Mitral and tufted cells, the two classes of principal neurons in the mammalian main olfactory bulb, exhibit morphological differences but remain widely viewed as functionally equivalent. Results from several recent studies, however, suggest that these two cell classes may encode complementary olfactory information in their distinct patterns of afferent-evoked activity. To understand how these differences in activity arise, we have performed the first systematic comparison of synaptic and intrinsic properties between mitral and tufted cells. Consistent with previous studies, we found that tufted cells fire with higher probability and rates and shorter latencies than mitral cells in response to physiological afferent stimulation. This stronge...
The olfactory system receives intermittent and fluctuating inputs arising from dispersion of odor pl...
Odors synchronize the activity of olfactory bulb mitral cells that project to the same glomerulus. I...
Odorants induce specific modulation of mitral/tufted (MT) cells' firing rate in the mammalian olfact...
<p>Mitral and tufted cells, the two classes of principal neurons in the mammalian main olfactory bul...
Mitral and tufted cells are the 2 types of output neurons of the main olfactory bulb. They are locat...
Mitral and tufted cells are the 2 types of output neurons of the main olfactory bulb. They are locat...
Splitting sensory information into parallel pathways is a common strategy in sensory systems. Yet, i...
The spontaneous activity and impulse conduction velocities of mitral and tufted cells were compared ...
The mammalian accessory olfactory system is critical for the detection and identification of pheromo...
Olfactory perception initiates in the nasal epithelium wherefrom olfactory receptor neurons-expressi...
<div><h3>Background</h3><p>A slow respiration-related rhythm strongly shapes the activity of the olf...
In the mammalian olfactory bulb (OB), mitral/tufted (MT) cells respond to odorant inhalation with di...
SummaryRhythmic neural activity is a hallmark of brain function, used ubiquitously to structure neur...
BACKGROUND: A slow respiration-related rhythm strongly shapes the activity of the olfactory bulb. Th...
Rhythmic neural activity is a hallmark of brain function, used ubiquitously to structure neural info...
The olfactory system receives intermittent and fluctuating inputs arising from dispersion of odor pl...
Odors synchronize the activity of olfactory bulb mitral cells that project to the same glomerulus. I...
Odorants induce specific modulation of mitral/tufted (MT) cells' firing rate in the mammalian olfact...
<p>Mitral and tufted cells, the two classes of principal neurons in the mammalian main olfactory bul...
Mitral and tufted cells are the 2 types of output neurons of the main olfactory bulb. They are locat...
Mitral and tufted cells are the 2 types of output neurons of the main olfactory bulb. They are locat...
Splitting sensory information into parallel pathways is a common strategy in sensory systems. Yet, i...
The spontaneous activity and impulse conduction velocities of mitral and tufted cells were compared ...
The mammalian accessory olfactory system is critical for the detection and identification of pheromo...
Olfactory perception initiates in the nasal epithelium wherefrom olfactory receptor neurons-expressi...
<div><h3>Background</h3><p>A slow respiration-related rhythm strongly shapes the activity of the olf...
In the mammalian olfactory bulb (OB), mitral/tufted (MT) cells respond to odorant inhalation with di...
SummaryRhythmic neural activity is a hallmark of brain function, used ubiquitously to structure neur...
BACKGROUND: A slow respiration-related rhythm strongly shapes the activity of the olfactory bulb. Th...
Rhythmic neural activity is a hallmark of brain function, used ubiquitously to structure neural info...
The olfactory system receives intermittent and fluctuating inputs arising from dispersion of odor pl...
Odors synchronize the activity of olfactory bulb mitral cells that project to the same glomerulus. I...
Odorants induce specific modulation of mitral/tufted (MT) cells' firing rate in the mammalian olfact...