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基于定量分析的细胞内颗粒运动新分类法

Towards a new classification of intracellular particle movements based on quantitative analyses.

作者信息

Weiss D G, Keller F, Gulden J, Maile W

出版信息

Cell Motil Cytoskeleton. 1986;6(2):128-35. doi: 10.1002/cm.970060210.

Abstract

A survey study of organelle movements in a variety of cell types of plant and animal origin was made with the aid of video-enhanced contrast, differential interference contrast (AVEC-DIC) microscopy followed by fine analysis of the motile behavior of the individual organelles. We found that there exists besides Brownian motion a wide spectrum of active motions in cells, i.e. motion that is directionally biased through the expenditure of metabolic energy. The types of active motion seen range from a continuous motion (sometimes appearing as streaming) in plant cells and neurons to various types of less ordered and less well directed motion. We did not see any clear-cut qualitative difference between plant and animal cells or between systems presumed to be actin- and microtubule-based. A preliminary classification of the types of active motion is presented. The ongoing research activities, which aim at a more precise definition of the different types of motion by a set of quantitative parameters, are described, and the progress made so far is reported.

摘要

借助视频增强对比度、微分干涉对比(AVEC-DIC)显微镜对多种动植物来源的细胞类型中的细胞器运动进行了一项调查研究,随后对单个细胞器的运动行为进行了精细分析。我们发现,除了布朗运动外,细胞中还存在广泛的主动运动谱,即通过消耗代谢能量而具有方向性偏向的运动。所观察到的主动运动类型范围从植物细胞和神经元中的连续运动(有时表现为流动)到各种不太有序和不太定向的运动类型。我们没有看到植物细胞和动物细胞之间或假定基于肌动蛋白和微管的系统之间有任何明显的质的差异。给出了主动运动类型的初步分类。描述了旨在通过一组定量参数更精确地定义不同运动类型的正在进行的研究活动,并报告了迄今为止取得的进展。

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