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1.
Ecotoxicol Environ Saf ; 123: 2-7, 2016 Jan.
Article in English | MEDLINE | ID: mdl-26477574

ABSTRACT

The sea urchin embryo toxicity test is classically used to assess the noxious effects of contaminated marine waters and sediments. In Italian guidelines on quality of dredged sediments, the standard toxicity criteria used for this assay are based on a single endpoint at 48 hours of development, corresponding to the pluteus stage. Different typologies of abnormalities, including those which occur at earlier stages, are not categorized, thus preventing the evaluation of the actual teratogenic hazards. A new integrative toxicity index has been developed in this study based on the analysis of two developmental stages, at 24 and 48h post-fertilization, and the differentiation between development delays and germ layers impairments: the new toxicity index is calculated by integrating the frequency of abnormal embryos with the severity of such abnormalities. When tested on dredged sediments, the evaluation of increasing levels of toxicity affecting embryonic outcomes enhanced the capability to discriminate different samples, appearing particularly relevant to validate the sea urchin embryo toxicity assay, and supporting its utility in practical applications such as the sediments classification in harbor areas.


Subject(s)
Embryo, Nonmammalian/drug effects , Sea Urchins/drug effects , Sea Urchins/embryology , Teratogens/toxicity , Toxicity Tests/methods , Animals , Biological Assay , Environmental Monitoring , Fertilization/drug effects , Geologic Sediments/chemistry
2.
Mar Environ Res ; 156: 104901, 2020 Apr.
Article in English | MEDLINE | ID: mdl-32056796

ABSTRACT

Microalgae are considered good bioindicators of marine environmental quality. Frequently, they are used to investigate the toxicity of sediment elutriates, but their sensitivity is disputed. This paper compared the sensitivity of Phaeodactylum tricornutum (diatom), Skeletonema costatum (diatom), and Dunaliella tertiolecta (green alga), analyzing 257 samples of elutriates (1:4 sediment: water ratio), considering growth inhibition (72 h) as the reference endpoint and sediment chemical (metals, metalloids and polyaromatic hydrocarbons) and grain size. Results of the toxicity tests showed that the microalgae sensitivity was not correlated. The integration of chemical data did not allow to discriminate toxicity effects but contributed to highlight that D. tertiolecta was the most sensitive microalgae (no cell wall) followed by P. tricornutum and S. costatum. Further analysis, including lines of evidence and weight of evidence approaches to calculate risk quotients of elutriate samples, confirmed these results.


Subject(s)
Diatoms/drug effects , Microalgae/drug effects , Water Pollutants, Chemical/analysis , Environmental Monitoring , Geologic Sediments/analysis , Metalloids/toxicity , Metals/toxicity , Polycyclic Aromatic Hydrocarbons/toxicity , Species Specificity , Toxicity Tests
3.
J Aerosp Eng ; 5(3): 311-22, 1992 Jul.
Article in English | MEDLINE | ID: mdl-11537646

ABSTRACT

A modular inflatable structure consisting of thin, composite membranes is presented for use in a lunar base. Results from a linear elastic analysis of the structure indicate that it is feasible in the lunar environment. Further analysis requires solving nonlinear equations and accurately specifying the geometries of the structural members. A computerized geometric modeling technique, using bicubic Bezier surfaces to generate the geometries of the inflatable structure, was conducted. Simulated results are used to create three-dimensional wire frames and solid renderings of the individual components of the inflatable structure. The component geometries are connected into modules, which are then assembled based upon the desired architecture of the structure.


Subject(s)
Computer Simulation/statistics & numerical data , Ecological Systems, Closed , Extraterrestrial Environment , Facility Design and Construction/instrumentation , Moon , Life Support Systems , Space Flight
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