Neural Systems Laboratory, Institute of Basic Medical Sciences, University of Oslo, Oslo, Norway.
Department of Anatomy and Neurosciences, Amsterdam University Medical Center, Amsterdam, The Netherlands.
Sci Data. 2024 Sep 27;11(1):1036. doi: 10.1038/s41597-024-03863-3.
The murine basal ganglia regions are targets for research into complex brain functions such as motor control and habit formation. However, there are several ways to name and annotate these regions, posing challenges for interpretation and comparison of data across studies. Here, we give an overview of basal ganglia terms and boundaries in the literature and reference atlases, and describe the criteria used for annotating these regions in the Waxholm Space rat brain atlas. We go on to compare basal ganglia annotations in stereotaxic rat brain atlases and the Allen Mouse brain Common Coordinate Framework to those in the Waxholm Space rat brain atlas. We demonstrate and describe considerable differences in the terms and boundaries of most basal ganglia regions across atlases and their versions. We also register information about atlases and regions in the openMINDS metadata framework, facilitating integration of data in neuroscience databases. The comparisons of terms and boundaries across rat and mouse atlases support analysis and interpretation of existing and new data from the basal ganglia.
鼠类基底神经节区域是研究复杂大脑功能(如运动控制和习惯形成)的目标。然而,这些区域有多种命名和注释方法,这给跨研究数据的解释和比较带来了挑战。在这里,我们概述了文献和参考图谱中基底神经节术语和边界,并描述了在 Waxholm Space 大鼠脑图谱中注释这些区域所使用的标准。我们接着比较了立体定向大鼠脑图谱和 Allen Mouse brain Common Coordinate Framework 中的基底神经节注释与 Waxholm Space 大鼠脑图谱中的注释。我们证明并描述了在不同图谱及其版本中,大多数基底神经节区域的术语和边界存在相当大的差异。我们还在 openMINDS 元数据框架中注册了有关图谱和区域的信息,这有助于整合神经科学数据库中的数据。大鼠和小鼠图谱之间的术语和边界比较支持对基底神经节现有和新数据的分析和解释。