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首页> 外文期刊>The Journal of the Acoustical Society of America >Basilar-membrane nonlinearity and the growth of forward masking
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Basilar-membrane nonlinearity and the growth of forward masking

机译:基底膜非线性与前向掩膜的增长

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Forward masking growth functions were measured for pure-tone maskers and signals at 2 and 6 kHz as a function of the silent interval between the masker and signal. The inclusion of conditions involving short signals and short masker-signal intervals ensured that a wide range of signal thresholds were recorded. A consistent pattern was seen across all the results. When the signal level was below about 35 dB SPL the growth of masking was shallow, so that signal threshold increased at a much slower rate than masker level. When the signal level exceeded this value, the masking function steepened, approaching unity (linear growth) at the highest masker and signal levels. The results are inconsistent with an explanation for forward-masking growth in terms of saturating neural adaptation. Instead the data are well described by a model incorporating a simulation of the basilar-membrane response at characteristic frequency (which is almost linear at low levels and compressive at higher levels) followed by a sliding intensity integrator or temporal window. Taken together with previous results, the findings suggest that the principle nonlinearity in temporal masking may be the basilar membrane response function, and that subsequent to this the auditory system behaves as if it were linear in the intensity domain.
机译:测量了纯音掩蔽器和2 kHz和6 kHz信号的正向掩蔽生长函数,该函数是掩蔽器和信号之间的静默间隔的函数。包括短信号和短屏蔽信号间隔的条件确保了广泛的信号阈值被记录。在所有结果中观察到一致的模式。当信号电平低于大约35 dB SPL时,掩蔽的增长变浅,因此信号阈值以比掩蔽器水平低得多的速率增加。当信号电平超过此值时,屏蔽功能会变陡,在最高的屏蔽器和信号电平处接近统一(线性增长)。结果与就饱和神经适应而言的前向掩盖生长的解释不一致。取而代之的是,通过一个模型,该模型很好地描述了特征频率下的基底膜响应模拟(在低水平时几乎是线性的,而在较高水平时是压缩的)的模型,然后是滑动强度积分器或时间窗口。结合以前的结果,这些发现表明,时间掩蔽的主要非线性可能是基底膜反应功能,并且在此之后,听觉系统的行为似乎在强度域中是线性的。

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