Publications by authors named "Sam Edwards"

Article Synopsis
  • The study investigates the genotype-by-genotype (GxG) interactions between the obligate fungal pathogen Entomophthora muscae and various dipteran fly hosts, highlighting how both the fungal and host genotypes influence infection dynamics.
  • Researchers collected new isolates of E. muscae from Drosophila species and discovered that these isolates formed a distinct lineage, which was confirmed by phylogenetic analysis indicating geographical variation in host-specificity.
  • Experimental results showed that while house flies displayed a high susceptibility to E. muscae with 99% mortality, different Drosophila species had lower mortality rates, thus demonstrating the impact of host genotype on pathogen virulence.
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Insect pathogenic fungi (IPF) and insects have ubiquitous interactions in nature. The extent of these interkingdom host-pathogen interactions are both complex and diverse. Some IPF, notably of the order Entomophthorales, manipulate their species-specific host before death.

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Termites are widely used as a food resource, particularly in Africa and Asia. Markets for insects as food are also expanding worldwide. To inform the development of insect-based foods, we analysed selected minerals (Fe-Mn-Zn-Cu-Mg) in wild-harvested and commercially available termites.

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Spatial saturation studies using source-specific chemical tracers are commonly used to examine intra-urban variation in exposures and source impacts, for epidemiology and policy purposes. Most such studies, however, has been performed in North America and Europe, with substantial regional combustion-source contributions. In contrast, Auckland, New Zealand, a large western city, is relatively isolated in the south Pacific, with minimal impact from long-range combustion sources.

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During winter nights, woodsmoke may be a predominant source of air pollution, even in cities with many sources. Since two major earthquakes resulted in major structural damage in 2010 and 2011, reliance on woodburning for home heating has increased substantially in Christchurch, New Zealand (NZ), along with intensive construction/demolition activities. Further, because NZ is a relatively isolated western country, it offers the unique opportunity to disentangle multiple source impacts in the absence of long-range transport pollution.

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To prepare graduate nurses for practice, the curriculum and pedagogy need to facilitate student engagement, active learning and the development of self-efficacy. This pilot project describes and explores an initiative, the Check-in and Check-out process, that aims to engage students as active partners in their learning and teaching in their clinical preparation for practice. Three interdependent elements make up the process: a check-in (briefing) part; a clinical practice part, which supports students as they engage in their learning and practise clinical skills; and a check-out (debriefing) part.

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Inflammatory bowel disease (IBD) management is increasingly concentrated in units with expertise in the condition leading to substantial improvement in outcomes. Such units often employ nurses with a specialised interest in IBD with enhancements in care reflecting in part the promotion of more efficient use of medical and hospital services by this role. However, the relative contributions of nurse specialist input, and the effect of medical staff with a sub-speciality interest in IBD are unclear although this has major implications for funding.

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We discuss the statistical mechanics of granular matter and derive several significant results. First, we show that, contrary to common belief, the volume and stress ensembles are interdependent, necessitating the use of both. We use the combined ensemble to calculate explicitly expectation values of structural and stress-related quantities for two-dimensional systems.

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Conflicting data exist concerning the accuracy of esophageal capsule endoscopy (ECE) for the screening of varices. No study has examined the influence of operator factors on the accuracy of ECE reporting. The primary aims of this study were, therefore, to examine how operator experience with esophagogastroduodenoscopy (EGD) and operator reporting times of capsule videos influenced test accuracy.

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We discuss the microstates of compressed granular matter in terms of two independent ensembles: one of volumes and another of boundary force moments. The former has been described in the literature and gives rise to the concept of compactivity: a scalar quantity that is the analogue of temperature in thermal systems. The latter ensemble gives rise to another analogue of the temperature: an angoricity tensor.

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Article Synopsis
  • The paper aims to create a volume function (W) for polymer glasses and determine their volume based on compactivity (X) using a statistical-mechanical approach tailored for semiflexible polymers.
  • It highlights the relevance of statistical mechanics and entropy concepts in understanding the behavior of polymer glasses.
  • The research draws parallels between polymer glasses and "tapping" experiments commonly used for powders to validate its methodology.
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The slow dynamics of granular flow is studied as an extension of static granular problems, which, as a consequence of shaking or related regimes, can be studied by the methods of statistical mechanics. For packed (i.e.

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This paper proposes a new volume function for calculation of the entropy of planar granular assemblies. This function is extracted from the antisymmetric part of a new geometric tensor and is rigorously additive when summed over grains. It leads to the identification of a conveniently small phase space.

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In particulate materials, such as emulsions and granular media, a "jammed" system results if particles are packed together so that all particles are touching their neighbours, provided the density is sufficiently high. This paper studies through experiment, theory and simulation, the forces that particles exert upon one another in such a jammed state. Confocal microscopy of a compressed polydisperse emulsion provides a direct 3D measurement of the dispersed phase morphology within the bulk of the sample.

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