Test of Wannier threshold laws: Double-photoionization cross section in helium.
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Biomedical subjects
Publications and source records attributed to V Schmidt.
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Immunocytochemical studies were performed on tracheal wall samples embedded in paraffin; the samples were taken at 23 autopsies. In all cases, the red cells had been typed in postmortem serological studies as being Le(a-b-). Blood-group antigens were demonstrated by the indirect immunoperoxidase technique, using monoclonal Anti-A, Anti-B, Anti-Lea and Anti-Leb; H was detected by UEA 1. The secretor characteristics could clearly be diagnosed from the ABH staining pattern of the mucous glands. In 11 cases, the lewis antigen labeling patterns were identical to the group of Lewis-positive individuals. It seems probable, from the statistical point of view, that these 11 individuals were, in fact, Lewis-positive and that the negative serology resulted from deterioration of the cadaver blood samples. The immunocytochemistry was quite different in the remaining 12 cases: (a) secretors (n = 9) were completely negative for Lea, Leb was equally negative in one case, but in the remainder it was detectable within mucous epithelia in minimal amounts and in an atypical granular distribution; (b) nonsecretors (n = 3) reversely exhibited complete negativity for Leb but a minimal staining for Lea. These findings are in harmony with the well established Lewis serology typing of secretions in Lewis negative individuals. Thus, a minimal Lewis antigen biosynthesis and secretion seem to occur in the absence of the Le gene: A alpha-4-L-fucosyltransferase of low activity might be the product of the allele le.
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Globular hyaline microthrombi are characterized by their diameter (2-30 micron), globular form, and positive PAS and PTAH reaction. They are a morphologic indicator of disturbed microcirculation and hemostasis, such as that occurring in shock. In two of our cases, we observed large globular hyaline microthrombi, some with central webbed degradation progressing to the formation of closed or open hollow globules. The electron microscopic findings were similar to those observed by other investigators in typical shock bodies. On the basis of the morphologic findings, the authors conclude that degradation phenomena start at the center of globular hyaline microthrombi and can progress to the surface where accelerated fibrinolysis is possible. The cellular elements that other investigators have described as a possible condensation center for fibrin precipitate proved to be structurally intact cells that are apparently located in niches of open hollow globules or in the center of circular hyaline microthrombi. The diagnostic relevance, vitality, and temporal classification are discussed.
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