[Evaluation of automatic data processing in routine diagnosis].
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Explore the source record for details and available documents.
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An automatic data handling system for the storage and evaluation of data from investigations on sexually-transmitted diseases has been developed. Among the clinical applications are epidemiological investigations, evaluation of diagnostic procedures, and evaluation of treatment regimens. One of the main features of the system is its flexibility, which allows the inclusion of an unlimited number of further evaluation programs. After a running-in period of about 3 years, during which time a number of changes were found to be necessary, the method has been found to satisfy medical and data processing requirements.
The approaches for development of express methods for quantitative control of proteolytic reactions are discussed. Recently, these reactions have taken on special significance for revealing many important problems of theoretical and practical medicine and biology as well as for technological, pharmacological and ecological monitoring. Traditional methods can be improved both by use of immobilized enzymes and substrates, and on the basis of combination of various classic biochemical and immunological approaches. The synthesis of substrates with specified properties allows new methods to be realized for the study of the proteinase activity and kinetic characteristics of the corresponding reactions both in vitro and in vivo. An application of biosensor technology is promising trend since it allows the analysis time and cost to be saved, the direct interaction between enzymes and their inhibitors and activators to be studied in a real time scale, the quantitative measurements to be performed both in liquids and in the air. Besides, biosensor technique is well compatible with computer data processing.
In continuation of the program of data recording presented earlier a computer program for analysis and calculation of a data base which consists of the results of dental examination of children is introduced. The presented possibilities of data processing are fitted to the general reports in dentistry of children. They are recommended in solving the problems of a simple and modern data processing in this special field of dentistry.
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The architecture of the cilium seemingly is very simple but the appearance is deceptive; its 'engine' actually is quite complex. There is a circle of nine microtubular doublets around two central singlet microtubules, with dynein arms and spokes extending from the doublets, and nexin links joining them. The inner microtubules are partly surrounded by a central sheath. Many uncertainties remain, for instance the role of the spokes, the nexin links and of the various categories of inner dynein arms. The complexity as seen today is largely the result of new methodologies being introduced, such as the deep-etch technique or image processing using various computer programs. The inborn disease named immotile-cilia syndrome is characterized by the cilia being defective. It is a highly heterogeneous disease in that more than a dozen subgroups characterized by different ciliary defects have been recognized.
A method is proposed for the correction of drift over cyclic three-dimensional kinematic data during treadmill locomotion. An adaptive least-squares drift correction algorithm (ALSDC) is developed from the operational definition of no drift. This method includes automatic selection of least-squares polynomial degree and sequential processing of large data sets.