27 resultados para Diversity of Brachyuran crabs

em Deakin Research Online - Australia


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A range of critical care nursing educational courses exist throughout Australia. These courses vary in level of award, integration of clinical and academic competence and desired educational outcomes; this variability potentially leads to confuson by stakeholders regarding educational and clinical outcomes. The study objective was to describe the range of critical care nursing courses in Australia. Following institutional ethics approval, all relevant higher education providers (n=18) were invited to complete a questionnaire about course structure, content and nomenclature. Information about desired professional and general graduate characteristics and clinical competency was also sought.

A total of 89% of providers (n=16) responded to the questionnaire. There was little consistency in course structure in regard to the proportion of each programme devoted to core, speciality or generic subjects. In general, graduate certificate courses concentrated on core aspects of critical care, graduate diploma courses provided similar amounts of critical care core and speciality content, while master's level courses concentrated on generic nursing issues. The majority of courses had employment requirements, although only a small proportion specified the minimum level of critical care unit required for clinical experience. The competency standards developed by the Australian College of Critical Care Nurses (ACCCN) were used by 83% of providers, albeit in an adapted form, to assess competency. However, only 60% of programmes used personnel with a combined clinical and educational role to assess such competence.

In conclusion, stakeholders should not assume consistency in educational and clinical outcomes from critical care nursing education programmes, despite similar nomenclature or level of programme. However, consistency in the framework for speciality nurse education has the potential to prove beneficial for all stakeholders.

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This study explored the diversity of emergency code telephone numbers currently in use in Australian hospitals and examined the feasibility of a standard emergency code telephone number for all Australian hospitals, based on the United Kingdom experience. An email and telephone convenience survey of Australian hospitals from six states and two territories was conducted. Of the 108 hospitals surveyed, seven did not use a telephone number system and used a button/ pager system to call an emergency. Of the 101 hospitals surveyed that used a telephone number system, 40 different emergency telephone numbers were in place, and in nine hospitals the telephone number used for Code Blue (medical emergency) was different to the telephone number used for other emergency codes. With increasing mobility of staff across hospitals, uniformity of emergency code telephone numbers is required to reduce confusion, potential danger and improve staff response in emergency situations. A single Australian standard emergency telephone number for all Australian hospitals is advocated.

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Tor tambroides and T. douronensis, locally referred to as empurau and semah, respectively, are high valued mahseer species, indigenous to Sarawak, East Malaysia, with an aquaculture potential and of conservational value. Direct sequencing of mitochondrial DNA (mtDNA) 16S rRNA gene region (542 bp) was used to investigate genetic variation of T. tambroides and T. douronensis broodstock collected from different geographic locations in Sarawak and maintained at the Indigenous Fish Research and Production Center (IFRPC), Tarat, Sarawak, Malaysia. A total of 11 unique haplotypes were identified, of which six were detected in T. tambroides, and five in T. douronensis. Overall, nucleotide diversity (π) was low, ranging from 0.000 to 0.006, and haplotype diversity (h) ranged from 0.000 to 0.599. Although the analysis failed to detect genetic variation amongst populations of T. tambroides (significant pairwise FST was found for only one test, but pairwise haplotype frequencies were not statistically significant), substantial inter-population divergence among T. douronensis was recognised, especially those originating from different river systems (pairwise FST = 0.754 to 1.000, P < 0.05). Fixed haplotype differences were found in one population of T. douronensis. Average nucleotide divergence between T. tambroides and T. douronensis was 0.018, similar to the amount recognised between T. tambroides and the outgroup T. khudree (0.017). In addition, phylogenetic analysis revealed that the T. douronensis mtDNA consisted of two highly divergent clusters (0.020), one of which is more closely related to T. tambroides rather than with the other group of haplotypes of the conspecifics. The findings from the present study have important implications for aquaculture, management and conservation of these two species. The data also raise some concerns regarding the taxonomic status of T. douronensis, which needs to be addressed.

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Although there is general agreement that diversity is a feature of doctoral education in Australia, there are various forms and levels of diversity, many of which are not captured by analyses that rely on categories for analysing the doctoral education population that are those commonly used in education at the undergraduate level, such as sex, age, mode of study, type of enrolment, citizenship, and Broad Field of Study, etc. These categories primarily reflect concerns to do with funding and issues of participation and equity. Our analysis of data from a national survey of doctoral candidates carried out in 2005 as part of a Linkage Grant project “Reconceptualising the doctoral experience’, suggests that not all of these categories are relevant to critical concerns for doctoral education. Nor do analyses at a macro-level represent the particularity of the doctoral experience. They can mask the reality of a highly variable student population, and one that is not necessarily represented accurately or helpfully by ascribing group identities.

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Catfishes of the family Pangasiidae are an important group that contributes significantly to the fisheries of the Mekong River basin. In recent times the populations of several catfish species have declined, thought to be due to overfishing and habitat changes brought about by anthropogenic influences. The Mekong giant catfish Pangasianodon gigas Chevey, 1913 is listed as Critically Endangered on the IUCN Red List. In the present study, we assessed the level of genetic diversity of nine catfish species using sequences of the large subunit of mitochondrial DNA (16S rRNA). Approximately 570 base pairs (bp) were sequenced from 672 individuals of nine species. In all species studied, haplotype diversity and nucleotide diversity ranged from 0.118±0.101 to 0.667±0.141 and from 0.0002±0.0003 to 0.0016±0.0013, respectively. Four haplotypes were detected among 16 samples from natural populations of the critically endangered Mekong giant catfish. The results, in spite of the limited sample size for some species investigated, indicated that the level of genetic variation observed in wild populations of the Mekong giant catfish (haplotype diversity=0.350±0.148, nucleotide diversity=0.0009±0.0008) is commensurate with that of some other related species. This finding indicates that (1) wild populations of the Mekong giant catfish might be more robust than currently thought or (2) present wild populations of this species carry a genetic signature of the historically larger population(s). Findings from this study also have important implications for conservation of the Mekong giant catfish, especially in designing and implementing artificial breeding programme for restocking purposes.

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Sequence variation of the mitochondrial DNA 16S rRNA region of the Asian moon scallop, Amusium pleuronectes, was surveyed in seven populations along the coast of Thailand. A total of 16 unique haplotypes were detected among 174 individuals with a total 27 variable sites out of 534 bp sequenced. The mitochondrial haplotypes grouped into two distinct arrays (estimated to differ by about 2.62% to 2.99% nucleotide divergence) that characterized samples collected from the Gulf of Thailand versus the Andaman Sea. Low levels of intrapopulation variation were observed, while in contrast, significant divergence was observed between populations from the Gulf of Thailand and Andaman Sea. Results of AMOVA reveal a high F ST value (0.765) and showed that the majority of the total genetic variance (76.03%) occurred among groups (i.e., Andaman Sea and the Gulf of Thailand) and little among populations within the group (0.52%) and within populations (23.45%). The genetic differentiation between the populations recorded in the present study is similar to that observed in a variety of marine species in the Indo-Pacific. The implications of the findings for management of A. pleuronectes genetic resources in Thailand are discussed.

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Australian rainbow and brown trout were analysed using molecular genetic techniques to determine the effect translocation has had on the existing gene pool. There was some indication of loss of diversity associated with their translocation however no differences in genetic diversity between Australian hatchery and wild populations were apparent.

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Four structural classes have been established for rare earth anthranilates, which have been prepared from the lanthanoid chloride or triflate and anthranilic acid (anthH) followed by pH adjustment to 4. [La(anth)3]n is a polymeric complex with nine coordinate lanthanum and bridging tridentate (O,O,O′) anthranilate ligands, whereas [Nd(anth)3(H2O)3] · 3H2O is monomeric with nine coordinate neodymium and solely chelating (O,O) anthranilate groups. Both chelating (O,O) and bridging bidentate (O,O′) ligands are observed in dimeric [Er2(anth)6(H2O)4] · 2H2O, in which erbium is eight coordinate and the water ligands are in a trans arrangement. A polymer is observed for [Yb(anth)3(H2O)]n with solely bridging bidentate (O,O′) ligands and seven coordination for ytterbium. The NH2 groups of the anthranilate ligands are not coordinated to the metal but is unusually involved in hydrogen-bond networks with water molecules for Ln = Er, Yb.

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Although there is general agreement that doctoral students and their experiences are diverse, in what respect this is true is in question. Most institutional practices in the collection of data in this regard have been established to satisfy government reporting requirements and concerns, such as funding, participation and equity, and efficiency. Missing is more detailed and nuanced quantitative data and analysis, complementary to those of qualitative studies, to illuminate the nature and extent of doctoral student diversity and the effects on the quality of their candidacy. Drawing on select data and findings from a national survey of Australian doctoral candidates conducted in 2005, the article questions the utility of commonly used categories for quantitative data collection and analysis, and their use as the basis of (sub)groupings to represent doctoral diversity. In so doing, it presents a more complex picture of doctoral candidature that depicts the idiosyncrasy of the individual experience, as well as generic characteristics. Central to the argument is that doctoral candidates are diversely different, bringing varying goals, expectations, career histories and family and community responsibilities beyond the academy, that shape their engagement with their candidacy.

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It is important for practitioners to know about the distribution of the sixteen psychological types in the country in which they operate. For instance: Are more females with Feeling preferences found in particular occupational categories? Can you make valid distinctions on the basis of the types found in sales workers compared with other categories? What are the differences in the Australian distribution of psychological types compared with the UK and USA? Participants in this workshop will be encouraged to make connections between their own experience of the diversity of types and a recently developed Australian Census Population Type Table which for the first time approaches a national probability sample. We will explore the patterns of type distribution in Australia, and compare the data with national population Type Tables developed in the UK and the USA.