1,340 research outputs found

    Applying scanning electron microscopy for the ultrastructural and clinical analysis of periprosthetic capsules in implant-based breast reconstruction

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    La reconstruction en deux Ă©tapes par expanseur et implant est la technique la plus rĂ©pandue pour la reconstruction mammmaire post mastectomie. La formation d’une capsule pĂ©riprothĂ©tique est une rĂ©ponse physiologique universelle Ă  tout corps Ă©tranger prĂ©sent dans le corps humain; par contre, la formation d’une capsule pathologique mĂšne souvent Ă  des complications et par consĂ©quent Ă  des rĂ©sultats esthĂ©tiques sous-optimaux. Le microscope Ă©lectronique Ă  balayage (MEB) est un outil puissant qui permet d’effectuer une Ă©valuation sans pareille de la topographie ultrastructurelle de spĂ©cimens. Le premier objectif de cette thĂšse est de comparer le MEB conventionnel (Hi-Vac) Ă  une technologie plus rĂ©cente, soit le MEB environnemental (ESEM), afin de dĂ©terminer si cette derniĂšre mĂšne Ă  une Ă©valuation supĂ©rieure des tissus capsulaires du sein. Le deuxiĂšme objectif est d‘appliquer la modalitĂ© de MEB supĂ©rieure et d’étudier les modifications ultrastructurelles des capsules pĂ©riprothĂ©tiques chez les femmes subissant diffĂ©rents protocoles d’expansion de tissus dans le contexte de reconstruction mammaire prothĂ©tique. Deux Ă©tudes prospectives ont Ă©tĂ© rĂ©alisĂ©es afin de rĂ©pondre Ă  nos objectifs de recherche. Dix patientes ont Ă©tĂ© incluses dans la premiĂšre, et 48 dans la seconde. La modalitĂ© Hi-Vac s’est avĂ©rĂ©e supĂ©rieure pour l’analyse comprĂ©hensive de tissus capsulaires mammaires. En employant le mode Hi-Vac dans notre protocole de recherche Ă©tabli, un relief 3-D plus prononcĂ© Ă  Ă©tĂ© observĂ© autour des expanseurs BIOCELLÂź dans le groupe d’approche d’intervention retardĂ©e (6 semaines). Des changements significatifs n’ont pas Ă©tĂ© observĂ©s au niveau des capsules SILTEXÂź dans les groupes d’approche d’intervention prĂ©coce (2 semaines) ni retardĂ©e.Two-stage implant-based (expander to implant) breast reconstruction is the most frequently applied technique following total mastectomy. While the periprosthetic capsule is a normal physiologic response to any foreign body, pathological capsule formation often leads complications and suboptimal aesthetic results. The scanning electron microscope (SEM) is a powerful tool that offers unparalleled assessment of capsule ultrastructural topography. The first research aim was to compare conventional high-vacuum (Hi-Vac) SEM with newer environmental scanning electron microscopy (ESEM) technology to determine whether the latter offers superior assessment of breast capsular tissue. The second aim was to apply the most optimal SEM mode to study periprosthetic capsule ultrastructural modifications in women undergoing differing expansion protocols during the first stage of implant-based reconstruction. Ten patients were prospectively included in the first study and 48 prospectively included into the second. Conventional Hi-Vac mode was deemed superior for the comprehensive analysis of breast capsular tissue. Using Hi-Vac mode within the established study protocol, a more pronounced capsular 3-D relief was observed around BIOCELLÂź expanders when the first postoperative saline inflation took place at 6 weeks following expander insertion (delayed approach). No significant changes were observed with SILTEXÂź expander capsules in both early (2 weeks) and delayed approach groups

    Leveraging Large Language Models for Automated Dialogue Analysis

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    Developing high-performing dialogue systems benefits from the automatic identification of undesirable behaviors in system responses. However, detecting such behaviors remains challenging, as it draws on a breadth of general knowledge and understanding of conversational practices. Although recent research has focused on building specialized classifiers for detecting specific dialogue behaviors, the behavior coverage is still incomplete and there is a lack of testing on real-world human-bot interactions. This paper investigates the ability of a state-of-the-art large language model (LLM), ChatGPT-3.5, to perform dialogue behavior detection for nine categories in real human-bot dialogues. We aim to assess whether ChatGPT can match specialized models and approximate human performance, thereby reducing the cost of behavior detection tasks. Our findings reveal that neither specialized models nor ChatGPT have yet achieved satisfactory results for this task, falling short of human performance. Nevertheless, ChatGPT shows promising potential and often outperforms specialized detection models. We conclude with an in-depth examination of the prevalent shortcomings of ChatGPT, offering guidance for future research to enhance LLM capabilities.Comment: Accepted to SIGDIAL 202

    Yield and Nutritive Value of Heading and Headless Sorghum x Sudangrass Hybrids in Response to Cutting Frequency

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    Summer annual forages contribute greatly toward solving the problem of roughage supply for cattle in Korea. These forages support high levels of dairy and beef production during hot summer months when the quality and production of perennial herbage decreases due to unfavourable climatic conditions (Olson, 1971). This study investigated the effects of cutting frequency on dry matter (DM) yield and nutritive value of heading versus headless varieties of sorghum x sudangrass hybrid

    Batch Fabrication of High-Performance Planar Patch-Clamp Devices in Quartz

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    The success of the patch-clamp technique has driven an effort to create wafer-based patch-clamp platforms. We develop a lithographic/electrochemical processing scheme that generates ultrasmooth, high aspect ratio pores in quartz. These devices achieve gigaohm seals in nearly 80% of trials, with the majority exhibiting seal resistances from 20-80 GΩ, competing with pipette-based patch-clamp measurements

    Antioxidative Activities of Alfalfa and Timothy Varieties

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    The term functional foods is often used as a generic description for the beneficial effects of ingested foods that go beyond their traditional nutritive value (Bauman et al., 2001). Milk and dairy products are important dietary sources of nutrients, providing energy, high quality protein, and a variety of vitamins and minerals. Recent research has focused on altering the fat and protein content of milk and other dairy products in order to improve their nutrient content to more aptly reflect current dietary recommendations and trends. As a result, additional focus is being given to designing foods that have beneficial effects on human health. This study was carried out to investigate the antioxidative activities of forages grown in Korea

    Whole Genome Analysis of the Red-Crowned Crane Provides Insight into Avian Longevity

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    The red-crowned crane (Grus japonensis) is an endangered, large-bodied crane native to East Asia. It is a traditional symbol of longevity and its long lifespan has been confirmed both in captivity and in the wild. Lifespan in birds is known to be positively correlated with body size and negatively correlated with metabolic rate, though the genetic mechanisms for the red-crowned crane's long lifespan have not previously been investigated. Using whole genome sequencing and comparative evolutionary analyses against the grey-crowned crane and other avian genomes, including the long-lived common ostrich, we identified red-crowned crane candidate genes with known associations with longevity. Among these are positively selected genes in metabolism and immunity pathways (NDUFA5, NDUFA8, NUDT12, SOD3, CTH, RPA1, PHAX, HNMT, HS2ST1, PPCDC, PSTK CD8B, GP9, IL-9R, and PTPRC). Our analyses provide genetic evidence for low metabolic rate and longevity, accompanied by possible convergent adaptation signatures among distantly related large and long-lived birds. Finally, we identified low genetic diversity in the red-crowned crane, consistent with its listing as an endangered species, and this genome should provide a useful genetic resource for future conservation studies of this rare and iconic species
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