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双侧丘脑中不同频率层之间的相互作用对振幅敏感性的调制。

Modulation of amplitude sensitivity by bilateral collicular interaction among different frequency laminae.

机构信息

School of Life Sciences & Hubei Key Lab of Genetic Regulation and Integrative Biology, Central China Normal University, Wuhan 430079, China.

出版信息

Neurosci Lett. 2012 May 23;517(1):13-7. doi: 10.1016/j.neulet.2012.04.002. Epub 2012 Apr 7.

Abstract

In the ascending auditory pathway, the commissure of the inferior colliculus (IC) interconnects the two ICs and may therefore mediate bilateral collicular interaction during sound processing. In this study, we show that electrically stimulates one IC produces facilitation or suppression of acoustically evoked response of neurons in the other IC. The facilitated IC neurons (14%) are located in bilateral corresponding frequency laminae while the suppressed IC neurons (86%) are widespreadly located in bilateral different frequency laminae. Whereas induced facilitation increases the dynamic range but decreases the slope of the rate-amplitude function of modulated IC neurons, induced suppression produces the opposite effect. As a result, bilateral collicular facilitation increases the sensitivity of modulated IC neurons to a wider range of sound amplitude while bilateral collicular suppression improves the sensitivity of modulated IC neurons to minor change in sound amplitude over a narrower range of sound amplitude. The degree of suppression is significantly greater for suppressed IC neurons located in bilateral corresponding frequency laminae than in non-corresponding frequency laminae. We suggest that bilateral collicular interaction through the commissure of the IC may play a role in modulation of amplitude sensitivity and in shaping the binaural property of IC neurons.

摘要

在听觉上行通路上,下丘的连合(IC)将两个 IC 相互连接,因此可能在声音处理过程中介导双侧丘的相互作用。在这项研究中,我们表明,电刺激一个 IC 会产生对另一个 IC 中神经元的声诱发反应的促进或抑制。促进的 IC 神经元(14%)位于双侧相应的频率层中,而抑制的 IC 神经元(86%)广泛分布于双侧不同的频率层中。虽然诱导的促进作用增加了调制 IC 神经元的动态范围,但降低了幅度-幅度函数的斜率,而诱导的抑制则产生相反的效果。因此,双侧丘的促进作用增加了调制 IC 神经元对更广泛的声音幅度的敏感性,而双侧丘的抑制作用则提高了调制 IC 神经元对较小的声音幅度变化在较窄的声音幅度范围内的敏感性。位于双侧相应频率层中的抑制性 IC 神经元的抑制程度明显大于位于非相应频率层中的抑制性 IC 神经元。我们认为,通过 IC 的连合的双侧丘相互作用可能在幅度敏感性的调制和塑造 IC 神经元的双耳特性中发挥作用。

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