Literature DB >> 31069620

Cortical Organization of Centrifugal Afferents to the Olfactory Bulb: Mono- and Trans-synaptic Tracing with Recombinant Neurotropic Viral Tracers.

Pengjie Wen1,2, Xiaoping Rao1, Liuying Xu3, Zhijian Zhang1, Fan Jia1, Xiaobin He4, Fuqiang Xu5,6.   

Abstract

Sensory processing is strongly modulated by different brain and behavioral states, and this is based on the top-down modulation. In the olfactory system, local neural circuits in the olfactory bulb (OB) are innervated by centrifugal afferents in order to regulate the processing of olfactory information in the OB under different behavioral states. The purpose of the present study was to explore the organization of neural networks in olfactory-related cortices and modulatory nuclei that give rise to direct and indirect innervations to the glomerular layer (GL) of the OB at the whole-brain scale. Injection of different recombinant attenuated neurotropic viruses into the GL showed that it received direct inputs from each layer in the OB, centrifugal inputs from the ipsilateralanterior olfactory nucleus (AON), anterior piriform cortex (Pir), and horizontal limb of diagonal band of Broca (HDB), and various indirect inputs from bilateral cortical neurons in the AON, Pir, amygdala, entorhinal cortex, hippocampus, HDB, dorsal raphe, median raphe and locus coeruleus. These results provide a circuitry basis that will help further understand the mechanism by which olfactory information-processing in the OB is regulated.

Entities:  

Keywords:  Centrifugal afferents; Glomerular layer; Neurotropic virus; Olfactory bulb; Trans-synaptic labeling

Mesh:

Year:  2019        PMID: 31069620      PMCID: PMC6616654          DOI: 10.1007/s12264-019-00385-6

Source DB:  PubMed          Journal:  Neurosci Bull        ISSN: 1995-8218            Impact factor:   5.203


  83 in total

1.  Functional topography of connections linking mirror-symmetric maps in the mouse olfactory bulb.

Authors:  Claudia Lodovichi; Leonardo Belluscio; Lawrence C Katz
Journal:  Neuron       Date:  2003-04-24       Impact factor: 17.173

Review 2.  Input and output stations of the entorhinal cortex: superficial vs. deep layers or lateral vs. medial divisions?

Authors:  Terence V Sewards; Mark A Sewards
Journal:  Brain Res Brain Res Rev       Date:  2003-06

3.  Odorant receptors instruct functional circuitry in the mouse olfactory bulb.

Authors:  Leonardo Belluscio; Claudia Lodovichi; Paul Feinstein; Peter Mombaerts; Lawrence C Katz
Journal:  Nature       Date:  2002-09-19       Impact factor: 49.962

Review 4.  A field guide to the anterior olfactory nucleus (cortex).

Authors:  Peter C Brunjes; Kurt R Illig; Elizabeth A Meyer
Journal:  Brain Res Brain Res Rev       Date:  2005-10-17

5.  Viral tracing identifies distributed columnar organization in the olfactory bulb.

Authors:  David C Willhite; Katherine T Nguyen; Arjun V Masurkar; Charles A Greer; Gordon M Shepherd; Wei R Chen
Journal:  Proc Natl Acad Sci U S A       Date:  2006-08-08       Impact factor: 11.205

Review 6.  Parallel processing of social signals by the mammalian main and accessory olfactory systems.

Authors:  M Spehr; J Spehr; K Ukhanov; K R Kelliher; T Leinders-Zufall; F Zufall
Journal:  Cell Mol Life Sci       Date:  2006-07       Impact factor: 9.261

7.  Extrinsic projections from area CA1 of the rat hippocampus: olfactory, cortical, subcortical, and bilateral hippocampal formation projections.

Authors:  T van Groen; J M Wyss
Journal:  J Comp Neurol       Date:  1990-12-15       Impact factor: 3.215

8.  Blanes cells mediate persistent feedforward inhibition onto granule cells in the olfactory bulb.

Authors:  R Todd Pressler; Ben W Strowbridge
Journal:  Neuron       Date:  2006-03-16       Impact factor: 17.173

9.  Adrenergic modulation of olfactory bulb circuitry affects odor discrimination.

Authors:  Wilder Doucette; Julie Milder; Diego Restrepo
Journal:  Learn Mem       Date:  2007-08-03       Impact factor: 2.460

10.  Intraglomerular inhibition: signaling mechanisms of an olfactory microcircuit.

Authors:  Gabe J Murphy; Daniel P Darcy; Jeffry S Isaacson
Journal:  Nat Neurosci       Date:  2005-02-06       Impact factor: 24.884

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  6 in total

1.  Impaired Parahippocampal Gyrus-Orbitofrontal Cortex Circuit Associated with Visuospatial Memory Deficit as a Potential Biomarker and Interventional Approach for Alzheimer Disease.

Authors:  Lin Zhu; Zan Wang; Zhanhong Du; Xinyang Qi; Hao Shu; Duan Liu; Fan Su; Qing Ye; Xuemei Liu; Zheng Zhou; Yongqiang Tang; Ru Song; Xiaobin Wang; Li Lin; Shijiang Li; Ying Han; Liping Wang; Zhijun Zhang
Journal:  Neurosci Bull       Date:  2020-04-29       Impact factor: 5.203

2.  Plasticity of Sniffing Pattern and Neural Activity in the Olfactory Bulb of Behaving Mice During Odor Sampling, Anticipation, and Reward.

Authors:  Penglai Liu; Tiantian Cao; Jinshan Xu; Xingfeng Mao; Dejuan Wang; Anan Li
Journal:  Neurosci Bull       Date:  2020-01-27       Impact factor: 5.203

3.  Dynamic Impairment of Olfactory Behavior and Signaling Mediated by an Olfactory Corticofugal System.

Authors:  Renata Medinaceli Quintela; Jennifer Bauer; Lutz Wallhorn; Kim Le; Daniela Brunert; Markus Rothermel
Journal:  J Neurosci       Date:  2020-08-19       Impact factor: 6.167

4.  Distinct Characteristics of Odor-evoked Calcium and Electrophysiological Signals in Mitral/Tufted Cells in the Mouse Olfactory Bulb.

Authors:  Han Xu; Chi Geng; Xinzhong Hua; Penglai Liu; Jinshan Xu; Anan Li
Journal:  Neurosci Bull       Date:  2021-04-15       Impact factor: 5.203

5.  Mapping the Brain-Wide Cholinergic Neurons Projecting to Skeletal Muscle in Mice by High-Throughput Light Sheet Tomography.

Authors:  Dayu Chen; Xiaofeng Cheng; Xiong Yang; Yongsheng Zhang; Zhigang He; Qian Wang; Guojie Yao; Xiuli Liu; Shaoqun Zeng; Jincao Chen; Hongbing Xiang
Journal:  Neurosci Bull       Date:  2020-07-26       Impact factor: 5.203

Review 6.  Bilateral and unilateral odor processing and odor perception.

Authors:  Tal Dalal; Nitin Gupta; Rafi Haddad
Journal:  Commun Biol       Date:  2020-04-01
  6 in total

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