[Pathological effects of exposure to magnetic fields: morphological aspects of injury at the testicular level].
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Biomedical subjects
Publications and source records attributed to R Ricco.
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Histological grading of oral squamous cell carcinoma (OSCC) is usually evaluated in a semiquantitative way and this causes a low grade of reproducibility of this prognostic evaluation. The aim in this preliminary phase is to investigate the relation between nuclear shape (studied by an analytical procedure) and histological grading to evaluate the weight of nuclear shape and dimension in grading formulation. Nine cases of OSCC were studied (3 cases of G1, G2 and G3 respectively) with 20 nuclei for each case. All the tumors were localized on the lip. Histologic grading according to the Bryne system was performed. Each nucleus was submitted to a morphometrical study by the SAM (Shape Analytical Morphometry) system which, apart from dimensions allows us to evaluate nuclear contour irregularities and nuclear shape asymmetry. Nuclei of squamous cell carcinoma show a progressive increase in dimensions (area, perimeter and diameter) from G1 to G3. Nuclei of G3 carcinoma are characterized by the most irregular shape. Size differences (mean value) are significant to differentiate G1 nuclei from G2 and G3 nuclei while shape parameters are useful in distinguishing G3 nuclei from G1 and G2. Multivariate discriminant analysis showed that by using only nuclear parameters it is possible to correctly classify about 80% of nuclei. This study, using quantitative methods, confirmed nuclear pleomorphism to be the most important feature in grading evaluation.
The aim of this work was to seek quantitative parameters other than dimensions to describe nuclear shape and, by this means, to determine the sum of contour irregularities and large asymmetries and seek a connection with the biologic behavior of the tumor. Nuclei of the cells obtained from 57 aspiration smears of breast cancers were studied. Dimensional parameters (area, perimeter, maximum diameter and roundness factor) and analytic parameters were computed by the Shape Analytical Morphometry software system to evaluate both contour irregularities and asymmetry of nuclear shape. All the tumors were subdivided according to their diameters into two groups: T1 tumors, the maximum diameter of which was < 2 cm (18 cases), and T2 tumors, the maximum diameter of which was > 2 cm and < 5 cm (39 cases). Among T1 tumors, both dimensional and analytic parameters were highly significant (P < .001) in distinguishing tumors with (N+) and tumors without (N-) axillary metastases, while among larger tumors (T2) only the analytic parameters showed degrees of significance, albeit variable. It could be inferred that in smaller tumors, aggressiveness is related to an increase in nuclear dimensions and shape distortions more so than in larger tumors.
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Meningiomas are the most common neoplasms of the central nervous system and their biological behavior is not always predictable from the histologic appearance of the tumors. The nuclear pleomorphism seems to be one of the most important morphological features in the prediction of recurrence. By using analytical morphometric methods it is possible to quantify nuclear atypias and to obtain parameters describing nuclear contour irregularities and distortions of the figure. Moreover the amount of information obtained from analytical procedure allowed to discriminate, by multivariate discriminant analysis recurrent or no-recurrent meningiomas (5% of error).