358 research outputs found

    Correction of neglected post-burn severe calcaneo-valgus deformity of foot with Joshi’s external stabilization system: a one stage surgical procedure

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    Post burn calcaneovalgus is a complex foot deformity and management becomes increasingly difficult especially if deformity is neglected in growing young child resulting in secondary bony deformity. A simple technique of single stage surgical correction with Joshi’s external stabilization system (JESS) is described using principle of distraction osteogenesis or histogenesis without need of extensive plastic surgical procedure. A functional plantigrade foot is achieved after completion of the procedure without need of any bony procedure and least chances of any neurovascular compromise. JESS is a versatile external fixation device for correction of neglected postburn complex calcaneovalgus deformity

    Characterization of Transmission and Reflection of Ku Band Split Ring Resonator Reflectarray using Waveguide Method

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    In this paper, the analysis, design, and measurement of a split ring resonator reflectarray is presented. The 6 different designs of reflectarray are simulated to analyze the effect of splits position on resonance frequency. The SRR reflectarray which covered highest frequency bandwidth at Ku-band is fabricated and tested. In the fabrication, FR4 substrate is used. The S-parameter measurements of the fabricated reflectarray are performed by waveguide method. The obtained results have good reflection characteristics for a wide frequency range from 12 GHz to 16.5 GHz in Ku-band. The maximum value of reflection is achieved approximately at 15.3 GHz frequenc

    The role of election competition in strengthening Pakistan’s fledgling local democracy

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    Using results and original survey data from the November 2015 local government elections in the Sargodha District of rural Punjab, Pakistan, insights are offered into the institutional and organisational responses that can help strengthen local democracy. These results form part of a larger research project being conducted by the Institute of Development and Economic Alternatives (IDEAS), which examines how voters make choices broadly. It explores the relative weight voters give to party performance vs. candidates’ political and bureaucratic connections. It highlights the need for reporting, debate and a rule-based separation of functions and finances to strengthen local democracy in Pakistan

    Nanoparticles Synergistic Effect with Various Substrate Pretreatment and their Comparison on Biogas Production from Algae Waste

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    Algae waste is one of the potential substrates for biogas and biohydrogen production and can comprehend multiple benefits of waste treatment and resource utilization. In view of the key bottlenecks such as low substrate degradation rate and poor productivity of algae waste production process, this study analyzes the combined effect of two metallic and metallic oxide nanoparticles with different substrate pretreatment methods (autoclave, ultrasonic, and microwave methods) to investigate the effect of anaerobic digestion of green algae (Enteromorpha). The results showed that out of the three pretreatment methods, microwave pretreatment and nanoparticles' synergistic effect significantly increases biogas production. The microbial community composition at the phylum level was analyzed. It was observed that the Firmicutes were most abundant across all samples. The relative abundance of Firmicutes for control, Ni NPs + MW, Co NPs + MW, and Fe3O4 NPs + MW groups were 51.78, 70.37, 75.77, and 83.93%,      respectively. The second most abundant was of Bacteroidetes that also contributes to hydrogen production. This relatively high abundance of Firmicutes and Bacteroidetes promises its potential applications in a hydrogen production facility. Copyright © 2021 by Authors, Published by BCREC Group. This is an open access article under the CC BY-SA License (https://creativecommons.org/licenses/by-sa/4.0).

    Traumatic brain injury leads to alterations in contusional cortical miRNAs involved in dementia

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    There is compelling evidence that head injury is a significant environmental risk factor for Alzheimer's disease (AD) and that a history of traumatic brain injury (TBI) accelerates the onset of AD. Amyloid-β plaques and tau aggregates have been observed in the post-mortem brains of TBI patients; however, the mechanisms leading to AD neuropathology in TBI are still unknown. In this study, we hypothesized that focal TBI induces changes in miRNA expression in and around affected areas, resulting in the altered expression of genes involved in neurodegeneration and AD pathology. For this purpose, we performed a miRNA array in extracts from rats subjected to experimental TBI, using the controlled cortical impact (CCI) model. In and around the contusion, we observed alterations of miRNAs associated with dementia/AD, compared to the contralateral side. Specifically, the expression of miR-9 was significantly upregulated, while miR-29b, miR-34a, miR-106b, miR-181a and miR-107 were downregulated. Via qPCR, we confirmed these results in an additional group of injured rats when compared to naïve animals. Interestingly, the changes in those miRNAs were concomitant with alterations in the gene expression of mRNAs involved in amyloid generation and tau pathology, such as β-APP cleaving enzyme (BACE1) and Glycogen synthase-3-β (GSK3β). In addition increased levels of neuroinflammatory markers (TNF-α), glial activation, neuronal loss, and tau phosphorylation were observed in pericontusional areas. Therefore, our results suggest that the secondary injury cascade in TBI affects miRNAs regulating the expression of genes involved in AD dementia
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