543 research outputs found

    Applying Accelerator Mass Spectrometry for Low-Level Detection of Complex Engineered Nanoparticles in Biological Media

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    Complex engineered nanoparticles (CENPs), which have different core and surface components, are being developed for medicinal, pharmaceutical and industrial applications. One of the key challenges for environmental health and safety assessments of CENPs is to identify and quantity their transformations in biological environments. This study reports the effects of in vivo exposure of citrate-coated nanoalumina with different rare isotope labels on each component. This CENP was dosed to the rat and accelerator mass spectrometry (AMS) was used to quantify 26Al, 14C, and their ratio in the dosing material and tissue samples. For CENPs detected in the liver, the rare isotope ratio, 14C/26Al, was 87% of the dosing material\u27s ratio. The citrate coating on the nanoalumina in the liver was stable or, if it degraded, its metabolites were incorporated with nearby tissues. However, in brain and bone where little alumina was detected, the rare isotope ratio greatly exceeded that of the dosing material. Therefore, in the animal, citrate dissociated from CENPs and redistributed to brain and bone. Tracking both the core and surface components by AMS presents a new approach for characterizing transformations of CENPs components in biological milieu or environments

    Prevalence of radiographic findings in candidate sires (2001-2008)

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    Radiographic screening of horses prior to purchase or admission to studbooks has become an important tool for evaluating the osteo-articular status of the animals. Developmental orthopedic disorders (DOD) are the main cause of potential lameness in youngsters. The genetic factor associated with DOD has been established, and specific selection schemes have been developed to diminish the prevalence of lesions. Increasing knowledge of prevalence in different breeds may help in developing specific breeding strategies. This article presents the results of the radiographic screening of 676 stallions presented for sire admission to the Royal Belgian Sports Horse Society (Studbook sBs). On average, two radiographic findings were noted per horse. The prevalence of DOD in this population was 38.9%. A high percentage of horses showed radiographic signs of effusion of the distal interphalangeal joint. An uncommon fragment location at the proximal tubercle of the talus was found in 7 horses. The present paper presents a review and discussion of all the radiographic findings

    Establishing Normative Values for the Barnett Balance Assessment Tool: A Preliminary Study

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    The purpose of this study was to establish normative data for the Barnett Balance Assessment (BBA) for individuals ages 18-70+ years. The BBA is a newly developed assessment tool that may address limitations present in other assessments currently used to detect balance deficits. The BBA was administered to 141 participants who had no history of medical issues that could impact balance. A review of the normative data collected indicated little variation in total assessment scores in the age categories of 18-29, 30-39, and 40-49, due to the presence of a ceiling effect. Variations existed in scores among participants in the remaining age categories (50-59, 60-69, and 70+). These findings may imply that the BBA has its greatest discriminative power in assessing individuals with impaired balance, and/or that the BBA is not sensitive enough to detect differences in individuals with mild balance impairments. The researchers suggest future studies be conducted with the BBA to establish norms with populations with known orthopedic or neurological conditions that may impair balance. Results of these studies could then be compared with the baseline data gathered in this study to determine the BBA’s usefulness in detecting balance impairments with clinical populations

    Local kernel canonical correlation analysis with application to virtual drug screening

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    Drug discovery is the process of identifying compounds which have potentially meaningful biological activity. A major challenge that arises is that the number of compounds to search over can be quite large, sometimes numbering in the millions, making experimental testing intractable. For this reason computational methods are employed to filter out those compounds which do not exhibit strong biological activity. This filtering step, also called virtual screening reduces the search space, allowing for the remaining compounds to be experimentally tested

    Two-dimensional turbulence in magnetised plasmas

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    In an inhomogeneous magnetised plasma the transport of energy and particles perpendicular to the magnetic field is in general mainly caused by quasi two-dimensional turbulent fluid mixing. The physics of turbulence and structure formation is of ubiquitous importance to every magnetically confined laboratory plasma for experimental or industrial application. Specifically, high temperature plasmas for fusion energy research are also dominated by the properties of this turbulent transport. Self-organisation of turbulent vortices to mesoscopic structures like zonal flows is related to the formation of transport barriers that can significantly enhance the confinement of a fusion plasma. This subject of great importance in research is rarely touched on in introductory plasma physics or continuum dynamics courses. Here a brief tutorial on 2D fluid and plasma turbulence is presented as an introduction to the field, appropriate for inclusion in undergraduate and graduate courses.Comment: This is an author-created, un-copyedited version of an article published in European Journal of Physics. IOP Publishing Ltd is not responsible for any errors or omissions in this version of the manuscript or any version derived from it. The definitive publisher authenticated version is available online at doi: 10.1088/0143-0807/29/5/00
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