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Biomedical subjects

J M Chassery

Publications and source records attributed to J M Chassery.

4 recordsLinked to original sources

HOME: highly optimized microscope environment.

The Highly Optimized Microscope Environment (HOME) is a computerized microscope designed to assist pathologists and cytotechnicians in clinical routine tasks. The prototype system consists of a IBM-PC compatible computer and a light microscope in which a built-in high-resolution computer display image is superimposed on the optical image of the specimen. Also, a manually operated encoding stage and objective turret encoder are used to provide continuous monitoring of the stage coordinates and microscope magnification to the computer. This allows any position on a slide to be uniquely defined and makes it possible to measure interactively lengths and areas larger than the size of the microscope field. Software, written in the C language and operating under the MS-DOS/MS-Windows environment, is controlled by means of a mouse-driven cursor moving over menu light-buttons displayed on the microscope image. The HOME microscope workstation is potentially useful in a wide range of applications such as i) tagging information on particular cells and tissue structures that can thus be accurately located and relocated, ii) performing morphometric measurement, differential counting, and stereological assessment of biological specimens, and iii) training and educating laboratory personnel. Finally, HOME will offer in the near future a user-friendly interface for automatic image processing of cells and tissue entities in interactively selected specimen areas.

Animals

[SAMBA : a cytophotometer coupled to a computer for the purpose of the automatic study of cell kinetics and the recognition of cell types].

The system SAMBA has been designed for automatic analysis of biological images, at the cellular or subcellular level. The examination is performed at the maximum resolution power of the microscope. It enables to discriminate by means of a pool of morphological and densitometrical parameters, between cells in the different phases of the cell cycle, or between cells belonging to various types in heterogeneous populations. Other recognition programs are at present beeing in progress, in order to promote the use of SAMBA in other fields of fundamental research and clinical application. Owing to the minicomputer now in use, SAMBA is an autonomous system, capable of beeing routinely used in diagnostic centers.

Bone Marrow Cells

[Automatic recognition of different phases of the cell cycle and automatic count of the cells by means of a computer coupled to a cytophotometer].

Existing relationships between cell cycle phases and chromatin scattering within the nucleus led us to state more precisely our first alogrithm for cell cycle phases recognition. These refundments give evidence for the accuracy and the improving performance of the densitometric and morphologic analysis system used in this study: the "Samba".

Animals

[A new image-processing system designed for densitometry and pattern analysis of microscopic specimen. Application to the automated recognition and counting of cells in the various phases of the mitotic cycle (author's transl)].

A new image analysing system, designed for microphotometric measurement and pattern recognition has been applied in the discrimination of cells from the various phases of the mitotic cycle. The data acquisition procedure is controlled by a programmable electronic unit and involves the combination of the shifting of the microscope moving stages and the scanning of the successive fields by a mechanical device. The data processing is achieved by a computer. The preliminary results we obtained have shown that such a system allows the automatic recognition and counting of the M, G1, S and G2 cells as also the G0 resting cells. The most useful parameters of the cell proliferation kinetics are thus obtained from a single specimen of a cell population.

Cell Count