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首页> 外文期刊>IBRO Reports >Bilateral enucleation at birth modifies calcium spike amplitude, but not frequency, in neurons of the somatosensory thalamus and cortex: Implications for developmental cross-modal plasticity
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Bilateral enucleation at birth modifies calcium spike amplitude, but not frequency, in neurons of the somatosensory thalamus and cortex: Implications for developmental cross-modal plasticity

机译:出生时的双眼摘除术会改变体感丘脑和皮层神经元的钙峰值幅度,但不会改变频率:对发育性跨模态可塑性的影响

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Bilateral eye enucleation at birth (BE) leads to an expansion of the primary somatosensory cortex (S1) in rat pups. Although increased growth of the somatosensory thalamo-cortical afferents (STCAs) in part explains S1 expansion, timing mechanisms governing S1 formation are also involved. In this work, we begin the search of a developmental clock by intending to document the existence of putative clock neurons in the somatosensory thalamus (VPM) and S1 based upon changes of spontaneous spike amplitude; a biophysical property sensitive to circadian regulation; the latter known to be shifted by enucleation. In addition, we also evaluated whether STCAs growth rate and segregation timing were modified, as parameters the clock might time. We found that spontaneous spike amplitude transiently, but significantly, increased or decreased in VPM and S1 neurons of BE rat pups, respectively, as compared to their control counterparts. The growth rate and segregation timing of STCAs was, however, unaffected by BE. These results support the existence of a developmental clock that ticks differently in the VPM and S1 after BE. This observation, together with the fact that STCAs growth rate and segregation timing is unchanged, suggests that S1 expansion in BE rats may in part be controlled at the cortical level.
机译:出生时双眼眼摘除术(BE)导致大鼠幼崽初级体感皮层(S1)扩张。尽管体感性丘脑皮质传入神经(STCA)的增长部分解释了S1的扩展,但也涉及控制S1形成的时序机制。在这项工作中,我们打算根据自然的尖峰幅度的变化来记录体感丘脑(VPM)和S1中假定的时钟神经元的存在,从而开始寻找发育时钟。对生物钟调节敏感的生物物理特性;后者已知会因摘除术而改变。此外,我们还评估了是否修改了STCA的生长速率和隔离时间,作为时钟可能计时的参数。我们发现,与对照组相比,BE大鼠幼崽的VPM和S1神经元的自发性突波幅度分别短暂但显着增加或减少。但是,STCA的生长速率和分离时间不受BE影响。这些结果支持了在BE后VPM和S1中滴答作响的发育时钟的存在。该观察结果以及STCAs的生长速率和分离时间不变的事实表明,BE大鼠的S1扩展可能部分受到皮质水平的控制。

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