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Direct Mechanical Force Measurements during the Migration of Dictyostelium Slugs Using Flexible Substrata

机译:使用挠性基底层在盘基网柄茎Migration迁移过程中的直接机械力测量

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摘要

We use the flexible substrate method to study how and where mechanical forces are exerted during the migration of Dictyostelium slugs. This old and contentious issue has been left poorly understood so far. We are able to identify clearly separate friction forces in the tip and in the tail of the slug, traction forces mostly localized in the inner slug/surface contact area in the prespore region and large perpendicular forces directed in the outward direction at the outline of contact area. Surprisingly, the magnitude of friction and traction forces is decreasing with slug velocity indicating that these quantities are probably related to the dynamics of cell/substrate adhesion complexes. Contrary to what is always assumed in models and simulations, friction is not of fluid type (viscous drag) but rather close to solid friction. We suggest that the slime sheath confining laterally the cell mass of the slug experiences a tension that in turn is pulling out the elastic substrate in the direction tangential to the slug profile where sheath is anchored. In addition, we show in the appendix that the iterative method we developed is well adapted to study forces over large and continuous fields when the experimental error is sufficiently low and when the plane of recorded bead deformations is close enough to the elastomer surface, requirements fulfilled in this experimental study of Dictyostelium slugs.
机译:我们使用柔性基板方法研究在Dictyostelium ug迁移过程中如何以及在何处施加机械力。迄今为止,这个古老而有争议的问题还知之甚少。我们能够清楚地识别出团块的顶端和尾端的摩擦力,主要位于前孢子区域内团块/表面接触区域的牵引力以及在接触轮廓处指向向外的较大垂直力区域。出人意料的是,摩擦力和牵引力的大小随着弹头速度的减小而减小,表明这些量可能与细胞/基质粘附复合物的动力学有关。与模型和模拟中始终假定的相反,摩擦不是流体类型(粘滞阻力),而是接近固体摩擦。我们建议将粘液鞘从侧面限制在团块的细胞团中,并承受一定的拉力,而该拉力又将弹性基质沿与包囊锚定的团块轮廓相切的方向拉出。另外,我们在附录中表明,当实验误差足够低并且记录的珠变形平面足够接近弹性体表面时,我们开发的迭代方法非常适合研究大而连续的区域上的力在这项对棒状杆菌的弹药的实验研究中。

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