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DEVELOPMENTAL EMERGENCE OF HIPPOCAMPAL FAST-FIELD RIPPLE OSCILLATIONS IN THE BEHAVING RAT PUPS

机译:行为正常的大鼠海马快速场波纹振荡的发展

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摘要

Sharp wave and associated fast oscillatory ripples (140–200 Hz) in the cornu ammonis 1 region are the most synchronous hippocampal patterns in the adult rat. Spike sequences associated with sharp waves are believed to play a critical role in transferring transient memories from the hippocampus to the neocortex and the emergence of super-fast ripples is pathognostic in temporal lobe epilepsy. Sharp waves in cornu ammonis 1 stratum radiatum are induced by a strong depolarization by the cornu ammonis 3 Schaffer collaterals, due to the synchronous discharge of cornu ammonis 3 pyramidal cells. Although during the first postnatal week, sharp-wave events are associated with hippocampal unit bursts in the pyramidal layer, ripple oscillations are absent. We investigated the emergence of fast-field oscillations in rat pups ranging from postnatal day 12–20 by recording with wire tetrodes in freely behaving pups and with 16-site linear silicon probes in head fixed animals. Cornu ammonis 1 pyramidal cell layer was determined by the presence of multiple unit activity and a reversal of the field potential in the deeper electrode sites. On-line verification of the recording sites was determined via an evoked response to commissural stimulation, showing a clear reversal in the field potential. Sharp wave-associated fast-field oscillations did not begin to emerge until the end of the second postnatal week and showed a gradual increase until day 18. Once ripples emerged, the intra-ripple frequency assumed adult values. The developmental time course of the ripple parallels the switch in the GABAA receptor-mediated signaling from excitation to inhibition. The time course may also reflect hitherto unidentified emergence of neuronal gap junctions.
机译:在成年大鼠中,角膜羊膜1区的尖锐波和相关的快速振荡波纹(140-200 Hz)是最同步的海马模式。据信与尖波相关的尖峰序列在将短暂记忆从海马体转移到新皮层中起着关键作用,而超快速波纹的出现在颞叶癫痫中是病理诊断的。由于角膜羊膜3锥体细胞的同步放电,角膜羊膜3 Schaffer侧支强烈地去极化,从而导致角膜羊膜1层辐射中的尖波。尽管在产后的第一周,尖峰事件与锥体层的海马单位爆发有关,但没有脉动振荡。我们通过在自由行为的幼仔中用四极线记录并在头部固定的动物中用16位线性硅探针进行记录,研究了从出生后12-20天起,幼仔中快速场振荡的出现。 Cornu ammonis 1锥体细胞层是由多个单位活性的存在和更深电极位置中电场电位的逆转确定的。记录部位的在线验证是通过对连合刺激的诱发反应来确定的,显示出场势的明显逆转。直到出生后第二周结束,与波相关的快速场快速振荡才开始出现,直到第18天才逐渐增加。一旦出现波纹,波纹内频率即为成人值。波纹的发展时间过程与GABAA受体介导的信号从激发到抑制的转换平行。时间过程也可能反映出迄今为止尚未确认的神经间隙连接的出现。

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