Faculty of Biosciences, Pharmacy and Psychology, University of Leipzig, 04103 Leipzig, Germany.
J Neurosci. 2011 May 4;31(18):6699-709. doi: 10.1523/JNEUROSCI.0575-11.2011.
The development of the auditory system has received increasing attention since the mechanisms of patterned, spontaneous activity in prehearing mammals were discovered. This early activity originates in the cochlea and is assumed to be of importance for the establishment and refinement of synaptic connections in the auditory system. In the present study we investigate synaptic transmission and its interplay with spontaneous discharges in the developing auditory system. We used the calyx of Held as a model system, where this question can be investigated in vivo over a broad range of ages [postnatal day 8 (P8)-P28]. To precisely quantify the timing and reliability of synaptic transmission, we developed a novel fitting approach which decomposes the extracellularly recorded signal into its presynaptic and postsynaptic components. In prehearing mice, we found signal transmission to be unreliable, with high variability in the transmission delay and in the amplitude of postsynaptic components. These timing and amplitude changes were strongly correlated with the preceding activity. Around hearing onset (P12-P14), the properties of signal transmission converged to the adult-like state which was characterized by high transmission reliability as well as high consistency in timing and amplitude. Although activity-dependent depression was still found in action potentials, EPSP depression no longer played a prominent role. In conclusion, the maturation of synaptic transmission at the calyx of Held seems to be precisely timed to achieve its adult potential by the time acoustically evoked signal processing commences.
听觉系统的发育自前听力哺乳动物的模式化、自发性活动机制被发现以来,受到了越来越多的关注。这种早期活动起源于耳蜗,被认为对听觉系统中突触连接的建立和细化很重要。在本研究中,我们研究了发育中的听觉系统中突触传递及其与自发性放电的相互作用。我们使用 Held 小体作为模型系统,可以在广泛的年龄范围内(出生后第 8 天(P8)至第 28 天)在体内研究这个问题。为了准确地量化突触传递的时间和可靠性,我们开发了一种新的拟合方法,将细胞外记录的信号分解为其突触前和突触后成分。在未听声音的小鼠中,我们发现信号传递是不可靠的,其传递延迟和突触后成分的幅度变化很大。这些时间和幅度变化与前一活动强烈相关。在听觉起始(P12-P14)前后,信号传递的特性收敛到成人样状态,其特征是高传递可靠性以及时间和幅度的高度一致性。尽管动作电位中的活动依赖性抑制仍然存在,但 EPSP 抑制不再起主要作用。总之,在听觉诱发信号处理开始时,Held 小体的突触传递成熟似乎是精确计时的,以达到其成人潜力。