Dissecting local circuits: parvalbumin interneurons underlie broad feedback control of olfactory bulb output.

Dissecting local circuits: parvalbumin interneurons underlie broad feedback control of olfactory bulb output.
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DOI:
10.1016/j.neuron.2013.08.027
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发表时间:
2013-12-04
期刊:
影响因子:
16.2
通讯作者:
Mizrahi A
Mizrahi A
中科院分区:
医学1区
文献类型:
--
作者:
Miyamichi K;Shlomai-Fuchs Y;Shu M;Weissbourd BC;Luo L;Mizrahi A

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In the mouse olfactory bulb, information from sensory neurons is extensively processed by local interneurons before being transmitted to the olfactory cortex by mitral and tufted (M/T) cells. The precise function of these local networks remains elusive because of the vast heterogeneity of interneurons, their diverse physiological properties, and their complex synaptic connectivity. Here we identified the parvalbumin interneurons (PVNs) as a prominent component of the M/T presynaptic landscape by using an improved rabies-based trans-synaptic tracing method for local circuits. In vivo two-photon targeted patch recording revealed that PVNs have exceptionally broad olfactory receptive fields, and exhibit largely excitatory and persistent odor responses. Trans-synaptic tracing indicated that PVNs receive direct input from widely distributed M/T cells. Both the anatomical and functional extent of this M/T→PVN→M/T circuit contrasts with the narrowly confined M/T→granule cell→M/T circuit, suggesting that olfactory information is processed by multiple local circuits operating at distinct spatial scales.
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