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Biomedical subjects

M Gehrke

Publications and source records attributed to M Gehrke.

10 recordsLinked to original sources

Application of electron-attachment reactions to enhance selectivity of electron-capture detector for nitroaromatic explosives.

The differences in the extent of electron-attachment reactions between thermal electrons and selected classes of organic molecules with high electron affinities were investigated. The investigations showed that interactions of thermal electrons with nitroaromatic compounds lead to the formation of neutral products with very low electron affinities. By contrast, a number of other analytes with high electron affinities such as polyhalogenated organic compounds, lead to products with high electron affinities. This difference was exploited to differentiate between nitroaromatic and polychlorinated organic compounds with a tandem arrangement consisting of two electron-capture detectors connected in series with an electron-attachment reactor.

Electrons↗

Coping with hallucinations: exploring stress and coping framework.

This study explored application of the theoretical framework of Lazarus & Folkman (1984) to coping with hallucinations in schizophrenia. Eighty-one patients were interviewed with a structured schedule. Unprompted reports of coping indicated wide use of both 'hallucination-specific' and 'general' strategies. Factor analysis of a coping checklist produced three factors which were utilized in regression analyses. The active acceptance factor may relate to control of hallucinations, the passive coping factor predicted distress reduction but, surprisingly, the resistance coping factor, which contained hallucination-specific coping strategies, predicted poor distress reduction. Clinical and research implications are noted.

Adaptation, Psychological↗

Effect of recombinant beet necrotic yellow vein virus with different RNA compositions on mechanically inoculated sugarbeets.

Beet necrotic yellow vein virus (BNYVV) inocula with different RNA compositions were prepared from infectious transcripts of RNAs 3 and 4 and the Rg 1 isolate, which has a genome consisting only of RNAs 1 and 2. The recombinant viruses were inoculated on 6- to 8-day-old sugarbeet seedlings by 'vortexing'. Inocula containing RNAs 1 and 2 or 1, 2 and 4 produced some growth reduction, but the most dramatic effects, with yield reductions of about 95% in a highly susceptible variety, were seen when RNA 3 was also present in the inoculum. Under these conditions the side roots were brown and brittle and often deteriorated, but 'root beardedness' was not observed. This might be due to the fact that our experiments were done in the absence of Polymyxa betae. Alternatively, the heavy inoculation at a very young age may either have weakened the plants to such an extent that extensive root proliferation was impaired or it may have led to rapid deterioration of the proliferating rootlets, which would therefore be lost prior to or during removal of the tap roots from the soil. In the presence of RNA 3 the virus concentrations in tap roots were markedly increased suggesting that this RNA facilitates the multiplication and/or spread of the virus in root tissues.

Plant Diseases↗

A high efficiency all glass sampling and concentration device for adsorptive semivolatile organics.

A low-volume, inert sampling and enrichment device for semivolatile organic vapors is described. The device consists of two concentric fused silica capillaries. A small portion of the inter-capillary volume, cooled with a burst of compressed carbon dioxide, serves as a trap for the semivolatile organics. The low mass of the trap permits rapid sampling and desorption cycles suitable for applications requiring fast monitoring of semivolatile chemicals. The device is devoid of switching valves in the sampling train and consequently does not suffer from analyte loss due to irreversible adsorption or interference resulting from cross contamination. The device was successfully used for sampling low concentrations of highly adsorptive nitroaromatic compounds and is applicable for polychlorinated dibenzo-p-dioxins (PCDDs) and polyaromatic hydrocarbons (PAHs).

Carbon Dioxide↗