Bjerke Ingvild E, Øvsthus Martin, Andersson Krister A, Blixhavn Camilla H, Kleven Heidi, Yates Sharon C, Puchades Maja A, Bjaalie Jan G, Leergaard Trygve B
Department of Molecular Medicine, Institute of Basic Medical Sciences, University of Oslo, Oslo, Norway.
Front Neuroanat. 2018 Nov 2;12:82. doi: 10.3389/fnana.2018.00082. eCollection 2018.
In experimental neuroscientific research, anatomical location is a key attribute of experimental observations and critical for interpretation of results, replication of findings, and comparison of data across studies. With steadily rising numbers of publications reporting basic experimental results, there is an increasing need for integration and synthesis of data. Since comparison of data relies on consistently defined anatomical locations, it is a major concern that practices and precision in the reporting of location of observations from different types of experimental studies seem to vary considerably. To elucidate and possibly meet this challenge, we have evaluated and compared current practices for interpreting and documenting the anatomical location of measurements acquired from murine brains with different experimental methods. Our observations show substantial differences in approach, interpretation and reproducibility of anatomical locations among reports of different categories of experimental research, and strongly indicate that ambiguous reports of anatomical location can be attributed to missing descriptions. Based on these findings, we suggest a set of minimum requirements for documentation of anatomical location in experimental murine brain research. We furthermore demonstrate how these requirements have been applied in the EU Human Brain Project to optimize workflows for integration of heterogeneous data in common reference atlases. We propose broad adoption of some straightforward steps for improving the precision of location metadata and thereby facilitating interpretation, reuse and integration of data.
在实验神经科学研究中,解剖位置是实验观察的关键属性,对于结果解释、研究发现的重复以及跨研究的数据比较至关重要。随着报告基础实验结果的出版物数量稳步增加,对数据整合与综合的需求也日益增长。由于数据比较依赖于一致定义的解剖位置,不同类型实验研究中观察位置报告的做法和精确性似乎差异很大,这成为一个主要问题。为了阐明并可能应对这一挑战,我们评估并比较了用不同实验方法从鼠脑获取测量数据的解剖位置进行解释和记录的当前做法。我们的观察结果表明,不同类别的实验研究报告在解剖位置的方法、解释和可重复性方面存在显著差异,并强烈表明解剖位置的模糊报告可归因于描述缺失。基于这些发现,我们提出了一套实验性鼠脑研究中解剖位置记录的最低要求。我们还展示了这些要求如何在欧盟人类大脑计划中得到应用,以优化在通用参考图谱中整合异构数据的工作流程。我们建议广泛采用一些简单步骤来提高位置元数据的精确性,从而促进数据的解释、重用和整合。