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Bending stiffness of biological membranes: What can be measured by neutron spin echo?*

机译:生物膜的弯曲刚度:中子自旋回波可以测量什么?*

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摘要

Large vesicles obtained by the extrusion method represent adequate membrane models to probe membrane dynamics with neutron radiation. Particularly, the shape fluctuations around the spherical average topology can be recorded by neutron spin echo (NSE). In this paper we report on the applicable theories describing the scattering contributions from bending-dominated shape fluctuations in diluted vesicle dispersions, with a focus on the relative relevance of the master translational mode with respect to the internal fluctuations. Different vesicle systems, including bilayer and non-bilayer membranes, have been scrutinized. We describe the practical ranges where the exact theory of bending fluctuations is applicable to obtain the values of the bending modulus from experiments, and we discuss about the possible internal modes that could be alternatively contributing to shape fluctuations.
机译:通过挤压法获得的大囊泡代表了足够的膜模型,以利用中子辐射探测膜动力学。特别是,可以通过中子自旋回波(NSE)记录球形平均拓扑周围的形状波动。在本文中,我们报告了适用的理论,这些理论描述了稀释的囊泡分散体中弯曲主导的形状波动引起的散射贡献,重点是主平移模式相对于内部波动的相对相关性。已经研究了包括双层和非双层膜的不同囊泡系统。我们描述了实际的范围,在该范围内可以应用精确的弯曲波动理论来从实验中获得弯曲模量的值,并且我们讨论了可能交替影响形状波动的可能的内部模式。

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