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首页> 外文期刊>European Biophysics Journal >ANALYSIS OF DATA CAPTURED BY AN ON-LINE IMAGE CAPTURE SYSTEM FROM AN ANALYTICAL ULTRACENTRIFUGE USING SCHLIEREN OPTICS
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ANALYSIS OF DATA CAPTURED BY AN ON-LINE IMAGE CAPTURE SYSTEM FROM AN ANALYTICAL ULTRACENTRIFUGE USING SCHLIEREN OPTICS

机译:使用谢列光学从分析性超微映象分析在线图像捕获系统中的数据

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The recent development in this laboratory of an automated data capture system, for refractometric optics on the analytical ultracentrifuge has removed the requirement for tedious and time consuming manual acquisition which had led to a decline in the use of schlieren optics. At the same time this system has increased the amount of data easily available from such an optical system with maintained or increased precision. From the advent of such a system has arisen the need for a package to facilitate the analysis of these data and to extend the range of analytical methods used. Using the improved data sets now available has also enabled us to successfully use methods which have lapsed in popularity over the last two decades. We have also been able to successfully apply radial derivative methods (Bridgman 1942) which have not routinely been applied to the analysis of sedimentation velocity experiments using schlieren optics. In this paper we describe the methods we have so far used to analyse data and present results for previously well defined molecules to demonstrate that the results obtained are reliable. [References: 18]
机译:在该实验室中,用于分析超速离心机上的折射光学的自动数据捕获系统的最新发展消除了对繁琐且耗时的手动采集的需求,这导致了对Schlieren光学的使用减少。同时,该系统增加了从这种光学系统容易获得的数据量,并且保持或提高了精度。随着这种系统的出现,需要一种包装来促进这些数据的分析并扩展所用分析方法的范围。使用现在可用的改进的数据集,还使我们能够成功地使用在过去二十年中逐渐流行的方法。我们还能够成功地应用径向导数方法(Bridgman 1942),而径向导数方法在使用schlieren光学仪器进行沉积速度实验分析中并未得到常规应用。在本文中,我们描述了我们迄今为止用于分析数据的方法,并给出了先前定义明确的分子的结果,以证明所获得的结果是可靠的。 [参考:18]

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