Pécréaux J, Döbereiner H-G, Prost J, Joanny J-F, Bassereau P
Physico-Chimie Curie, Institut Curie, 75231, Paris Cedex 5, France.
Eur Phys J E Soft Matter. 2004 Mar;13(3):277-90. doi: 10.1140/epje/i2004-10001-9.
The fluctuation spectrum of giant unilamellar vesicles is measured using a high-resolution contour detection technique. An analysis at higher q vectors than previously achievable is now possible due to technical improvements of the experimental setup and of the detection algorithm. The global fluctuation spectrum is directly fitted to deduce the membrane tension and the bending modulus of lipid membranes. Moreover, we show that the planar analysis of fluctuations is valid for spherical objects, even at low wave vectors. Corrections due to the integration time of the video camera and to the section of a 3D object by the observation plane are introduced. A precise calculation of the error bars has been done in order to provide reliable error estimate. Eventually, using this technique, we have measured bending moduli for EPC, SOPC and SOPC: CHOL membranes confirming previously published values. An interesting application of this technique can be the measurement of the fluctuation spectra for non-equilibrium membranes, such as "active membranes".
使用高分辨率轮廓检测技术测量了巨型单层囊泡的涨落谱。由于实验装置和检测算法的技术改进,现在可以在比以前更高的q矢量下进行分析。直接拟合全局涨落谱以推导脂质膜的膜张力和弯曲模量。此外,我们表明涨落的平面分析对于球形物体是有效的,即使在低波矢下也是如此。引入了由于摄像机积分时间和观察平面截取三维物体而产生的校正。为了提供可靠的误差估计,已经对误差条进行了精确计算。最终,使用该技术,我们测量了EPC、SOPC和SOPC:CHOL膜的弯曲模量,证实了先前发表的值。该技术的一个有趣应用可以是测量非平衡膜(如“活性膜”)的涨落谱。