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Biomedical subjects

J L Chermant

Publications and source records attributed to J L Chermant.

4 recordsLinked to original sources

Automatic morphological sieving: comparison between different methods, application to DNA ploidy measurements.

The aim of the present study is to propose alternative automatic methods to time consuming interactive sorting of elements for DNA ploidy measurements. One archival brain tumour and two archival breast carcinoma were studied, corresponding to 7120 elements (3764 nuclei, 3356 debris and aggregates). Three automatic classification methods were tested to eliminate debris and aggregates from DNA ploidy measurements (mathematical morphology (MM), multiparametric analysis (MA) and neural network (NN)). Performances were evaluated by reference to interactive sorting. The results obtained for the three methods concerning the percentage of debris and aggregates automatically removed reach 63, 75 and 85% for MM, MA and NN methods, respectively, with false positive rates of 6, 21 and 25%. Information about DNA ploidy abnormalities were globally preserved after automatic elimination of debris and aggregates by MM and MA methods as opposed to NN method, showing that automatic classification methods can offer alternatives to tedious interactive elimination of debris and aggregates, for DNA ploidy measurements of archival tumours.

Aneuploidy↗

Influence of sample size on image cytometry of DNA ploidy measurements.

OBJECTIVE: To assess the number of nuclei required for significant image cytometry DNA ploidy measurements on one archival case of breast cancer. STUDY DESIGN: From one case of aneuploid DNA breast cancer, 18 subsets made up of 152-1,524 for the whole population of undamaged nuclei and made up of 74-735 epithelial nuclei had DNA measured. DNA ploidy type and five DNA ploidy indices, allowing DNA ploidy histogram interpretation were evaluated on each population. RESULTS: Three hundred nuclei were always sufficient for DNA typing, whereas reliable results for DNA ploidy indices required at least 750 nuclei. CONCLUSION: To DNA measure the above number of nuclei, fully automated image cytometry DNA ploidy measurements are required.

Aneuploidy↗

Influence of debris and aggregates on image cytometry DNA measurement of archival tumors.

OBJECTIVE: To investigate, for seven samples, the influence of unwanted elements (e.g., remains of erythrocyte cell membranes, sliced nuclei, damaged nuclei and aggregates) on image cytometry DNA ploidy measurements. STUDY DESIGN: Two normal reference tissues (brain and breast), one breast cancer and four brain tumors were studied. For each sample, the influence of the different classes of debris on DNA ploidy histograms and indices was evaluated. RESULTS: The influence differs regarding each class of debris and the index to be evaluated. CONCLUSION: Strict and precise elimination of debris and aggregates is required. Moreover, strategies and efforts that must be applied to automated elimination of these unwanted elements must be a direct function of the bias they introduce into DNA ploidy measurements.

Aged↗

Determination of size and molecular weight distributions of lipoproteins using automatic image analysis and density gradient ultracentrifugation.

A Leitz-Tas automatic image analysis system has been used to investigate the size distributions of human lipoprotein particles isolated by density gradient ultracentrifugation. Computerized image analysis enabled us to obtain more precise determinations of modal diameter and overall range in diameter for each lipoprotein subspecies than those determined by classical methods. In addition, lipoprotein molecular weight distributions were calculated from measurements of flotation density and particle size distributions. This method offers certain advantages over other procedures used to characterize mean molecular weight with regard to the ability to define lipoprotein polydispersity. The method and its limitations are discussed and illustrated with results obtained with human lipoproteins.

Adult↗