Wang Xin, Jen Philip H-S, Wu Fei-Jian, Chen Qi-Cai
College of Life Sciences, Central China Normal University, Wuhan, 430079, People's Republic of China.
Brain Res. 2007 Sep 5;1167:80-91. doi: 10.1016/j.brainres.2007.07.002. Epub 2007 Jul 14.
In acoustic communication, animals must extract biologically relevant signals that are embedded in noisy environment. The present study examines how weak noise may affect the auditory sensitivity of neurons in the central nucleus of the mouse inferior colliculus (IC) which receives convergent excitatory and inhibitory inputs from both lower and higher auditory centers. Specifically, we studied the frequency sensitivity and minimum threshold of IC neurons using a pure tone probe and a weak white noise masker under forward masking paradigm. For most IC neurons, probe-elicited response was decreased by a weak white noise that was presented at a specific gap (i.e. time window). When presented within this time window, weak noise masking sharpened the frequency tuning curve and increased the minimum threshold of IC neurons. The degree of weak noise masking of these two measurements increased with noise duration. Sharpening of the frequency tuning curve and increasing of the minimum threshold of IC neurons during weak noise masking were mostly mediated through GABAergic inhibition. In addition, sharpening of frequency tuning curve by the weak noise masker was more effective at the high than at low frequency limb. These data indicate that in the real world the ambient noise may improve frequency sensitivity of IC neurons through GABAergic inhibition while inevitably decrease the frequency response range and sensitivity of IC neurons.
在声学通信中,动物必须从嘈杂的环境中提取具有生物学意义的信号。本研究考察了微弱噪声如何影响小鼠下丘中央核(IC)神经元的听觉敏感性,该核接受来自较低和较高听觉中枢的汇聚性兴奋性和抑制性输入。具体而言,我们在前掩蔽范式下,使用纯音探针和微弱白噪声掩蔽器研究了IC神经元的频率敏感性和最小阈值。对于大多数IC神经元,在特定间隔(即时间窗口)呈现的微弱白噪声会降低探针诱发的反应。当在这个时间窗口内呈现时,微弱噪声掩蔽会锐化频率调谐曲线并提高IC神经元的最小阈值。这两种测量的微弱噪声掩蔽程度随噪声持续时间增加。微弱噪声掩蔽期间IC神经元频率调谐曲线的锐化和最小阈值的增加主要通过GABA能抑制介导。此外,微弱噪声掩蔽器对频率调谐曲线的锐化在高频段比低频段更有效。这些数据表明,在现实世界中,环境噪声可能通过GABA能抑制提高IC神经元的频率敏感性,同时不可避免地降低IC神经元的频率响应范围和敏感性。