Olfactory bulbs retain the ability to acquire new neurons throughout lite. Unilateral olfactory deprivation during the first postnatal month in rats results in a dramatic reduction in the size of the experimental olfactory bulb. Part of this reduction is attributable to the death of neurons and gila. To examine the regenerative capacity of the juvenile olfactory bulb, we developed a technique for reversible olfactory deprivation. Reversible blockade from postnatal day 1 (P1) to P20 or P30 results in reduced bulb volume and tyrosine hydroxylase immunostaining, and decreased depth in the olfactory mucosa. In another experiment, normal stimulation was restored for varying periods of time, and experimental and control bulb volumes were measured. Recovery of bulb size occurs after 40 d of normal stimulation. Rats injected with a thymidine analog to label dividing cells during the recovery period revealed that rescue results at least in part from the addition of new neurons and gila. Thus, cells born after the return of normal levels of environmental stimulation can replace some of the neurons and gila that are lost during olfactory deprivation. This system can be used to study mechanisms that underlie neuronal regeneration in the maturing mammalian brain.
CITATION STYLE
Cummings, D. M., Henning, H. E., & Brunjes, P. C. (1997). Olfactory bulb recovery after early sensory deprivation. Journal of Neuroscience, 17(19), 7433–7440. https://doi.org/10.1523/jneurosci.17-19-07433.1997
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