448 research outputs found

    Endoscopic approach for paranasal sinuses osteomas: Our experience and review of literature

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    Osteomas are common benign bone tumors of the skull and facial structures involving primarily the cranial vault, mandible, external auditory canal, paranasal sinuses, nasal cavity, and orbit.1,2 These neoplasms are usually asymptomatic and account for 0.43% of tumor in population with an incidental finding on 1% of radiographs and on 3% of computed tomography (CT) scans. [1] These solid nodular sclerotic lesions usually arise from the outer table and are usually < 10 mm; lesions larger than 30 mm in diameter are considered giant tumors.3,4,7 Most of patients with such a diagnosis have few or no symptoms, in general only 10% is symptomatic, in the second to fifth decades of life 5,6. In literature, endoscopic endonasal approaches are mainly indicated for small ethmoidal osteomas without significant orbital or frontal extension7, while large osteomas require Caldwell-Luc surgery8 or other more aggressive approaches25. We report our experience about the treatment of paranasal sinuses osteomas treated endoscopically or by endoscope-assisted Caldwell-Luc approach, achieving total removal of the neoplasms with all the advantages deriving by endoscopic technique such as closer visualization of the anatomy, no damage to the surrounding structures, better cosmetic results, less morbidity and shorter hospitalization17

    Effects of Current and Future Summer Marine Heat Waves on Posidonia oceanica: Plant Origin Matters?

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    Marine heat waves (MHWs), prolonged discrete anomalously warm water events, have been increasing significantly in duration, intensity and frequency all over the world, and have been associated with a variety of impacts including alteration of ecosystem structure and function. This study assessed the effects of current and futureMHWs on the Mediterranean seagrass Posidonia oceanica performance, also testing the importance of the thermal environment where the plant lives. The effects of current MHWs were studied through a mensurative experiment in a cold and in a warm site (West and North-West Sardinia, Italy, respectively). Future MHWs effects were tested through a manipulative experiment using P. oceanica shoots collected fromthe cold and warmsites and transplanted in a common garden in front of a power plant (North-West Sardinia): here plants were exposed to heat longer in duration and stronger in intensity than the natural MHWs of the last 20 years, resembling the future scenario. Morphological (total # of leaves, maximum leaf length, and percentage of total necrotic leaf length per shoot) and biochemical variables (leaf proteins, carbohydrates, and lipids) were considered. Plants had similar sublethal responses in both the experiments for most of the variables, revealing that current and future MHWs had similar effect types, but different in magnitude depending on the intensity of the waves: in general, the number of leaves, the maximum leaf length and lipid content decreased, while the leaf necrosis and carbohydrates increased. However, also the origin of the plants affected the results, corroborating the hypothesis that the thermal context the plants live affects their tolerance to the heat. Overall, this study provided evidence about the importance of biochemical variations, such as carbohydrate and lipid levels, as potentially good indicators of seagrass heat stress

    Use of Sawing Waste from Zeolitic Tuffs in the Manufacture of Ceramics

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    This paper investigates the thermal transformation of powders of volcanic tuffs that are used as building stones and aims at thermally transforming them into ceramics. The following positive indications concerning this thermal transformation were found: (1) the structural evolution which brings products similar to traditional ceramics, (2) the good ability to give rise to dense and compact final products, and (3) the good mechanical properties and the lovely appearance of the final products. Nevertheless, the high values of linear shrinkages recorded in this work seem to strongly hinder the thermal transformation of this powder-like waste into ceramics. However, mixing this by-product with other powder-like waste exhibiting higher-dimensional stability, such as those deriving from sawing of granites, appears proper

    Effects of Current and Future Summer Marine Heat Waves on Posidonia oceanica: Plant Origin Matters?

    Get PDF
    Marine heat waves (MHWs), prolonged discrete anomalously warm water events, have been increasing significantly in duration, intensity and frequency all over the world, and have been associated with a variety of impacts including alteration of ecosystem structure and function. This study assessed the effects of current and future MHWs on the Mediterranean seagrass Posidonia oceanica performance, also testing the importance of the thermal environment where the plant lives. The effects of current MHWs were studied through a mensurative experiment in a cold and in a warm site (West and North-West Sardinia, Italy, respectively). Future MHWs effects were tested through a manipulative experiment using P. oceanica shoots collected from the cold and warm sites and transplanted in a common garden in front of a power plant (North-West Sardinia): here plants were exposed to heat longer in duration and stronger in intensity than the natural MHWs of the last 20 years, resembling the future scenario. Morphological (total # of leaves, maximum leaf length, and percentage of total necrotic leaf length per shoot) and biochemical variables (leaf proteins, carbohydrates, and lipids) were considered. Plants had similar sublethal responses in both the experiments for most of the variables, revealing that current and future MHWs had similar effect types, but different in magnitude depending on the intensity of the waves: in general, the number of leaves, the maximum leaf length and lipid content decreased, while the leaf necrosis and carbohydrates increased. However, also the origin of the plants affected the results, corroborating the hypothesis that the thermal context the plants live affects their tolerance to the heat. Overall, this study provided evidence about the importance of biochemical variations, such as carbohydrate and lipid levels, as potentially good indicators of seagrass heat stress.En prens

    Correlation of physical and cognitive impairment in diabetic and hypertensive frail older adults

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    Background: Diabetes and hypertension are common in older adults&nbsp;and represent established risk factors for frailty. Frailty is a multidimensional condition due to reserve loss and susceptibility to stressors with a high risk of death, hospitalizations, functional and cognitive impairment. Comorbidities such as diabetes and hypertension play a key role in increasing the risk of mortality, hospitalization, and disability. Moreover, frail patients with diabetes and hypertension are known to have an increased risk of cognitive and physical impairment. Nevertheless, no study assessed the correlation between physical and cognitive impairment in frail older adults with diabetes and hypertension. Methods: We evaluated consecutive frail older patients with diabetes and hypertension who presented at ASL (local health unit of the Italian Ministry of Health) Avellino, Italy,&nbsp;from March 2021 to October 2021. The inclusion criteria&nbsp;were: a previous diagnosis of diabetes and hypertension with no evidence of secondary causes; age &gt; 65&nbsp;years; a frailty status; Montreal Cognitive Assessment (MoCA) score &lt; 26. Results: 179 patients successfully completed the study. We found a strong and significant correlation between MoCA score and 5-m gait speed test (r: 0.877; p &lt; 0.001). To further verify our results, we performed a linear multivariate analysis adjusting for potential confounding factors, with MoCA score as dependent variable, which confirmed the significant association with glycemia (p &lt; 0.001). Conclusions: This is the first study showing a significant correlation between 5-m gait speed test and MoCA score in frail diabetic and hypertensive older adults

    Prevalence of anti-CCP antibodies in systemic sclerosis

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    Joint involvement in systemic sclerosis (SSc) commonly occurs as arthralgias, while a true arthritis is less frequent. The most common arthritis developing in SSc is rheumatoid arthritis (RA) and its diagnosis may be misled by concomitant joint contracture or tendon sheath involvement due to SSc. Anti-citrullinated cyclic peptide (CCP) antibodies are an emerging tool to diagnose RA and have shown to be more specific than rheumatoid factor. We assessed the prevalence of anti-CCP antibodies in SSc patients and evaluated their sensitivity and specificity for associated RA. Searching for RF and anti-CCP antibodies and joint examination were carried out in sixty consecutive SSc patients. Hands and feet standard x-rays were performed in patients complaining with arthralgia and/or arthritis. Six out of sixty (10%) SSc patients had RA according to 1987 ARA revised criteria. Anti-CCP were detected in 5 patients (sensitivity 83%) and RF was present in all RA patients (sensitivity 100%). However, anti-CCP antibodies had a much higher specificity (94%) than RF (41%) for RA. Our study suggests that anti-CCP antibodies are a useful test to identify patients with SSc having also RA. This is crucial in the management of SSc because may allow an adequate therapy of RA and prevent further joint damage in patients who already have a poor quality of life
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