Pharmacology Institute, Heidelberg University, Im Neuenheimer Feld 366, 69120 Heidelberg, Germany.
Department of Functional Neuroanatomy, Institute for Anatomy and Cell Biology, Heidelberg University, Im Neuenheimer Feld 307, 69120 Heidelberg, Germany.
Cells. 2023 Feb 23;12(5):704. doi: 10.3390/cells12050704.
Analysis of neural encoding and plasticity processes frequently relies on studying spatial patterns of activity-induced immediate early genes' expression, such as . Quantitatively analyzing the numbers of cells expressing the Fos protein or mRNA is a major challenge owing to large human bias, subjectivity and variability in baseline and activity-induced expression. Here, we describe a novel open-source ImageJ/Fiji tool, called 'Quanty-cFOS', with an easy-to-use, streamlined pipeline for the automated or semi-automated counting of cells positive for the Fos protein and/or mRNA on images derived from tissue sections. The algorithms compute the intensity cutoff for positive cells on a user-specified number of images and apply this on all the images to process. This allows for the overcoming of variations in the data and the deriving of cell counts registered to specific brain areas in a highly time-efficient and reliable manner. We validated the tool using data from brain sections in response to somatosensory stimuli in a user-interactive manner. Here, we demonstrate the application of the tool in a step-by-step manner, with video tutorials, making it easy for novice users to implement. Quanty-cFOS facilitates a rapid, accurate and unbiased spatial mapping of neural activity and can also be easily extended to count other types of labelled cells.
分析神经编码和可塑性过程通常依赖于研究活动诱导的即刻早期基因表达的空间模式,例如 Fos 蛋白或 c-Fos mRNA。定量分析表达 Fos 蛋白或 c-Fos mRNA 的细胞数量是一项重大挑战,因为存在人为偏见、主观性以及基础表达和活动诱导表达的可变性。在这里,我们描述了一种新的开源 ImageJ/Fiji 工具,称为'Quanty-cFOS',它具有易于使用的流线型管道,可用于对源自组织切片的图像中阳性细胞的 Fos 蛋白和/或 c-Fos mRNA 进行自动或半自动计数。该算法在用户指定数量的图像上计算阳性细胞的强度截止值,并将其应用于所有图像以进行处理。这允许克服数据中的变化,并以高度高效和可靠的方式从特定脑区注册的细胞计数中得出。我们使用用户交互方式响应体感刺激的脑切片中的数据验证了该工具。在这里,我们以分步方式演示了该工具的应用,并提供了视频教程,使新手用户易于实施。Quanty-cFOS 促进了神经活动的快速、准确和无偏空间映射,并且也可以轻松扩展到其他类型的标记细胞的计数。