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Biomedical subjects

N Kisseberth

Publications and source records attributed to N Kisseberth.

5 recordsLinked to original sources

Leginon: an automated system for acquisition of images from vitreous ice specimens.

We have developed a system to automatically acquire cryo-electron micrographs. The system is designed to emulate all of the decisions and actions of a highly trained microscopist in collecting data from a vitreous ice specimen. These include identifying suitable areas of vitreous ice at low magnification, determining the presence and location of specimen on the grid, automatically adjusting imaging parameters (focus, astigmatism) under low-dose conditions, and acquiring images at high magnification to either film or a digital camera. This system is responsible for every aspect of image acquisition and can run unattended, other than requiring periodic refilling of the cryogens, for over 24 h. The system has been tested out on a variety of specimens that represent typical challenges in the field of cryo-electron microscopy. The results show that the overall performance of the system is equivalent to that of an experienced microscopist.

Computer Graphics↗

Improving the positional accuracy of the goniometer on the Philips CM series TEM.

We have developed a method to improve the accuracy for absolute relocation of a target specimen using the goniometer on a Philips transmission electron microscope. We have achieved this by characterizing the performance of the Philips compustage, modeling its behavior, and using this model to calculate the goniometer movements required for accurate target relocation. This resulted in a 10-fold improvement in the positioning accuracy of the goniometer.

Algorithms↗

Leginon: a system for fully automated acquisition of 1000 electron micrographs a day.

We have developed a system to automatically acquire large numbers of acceptable quality images from specimens of negatively stained catalase, a biological protein which forms crystals. In this paper we will describe the details of the system architecture and analyze the performance of the system as compared to a human operator. The ultimate goal of the system if to automate the process of acquiring cryo-electron micrographs.

Automation↗

emScope: A Tool Kit for Control and Automation of a Remote Electron Microscope

We have developed a portable and extensible set of tools and applications for control of a remote transmission electron microscope (TEM). These tools will be used to develop a system for automatically acquiring large numbers of high quality images from a TEM in a routine, robust, and efficient manner. In particular we plan to develop applications that allow for data collection from specimens preserved in vitreous ice. Copyright 1997 Academic Press. Copyright 1997 Academic Press

Journal Article↗

JavaScope: A Web-based TEM control interface.

JavaScope is a Web-based java applet that implements an "exploration/browser" tool for operating a Philips CM200 transmission electron microscope and viewing digital images remotely. The primary use of the application is as a collaborative tool for remote consultations.

Image Processing, Computer-Assisted↗