Literature DB >> 28972124

Activity Patterns Elicited by Airflow in the Olfactory Bulb and Their Possible Functions.

Ruiqi Wu1, Yue Liu2, Li Wang3, Bo Li3, Fuqiang Xu1,2.   

Abstract

Olfactory sensory neurons (OSNs) can sense both odorants and airflows. In the olfactory bulb (OB), the coding of odor information has been well studied, but the coding of mechanical stimulation is rarely investigated. Unlike odor-sensing functions of OSNs, the airflow-sensing functions of OSNs are also largely unknown. Here, the activity patterns elicited by mechanical airflow in male rat OBs were mapped using fMRI and correlated with local field potential recordings. In an attempt to reveal possible functions of airflow sensing, the relationship between airflow patterns and physiological parameters was also examined. We found the following: (1) the activity pattern in the OB evoked by airflow in the nasal cavity was more broadly distributed than patterns evoked by odors; (2) the pattern intensity increases with total airflow, while the pattern topography with total airflow remains almost unchanged; and (3) the heart rate, spontaneous respiratory rate, and electroencephalograph power in the β band decreased with regular mechanical airflow in the nasal cavity. The mapping results provide evidence that the signals elicited by mechanical airflow in OSNs are transmitted to the OB, and that the OB has the potential to code and process mechanical information. Our functional data indicate that airflow rhythm in the olfactory system can regulate the physiological and brain states, providing an explanation for the effects of breath control in meditation, yoga, and Taoism practices.SIGNIFICANCE STATEMENT Presentation of odor information in the olfactory bulb has been well studied, but studies about breathing features are rare. Here, using blood oxygen level-dependent functional MRI for the first time in such an investigation, we explored the global activity patterns in the rat olfactory bulb elicited by airflow in the nasal cavity. We found that the activity pattern elicited by airflow is broadly distributed, with increasing pattern intensity and similar topography under increasing total airflow. Further, heart rate, spontaneous respiratory rate in the lung, and electroencephalograph power in the β band decreased with regular airflow in the nasal cavity. Our study provides further understanding of the airflow map in the olfactory bulb in vivo, and evidence for the possible mechanosensitivity functions of olfactory sensory neurons.
Copyright © 2017 the authors 0270-6474/17/3710700-12$15.00/0.

Entities:  

Keywords:  airflow map; airflow rhythm; functional MRI; mechanosensitivity; olfactory bulb

Mesh:

Year:  2017        PMID: 28972124      PMCID: PMC6596515          DOI: 10.1523/JNEUROSCI.2210-17.2017

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  8 in total

1.  Automated analysis of breathing waveforms using BreathMetrics: a respiratory signal processing toolbox.

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Review 2.  Respiratory influence on brain dynamics: the preponderant role of the nasal pathway and deep slow regime.

Authors:  Maxime Juventin; Valentin Ghibaudo; Jules Granget; Corine Amat; Emmanuelle Courtiol; Nathalie Buonviso
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Review 3.  Olfactory modulation of the medial prefrontal cortex circuitry: Implications for social cognition.

Authors:  Janardhan P Bhattarai; Semra Etyemez; Hanna Jaaro-Peled; Emma Janke; Usuy D Leon Tolosa; Atsushi Kamiya; Jay A Gottfried; Akira Sawa; Minghong Ma
Journal:  Semin Cell Dev Biol       Date:  2021-05-09       Impact factor: 7.499

4.  Olfactory inputs modulate respiration-related rhythmic activity in the prefrontal cortex and freezing behavior.

Authors:  Andrew H Moberly; Mary Schreck; Janardhan P Bhattarai; Larry S Zweifel; Wenqin Luo; Minghong Ma
Journal:  Nat Commun       Date:  2018-04-18       Impact factor: 14.919

5.  How Breath-Control Can Change Your Life: A Systematic Review on Psycho-Physiological Correlates of Slow Breathing.

Authors:  Andrea Zaccaro; Andrea Piarulli; Marco Laurino; Erika Garbella; Danilo Menicucci; Bruno Neri; Angelo Gemignani
Journal:  Front Hum Neurosci       Date:  2018-09-07       Impact factor: 3.169

6.  New Insights from 22-kHz Ultrasonic Vocalizations to Characterize Fear Responses: Relationship with Respiration and Brain Oscillatory Dynamics.

Authors:  Maryne Dupin; Samuel Garcia; Julie Boulanger-Bertolus; Nathalie Buonviso; Anne-Marie Mouly
Journal:  eNeuro       Date:  2019-05-07

7.  Brief Sensory Deprivation Triggers Cell Type-Specific Structural and Functional Plasticity in Olfactory Bulb Neurons.

Authors:  Elisa Galliano; Christiane Hahn; Lorcan P Browne; Paula R Villamayor; Candida Tufo; Andres Crespo; Matthew S Grubb
Journal:  J Neurosci       Date:  2021-01-22       Impact factor: 6.167

8.  The olfactory bulb modulates entorhinal cortex oscillations during spatial working memory.

Authors:  Morteza Salimi; Farhad Tabasi; Milad Nazari; Sepideh Ghazvineh; Alireza Salimi; Hamidreza Jamaati; Mohammad Reza Raoufy
Journal:  J Physiol Sci       Date:  2021-06-30       Impact factor: 2.781

  8 in total

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