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首页> 外文期刊>Molecular and cellular neurosciences >NeuronRead, an open source semi-automated tool for morphometric analysis of phase contrast and fluorescence neuronal images
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NeuronRead, an open source semi-automated tool for morphometric analysis of phase contrast and fluorescence neuronal images

机译:Neuronread,一个开源半自动工具,用于相位对比度和荧光神经元图像的形态学分析

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摘要

AbstractNeurons are specialized cells of the Central Nervous System whose function is intricately related to the neuritic network they develop to transmit information. Morphological evaluation of this network and other neuronal structures is required to establish relationships between neuronal morphology and function, and may allow monitoring physiological and pathophysiologic alterations. Fluorescence-based microphotographs are the most widely used in cellular bioimaging, but phase contrast (PhC) microphotographs are easier to obtain, more affordable, and do not require invasive, complicated and disruptive techniques. Despite the various freeware tools available for fluorescence-based images analysis, few exist that can tackle the more elusive and harder-to-analyze PhC images. To surpass this, an interactive semi-automated image processing workflow was developed to easily extract relevant information (e.g. total neuritic length, average cell body area) from both PhC and fluorescence neuronal images. This workflow, named ‘NeuronRead’, was developed in the form of an ImageJ macro. Its robustness and adaptability were tested and validated on rat cortical primary neurons under control and differentiation inhibitory conditions. Validation included a comparison to manual determinations and to a golden standard freeware tool for fluorescence image analysis. NeuronRead was subsequently applied to PhC images of neurons at distinct differentiation days and exposed or not to DAPT, a pharmacological inhibitor of the γ-secretase enzyme, which cleaves the well-known Alzheimer's amyloid precursor protein (APP) and the Notch receptor. Data obtained confirms a neuritogenic regulatory role
机译:<![cdata [ 抽象 神经元是中枢神经系统的专用细胞,其功能与他们开发的神经网络复杂相关的内心神经系统。需要该网络和其他神经元结构的形态学评估来建立神经元形态和功能之间的关系,并且可以允许监测生理和病理生理改变。基于荧光的显微照片是细胞生物分析中最广泛应用的,但相对对比(PHC)的显微照片更容易获得,更实惠,并且不需要侵入性,复杂和破坏性的技术。尽管有各种用于基于荧光的图像分析的自由软件工具,但很少存在,可以解决更难以捉摸和更难分析的PHC图像。为了超越这一点,开发了一种交互式半自动图像处理工作流以容易地从PHC和荧光神经元图像中提取相关信息(例如全神经长度,平均细胞体面积)。这个名为'neuronread'的工作流程是以imagej宏的形式开发的。在对照和分化抑制条件下对大鼠皮质原代神经元进行测试和验证其鲁棒性和适应性。验证包括与手动确定以及用于荧光图像分析的金标标准的免费软件工具的比较。随后将Neuronread施用于神经元的神经元的PHC图像,在不同的分化天中,暴露或不暴露于γ-分泌酶的药理抑制剂,其切割着众所周知的阿尔茨海默蛋白前体蛋白(APP)和凹口受体。获得的数据证实了神经根出作的监管作用

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