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Life cycle impact assessment: a challenge for risk analysts.

Modern technology, together with an advanced economy, can provide a good or service in myriad ways, giving us choices on what to produce and how to produce it. To make those choices more intelligently, society needs to know not only the market price of each alternative, but the associated health and environmental consequences. A fair comparison requires evaluating the consequences across the whole "life cycle"--from the extraction of raw materials and processing to manufacture/construction, use, and end-of-life--of each alternative. Focusing on only one stage (e.g., manufacture) of the life cycle is often misleading. Unfortunately, analysts and researchers still have only rudimentary tools to quantify the materials and energy inputs and the resulting damage to health and the environment. Life cycle assessment (LCA) provides an overall framework for identifying and evaluating these implications. Since the 1960s, considerable progress has been made in developing methods for LCA, especially in characterizing, qualitatively and quantitatively, environmental discharges. However, few of these analyses have attempted to assess the quantitative impact on the environment and health of material inputs and environmental discharges Risk analysis and LCA are connected closely. While risk analysis has characterized and quantified the health risks of exposure to a toxicant, the policy implications have not been clear. Inferring that an occupational or public health exposure carries a nontrivial risk is only the first step in formulating a policy response. A broader framework, including LCA, is needed to see which response is likely to lower the risk without creating high risks elsewhere. Even more important, LCA has floundered at the stage of translating an inventory of environmental discharges into estimates of impact on health and the environment. Without the impact analysis, policymakers must revert to some simple rule, such as that all discharges, regardless of which chemical, which medium, and where they are discharged, are equally toxic. Thus, risk analysts should seek LCA guidance in translating a risk analysis into policy conclusions or even advice to those at risk. LCA needs the help of RA to go beyond simplistic assumptions about the implications of a discharge inventory. We demonstrate the need and rationale for LCA, present a brief history of LCA, present examples of the application of this tool, note the limitations of LCA models, and present several methods for incorporating risk assessment into LCA. However, we warn the reader not to expect too much. A comprehensive comparison of the health and environmental implications of alternatives is beyond the state of the art. LCA is currently not able to provide risk analysts with detailed information on the chemical form and location of the environmental discharges that would allow detailed estimation of the risks to individuals due to toxicants. For example, a challenge for risk analysts is to estimate health and other risks where the location and chemical speciation are not characterized precisely. Providing valuable information to decisionmakers requires advances in both LCA and risk analysis. These two disciplines should be closely linked, since each has much to contribute to the other.

Environmental Health↗

Life cycle of the tick Ixodes uriae in penguin colonies: relationships with host breeding activity.

A survey of the temporal pattern of population structure and feeding activity of the seabird tick Ixodes uriae was conducted for the first time in two host species colonies: King penguin (Aptenodytes patagonicus halli) and Macaroni penguin (Eudyptes chrysolophus chrysolophus). The life cycle of the tick was investigated over 3 years in a King penguin colony and 2 years in a Macaroni penguin colony at Possession Island (Crozet Archipelago). There was a marked seasonal feeding activity pattern of ticks in both host species, connected with the presence of birds during the breeding season. Although the King penguin colonies were occupied throughout the year by birds, the favourable period for engorgement was limited to 3.5-4.5 months, and almost all the ticks overwintered in the unengorged state. Consequently, I. uriae probably completed its life cycle over 3 years in King penguin colonies. In contrast, this life cycle could be shortened to 2 years in Macaroni penguin colonies, as a result of a different timetable of the presence of birds for breeding and moulting. The relationships between such plasticity and the host behaviour and subantarctic climatic conditions are discussed.

Animals↗

Youth homelessness in San Francisco: a life cycle approach.

HIV risk behaviors and seroprevalence are particularly high among street youth. Though many programs have been designed to serve them, street youth have low rates of service utilization. The aim of this street-based, ethnographic project was to study the social and cultural context of street life in this population. Data were collected by participant observation, exploratory interviews and semi-structured interviews. Twenty street youth (15-23 years old; six female), recruited from street sites in San Francisco, participated in the interviews. Field notes and transcriptions were analyzed using an inductive technique for model building. This analysis yielded a proposed model of the life cycle of youth homelessness. In the first on the street stage, youth face an intense psychological feeling of outsiderness, and an urgency to meet basic needs. These stresses either lead to an escape from street life or to a process of acculturation to the street. Initiation to the street is facilitated by street mentors, who provide youth with survival skills. In the stasis stage, youth reach a tenuous equilibrium in which they can meet their basic needs. A strong street ethic allows youth to rationalize significant conflicts and frequent physical suffering. Youth in stasis are repeatedly thrown into disequilibrium, crises that frequently cause them to come into greater contact with mainstream society. After repeated episodes of disequilibrium, some youth extricate themselves from street life, finding a new identity in mainstream society. Otherwise, youth return to the street, in an episode of recidivism. The life cycle model suggests that street youth who are most open to intervention are those who are in transitional states, i.e., those who have just arrived on the street or those who are in crisis (disequilibrium). If this model is validated in a larger population of youth, programs that are aimed at these two stages in the life cycle could potentially effectively complement existing programs, which are usually focused on youth in stasis.

Acculturation↗

The life cycle of Reticulitermes spp (Isoptera: Rhinotermitidae): what do we know?

The subterranean termites in the genus Reticulitermes have a complex and plastic life cycle, which has been the subject of a number of publications over the past century. Given the inherent difficulties in studying such cryptic, eusocial organisms it is not perhaps surprising that the literature on their biology has failed to reach a consensus. An overview of the literature is given, which is followed by a discussion of the various theories on the life cycle of Reticulitermes spp. A substantial proportion of the review focuses on the French literature, which constitutes the majority of the primary sources and can be difficult to access. There are many discrepancies in the literature in terms of the number of instars, the definition of workers and the question of whether they should be termed pseudergates or, potentially, an additional terminology used to differentiate between pseudergates and the true workers seen in the higher termites (Isoptera: Termitidae). It remains very difficult to compare publications as there is little conformity; a problem that is aggravated by a general absence of drawings of the relevant instars. Further work on the biology of Reticulitermes is clearly required. There is also a need for researchers to agree on a standard terminology for this genus. A glossary is provided for the various synonyms and definitions.

Animals↗

Description of the life-cycle of the pearl millet rust fungus--Puccinia substriata var. penicillariae with a proposal of reducing var. indica to a synonym.

Pearl millet (Pennisetum glaucum) is a major staple food crop in the drier parts of the old world, like Africa and India. Recently, its cultivation became more widespread in no-tillage crop farming systems in central Brazil, but it is also being used for cultivation during the dry season in other areas in Brazil. An emerging problem for the wider adoption of this crop in Brazil is the damage caused by the rust Puccinia substriata. This fungal disease is among the worst limitations for this crop worldwide. The rust occurring in Brazil was initially identified as the P. substriata var. penicillariae, but little information on the taxonomy and life-cycle of this rust is available in Brazil. The life-cycle of this rust variety remains somewhat obscure and the connection between the telial stage on pearl millet and the aecial stage on Solanaceae has never been experimentally demonstrated. Natural infection and inoculations under controlled conditions allowed for a complete description of all stages of this rust and the elucidation of its life-cycle, confirming that Solanum aethiopicum and Solanum melongena are aecial hosts. This coincidence for the alternate host and the limited and ambiguous morphological basis for the distinction of the varieties penicillariae and indica support the view that they are synonyms. Var. indica should be regarded as a late synonym of var. penicillariae.

Basidiomycota↗

Chitosomes and chitin synthetase in the asexual life cycle of Mucor rouxii: spores, mycelium and yeast cells.

To help understand the subcellular machinery responsible for cell wall formation in a fungus, we determined the abundance and subcellular distribution of chitin synthetase (chitin synthase, EC 2.4.1.16) and chitosomes in the asexual life cycle of Mucor rouxii. Cell-free extracts of ungerminated sporangiospores, hyphae/mycelium in exponential and stationary phase, and yeast cells were fractionated by isopycnic centrifugation in sucrose density gradients. The total amount of chitin synthetase per cell increased exponentially during aerobic germination of spores. In all developmental stages, the profile of chitin synthetase activity encompassed a broad range of sucrose density (d = 1.12-1.22) with two distinct zones: a low-density chitosome zone (d = approx. 1.12-1.16) and a high-density, mixed-membrane zone (d = approx. 1.16-1.22). Chitosomes were a major reservoir of chitin synthetase in all stages of the life cycle, including ungerminated spores. Two kinds of chitin synthetase profiles were recognized and correlated with the growth state. In nongrowing cells (ungerminated sporangiospores and stationary-phase mycelium), the profile was skewed toward lower densities with a sharp chitosome peak at d = 1.12-1.13. In actively growing cultures (aerobic mycelium or anaerobic yeast cells), the entire profile of chitin synthetase was displaced toward higher densities; the average buoyant density of chitosomes was higher (d = 1.14-1.16), and more chitin synthetase was associated with denser (d = 1.16-1.23) membrane fractions. In all life cycle stages, chitosomal chitin synthetase was almost completely zymogenic. In contrast to the enzyme from spores or from growing cells, samples of chitosomal chitin synthetase from stationary-phase mycelium were unstable and contained a high proportion of larger vesicles in addition to the typical microvesicles. The presence of chitosomes in ungerminated spores indicates that these cells are poised to begin synthesizing somatic (= vegetative) cell walls at the onset of germination. The increased buoyant density of chitosomes in actively growing cultures suggests that the composition of these microvesicles changes significantly as they mobilize chitin synthetase to the cell surface.

Aerobiosis↗

Evaluation of life-cycle herd efficiency in cow-calf systems of beef production.

A deterministic beef efficiency model (BEM) was used to evaluate life-cycle herd efficiency (LCHE) in cow-calf beef production systems using four breed groups of beef cattle. The breed groups were Beef Synthetic #1 (SY1), Beef Synthetic #2 (SY2), Dairy Synthetic (DS), and purebred Hereford (HE). The LCHE was defined over the lifetime of the herd as the ratio of total output (lean meat equivalent) to total input (feed equivalent). Breed differences in LCHE were predicted with the larger/slower maturing DS being most efficient at each age of herd disposal and reproductive rate. This was mainly because, at any average age at culling, the dams of DS breed group were less mature and so had been carrying relatively lower maintenance loads for shorter periods and positively influencing LCHE. Higher LCHE was predicted with improvement in reproductive performance if there were no associated extra costs. However, this declined markedly if there was a delay in marketing of offspring. As average age at culling increased from 4 to 6 yr, efficiency declined sharply, but it began to recover beyond this age in most breed groups. We concluded that the slower maturing DS breed group may be more efficient on a herd basis in cow-calf systems and that improvements in reproductive rate not associated with extra costs improve life-cycle efficiency. Culling cows soon after their replacements are produced seems efficient.

Animal Husbandry↗

AdEasy-based cloning system to generate tropism expanded replicating adenoviruses expressing transgenes late in the viral life cycle.

Replicating adenoviral vectors (RAds) hold great promise for the treatment of cancer. Significant therapeutic effects of these vectors do not only rely on tumor targeting but also on efficient release of viral progeny from host cells. Cytotoxic genes expressed late in the adenoviral life cycle can significantly enhance viral release and spreading. Therefore, an adenoviral cloning system that allows easy integration of established tumor targeting techniques together with late expression of transgenes can be a valuable tool for the development of RAds. We expanded the features of the widely used AdEasy adenoviral cloning system toward the production of tropism modified replicating adenoviral vectors that express transgenes late in the viral life cycle. Three vectors (pIRES, pFIBER and pAdEasy-Sce) that facilitate easy manipulation of the adenoviral fiber region were established. Unique BstBI and I-Sce-1 restriction sites facilitate the introduction of retargeting peptides in the fiber HI-loop and of genes of interest in the fiber transcription unit. We validated the system by constructing an E1-positive adenovirus with an RGD motif in the fiber HI-loop and green fluorescent protein (GFP) expressed from the fiber transcription unit (AdDelta24Fiber-rgd-GFP). Additionally, assessment of E1-negative replication-deficient vectors confirmed strict dependence upon E1 expression for the expression of transgenes inserted into the fiber transcription unit. This flexible cloning system allows for straightforward construction of tropism expanded replicating adenoviral vectors that express transgenes late in the adenoviral life cycle.

Adenoviridae↗

Sex differences in life cycle measures of widowhood.

Using formulas which measure life cycle characteristics of widowhood as a function of life table survivorship and age at marriage, we illustrate changes in patterns of widowhood and widowerhood since 1950, as well as differences by race, by age of bride and of groom, and by age differences between spouses. Although the current inequality in the risks of widowhood and widowerhood for the average couple is mostly due to sex differences in mortality, a one year age difference between spouses has about the same impact as does a one year difference in life expectancy. Calculations based on current distributions of age of groom by age of bride indicate that the older the age of groom, the greater the age difference between spouses and the higher the likelihood of a woman outliving her husband: the typical groom who marries in his fifties faces a 4 to 1 chance that he will be outlived by his spouse.

Adult↗

Comparative life cycle assessment of standard and green roofs.

Life cycle assessment (LCA) is used to evaluate the benefits, primarily from reduced energy consumption, resulting from the addition of a green roof to an eight story residential building in Madrid. Building energy use is simulated and a bottom-up LCA is conducted assuming a 50 year building life. The key property of a green roof is its low solar absorptance, which causes lower surface temperature, thereby reducing the heat flux through the roof. Savings in annual energy use are just over 1%, but summer cooling load is reduced by over 6% and reductions in peak hour cooling load in the upper floors reach 25%. By replacing the common flat roof with a green roof, environmental impacts are reduced by between 1.0 and 5.3%. Similar reductions might be achieved by using a white roof with additional insulation for winter, but more substantial reductions are achieved if common use of green roofs leads to reductions in the urban heat island.

Conservation of Energy Resources↗

Life-cycle description and comparison of Diplostomum spathaceum (Rudolphi, 1819) and D. pseudobaeri (Razmaskin & Andrejak, 1978) from rainbow trout (Oncorhynchus mykiss Walbaum) maintained in identical hosts.

Precise identification of members of the genus Diplostomum is difficult in that many larval stages have been described and named separately from their adult forms. In this study, the life cycles of two Diplostomum spp. were established using metacercariae obtained from the eyes of rainbow trout. The parasites were identified as D. spathaceum and D. pseudobaeri using a procedure and key devised by Shigin. Each life cycle was completed in the laboratory using domestic chickens (Gallus gallus domesticus L.) as definitive hosts and Lymnaea peregra (Muller) and rainbow trout as first and second intermediate hosts, respectively. Utilizing identical hosts minimised host-induced morphological variations and allowed comparisons of anatomical features to be made. Light and scanning electron microscopy were used to study each developmental stage and detailed descriptions of the life cycles were compiled. The results obtained may go some way to resolving the confusion that surrounds Diplostomum taxonomy.

Animals↗

Politics and the life cycle.

The study of politics and the life cycle began with a rather single-minded focus on childhood and the family-on the idea, as Tocqueville famously put it, that the entire person could be "seen in the cradle of the child." Politics does begin in childhood, and parents do influence their offspring, but change takes place over the entire span of life. I take up the early emergence of partisanship and essentialism, the formation of generations, politically consequential transitions in adulthood, and the rising of politics and its final decline.

Adolescent↗

Variation in the life cycle and morphology of the tobacco host-race of Myzus persicae (Hemiptera: Aphididae) in relation to its geographical distribution.

Morphological variation and life cycle category were examined in 121 clones of Myzus persicae (Sulzer). The clones were collected from tobacco from three localities in Greece (Xanthi, Nea Efessos and Naphplion), one in Germany (Rheinstetten), one in France (Bergerac) and one in Spain (Madrid). Before morphometrics, all aphids were laboratory-reared on potato. The morphological variation was investigated using both canonical variates analysis and a novel non-parametric classification tree method. The life cycle category was examined by rearing the clones for three generations under short day conditions. In Nea Efessos a relative high proportion of clones was found to overwinter as eggs on the primary host. In the other regions all collected clones were non-holocyclic. Intermediate genotypes were found in all regions at percentages ranging from 4.0 to 24.0%. Androcyclic clones were found only in Xanthi, Greece (4.0%) and Rheinstetten, Germany (16.7%). The canonical variates analysis and the tree classification method revealed important intrapopulation polymorphisms in clones from Bergerac, Nea Efessos and Madrid. Both methods separated the populations originating from Greece from those collected elsewhere in western Europe. The observed morphological variation was probably due to genetic differences, since all clones were reared in a common environment. The results are discussed in relation to factors responsible for genetic divergence in M. persicae populations.

Animals↗

A survey report on the life cycle of the Chinese elderly.

"In August 1992...the Chinese-Japanese Survey Group on the Life Cycle of the Elderly conducted a sample survey on the life experience and status quo of the elderly in Zhejiang Province and the City of Shanghai, which covered 1,583 urban and rural elderly at or above the age of 60....[The aim was to] not only help change the attitudes towards reproduction among women at child-bearing age, but also contribute to a well-drafted development program for the elderly care system in China so as to prepare the country for the situation after the 2020s when the parents of only children become senior citizens."

Adult↗

Acanthocheilonema viteae: rational design of the life cycle to increase production of parasite material using less experimental animals.

The maintenance of the life cycle of Acanthocheilonema viteae is described with the aim to increase the production of parasite material using less experimental animals. The filaria was maintained in jirds (Meriones unguiculatus) and in soft ticks (Ornithodoros moubata). The optimal infection dosis for jirds was 80 infective larvae (L3). The mean worm number in groups of animals varied between 18 and 30 adult worms. A stable microfilaremia developed and only few animals developed pathological alterations as a consequence of the infection. A simple membrane feeding apparatus allowed mass feeding of ticks. Infection of ticks with microfilariae (mf) using this technique resulted in a mean no. of 594 +/- 527.2 L3/tick. L3 and mf were cryopreserved in liquid N2 with a simple technique. The described maintenance of the life cycle reduced the amount of required experimental animals to 30-40% of the originally needed numbers.

Animals↗

Life-cycle assessment as an environmental management tool in the production of potable water.

The environmental life cycle assessment (LCA) methodology was used in this study to calculate and compare the environmental burdens resulting from two different methods employed in the production of potable water in South Africa. One method employs conventional processes for the treatment of water and the other one is based on membrane filtration. All inputs (raw materials and energy) and outputs (products, by-products and emissions to air, water and soil) from the two methods were listed and quantified. These inputs and outputs cause different environmental impacts (global warming, ozone depletion, smog formation, acidification, nutrient enrichment, ecotoxicity and human toxicity) and the contribution of each method to each of these impact categories has been quantified, resulting in a score. The ISO (International Organisation for Standardisation) methodological framework for life cycle assessments guided this study. By using these methodologies and by tracing all the processes involved in the production of potable water to the interface with the environment, it was found that the main contributor to the overall environmental burden is the generation of electricity. This conclusion is valid for both methods investigated and in order to increase the environmental performance in the production of potable water the energy efficiency of waterworks should be increased.

Environment↗

A novel purine nucleoside transporter whose expression is up-regulated in the short stumpy form of the Trypanosoma brucei life cycle.

Purine nucleoside and nucleobase transporters play a vital role in the metabolism and survival of Trypanosoma brucei because this parasitic protozoan is unable to synthesize purines de novo and thus must acquire preformed purines from its hosts. These parasites express a variety of nucleoside and nucleobase permeases with diverse substrate specificities and distinct patterns of expression during the trypanosome life cycle. We report here that expression of the newly characterized T. brucei nucleoside transporter 10 gene (TbNT10) is up-regulated in the short stumpy form of the life cycle, the bloodstream form of the parasite that is pre-adapted for infection of the tsetse fly vector. Functional expression of TbNT10 in Saccharomyces cerevisiae reveals that the TbNT10 gene encodes an adenosine/guanosine/inosine transporter with apparent Km values of approximately 1 microM and hence is a high affinity purine nucleoside transporter. The restricted expression of TbNT10 during the life cycle suggests that the functional properties of this permease may be specialized to support development and growth of the differentiated short stumpy form or to promote the transformation of short stumpy to procyclic forms within the insect vector.

Amino Acid Sequence↗

Multiple origin of the dihomoxenous life cycle in sarcosporidia.

Although their ssrRNA gene sequences are closely related, the lizard sarcosporidia (Apicomplexa, Sarcocystidae) Sarcocystis lacertae and Sarcocystis gallotiae posses heteroxenous and dihomoxenous life cycles, respectively. When aligned with available sarcosporidian ssrRNA genes, both species constitute a monophyletic clade that is only distantly related with sarcosporidia that have a viperid snake as their definitive host (Sarcocystis sp., Sarcocystis atheridis). To test the phyletic status of the dihomoxenous life style, Sarcocystis rodentifelis and Sarcocystis muris, two dihomoxenous parasites of mammals were included into this study. All studied species group together with former Frenkelia spp., Sarcocystis neurona and related marsupial and bird sarcosporidia in a monophyletic clade. However, the available dataset supports independent appearance of the dihomoxenous life cycle at least twice during the evolution of the Sarcocystidae.

Animals↗