Chen Yu-Nong, Zheng Xin, Chen Hai-Lin, Gao Jin-Xian, Li Xin-Xuan, Xie Jun-Fan, Xie Yu-Ping, Spruyt Karen, Shao Yu-Feng, Hou Yi-Ping
Departments of Neuroscience, Anatomy, Histology, and Embryology, Key Laboratory of Preclinical Study for New Drugs of Gansu Province, School of Basic Medical Sciences, Lanzhou University, Lanzhou, China.
Sleep Medicine Center of Gansu Provincial Hospital, Lanzhou, China.
Front Neuroanat. 2022 Aug 12;16:968320. doi: 10.3389/fnana.2022.968320. eCollection 2022.
Recently, researchers have paid progressively more attention to the study of neural development in infant rats. However, due to the lack of complete intracerebral localization information, such as clear nuclear cluster boundaries, identified main brain structures, and reliable stereotaxic coordinates, it is difficult and restricted to apply technical neuroscience to infant rat's brain. The present study was undertaken to refine the atlas of infant rats. As such, we established a stereotaxic atlas of the infant rat's brain at postnatal days 7-13. Furthermore, dye calibration surgery was performed in P7-P13 infant rats by injecting Methylene blue, and sections were incubated in Nissl solutions. From the panoramic images of the brain sections, atlases were made. Our article has provided the appearance and measurements of P7-P13 Sprague-Dawley rat pups. Whereas the atlas contains a series of about 530 coronal brain section images from olfactory bulbs to the brainstem, a list of abbreviations of the main brain structures, and reliable stereotaxic coordinates, which were demonstrated by vertical and oblique injections with fluorescent dye DiI. The present findings demonstrated that our study of P7-P13 atlases has reasonable nucleus boundaries and accurate and good repeatability of stereotaxic coordinates, which can make up for the shortage of postnatal rat brain atlas currently in the field.
最近,研究人员越来越关注幼鼠神经发育的研究。然而,由于缺乏完整的脑内定位信息,如清晰的核团边界、明确的主要脑结构和可靠的立体定位坐标,将技术神经科学应用于幼鼠大脑既困难又受限。本研究旨在完善幼鼠图谱。因此,我们建立了出生后7 - 13天幼鼠脑的立体定位图谱。此外,通过向出生后7 - 13天的幼鼠注射亚甲蓝进行染料校准手术,并将切片置于尼氏溶液中孵育。根据脑切片的全景图像制作图谱。我们的文章提供了出生后7 - 13天的斯普拉格 - 道利幼鼠的外观和测量数据。该图谱包含一系列从嗅球到脑干的约530张冠状脑切片图像、主要脑结构的缩写列表以及可靠的立体定位坐标,这些通过用荧光染料DiI进行垂直和斜向注射得到了验证。目前的研究结果表明,我们对出生后7 - 13天图谱的研究具有合理的核边界以及立体定位坐标的准确性和良好的重复性,这可以弥补该领域目前出生后大鼠脑图谱的不足。