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首页> 外文期刊>Russian Journal of Developmental Biology >Statistical Study of Rapid Mechanodependent Cell Movements in Deformed Explants of African Clawed Frog Xenopus laevisEmbryonic Tissues
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Statistical Study of Rapid Mechanodependent Cell Movements in Deformed Explants of African Clawed Frog Xenopus laevisEmbryonic Tissues

机译:非洲爪蛙非洲爪蟾变形外植体中快速机械依赖细胞运动的统计研究

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摘要

Computer analysis of artificially deformed (stretched or compressed) double explants (sandwiches) of the blastocoel roof (BRs) and suprablastoporal region (SBRs) of African clawed frog Xenopus laevis early gastrula has been performed using frames of time-lapse microfilming. During the first 14 min after cutting off, the velocities and displacement angles of several hundreds of cells relative to one another, as well as to fixed points and the extension axis, were measured in the control and deformed samples. It has been found that the deformation of samples leads to a rapid reorientation of large cell masses and increase in the velocities of movements along the extension axes or perpendicularly to the compression axes. In addition, an increase in thevelocities of mutual cell displacements in the stretched BRs and cell convergence to the extension axes have been observed. Comparison of different angular sectors demonstrates a statistically significant positive correlation between the mean velocitiesof cell movements and the number of cells moving within an individual sector. This suggests cooperativity of mechanodependent cell movements. In general, these results demonstrate an important role of mechanical factors in regulation of collective cellmovements.
机译:已使用延时缩微胶卷进行了计算机分析,分析了非洲爪蛙非洲爪蟾早期gastrula的胚盘屋顶(BR)和胚上口区域(SBR)的人为变形(拉伸或压缩)的双外植体(三明治)。在切除后的前14分钟内,在对照样品和变形样品中测量了数百个细胞相对于彼此的速度和位移角,以及相对于固定点和延伸轴的速度和位移角。已经发现,样品的变形导致大细胞团块的快速重新定向,并且沿着延伸轴或垂直于压缩轴的运动速度增加。另外,已经观察到拉伸的BR中的相互细胞位移的速度增加以及细胞向延伸轴会聚。不同角扇区的比较表明,细胞运动的平均速度与单个扇区内运动的细胞数量之间存在统计学上显着的正相关。这表明机械依赖性细胞运动的协同性。通常,这些结果证明了机械因素在调节集体细胞运动中的重要作用。

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