首页> 外文会议>ASME International Design Engineering Technical Conferences and Computers and Information in Engineering Conference 2007 >A METHOD TO CORRECT PULLING GEOMETRY INDUCED ERRORS IN SINGLE MOLECULE FORCE SPECTROSCOPY MEASUREMENTS
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A METHOD TO CORRECT PULLING GEOMETRY INDUCED ERRORS IN SINGLE MOLECULE FORCE SPECTROSCOPY MEASUREMENTS

机译:一种校正单分子力光谱测量中拉拔几何引起的误差的方法

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In AFM-based single molecule force spectroscopy, it is assumed that the pulling angle is negligible and that the force applied to the molecule is equivalent to the force measured by the instrument. Although this assumption may hold for flexible, compact molecules, studies have shown that it may not be appropriate for fairly rigid molecules, where measured forces can be a fraction of the actual values experienced by the molecule. Because the pulling geometry can substantially influence the values measured by the AFM, we investigate a method to minimize the pulling angle prior to conducting a pulling experiment. The method presented herein uses small circular movements to locate the molecule's substrate attachment site and reposition the cantilever. By using data gathered from a previous study, we were able to repeatedly align a molecule's attachment sites via simulation of the program, thereby demonstrating the effectiveness of the alignment method.
机译:在基于AFM的单分子力谱中,假定拉角可忽略不计,并且施加到分子上的力等于仪器测得的力。尽管此假设可能适用于柔性,紧凑的分子,但研究表明,它可能不适用于相当刚性的分子,在这种情况下,测得的力可能是该分子所经历的实际值的一小部分。由于拉拔几何形状会大大影响AFM测量的值,因此我们在进行拉拔实验之前研究了一种最小化拉拔角度的方法。本文介绍的方法使用较小的圆周运动来定位分子的底物附着位点并重新定位悬臂。通过使用从以前的研究中收集到的数据,我们能够通过程序的仿真来重复对齐分子的附着位点,从而证明了对齐方法的有效性。

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