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宽吻海豚(瓶鼻海豚)多重听觉稳态反应的频率和强度依赖性掩蔽

Frequency and level dependent masking of the multiple auditory steady-state response in the bottlenose dolphin (Tursiops truncatus).

作者信息

Branstetter Brian K, Finneran James J, Houser Dorian S

机构信息

US Navy Marine Mammal Program, Space and Naval Warfare Systems Center, San Diego, Code 71510, 53560 Hull Street, San Diego, California 92152, USA.

出版信息

J Acoust Soc Am. 2008 May;123(5):2928-35. doi: 10.1121/1.2896753.

Abstract

The potential for interactions between steady-state evoked responses to simultaneous auditory stimuli was investigated in two bottlenose dolphins (Tursiops truncatus). Three experiments were conducted using either a probe stimulus (probe condition) or a probe in the presence of a masker (probe-plus-masker condition). In the first experiment, the probe and masker were sinusoidal amplitude-modulated (SAM) tones. Probe and masker frequencies and masker level were manipulated to provide variable masking conditions. Probe frequencies were 31.7, 63.5, 100.8, and 127.0 kHz. The second experiment was identical to the first except only the 63.5 kHz probe was used and maskers were pure tones. For the third experiment, thresholds were measured for the probe and probe-plus-masker conditions using two techniques, one based on the lowest detectable response and the other based on a regression analysis. Results demonstrated localized masking effects where lower frequency maskers suppressed higher frequency probes and higher amplitude maskers produced a greater masking effect. The pattern of pure tone masking was nearly identical to SAM tone masking. The two threshold estimates were similar in low masking conditions, but in high masking conditions the lowest detectable response tended to overestimate thresholds while the regression-based analysis tended to underestimate thresholds.

摘要

在两只宽吻海豚(瓶鼻海豚)身上研究了对同时呈现的听觉刺激的稳态诱发反应之间相互作用的可能性。进行了三个实验,分别采用探测刺激(探测条件)或在掩蔽声存在的情况下采用探测刺激(探测加掩蔽条件)。在第一个实验中,探测声和掩蔽声是正弦幅度调制(SAM)音调。对探测声和掩蔽声的频率以及掩蔽声的强度进行了控制,以提供不同的掩蔽条件。探测声频率为31.7、63.5、100.8和127.0千赫。第二个实验与第一个实验相同,只是只使用了63.5千赫的探测声,并且掩蔽声为纯音。在第三个实验中,使用两种技术测量了探测条件和探测加掩蔽条件下的阈值,一种基于最低可检测反应,另一种基于回归分析。结果表明存在局部掩蔽效应,即低频掩蔽声抑制高频探测声,且较高强度的掩蔽声产生更大的掩蔽效应。纯音掩蔽模式与SAM音调掩蔽模式几乎相同。在低掩蔽条件下,两种阈值估计相似,但在高掩蔽条件下,最低可检测反应往往高估阈值,而基于回归的分析往往低估阈值。

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