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肾小球中心-外周抑制在体内塑造了小鼠嗅球中气味诱发的输入。

Interglomerular center-surround inhibition shapes odorant-evoked input to the mouse olfactory bulb in vivo.

作者信息

Vucinić Dejan, Cohen Lawrence B, Kosmidis Efstratios K

机构信息

Department of Cellular and Molecular Physiology, Yale University School of Medicine, New Haven, Connecticut, USA.

出版信息

J Neurophysiol. 2006 Mar;95(3):1881-7. doi: 10.1152/jn.00918.2005. Epub 2005 Nov 30.

Abstract

Mouse olfactory receptor proteins have relatively broad odorant tuning profiles, so single odorants typically activate a substantial subset of glomeruli in the main olfactory bulb, resulting in stereotyped odorant- and concentration-dependent glomerular input maps. One of the functions of the olfactory bulb may be to reduce the extent of this rather widespread activation before transmitting the information to higher olfactory centers. Two circuits have been studied in vitro that could perform center-surround inhibition in the olfactory bulb, one circuit acting between glomeruli, the other through the classical reciprocal synapses between the lateral dendrites of mitral cells and the dendrites of granule cells. One unanswered question from these in vitro measurements was how these circuits would affect the response to odorants in vivo. We made measurements of the odorant-evoked increase in calcium concentration in the olfactory receptor neuron terminals in the anesthetized mouse to evaluate the role of presynaptic inhibition in reshaping the input to the olfactory bulb. We compared the glomerular responses in 2- to 4-wk-old mice before and after suppressing presynaptic inhibition onto the receptor neuron terminals with the GABAB antagonist, CGP46381. We find that the input maps are modified by an apparent center-surround inhibition: strongly activated glomeruli appear to suppress the release from receptor neurons terminating in surrounding glomeruli. This form of lateral inhibition has the effect of increasing the contrast of the sensory input map.

摘要

小鼠嗅觉受体蛋白具有相对宽泛的气味调谐谱,因此单一气味通常会激活主嗅球中相当一部分的肾小球,从而产生刻板的、依赖于气味和浓度的肾小球输入图谱。嗅球的功能之一可能是在将信息传递到更高嗅觉中枢之前,减少这种相当广泛的激活程度。已经在体外研究了两种可能在嗅球中执行中心-外周抑制的回路,一种回路在肾小球之间起作用,另一种通过二尖瓣细胞的外侧树突和颗粒细胞的树突之间的经典相互突触起作用。这些体外测量中一个未解决的问题是这些回路在体内会如何影响对气味的反应。我们测量了麻醉小鼠嗅球受体神经元终末中气味诱发的钙浓度增加,以评估突触前抑制在重塑嗅球输入中的作用。我们比较了用GABAB拮抗剂CGP46381抑制受体神经元终末的突触前抑制前后2至4周龄小鼠的肾小球反应。我们发现输入图谱通过一种明显的中心-外周抑制得到了改变:强烈激活的肾小球似乎抑制了终止于周围肾小球的受体神经元的释放。这种形式的侧向抑制具有增加感觉输入图谱对比度的作用。

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