کد مقاله | کد نشریه | سال انتشار | مقاله انگلیسی | نسخه تمام متن |
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6264959 | 1614054 | 2011 | 14 صفحه PDF | دانلود رایگان |

Whisker trimming produces depression of cortical responses in the barrel cortex. However, it is unclear how the developmental timing modifies the effects of whisker trimming. We investigated cortical responses in thalamocortical slices that included the mouse barrel cortex using flavoprotein fluorescence imaging. A topological relationship was observed between the thalamic stimulated sites and cortical areas showing fluorescence changes. By adjusting the position of the thalamic stimulated sites and the cortical windows in which amplitudes of the fluorescence changes were measured, we succeeded to reduce the variability of cortical responses between slices. We then investigated the effects of whisker trimming in the thalamocortical slices. Whisker trimming from 4Â weeks to 8Â weeks (at 4-8Â weeks) of age significantly reduced cortical responses at 8Â weeks. However, whisker trimming started before 4Â weeks produced only slight depression or no significant effect on the thalamocortical responses. As sensory deprivation during a critical developmental period is known to prevent elimination of synapses, the presence of aberrant synapses may compensate the cortical depression induced by whisker trimming started before 4Â weeks. To test this possibility, whisker trimming performed at 0-6 or 0-7Â weeks of age was followed by regrowth of whiskers for 1-2Â weeks. Clear and significant potentiation of cortical responses was observed in these mice at 8Â weeks when compared with those of naive mice of the same age. Overall, these data suggest that whisker trimming, producing depression of thalamocortical responses, prevents elimination of aberrant synapses during a critical developmental period before 4Â weeks in the mouse barrel cortex.
⺠Cortical depression was induced by whisker trimming after postnatal 4 weeks. ⺠Cortical depression was not induced by whisker trimming before postnatal 4 weeks. ⺠Whisker trimming followed by whisker regrowth induced cortical potentiation.
Journal: Brain Research - Volume 1385, 18 April 2011, Pages 93-106