别能力(低频掩蔽器)。高频掩蔽器的影响可以忽略不计。当探针同时呈现给双耳并且掩蔽器反相时(S(0)N(pi)模式),发现频谱图案分辨率略有释放,但仍可察觉。在探针输送到一只耳朵而掩蔽器输送到另一只耳朵的情况下(S(L)N(R)模式),在噪声/探针比的宽范围内,对频谱图案分辨率的影响很小或可以忽略不计。