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单个小脑苔藓纤维终扣对感觉信息的高保真传递。

High-fidelity transmission of sensory information by single cerebellar mossy fibre boutons.

作者信息

Rancz Ede A, Ishikawa Taro, Duguid Ian, Chadderton Paul, Mahon Séverine, Häusser Michael

机构信息

Wolfson Institute for Biomedical Research and Department of Physiology, University College London, Gower Street, London WC1E 6BT, UK.

出版信息

Nature. 2007 Dec 20;450(7173):1245-8. doi: 10.1038/nature05995.

Abstract

Understanding the transmission of sensory information at individual synaptic connections requires knowledge of the properties of presynaptic terminals and their patterns of firing evoked by sensory stimuli. Such information has been difficult to obtain because of the small size and inaccessibility of nerve terminals in the central nervous system. Here we show, by making direct patch-clamp recordings in vivo from cerebellar mossy fibre boutons-the primary source of synaptic input to the cerebellar cortex-that sensory stimulation can produce bursts of spikes in single boutons at very high instantaneous firing frequencies (more than 700 Hz). We show that the mossy fibre-granule cell synapse exhibits high-fidelity transmission at these frequencies, indicating that the rapid burst of excitatory postsynaptic currents underlying the sensory-evoked response of granule cells can be driven by such a presynaptic spike burst. We also demonstrate that a single mossy fibre can trigger action potential bursts in granule cells in vitro when driven with in vivo firing patterns. These findings suggest that the relay from mossy fibre to granule cell can act in a 'detonator' fashion, such that a single presynaptic afferent may be sufficient to transmit the sensory message. This endows the cerebellar mossy fibre system with remarkable sensitivity and high fidelity in the transmission of sensory information.

摘要

要了解感觉信息在单个突触连接上的传递,需要知道突触前终末的特性及其由感觉刺激诱发的放电模式。由于中枢神经系统中神经终末体积小且难以接近,这类信息一直难以获得。在这里,我们通过在体内对小脑苔藓纤维终扣(小脑皮质突触输入的主要来源)进行直接膜片钳记录表明,感觉刺激能够在单个终扣中产生频率极高的瞬时放电(超过700赫兹)的尖峰串。我们表明,在这些频率下,苔藓纤维 - 颗粒细胞突触表现出高保真传递,这表明颗粒细胞感觉诱发反应背后的快速兴奋性突触后电流爆发可以由这样的突触前尖峰串驱动。我们还证明,当以体内放电模式驱动时,单个苔藓纤维可以在体外触发颗粒细胞的动作电位爆发。这些发现表明,从苔藓纤维到颗粒细胞的中继可以以“雷管”方式起作用,即单个突触前传入神经可能足以传递感觉信息。这赋予了小脑苔藓纤维系统在感觉信息传递方面非凡的敏感性和高保真度。

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