Schairer Kim S, Nizami Lance, Reimer Jason F, Jesteadt Walt
Center for Hearing Research, Boys Town National Research Hospital, 555 North 30th Street, Omaha, Nebraska 68131, USA.
J Acoust Soc Am. 2003 Mar;113(3):1560-73. doi: 10.1121/1.1543933.
Psychometric functions (PFs) for forward-masked tones were obtained for conditions in which signal level was varied to estimate threshold at several masker levels (variable-signal condition), and in which masker level was varied to estimate threshold at several signal levels (variable-masker condition). The changes in PF slope across combinations of masker frequency, masker level, and signal delay were explored in three experiments. In experiment 1, a 2-kHz, 10-ms tone was masked by a 50, 70 or 90 dB SPL, 20-ms on-frequency forward masker, with signal delays of 2, 20, or 40 ms, in a variable-signal condition. PF slopes decreased in conditions where signal threshold was high. In experiments 2 and 3, the signal was a 4-kHz, 10-ms tone, and the masker was either a 4- or 2.4-kHz, 200-ms tone. In experiment 2, on-frequency maskers were presented at 30 to 90 dB SPL in 10-dB steps and off-frequency maskers were presented at 60 to 90 dB SPL in 10-dB steps, with signal delays of 0, 10, or 30 ms, in a variable-signal condition. PF slopes decreased as signal level increased, and this trend was similar for on- and off-frequency maskers. In experiment 3, variable-masker conditions with on- and off-frequency maskers and 0-ms signal delay were presented. In general, the results were consistent with the hypothesis that peripheral nonlinearity is reflected in the PF slopes. The data also indicate that masker level plays a role independent of signal level, an effect that could be accounted for by assuming greater internal noise at higher stimulus levels.
针对前掩蔽音的心理测量函数(PFs)是在以下条件下获得的:一是改变信号强度以估计在多个掩蔽强度下的阈值(可变信号条件);二是改变掩蔽强度以估计在多个信号强度下的阈值(可变掩蔽条件)。在三个实验中探究了掩蔽频率、掩蔽强度和信号延迟组合下PF斜率的变化。在实验1中,在可变信号条件下,一个2千赫、10毫秒的音调被一个50、70或90分贝声压级、20毫秒的同频前掩蔽音掩蔽,信号延迟为2、20或40毫秒。在信号阈值较高的条件下,PF斜率降低。在实验2和3中,信号是一个4千赫、10毫秒的音调,掩蔽音要么是一个4千赫、要么是2.4千赫、200毫秒的音调。在实验2中,在可变信号条件下,同频掩蔽音以10分贝的步长在30至90分贝声压级呈现,异频掩蔽音以10分贝的步长在60至90分贝声压级呈现,信号延迟为0、10或30毫秒。随着信号强度增加,PF斜率降低,并且这种趋势对于同频和异频掩蔽音是相似的。在实验3中,呈现了具有同频和异频掩蔽音且信号延迟为0毫秒的可变掩蔽条件。总体而言,结果与外周非线性反映在PF斜率中的假设一致。数据还表明,掩蔽强度发挥着独立于信号强度的作用,这种效应可以通过假设在较高刺激强度下存在更大的内部噪声来解释。