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Simulation of the effects of microtubules in the cortical rotation of amphibian embryos in normal and zero gravity

机译:模拟微管在正常重力和零重力下对两栖动物胚胎皮质旋转的影响

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摘要

This paper reports the results of computer modeling of microtubules that end up in the cortical region of a one-cell amphibian embryo, prior to the first cell division. Microtubules are modeled as initially randomly oriented semi-flexible rods, represented by several lines of point-masses interacting with one another like masses on springs with longitudinal and transverse stiffness. They are also considered to be space-filling rods floating in a viscous fluid (cytoplasm) experiencing drag forces and buoyancy from the fluid under a variable gravity field to test gravitational effects. Their randomly distributed interactions with the surrounding spherical container (the cell membrane) have a statistical nonzero average that creates a torque causing a rotational displacement between the cytoplasm and the rigid cortex. The simulation has been done for zero and normal gravity and it validates the observation that cortical rotation occurs in microgravity as well as on Earth. The speed of rotation depends on gravity, but is still substantial in microgravity.
机译:本文报道了微管的计算机建模结果,该微管最终在单细胞两栖动物胚胎的皮质区域内进行了第一次细胞分裂。微管被建模为最初随机定向的半柔性杆,以多条点状质量块相互代表,就像弹簧上具有纵向和横向刚度的质量一样相互作用。它们也被认为是漂浮在粘性流体(细胞质)中的空间填充棒,在可变重力场下会经受来自流体的阻力和浮力以测试重力作用。它们与周围的球形容器(细胞膜)的随机分布相互作用具有统计上的非零平均值,该平均值产生了扭矩,导致细胞质与硬质皮质之间发生旋转位移。已经对零重力和法向重力进行了仿真,它验证了皮层旋转发生在微重力以及地球上的观察结果。旋转速度取决于重力,但是在微重力下仍然很大。

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