302 research outputs found

    Algal Viruses: The (Atomic) Shape of Things to Come

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    This is the final version. Available on open access from MDPI via the DOI in this recordVisualization of algal viruses has been paramount to their study and understanding. The direct observation of the morphological dynamics of infection is a highly desired capability and the focus of instrument development across a variety of microscopy technologies. However, the high temporal (ms) and spatial resolution (nm) required, combined with the need to operate in physiologically relevant conditions presents a significant challenge. Here we present a short history of virus structure study and its relation to algal viruses and highlight current work, concentrating on electron microscopy and atomic force microscopy, towards the direct observation of individual algae⁻virus interactions. Finally, we make predictions towards future algal virus study direction with particular focus on the exciting opportunities offered by modern high-speed atomic force microscopy methods and instrumentation.The previously unpublished AFM images shown in this manuscript were generated in the Plymouth Marine Laboratory and University of Exeter Environmental Single Cell Genomics Facility which was supported by the UK’s Natural Environment Research Council (NERC) and The Wolfson Foundation. C.T.E. is supported by an EPSRC and Bristol Nano Dynamics Ltd PhD studentship

    Embracing Deference

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    A fundamental conceptual problem has long dogged discussions about scientific and other expert evidence in the courtroom. In American law, the problem was most famously posed by Judge Learned Hand, who asked: [H]ow can the jury judge between two statements each founded upon an experience confessedly foreign in kind to their own? It is just because they are incompetent for such a task that the expert is necessary at all. This puzzle, sometimes known as the expert paradox, is quite general. It applies not only to the jury as factfinder, but also to the judge as gate- keeper under the Daubert v. Merrell Dow Pharmaceuticals, Inc. regime and Federal Rule of Evidence 702. It also applies when there is no jury at all, whether in a bench trial, administrative proceeding, or civil law jurisdiction. When it comes to scientific and other specialized knowledge, legal actors are inevitably non-experts. And if legal actors are faced with the so- called battle of the experts, how are they to decide between the warring experts? After all, to quote Judge Hand again, [i]t is just because they are incompetent for such a task that the expert is necessary at all. As one of us has previously argued, because of this epistemic competency problem, the Daubert approach to expert evidence is a mistake. The solution to the problem of expert evidence is not judicial gatekeeping, but rather to change the substantive question asked of legal actors

    Effectiveness of Occupational Therapy’s Role in Promotion of Role Fulfillment with Aviation Students in Higher Education who are Experiencing Mental Health Conditions

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    This critically appraised topic paper focuses on occupational therapy’s role and the interventions for improving the mental health of aviation students in higher education. Aviation students are higher education student pilots learning to become pilots within various roles. Stress and fatigue among students in higher education are prominent problems (Beiter, 2015; Kalmakis et al., 2021). The focus on aviation students for this critically appraised topic paper reveals the unique stressors relating to flight training that is added on top of the normal academic stress load that university students face (Robertson & Ruiz, 2010). Due to these stress factors, the mental health of aviation students is negatively impacted and can affect their role fulfillment as aviation students. Higher level education has been defined in this critically appraised topic paper as institutions providing study beyond the level of secondary education, such as colleges and universities, community colleges, and vocational and technical schools (National Center on Safe Supportive Learning Environments, 2023)

    A Non-Destructive, Tuneable Method to Isolate Live Cells for High-Speed AFM Analysis

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    Suitable immobilisation of microorganisms and single cells is key for high-resolution topographical imaging and study of mechanical properties with atomic force microscopy (AFM) under physiologically relevant conditions. Sample preparation techniques must be able to withstand the forces exerted by the Z range-limited cantilever tip, and not negatively affect the sample surface for data acquisition. Here, we describe an inherently flexible methodology, utilising the high-resolution three-dimensional based printing technique of multiphoton polymerisation to rapidly generate bespoke arrays for cellular AFM analysis. As an example, we present data collected from live Emiliania huxleyi cells, unicellular microalgae, imaged by contact mode High-Speed Atomic Force Microscopy (HS-AFM), including one cell that was imaged continuously for over 90 min

    The UK Crop Microbiome Cryobank: a utility and model for supporting Phytobiomes research

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    Plant microbiomes are the microbial communities essential to the functioning of the phytobiome—the system that consist of plants, their environment, and their associated communities of organisms. A healthy, functional phytobiome is critical to crop health, improved yields and quality food. However, crop microbiomes are relatively under-researched, and this is associated with a fundamental need to underpin phytobiome research through the provision of a supporting infrastructure. The UK Crop Microbiome Cryobank (UKCMC) project is developing a unique, integrated and open-access resource to enable the development of solutions to improve soil and crop health. Six economically important crops (Barley, Fava Bean, Oats, Oil Seed Rape, Sugar Beet and Wheat) are targeted, and the methods as well as data outputs will underpin research activity both in the UK and internationally. This manuscript describes the approaches being taken, from characterisation, cryopreservation and analysis of the crop microbiome through to potential applications. We believe that the model research framework proposed is transferable to different crop and soil systems, acting not only as a mechanism to conserve biodiversity, but as a potential facilitator of sustainable agriculture systems
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