399 research outputs found

    Screening Italians - Identity, Memory and Sexuality in Migrant Italian Film and Culture Perspective

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    Film has played a significant role in shaping the British-Italian community's sense of identity in the context of post war Italian immigration into Britain. This thesis explores how (Southern Italian) cultural identity has been mediated by both historical and contemporary factors and the ways in which this identity has been shaped by the process of immigration. Nostalgia and myth have helped to shift notions of the self within the immigrant community; at the same time they have also acted as tools through which the notion of homeland and belonging could be experienced. How can cultural history be understood in relation to memory and how could this duality be negotiated in terms of understanding the construction of (Italian) cultural identity? The importance of both collective and individual memory has been made visible through ethnographic research that has involved a series of interviews with members of the Italian immigrant communities located both within London and the Home Counties of Britain. Drawing on a series of film readings, together with an historical and theoretical overview of the construction of Italianicity, there has also been an examination of the specific impact that popular film melodramas had on what was to become the British-Italian immigrant community. These films (from the 1950s in Italy) enabled the transmission of a particular version of sexual identity that is still prevalent today in American mainstream film. These ideas have been further investigated in relation to converging authenticities of experience and how this convergence has influenced second generation Italians. An analysis of the distorted forms of continuity, in terms of how home and place are perceived, informs the more theoretical aspects of the overall project. By considering the influence of film in relation to cultural difference, this research should contribute to current debates about cultural translation

    Composite Calcium Phosphate/Titania Scaffolds in Bone Tissue Engineering

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    Titanium and its alloys have been extensively used as implantation materials due to their favorable properties such as lower modulus, good tensile strength, excellent biocompatibility, and enhanced corrosion resistance. However, their intrinsic bioinertness generally prevents a direct bond with the bone on the surface especially at an early stage of implantation. In recent years, bioactive scaffolds for bone regeneration are progressively replacing bioinert prostheses in orthopedic, maxillofacial, and neurosurgery fields. Given the need of enhanced mechanical strength, several combinations of bioactive and reinforcing phases have been studied, but still no convincing solutions have been found so far. In this context, titanium oxides are light and high-resistance bioactive materials widely employed in dental and bone application due to their capacity of forming strong bonds with bone tissue via the formation of a tightly bound apatite layer on their surface. The addition of titania particles to hydroxyapatite has attracted considerable attention based on the assumption that resulting materials can enhance osteoblast adhesion and promote cell growth while also providing high strength and fracture toughness in the final composite material, thus being adequate for load-bearing applications

    Synthesis of Nanostructured Hydroxyapatite via Controlled Hydrothermal Route

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    Hydroxyapatite represents the natural inorganic component of the bone and may be considered an essential element required for the development of bone substitutes in the field of regenerative medicine. Hydroxyapatite bone substitutes own biomimetic, osteoconductive, and osteoinductive properties thanks to their chemical-physical properties and nanostructure that play a critical role for the reconstruction of calcified tissues. Controlling the structure of hydroxyapatite nanocrystals is vital for obtaining a sustained product, and it should be an advantage on the final materials suitable for bone replacement, in terms of adsorptive activity, drug delivery system, etc. Compared to other synthesis techniques, hydrothermal processing (refers to a synthesis in aqueous solution at elevated pressure and temperature, in a closed system) has the ability to precipitate the hydroxyapatite from overheated solution, regulating the rate and uniformity of nucleation, growth, and maturation, which affect size, morphology, and aggregation of the crystals. This chapter wants to provide an overview of realization of nanosized hydroxyapatite-based bioceramics (e.g., powder and 3D structures) with desired morphology of crystallites, by hydrothermal processing. In this way, some critical hydrothermal parameters fundamental on the control of the crystal shape and dimension (pH, temperature, starting precursors, etc.) are discussed

    In situ mechanical and molecular investigations of collagen/apatite biomimetic composites combining Raman spectroscopy and stress-strain analysis

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    We report the design, fabrication and application of a novel micro-electromechanical device coupled to a confocal Raman microscope that enables in situ molecular investigations of micro-fibers under uniaxial tensile load. This device allows for the mechanical study of micro-fibers with diameters in the range between 10 and 100 lm and lengths of several hundred micrometers. By exerting forces in the mN range, the device enables an important force range to be accessed between that of atomic force microscopy and macroscopic stress-strain measurement devices. The load is varied using a stiffness-calibrated glass micro-needle driven by a piezo-translator during simultaneous Raman microscopy imaging. The method enables experiments probing the molecular response of micro-fibers to external stress. This set-up was applied to biomimetic non-mineralized and mineralized collagen micro-fibers revealing that above 30% mineralization the proline-related Raman band shows a pronounced response to stress, which is not observed in non-mineralized collagen. This molecular response coincides with a strong increase in the Young’s modulus from 0.5 to 6 GPa for 0% and 70% mineralized collagen, respectively. Our results are consistent with a progressive interlocking of the collagen triple-helices by apatite nanocrystals as the degree of mineralization increases

    Use of insulin degludec in pregnancy: two case reports and a literature review

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    Abstract As of now, insulin Degludec has no indication for use in pregnancy, because of the lack of studies that prove its safety for foetus. However it isn't infrequent that some women conceive while treating with insulin Degludec. So, before deciding to change the type of insulin therapy during pregnancy, an evaluation of the risk associated to a possible temporary worsening of glycaemic control, due to that insulin replacement, is needed. Referring to case series reported in the scientific literature could provide a support when a clinical decision need to be taken. We report two cases of women affected by type 1 diabetes who had unplanned pregnancies during treatment with insulin Degludec. In order to avoid the risk of a possible worsening of glycaemic control due to insulin switch, we decided to continue the treatment with Degludec during their pregnancies, after obtaining the patients' written informed consent. Daily insulin requirement gradually increased for both women pregnancy progressed, and glycated haemoglobin (HbA1c) values improved from the first observation to delivery: 55 mmol/mol (7.2%) at 9 weeks to 47 mmol/mol (6.5%) at 36 weeks, in Patient 1 (P1); 44 mmol/mol (6.2%) at 8 weeks to 33 mmol/mol (5.2%) at 36 weeks, in Patient 2 (P2). P1 delivered at week 37 with a caesarean section due to failed induction. The newborn, a girl of 3398 g at birth, developed neonatal hypoglycaemia and respiratory distress (Apgar 6-6). Six days after birth she underwent colectomy because of necrotizing enterocolitis and was finally diagnosed with atypical cystic fibrosis. P2 gave birth to a healthy girl (weight 2745g at birth, Apgar 7-9) at 37 weeks, undergoing a caesarean section for maternal cervical dystocia, without neonatal complications. Our experience provides additional evidence on the safety of insulin Degludec in pregnancy without any maternal or neonatal outcome suggesting its toxicity
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