Nencki Institute of Experimental Biology, Polish Academy of Sciences, 3 Pasteur Street, 02-093 Warsaw, Poland.
Department of Computer Science and Engineering, Jadvapur University, Kolkata 700032, India.
Int J Mol Sci. 2021 Apr 14;22(8):4053. doi: 10.3390/ijms22084053.
Numerous brain diseases are associated with abnormalities in morphology and density of dendritic spines, small membranous protrusions whose structural geometry correlates with the strength of synaptic connections. Thus, the quantitative analysis of dendritic spines remodeling in microscopic images is one of the key elements towards understanding mechanisms of structural neuronal plasticity and bases of brain pathology. In the following article, we review experimental approaches designed to assess quantitative features of dendritic spines under physiological stimuli and in pathological conditions. We compare various methodological pipelines of biological models, sample preparation, data analysis, image acquisition, sample size, and statistical analysis. The methodology and results of relevant experiments are systematically summarized in a tabular form. In particular, we focus on quantitative data regarding the number of animals, cells, dendritic spines, types of studied parameters, size of observed changes, and their statistical significance.
许多脑部疾病都与树突棘的形态和密度异常有关,树突棘是一种微小的膜状突起,其结构几何形状与突触连接的强度相关。因此,对微观图像中树突棘重塑进行定量分析是理解结构神经元可塑性机制和脑部病理学基础的关键要素之一。在本文中,我们综述了旨在评估生理刺激和病理条件下树突棘定量特征的实验方法。我们比较了不同生物模型、样本制备、数据分析、图像采集、样本量和统计分析的方法学流程。相关实验的方法和结果以表格形式系统地进行了总结。特别是,我们关注关于动物数量、细胞数量、树突棘数量、研究参数类型、观察到的变化大小以及其统计学意义的定量数据。