Department of Health and Nutrition, College of Human Environmental Studies, Kanto Gakuin University, Yokohama 236-8503, Japan.
Eur J Neurosci. 2012 Apr;35(8):1230-41. doi: 10.1111/j.1460-9568.2012.07997.x. Epub 2012 Feb 17.
Spontaneous embryonic movements, called embryonic motility, are produced by correlated spontaneous activity in the cranial and spinal nerves, which is driven by brainstem and spinal networks. Using optical imaging with a voltage-sensitive dye, we have revealed previously that this correlated activity is a widely propagating wave of neural depolarization, which we termed the depolarization wave. We have observed in the chick and rat embryos that the activity spread over an extensive region of the CNS, including the spinal cord, hindbrain, cerebellum, midbrain and forebrain. One important consideration is whether a depolarization wave with similar characteristics occurs in other species, especially in different mammals. Here, we provide evidence for the existence of the depolarization wave in the mouse embryo by showing that the widely propagating wave appeared independently of the localized spontaneous activity detected previously with Ca(2+) imaging. Furthermore, we mapped the origin of the depolarization wave and revealed that the wave generator moved from the rostral spinal cord to the caudal cord as development proceeded, and was later replaced with mature rhythmogenerators. The present study, together with an accompanying paper that describes pharmacological properties of the mouse depolarization wave, shows that a synchronized wave with common characteristics is expressed in different species, suggesting fundamental roles in neural development.
自发性胚胎运动,也称为胚胎运动,是由颅神经和脊神经的相关自发性活动产生的,这种活动是由脑干和脊髓网络驱动的。使用带电压敏感染料的光学成像,我们揭示了之前未知的相关性:这种活动是一种广泛传播的神经去极化波,我们称之为去极化波。我们在鸡和大鼠胚胎中观察到,该活动在中枢神经系统的广泛区域传播,包括脊髓、后脑、小脑、中脑和前脑。一个重要的考虑因素是,是否在其他物种中也存在具有类似特征的去极化波,尤其是在不同的哺乳动物中。在这里,我们通过展示广泛传播的波独立于以前通过 Ca(2+)成像检测到的局部自发性活动的存在,为小鼠胚胎中去极化波的存在提供了证据。此外,我们还绘制了去极化波的起源图,并揭示了随着发育的进行,去极化波发生器从脊髓的头部向尾部移动,随后被成熟的节律发生器所取代。本研究与另一篇描述小鼠去极化波药理学特性的论文一起表明,不同物种中表达了具有共同特征的同步波,这表明其在神经发育中具有基本作用。