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首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >A THEORY ON THE INSTABILITY OF TUBULAR MEMBRANES TO THE PERIODIC CONFORMATION BY LASER TWEEZERS
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A THEORY ON THE INSTABILITY OF TUBULAR MEMBRANES TO THE PERIODIC CONFORMATION BY LASER TWEEZERS

机译:激光镊子对管状膜对周期构象的不稳定性理论

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摘要

A mechanical theory to analyze the stability of tubular membranes perturbed by optical tweezers is proposed. I assume that the optical tweezers cause the temporal elevation of hydrostatic pressure inside tubular membranes due to the thermal expansion of solvent water, and I relaxed the conservation of volume per unit length which was strictly maintained in old theories based on the well-known Rayleigh instability. The mechanical energy composed of bending rigidity, interfacial tension, and hydrostatic pressure terms can explain the condition of the previously observed peristaltic and pearling instability. The spontaneous curvature of the membrane is postulated in the theory. The enhanced pressure causes the tubules to enter a peristaltic state with a spinodal line in the phase diagram. (C) 1997 Elsevier Science B.V. [References: 18]
机译:提出了力学理论来分析光镊干扰的管状膜的稳定性。我假设光镊由于溶剂水的热膨胀而导致管状膜内部的静水压随时间升高,并且我放松了基于众所周知的瑞利不稳定性在旧理论中严格保持的单位长度体积守恒。 。由弯曲刚度,界面张力和静水压力项组成的机械能可以解释先前观察到的蠕动和珠光不稳定性的状况。理论中假定了膜的自发曲率。压力升高使小管进入蠕动状态,相图中的旋节线表示。 (C)1997 Elsevier Science B.V. [参考文献:18]

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