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首页> 外文期刊>Biophysical Journal >An osmoregulatory basis for shape oscillations in regenerating hydra.
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An osmoregulatory basis for shape oscillations in regenerating hydra.

机译:再生水合物中形状振荡的渗透调节基础。

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The freshwater polyp Hydra has considerable regeneration capabilities. A small fragment of tissue excised from an adult animal is sufficient to regenerate an entire Hydra in the course of a few days. During the initial stages of the regeneration process, the tissue forms a hollow sphere. Then the sphere exhibits shape oscillations in the form of repeated cycles of swelling and collapse. We propose a biophysical model for the swelling mechanism. Our model takes the osmotic pressure difference between Hydra's inner and outer media and the elastic forces of the Hydra shell into account. We validate the model by a comprehensive experimental study including variations in initial medium concentrations, Hydra sphere sizes and temperatures. Numerical simulations of the model provide values for the swelling rates that are in agreement with the ones measured experimentally. Based on our results we argue that the shape oscillations are a consequence of Hydra's osmoregulation.
机译:淡水息肉水Hy有相当大的再生能力。从成年动物身上切除的一小块组织足以在几天内再生出整个九头蛇。在再生过程的初始阶段,组织形成空心球。然后,球体以重复的膨胀和坍塌循环形式出现形状振荡。我们提出了溶胀机制的生物物理模型。我们的模型考虑了Hydra内部和外部介质之间的渗透压差以及Hydra外壳的弹力。我们通过全面的实验研究来验证模型,包括初始培养基浓度,九头蛇球大小和温度的变化。该模型的数值模拟提供的溶胀率值与实验测得的值一致。根据我们的结果,我们认为形状振动是Hydra渗透调节的结果。

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