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J Simmonds

Publications and source records attributed to J Simmonds.

11 recordsLinked to original sources

Results of the European Commission Marina II study: part II--effects of discharges of naturally occurring radioactive material.

Enhanced levels of naturally occurring radioactive materials (NORM) are produced through various industrial operations and may lead to discharges to the marine environment. A recent study, called MARINA II, carried out for the European Commission considered discharges of radionuclides from the NORM industries to north European marine waters and their consequences. There are two main sources that were considered in the study. The use of phosphogypsum during the production of phosphoric acid by the fertiliser industry and the pumping of oil and gas from the continental shelf in the North Sea which produces large quantities of water contaminated with enhanced levels of naturally occurring radionuclides. Discharges of alpha emitting radionuclides from these two industries have contributed significantly to the total input of alpha emitters to north European waters over the period 1981-2000 (data were not available prior to 1981). Discharges due to the use of phosphogypsum have declined since the early 1990s and are now very low. Discharges from the oil and gas industries stabilised in the second half of the 1990s and are now the major contributor to alpha discharges to the region. As most European countries do not report discharges of radioactivity with the water produced during extraction, there is considerable uncertainty in the discharges used in the study. The impact of the discharges has been estimated both in terms of the effect on non-human biota and the radiological impact for people. In the 1980s the radiation dose rates to marine biota in the region around a phosphate plant on the north-west coast of England were as high due to the discharges from the phosphate plant as those near to the Sellafield reprocessing plant due to its discharges. In recent years the additional dose to marine biota in this region due to the past NORM discharges is of the same order of magnitude as the natural background. The collective dose rate was estimated to determine the radiological impact on people. The peak collective dose rate from the NORM industries occurred in 1984 and was just over 600 manSv y(-1). The collective dose rate fell with time as discharges from the phosphate industry reduced and was estimated as under 200 manSv y(-1) in 2000.

Chemical Industry↗

Results of the European Commission MARINA II study: part I--general information and effects of discharges by the nuclear industry.

From the collated data relevant to discharges by the nuclear industry, it results that the input of beta activity (excluding Chernobyl fallout and tritium) into the OSPAR region decreased by a factor of 4 from 1986 to 1991, reaching by this date the same level as in the early 1950s. Over the same period the discharges of the alpha activity into the OSPAR region also decreased by a factor 3, the same trend has been seen also for tritium. Since 1986 the effective dose to members of the critical group in the vicinity of Sellafield and Cap de La Hague was consistently below the ICRP and EU limit of 1 mSv per year to members of the general public. The overall radiological impact from nuclear industry on the population of the European Union from the OSPAR area has decreased from 280 manSv y(-1) in 1978 to 14 manSv y(-1) in 2000.

Environmental Monitoring↗

The combined impact on doses to man of multiple, authorized, radionuclide discharges for the year 1999 reaching the upper river thames, uk.

Before issuing a new or revised authorization to discharge liquid radioactive waste to a river, past and current practice has been to assess the impact of each discharge on a site-by-site basis. This paper reports an assessment of the combined impact of all the (year 1999) authorized discharges in the upper River Thames (UK) catchment. A modification of the PC-CREAM model, using parameters specific to the upper River Thames, was used to estimate "potential doses" to the population, using the authorized discharge activity for each of the discharges as the main driving variable. The main purpose of this study was to investigate the difference in doses between single and multiple discharges in the Thames. A partial validation of the model against measurements was also carried out as a secondary investigation. The source term of the upper Thames consisted of 90 authorized discharges for 86 sites, made up of three nuclear licensed sites, 36 industrial discharges, 25 research organizations, 20 hospitals and two miscellaneous organizations. Of the authorized discharges, nuclear sites constituted 67% of the total activity in authorizations to discharge; hospitals 16%, research organizations 13%, and industry only 3%. Three radionuclides made up 96% of the total authorized discharge activity: tritium-74%; Tc-15%, and C-7%. No other single radionuclide constituted more than 1.5% of the total activity. All of the discharges from non-nuclear sites were via a sewage works so that, in total, only 39 discrete discharges to the river were included in the model. For the purposes of the assessments, it was assumed that all discharges were at the authorized limits (rather than using actual discharge). Even with this maximizing assumption, all the calculated potential doses from the combined source terms were significantly less than the radiation dose limit of 1 mSv y for a member of the public. The highest estimated potential doses were investigated further to identify the major pathways. Ingestion of fish was the main pathway in several river stretches and in the highest case constituted 97% of the dose. In a few stretches, external irradiation from the riverbank or ingestion of drinking water were the main pathways, but the potential contribution was a very small percentage (<1%) of the dose limit for members of the public. An investigation of the reasons for the relatively high potential doses resulting from fish showed that the radionuclide with the largest contribution was P. Three factors had a major effect on potential dose estimations in these circumstances: the fish consumption rate, the P concentration factor and the use of P in some cases to represent radionuclides authorized for discharge as "any other radionuclide, except alpha emitters." Using the precautionary principle, all authorized activity in the latter designation was modeled as the radionuclide which would produce the highest dose to humans.

Adult↗

Neonatal nitric oxide synthase inhibition: social interaction deficits in adulthood and reversal by antipsychotic drugs.

Nitric oxide synthase (NOS) is thought to migrate improperly during development in the brains of schizophrenic patients. Also it is known that nitric oxide (NO) effects synaptogenesis during development of the CNS. Previously we have shown that neonatal treatment with a NOS inhibitor effects an animal's sensitivity to amphetamine and PCP. In the present study, neonatal rats were challenged with a NOS inhibitor (L-nitroarginine, 10mg/kg, s.c.) daily on post-natal days (PD) three, four and five. L-Nitroarginine (L-NoArg) treated male rats at adulthood (PD56 and older) had a deficit in social interaction (SI) when placed in an environment with another foreign male rat and this deficit was reproducible on a weekly basis for at least five weeks. Haloperidol failed to significantly reverse this deficit before pronounced secondary effects on general behavior were seen at high doses. However, the atypical antipsychotics, clozapine and olanzapine, were able to significantly reverse this deficit at doses which did not effect baseline SI values. In a separate cohort of animals the effect of DOI was investigated, this was done to ascertain if there was a differential sensitivity of serotonergic pathways in this model. There was no difference in the behavioral score elicited from control or NoArg-treated rats. It is suggested that the SI deficits seen here may be more sensitive to atypical antipsychotics rather than haloperidol.

Age Factors↗

Molecular analysis of two Brassica napus genes expressed in the stigma.

A partial cDNA clone, Pis 63, corresponding to a mRNA highly expressed in Brassica napus pistils, was isolated by differential screening. PCR was used to complete the Pis 63 sequence (Pis 63-1) and to obtain the sequence of another related cDNA (Pis 63-2). Northern blot and in situ analyses demonstrated that these transcripts are expressed in the stigma throughout flower development. Pis 63-1 and Pis 63-2 display similarity to a cotton fibre cDNA clone.

Amino Acid Sequence↗

Molecular characterization of two Brassica napus genes related to oleosins which are highly expressed in the tapetum.

Two highly homologous Brassica napus flower cDNA clones, Sta 41-2 and Sta 41-9, were isolated and characterized. These clones were shown to correspond to genes expressed in the tapetum from the early uninucleate microspore stage to the dinucleate stage. The predicted Sta 41-2 and Sta 41-9 proteins possessed characteristics similar to oleosins such as a polar N-terminal domain, a large relatively conserved hydrophobic domain and a long C-terminal domain which consisted of four different groups of repeats. In addition, like oleosins, the Sta 41-2 and Sta 41-9 proteins have a basic pI, lack a signal peptide and are found in a tissue which accumulates lipids in small lipid bodies.

Amino Acid Sequence↗

Isolation and characterization of a polygalacturonase gene highly expressed in Brassica napus pollen.

A cDNA clone, Sta 44-4, corresponding to a mRNA highly expressed in Brassica napus cv. Westar stamens, was isolated by differential screening and characterized. Northern blot and in situ analyses demonstrated that Sta 44-4 is synthesized in pollen beginning at the late uninucleate stage and reaches a maximum in trinucleate microspores. Sta 44-4 displayed significant sequence similarity to known pollen polygalacturonase genes. The B. napus pollen polygalacturonase gene was shown to be part of a small gene family and to display some polymorphism among different cultivars.

Amino Acid Sequence↗