Thresholds were measured for 5-ms 1-kHz tones masked by synchronous bursts of noise containing a spectral notch centered on the signal frequency. Thresholds were reduced by prior exposure to a 200-ms burst of a 'priming stimulus' which had the same spectral shape as the masker. The masking release was greatest for notch widths extending between 20-30% above and below the signal frequency. It did not occur when the masker and primer were bandpass noises extending from 200-1800 Hz. A smaller masking release could be obtained with a primer consisting of only the lower band of a notched noise masker. This was also true, but to a lesser extent, for a primer consisting of the higher band alone. A primer that was a narrow band of noise centered on the signal frequency produced an increase in masking, which could not be attributed to forward masking of the tone by the primer. The effects of all primers were independent of primer level over the 30-dB range studied, ruling out explanations in terms of peripheral adaptation or of adaptation of suppression. A significant masking release occurred when the silent interval between primer offset and masker onset was as long as 320 ms, but increasing the duration of the masker and signal beyond 80 ms eliminated the effect in two out of three subjects. The results are consistent with a form of processing which groups together energy in frequency regions containing common amplitude envelopes, and which enhances the internal representation of newly-arriving energy in previously unstimulated frequency regions.

译文

:对阈值进行了5ms 1-kHz音调的测量,这些音调被同步的噪声突发所掩盖,噪声中包含以信号频率为中心的频谱陷波。通过事先暴露于200毫秒的“起爆刺激”中,可以降低阈值,该“起爆刺激”具有与掩膜相同的频谱形状。对于在信号频率之上和之下20-30%之间延伸的陷波宽度,屏蔽释放最大。当掩蔽剂和底漆为200-1800 Hz的带通噪声时,不会发生这种情况。用仅由带切口的噪声掩蔽器的下部带组成的底漆可以获得较小的掩蔽释放。对于仅由较高条带组成的引物,也是如此,但程度较小。以信号频率为中心的窄带噪声的底漆会导致掩蔽的增加,这不能归因于底漆对音调的正向掩蔽。在研究的30 dB范围内,所有引物的作用均与引物水平无关,从而排除了对周围适应或抑制适应的解释。当引物偏移量与掩蔽剂发作之间的沉默间隔长达320 ms时,发生了显着的掩蔽释放,但是增加掩蔽剂的持续时间和信号超过80 ms消除了三分之二的受试者的影响。结果与一种处理形式相符,该处理将包含共同幅度包络的频率区域中的能量分组在一起,并且增强了以前未受刺激的频率区域中新到达能量的内部表示。

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