Practical considerations for feature assignment in high-speed AFM of live cell membranes.

Biophysics and Physicobiology Pub Date : 2022-04-15 eCollection Date: 2022-01-01 DOI:10.2142/biophysico.bppb-v19.0016
Damien Hall, Adam S Foster
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引用次数: 5

Abstract

High speed atomic force microscopy (HS-AFM) is, in principle, capable of yielding nanometer level detail about the surface of static structures. However, for highly dynamic samples HS-AFM may struggle with the correct feature assignment both within and between frames. Feature assignment in HS-AFM is dependent on (i) the intrinsic sampling rate, and (ii) the rate of internal redistribution of the sample. Whilst the first quantity (the sampling rate) is defined by the device parameters, the second quantity is frequently unknown, and is often the desired target of the measurement. This work examines how, even in the absence of gross cell morphological change, the rapid dynamics of living cell membranes, may impose an upper spatial limit to the frame-to-frame assignment of cell micro-topography and other related properties (such as local elasticity) whose motion may be described stochastically. Such a practical maximum may prove useful in the setup of HS-AFM experiments involving dynamic surfaces thereby facilitating selection of the most parsimonious relationship between observation size, image pixilation and sampling rates. To assist with performing the described calculations a graphical user interface-based software package called HS-AFM UGOKU is made freely available.

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活细胞膜高速AFM特征分配的实际考虑。
高速原子力显微镜(HS-AFM),原则上能够产生纳米级的静态结构表面细节。然而,对于高度动态的样本,HS-AFM可能难以在帧内和帧间正确分配特征。HS-AFM中的特征分配取决于(i)内在采样率,以及(ii)样本的内部再分配率。虽然第一个量(采样率)是由设备参数定义的,但第二个量通常是未知的,并且通常是测量的期望目标。这项工作研究了即使在没有细胞形态变化的情况下,活细胞膜的快速动力学如何可能对细胞微地形和其他相关性质(如局部弹性)的帧对帧分配施加上限空间限制,其运动可能是随机描述的。这样的实际最大值可能在涉及动态表面的HS-AFM实验中被证明是有用的,从而有助于选择观测尺寸,图像像素化和采样率之间最简洁的关系。为了协助执行所描述的计算,一个基于图形用户界面的软件包称为HS-AFM UGOKU是免费提供的。
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