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At least 19 recordsLinked to original sources

Trace metal concentrations in sediments and oysters of Botany Bay, NSW, Australia.

Surfical sediment (< 63 microm) trace metal concentrations (Zn, Cu, Pd, Cd, As) were analyzed from seven sites in Botany Bay, NSW, Australia, to assess the extent of contamination from the surrounding urban areas. The northwest shoreline of Botany Bay contained high surfical sediment trace metal concentrations relative to the southern shoreline. Surfical sediment Pb concentrations (10-120 microg/g) were above the current ANZECC/ARMCANZ interim sediment guideline value (50 microg/g) for the protection of benthic ecosystems at the northwest sites. Cooks River was identified as a major source of trace metals. Oysters grown in Botany Bay have greater Zn, Cu, and Cd concentrations than two relatively pristine reference locations, Jervis Bay and Batemans Bay, indicating that the Botany Bay region has elevated biologically available metal concentrations. Oyster tissue trace metal concentrations were below the Australian and New Zealand Food Authority standards. Translocation of oysters to sites around the bay identified Pb and Cd as the only trace metals to be accumulated over 3 months. Copper concentrations in transplanted oysters declined at most sites, indicating that the sites investigated in this study have less bioavailable copper than Woolooware Bay, the source of the oysters. The shallow waters along the southern shoreline are protected from the tidal flow that carry contaminated sediments and the biologically available trace metals appear to be low.

Animals↗

Comparative study of the introduction of modern botany in Japan and China.

Prior to the eighteenth-century, a similar approach towards the vegetable kingdom, mainly influenced by the tradition of the Chinese pharmacopoeias, could be observed in China and Japan. During the eighteenth-century, the interest for "Dutch learning" led some Japanese physicians and interpreters to be more and more interested in Western knowledge about medicinal plants. At the beginning of the nineteenth-century, a few scholars, through direct contact with foreigners or with foreign books, realised that there was a specific scientific field called "botany" and began to introduce the Japanese scholarly community to this new science which became one of the subjects taught at the "University of Tokyo" in 1877. In China, up to the middle of the nineteenth-century, no trace of modern botany can be found in any published document. In the second half of the century, a few botanical treatises were published, all being adaptations or translations of Western books, done by foreign-Chinese teams of translators. This situation began to change when Chinese students had the opportunity to go and study abroad, mainly to Japan, at the beginning of the twentieth-century, and, actually, it is between 20 and 30 years later that botany became a real scientific practice in China. We will analyse these two processes, their specificities and their interactions.

Botany↗

[This concerns a medical botany course by "M. de Jussieu"].

This course comprises the list of plants likely to cure or alleviate diseases or functional symptoms which are beforehand studied from clinical or physiological point of view. With regard to botany, plants are designated: - either by their French name with sometimes a synonym or a classical Latin name, - or according to the Tournefort or Linné's terminology. It is an interesting truative on eighteenth century medical botany, the professor who dictated this course being Antoine or Bernard de Jussieu.

Botany↗

The prevalence and outcome of depression and dementia in Botany's elderly population.

BACKGROUND: Large epidemiological studies of adult populations have reported depression to be less prevalent in old age than among younger adults, whereas studies limited to older persons have reported rates that vary considerably, some showing high rates of depression. There was, therefore, reason to check data from a study that reported high rates, and to review evidence in relation to diagnosis and outcome. METHOD: Re-examination of data from a 1985 survey of elderly people living at home (n = 146). Depression and cognitive impairment were also assessed in a local hostel (n = 42) and nursing home (n = 74). DSM diagnoses were made by an old age psychiatrist. In the nursing home, 23 other residents could not respond to interview questions but were considered to have severe dementia. Subjects in all three settings were followed up after 4 years. RESULTS: Seven community subjects (4.5%; confidence interval 1.3-8.3%) and three in residential care fulfilled criteria for major depression. The estimated total prevalence of depressive disorders among elderly in Botany was between 13.0 and 13.6% (4.6% major depression, 3.6% dementia with depression, 5.4% other depressive disorders). In 1985, the prevalence of dementia among those living at home was 11%. Four-year mortality in the dementia cases was 60%. CONCLUSIONS: Botany has a high prevalence of dementia and depression among elderly people. The recent cross-age. Australian study of mental health and well-being provided an inaccurate report concerning the pattern of mental disorders in old age.

Age Factors↗

Abundance and biomass of heterotrophic flagellates, and factors controlling their abundance and distribution in sediments of Botany Bay.

The abundance and biomass of heterotrophic flagellates were estimated monthly in sediments of Botany Bay during March 1999-February 2000. The annual abundance and biomass were in the ranges of 0.46-4.70 x 10(5) cells/cm(3) and of 0.30-8.61 micro g C/cm(3), respectively. The majority of heterotrophic flagellates (93-100%) were less than 10 mm in length and few flagellates were larger than 10 mm. Of the total microbial carbon biomass, heterotrophic flagellates made up about 5% (but at times up to 35%). The contribution of heterotrophic flagellates varied from month to month, and among the sites. The abundance of heterotrophic flagellates was negatively correlated with sediment grain size and positively correlated with the abundance of bacteria, algae (autotrophic flagellates and diatoms), and their probable grazers. A best subsets regression analysis showed that bacterial and algal abundance are the most important factors controlling the abundance of heterotrophic flagellates. When the previously reported grazing rates on bacteria were applied, heterotrophic flagellates would consume a maximum of 64% of bacterial standing stock daily in Botany Bay, suggesting that heterotrophic flagellates are important as bacterivores. However, the importance of heterotrophic flagellate grazing probably varies significantly among the sites and from month to month.

Animals↗

Systematic and medicinal reasoning in Mitla folk botany.

This paper reviews cognitive, symbolic, systematic botanical, and biochemical bases of plant classification, and analyzes their interrelationships in the medicinal folk botany of Mitla, Oaxaca, Mexico. It evaluates the "pharmacological wisdom" of the local population, along with their symbolic use of the environment, to show how they construct medicinal plant classifications which follow a folk logic, but often conform as well to modern botanical classifications based on the principles of systematic botany or chemistry. Working from both the chemical data and the folk categories, the analysis suggests the local Zapotec population systematically selected plants which foam for symbolic reasons to treat illnesses of the "soul" and identifies their underlying chemical constituents and medicinal qualities. Other correspondences between chemical, medicinal and reputed folk qualities are also suggested.

Animals↗

Botany on a plate. Pleasure and the power of pictures in promoting early nineteenth-century scientific knowledge.

In early nineteenth-century Britain the use of pictures in introducing novices to the study of science was contentious, leading to debates over the ways in which words and images constituted knowledge and over the role of pleasure in intellectual pursuits. While recent studies have stressed visual representation as a critical element of science and considered its relation to the written word in conveying information, this essay explores the nineteenth-century preoccupation with the mind and mental faculties in relation to corporeal responses to explain concerns over the role of images and the process of recognition. By considering illustration in this way, it argues that popular botany was defined by many expert naturalists as the means by which private individuals could best be encouraged to extend their aesthetic appreciation and love of plants to an active and participatory pursuit of science.

Books, Illustrated↗

The history of botany in Moscow and Russia in the 18th and early 19th centuries in the context of the Linnaean Collection at Moscow University (MW).

The Herbarium of Moscow State University, Russia, possesses a relatively small (63 specimens), but historically interesting, collection of herbarium specimens linked with Carl Linnaeus (1707-1778). Some of these originally formed part of Linnaeus' own herbarium while others, although never his property, were nevertheless studied by him and may be original material for the typification of his plant names. This paper discusses the broad historical background to the gathering of these specimens, their study by Linnaeus and their subsequent fate. Specimens linked with Linnaeus have been encountered in each of the four largest historical collections of the Herbarium of Moscow State University, i. e., in the herbaria of J. F. Ehrhart, G. F. Hoffmann, C. B. von Trinius and C. L. Goldbach. Ehrhart's General Herbarium contains 31 sheets, which were more or less certainly collected or studied by Linnaeus. Ehrhart, a pupil of Linnaeus, received some specimens directly from the latter, while others came to him from Linnaeus filius, A. Dahl, and P. J. Bergius. Ehrhart's collections were purchased by G. F. Hoffmann, later, the first head of the Department of Botany at Moscow University, who took them to Russia. Hoffmann's General Herbarium contains three specimens that may be connected with Linnaeus. They were received from C. P. Thunberg, J. A. Murray, and an unknown person, respectively. At least five specimens from Trinius' collection, although certainly never seen by Linnaeus, are probable duplicates of material that was studied by him. Some of them are almost certainly iso-lectotypes of Linnaean names. Finally, 24 specimens linked with Linnaeus were found in Goldbach's herbarium. The majority of them were collected in the Lower Volga Region by J. Lerche and during the Second Kamchatka Expedition (Great Northern Expedition) by J. G. Gmelin and G. W. Steller.

Botany↗

[Half century of botany publishing in Revista de Biologia Tropical].

Over its first half century the Revista de Biología Tropical published many papers and supplements dealing with the botany. However, the Revista is not a primary botanical journal. A wide variety of topics and geographic sources have been included, taking into consideration species from the Neotropics, but also from India and Nigeria. A complete index of botanical papers is presented.

Bibliometrics↗

Arrow poisons in China. Part II. Aconitum--botany, chemistry, and pharmacology.

The botany of Chinese Aconitum species is briefly reviewed. Five species have been identified as sources of arrow poison: A. carmichaelii, A. nagarum, A. ouvrardianum, A. stylosum, and A. episcopale. The most important one, A. carmichaelii, has long served, together with A. kusnezoffii, as the main source of the Chinese medicinal aconite drugs--ts'ao wu (wu t'ou), the parent tuber, and fu tzu (ch 'uan wu), the daughter tuber. Two other aconite drugs have now been accepted into the Chinese materia medica: hsüeh shang i chih hao, from A. brachypodum, A. pendulum, and A. nagarum, and kuan pai fu, from A. coreanum. The folk-medicinal use of Aconitum species throughout China is also discussed. The alkaloid content and composition of Aconitum species known to occur in China are surveyed; and the effects of "processing", practised in order to diminish the toxicity of aconite drugs, are noted. Also the pharmacology of the aconites and their alkaloids is examined, in order to determine to what extent there may be a basis for the numerous medicinal properties attributed to the plants. Current understanding of the effectiveness of the drugs is incomplete and further study is required.

Aconitum↗

Trace metals in oysters and sediments of Botany Bay, Sydney.

Trace metal concentrations (Pb, Cd, Cu and Zn) in Sydney rock oysters (Sacostera commercialis) and sediments (< 53 microns fraction) were determined for six sites in the northern regions of Botany Bay. Levels for lead, cadmium, copper and zinc in oysters ranged (in microgram g-1) from 1.38 to 15.3, 1.81 to 16.3, 56.1 to 212 and 1806 to 2902, respectively. In sediments, levels ranged (in microgram g-1) from 599 to 4081, 3.57 to 91.0, 191 to 1113 and 227 to 1472, respectively. Such values indicated high levels of contamination, especially in the sediments. Indeed, high proportions of the samples displayed metal concentrations that exceeded the prescribed limits for oysters and sediments. No significant correlations in metal concentrations were found between oysters and sediments, suggesting that changes in the sediment metal loading are not solely influencing the levels of bioavailable metal. The results supported the conclusion that different rates and mechanisms of metal accumulation are taking place in the two types of samples. Variability between sites was high, particularly for oysters. Multidimensional scaling identified that the Cooks River (site 3) and La Perouse (site 6) sites were most dissimilar, both to each other as well as to the other four sites. This was a reflection of high contamination in the Cooks River and the generally low levels in the La Perouse reference sample. The configuration was mainly influenced by the sediment parameters, rather than the oyster metal concentrations, indicating the sediment data were better for identifying site similarities. These ordinations provide evidence of the usefulness of multidimensional scaling in elucidating the physico-chemical variability of the sampling sites.

Animals↗

Capsicum production, technology, chemistry, and quality. Part 1: History, botany, cultivation, and primary processing.

The genus Capsicum (Fam. Solanaceae) was known to ancient cultures and was more recently historically associated with the discovery of the New World. This genus provides many species and varieties used in flavoring foods popular in the cuisines of many parts of the world. From the pungent chilli to the colorful paprika and the bell pepper, with its remarkable aroma, the genus is of great interest for its chemistry, sensory attributes, and physiological action. The Capsicums, among the spices, are second only to black pepper in trade both in volume and value. The production of the different pungency forms, the processed seasonings, and the concentrated oleoresins, through technologically advanced processes and in specified standard grades, are critically reviewed. The pungency of Capsicum fruits, its evaluation, chemical structure relationship, its increasing acceptance and preference by a variety of populations are of great research interest. The wide traditional use in the growing regions and its intense physiological effects have attracted the attention of researchers of many different disciplines. These aspects are reviewed in four sequential parts. Part I deals with history, botany, cultivation, and primary processing.

Agriculture↗