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首页> 外文期刊>The Journal of Experimental Biology >Maintaining acoustic communication at a cocktail party: heterospecific masking noise improves signal detection through frequency separation
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Maintaining acoustic communication at a cocktail party: heterospecific masking noise improves signal detection through frequency separation

机译:在鸡尾酒会上保持声学交流:异种掩盖噪声通过频率分离改善信号检测

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We examined acoustic masking in a chirping katydid species of the Mecopoda elongata complex due to interference with a sympatric Mecopoda species where males produce continuous trills at high amplitudes. Frequency spectra of both calling songs range from 1 to 80 kHz; the chirper species has more energy in a narrow frequency band at 2 kHz and above 40 kHz. Behaviourally, chirper males successfully phase-locked their chirps to playbacks of conspecific chirps under masking conditions at signal-tonoise ratios (SNRs) of -8 dB. After the 2 kHz band in the chirp had been equalised to the level in the masking trill, the breakdown of phase-locked synchrony occurred at a SNR of +7 dB. The remarkable receiver performance is partially mirrored in the selective response of a first-order auditory interneuron (TN1) to conspecific chirps under these masking conditions. However, the selective response is only maintained for a stimulus including the 2 kHz component, although this frequency band has no influence on the unmasked TN1 response. Remarkably, the addition of masking noise at 65 dB sound pressure level (SPL) to threshold response levels of TN1 for pure tones of 2 kHz enhanced the sensitivity of the response by 10 dB. Thus, the spectral dissimilarity between masker and signal at a rather low frequency appears to be of crucial importance for the ability of the chirping species to communicate under strong masking by the trilling species. We discuss the possible properties underlying the cellular/synaptic mechanisms of the 'novelty detector'.
机译:由于干扰了同伴的Mecopoda物种,雄性在高振幅下产生连续的颤音,因此我们研究了Mecopoda伸长的complex属ka类物种的声掩蔽。两首歌曲的频谱范围为1到80 kHz; chi类在2 kHz和40 kHz以上的窄频带中具有更多能量。行为上,chi声男性在掩蔽条件下以-8 dB的信噪比成功将其rp锁定为同种chi的回放。在线性调频脉冲中的2 kHz频带等于掩蔽颤音的电平之后,锁相同步的崩溃发生在SNR为+7 dB的情况下。在这些掩蔽条件下,一阶听觉中间神经元(TN1)对特定specific发出的选择性响应部分反映了出色的接收器性能。但是,尽管该频带对未掩盖的TN1响应没有影响,但仅对包括2 kHz分量的刺激保持选择性响应。值得注意的是,在2 kHz纯音的TN1阈值响应级别上,将65 dB声压级(SPL)的掩蔽噪声增加了10 dB。因此,在相当低的频率下,掩蔽器和信号之间的频谱差异似乎对于species物种在颤音物种的强掩蔽下进行通信的能力至关重要。我们讨论了“新颖检测器”的细胞/突触机制的潜在特性。

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