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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Depolarization waves in the embryonic CNS triggered by multiple sensory inputs and spontaneous activity: optical imaging with a voltage-sensitive dye.
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Depolarization waves in the embryonic CNS triggered by multiple sensory inputs and spontaneous activity: optical imaging with a voltage-sensitive dye.

机译:胚胎中枢神经系统中的去极化波由多个感觉输入和自发活动触发:使用电压敏感染料的光学成像。

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Previously, we discovered a novel type of depolarization wave in the embryonic chick brain by using a multiple-site optical recording technique with a fast voltage-sensitive dye. This depolarization wave traveled widely over almost all the region of the CNS. This profile has raised the possibility that the depolarization wave plays some global roles in development of the CNS, rather than contributing to a specific neuronal circuit formation. To obtain more information concerning this issue, in the present study, we examined whether the depolarization wave was triggered by various types of peripheral nerve inputs. Stimulation applied to the vagus, glossopharyngeal, cochlear and trigeminal nerves evoked widely spreading depolarization waves with similar spatiotemporal distribution patterns. The developmental sequence of wave expression was parallel to the development of the excitatory postsynaptic potentials in each sensory nucleus. The depolarization wave was accompanied by a Ca(2+)-wave, suggesting that not only electrical synchrony, but also large-scale Ca(2+)-transients may affect developmental processes in the embryonic brain. Furthermore, we found that the depolarization wave also occurred spontaneously. The waveform and distribution patterns of the spontaneous optical signals were similar to those of the cranial nerve-evoked depolarization wave.These results demonstrated that the depolarization wave in the embryonic chick brain is triggered by multiple sources of external and endogenous activity. This profile supports the idea that this depolarization wave may not serve as a simple regulator of specific neuronal circuit formation, but might play more global roles in CNS development.
机译:以前,我们通过使用带有快速电压敏感染料的多点光学记录技术在胚胎鸡脑中发现了一种新型的去极化波。这种去极化波几乎在中枢神经系统的整个区域传播。这种情况增加了去极化波在中枢神经系统发展中起某些全局作用的可能性,而不是有助于特定的神经元回路形成。为了获得有关此问题的更多信息,在本研究中,我们检查了去极化波是否由各种类型的周围神经输入触发。刺激作用于迷走神经,舌咽神经,耳蜗神经和三叉神经,引起广泛散布的去极化波,具有类似的时空分布模式。波表达的发展顺序与每个感觉核中兴奋性突触后电位的发展平行。去极化波伴随有Ca(2+)波,表明不仅电同步,而且大规模Ca(2+)瞬态都可能影响胚胎脑中的发育过程。此外,我们发现去极化波也自发出现。自发性光信号的波形和分布模式与颅神经诱发的去极化波相似,这些结果表明胚胎鸡脑中的去极化波是由多种外部和内源性活动​​触发的。此配置文件支持以下观点:该去极化波可能不能充当特定神经元回路形成的简单调节器,但可能在中枢神经系统的发展中起更广泛的作用。

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