A slow respiration-related rhythm strongly shapes the activity of the olfactory bulb. This rhythm appears as a slow oscillation that is detectable in the membrane potential, the respiration-related spike discharge of the mitral/tufted cells and the bulbar local field potential. Here, we investigated the rules that govern the manifestation of membrane potential slow oscillations (MPSOs) and respiration-related discharge activities under various afferent input conditions and cellular excitability states.We recorded the intracellular membrane potential signals in the mitral/tufted cells of freely breathing anesthetized rats. We first demonstrated the existence of multiple types of MPSOs, which were influenced by odor stimulation and discharge ...
Local field potential (LFP) oscillations are often accompanied by synchronization of activity within...
Here we present a detailed statistical analysis of the discharge characteristics of mitral cells of ...
<p><i>A) Typical recordings of intracellular signals</i>. Cell numbers were extracted from the matri...
A slow respiration-related rhythm strongly shapes the activity of the olfactory bulb. This rhythm ap...
BACKGROUND: A slow respiration-related rhythm strongly shapes the activity of the olfactory bulb. Th...
In mammals, the main olfactory bulb (MOB) is driven by air flow respiratory input into the nose. Thi...
The respiration-related slow rhythm strongly shapes the activity of the olfactory bulb. This rhythm ...
Le rythme lent lié à la respiration est une caractéristique proéminente de l’activité du bulbe olfac...
Respiration plays an essential role in odor processing. Even in the absence of odors, oscillating ex...
<p>The cell percentages exhibiting an association between each type of membrane potential slow oscil...
<p><i>A) A synthetic view of the membrane potential slow oscillations and respiration-related discha...
The olfactory system receives intermittent and fluctuating inputs arising from dispersion of odor pl...
In recent years, several studies have tended to show a respiratory drive in numerous brain areas so ...
International audienceIn the rat olfactory bulb (OB), fast oscillations of the local field potential...
In the rat olfactory bulb (OB), fast oscillations of the local field potential (LFP) are observed du...
Local field potential (LFP) oscillations are often accompanied by synchronization of activity within...
Here we present a detailed statistical analysis of the discharge characteristics of mitral cells of ...
<p><i>A) Typical recordings of intracellular signals</i>. Cell numbers were extracted from the matri...
A slow respiration-related rhythm strongly shapes the activity of the olfactory bulb. This rhythm ap...
BACKGROUND: A slow respiration-related rhythm strongly shapes the activity of the olfactory bulb. Th...
In mammals, the main olfactory bulb (MOB) is driven by air flow respiratory input into the nose. Thi...
The respiration-related slow rhythm strongly shapes the activity of the olfactory bulb. This rhythm ...
Le rythme lent lié à la respiration est une caractéristique proéminente de l’activité du bulbe olfac...
Respiration plays an essential role in odor processing. Even in the absence of odors, oscillating ex...
<p>The cell percentages exhibiting an association between each type of membrane potential slow oscil...
<p><i>A) A synthetic view of the membrane potential slow oscillations and respiration-related discha...
The olfactory system receives intermittent and fluctuating inputs arising from dispersion of odor pl...
In recent years, several studies have tended to show a respiratory drive in numerous brain areas so ...
International audienceIn the rat olfactory bulb (OB), fast oscillations of the local field potential...
In the rat olfactory bulb (OB), fast oscillations of the local field potential (LFP) are observed du...
Local field potential (LFP) oscillations are often accompanied by synchronization of activity within...
Here we present a detailed statistical analysis of the discharge characteristics of mitral cells of ...
<p><i>A) Typical recordings of intracellular signals</i>. Cell numbers were extracted from the matri...