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Methods for increasing the sensitivity of sedimentation velocity analysis: a signal averaging Rayleigh optical system for the Beckman Instruments Optima XL-A analytical ultracentrifuge

机译:提高沉降速度分析灵敏度的方法:贝克曼仪器Optima XL-A分析超速离心机的信号平均瑞利光学系统

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Abstract: A large increase in the sensitivity of sedimentation velocity experiments can be achieved by combining time derivative analysis with signal averaging. Computation of the time derivative results in the complete elimination of time independent optical background. The ability to rapidly acquire sedimentation profiles using real-time Rayleigh interferometry has made it possible to average large numbers of profiles over relatively short periods of time. Currently available, inexpensive computers and video frame grabbers have made it possible to acquire and reduce Rayleigh interferograms at the rate of about 1 per second. The ability to achieve high sensitivity means that high affinity interacting systems that can not be studied by the conventional ultracentrifugal methods are now accessible to analysis by analytical ultracentrifugation. A Rayleigh optical system for the Beckman Instruments Optima Series XL-A Analytical Ultracentrifuge is described, and methods of data acquisition and reduction are presented.!16
机译:摘要:通过将时间导数分析与信号平均相结合,可以大大提高沉积速度实验的灵敏度。时间导数的计算可完全消除与时间无关的光学背景。使用实时瑞利干涉测量法快速获取沉积剖面的能力使得在相对较短的时间内对大量剖面进行平均成为可能。当前可用的廉价计算机和视频帧捕获器使得以大约每秒1的速率获取和减少瑞利干涉图成为可能。达到高灵敏度的能力意味着无法通过常规超速离心方法研究的高亲和力相互作用系统现在可以通过分析超速离心进行分析。介绍了用于贝克曼仪器Optima系列XL-A分析超速离心机的Rayleigh光学系统,并提出了数据采集和归约的方法。!16

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