835 resultados para EMI, EMC, LISN, emissioni, condotte, irradiate
Resumo:
Questo elaborato di tesi presenta uno studio volto a identificare il ruolo dell’autofagia nella patogenesi della neuropatia ottica ereditaria di Leber (LHON), una patologia neurodegenerativa mitocondriale dovuta a mutazioni nel mtDNA. Tali mutazioni generano difetti nella catena respiratoria, nelle vie apoptotiche mediate dai mitocondri e nella produzione di ROS; dati preliminari hanno dimostrato una correlazione tra le mutazioni LHON e l’omeostasi mitocondriale, regolata dai processi contrapposti di autofagia e mitobiogenesi. Secondo questa ipotesi, le alterazioni LHON aumentano il flusso autofagico soprattutto negli individui affetti, mentre i portatori di mutazione sani (carrier) risultano protetti da un importante incremento nella mitobiogenesi che agisce da meccanismo compensatorio. È stata dunque caratterizzata tramite Western Blotting l’espressione proteica di due marker autofagici, LC3 e p62, in PBMCs (Peripheral Blood Mononuclear Cells) estratte da pazienti LHON, affetti e carrier, e individui di controllo. Sono stati inoltre quantificati i livelli cellulari di due proteine della membrana interna mitocondriale, COX IV e SDHA, al fine di valutare la massa mitocondriale come parametro di confronto rispetto ai livelli di autofagia. È stata infine analizzata l’influenza dell’idebenone sull’autofagia e sulla massa mitocondriale, confrontando pazienti affetti in terapia con questo farmaco e pazienti affetti non trattati. Lo studio ha in parte avvalorato i risultati preliminari; l’elevata variabilità riscontrata porta però all’esigenza, nelle analisi future, di una maggiore campionatura, nonché di indagini di diversa natura condotte in parallelo per validare i risultati.
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La tesi tratta l'analisi della sicurezza delle piste ciclabili di Bologna, mediante tecnologie innovative quali Mobile Eye e Video V-Box. Si trattano due percorsi: "Sabotino" e "Sant'Orsola", comprendenti ciascuno due itinerari alternativi, uno ciclabile e uno no. In prima fase, si sono somministrati dei questionari di gradimento ad un campione composto da 50 utenti per percorso. I questionari sono composti da una parte generale e da una specifica dell'itinerario. Dall'analisi dei risultati delle interviste, eseguita esclusivamente per il percorso "Sabotino", è stato possibile evidenziare le criticità segnalate dai ciclisti. Sono state poi condotte, esclusivamente nel tratto Nord-Ovest della tangenziale delle biciclette, indagini sperimentali con Mobile Eye, con lo scopo di conoscere quali elementi stradali sono maggiormente guardati e considerati dall'utente e con Video V-Box, in grado di fornire posizione, velocità puntuale e accelerazione. A tali sperimentazioni hanno partecipato 17 utenti, ignari dello scopo del test. Ottenuti i dati, sono stati analizzati i risultati provenienti da V-Box quindi analizzate le velocità in prossimità delle intersezioni significative. Dal confronto dei risultati provenienti dai questionari e dai test sperimentali è stato possibili giundere a delle conclusioni.
Resumo:
il lavoro si suddivide in una fase preliminare conoscitiva costituita da una ricerca storico-documentale sui principali eventi che hanno interessato San Giovanni in Persiceto e il complesso conventuale. per comprendere a pieno l'oggetto di studio sono stati studiati a fondo la vita e le opere dell'autore e le tendenze architettoniche del periodo storico in cui esercita. è stato eseguito un rilievo dettagliato impiegando tecniche ad alta definizione, come fotogrammetria e scansioni laser. per realizzare un progetto di restauro consapevole e rispettoso del monumento sono state condotte approfondite analisi tematiche e di degrado, in modo da acquisire una conoscenza diretta dell'edificio. per reintegrare l'unità d'immagine andata perduta, visto l'uso improprio che è stato fatto del bene, indispensabile per la comprensione dell'opera, è stata svolta un'attenta analisi della consistenza materica e una analogica con le opere dell'autore simili. gli interventi cercheranno di facilitare la lettura delle tracce presenti sul manufatto, e in maniera tutt'altro che invasiva verrà proposta la videoproiezione di quella che poteva essere l'immagine e la suggestione concepita dall'architetto. sono stati studiati restauri di casi analoghi e gli interventi della scuola di restauro nata a seguito delle devastazioni prodotte dalla guerra. per gli elementi ben conservati si attuerà un restauro conservativo. si restaura la pavimentazione, attraverso due diverse ipotesi che risolvono le possibili casistiche generate dalla rimozione delle superfetazioni. per valorizzare gli elementi architettonici si è proposto uno schema di sorgenti luminose diversificato in illuminazione generale d'ambiente ed un sistema di luci funzionale agli usi specifici.
Resumo:
Nell’ottica della pianificazione di interventi di Retrofit Energetico che possano migliorare l’efficienza energetica del comparto edilizio-residenziale, in relazione agli obiettivi della vigente normativa energetica di ispirazione comunitaria, obiettivo della tesi è la ricerca e validazione di strumenti economici che possano guidare le committenze nella scelta del migliore rapporto tra costi e benefici delle opere. La tesi affronta l’approccio dell’analisi del Costo Globale come previsto dalla normativa comunitaria formato dalla direttiva 2010/31/UE sulla prestazione energetica degli edifici, dal regolamento delegato UE n°244 del 16 gennaio 2012 e dalla norma EN 15459 del 2008. Obiettivo è la comparazione di tre interventi alternativi di retrofit energetico per un edificio ad uso misto sito nel centro di Bologna. Si tratta di interventi mirati all’efficientamento e all’abbattimento del fabbisogno energetico per la climatizzazione invernale dello stabile, con gradi successivi di approfondimento, come definiti dalla attuale normativa (ristrutturazione importante di primo livello, di secondo livello e riqualificazione energetica). Lo studio si sviluppa definendo le criticità dello stato attuale del costruito e i possibili interventi migliorativi necessari. Definiti i pacchetti tecnici delle soluzioni di intervento si è passato alla ricerca dei dati necessari comprendenti dati finanziari su tassi di sconto e di inflazione e sui costi di investimento iniziali, costi di gestione e manutenzione, costi di sostituzione e costi energetici relativi alle varie alternative di progetto. I risultati dell’analisi economica delle alternative progettuali, nel periodo di studio considerato, vengono poi confrontati con i dati relativi all’impatto energetico e delle emissioni di CO2 e con le relative classi energetiche.
Resumo:
This paper makes a comparative study of two Soft Single Switched Quadratic Boost Converters (SSS1 and SSS2) focused on Maximum Power Point Tracking (MPPT) of a PV array using Perturb and Observe (P&O) algorithm. The proposed converters maintain the static gain characteristics and dynamics of the original converter with the advantage of considerably reducing the switching losses and Electromagnetic Interference (EMI). It is displayed the input voltage Quadratic Boost converter modeling; qualitative and quantitative analysis of soft switching converters, defining the operation principles, main waveforms, time intervals and the state variables in each operation steps, phase planes of resonant elements, static voltage gain expressions, analysis of voltage and current efforts in semiconductors and the operational curves at 200 W to 800 W. There are presented project of PI, PID and PID + Notch compensators for MPPT closed-loop system and resonant elements design. In order to analyze the operation of a complete photovoltaic system connected to the grid, it was chosen to simulate a three-phase inverter using the P-Q control theory of three-phase instantaneous power. Finally, the simulation results and experimental with the necessary comparative analysis of the proposed converters will be presented.
Cyclical DNA methyltransferase 3a expression is a seasonal and oestrus timer in reproductive tissues
Resumo:
Acknowledgments This work was funded by the University of Aberdeen CLSM grant to TJS. EWJL was funded by a Society for Reproduction and Fertility undergraduate scholarship. TJS conceived the project, designed experiments, analyzed data and wrote the manuscript. EWJL conducted experiments and analyzed the data. CC conducted the immunocytochemistry. ML conducted HEK293 cell culture assays. EMC and ASB provided technical assistance. The authors thank Gerald Lincoln for critical feedback on a previous version of this manuscript.
Resumo:
Acknowledgments This work was funded by the University of Aberdeen CLSM grant to TJS. EWJL was funded by a Society for Reproduction and Fertility undergraduate scholarship. TJS conceived the project, designed experiments, analyzed data and wrote the manuscript. EWJL conducted experiments and analyzed the data. CC conducted the immunocytochemistry. ML conducted HEK293 cell culture assays. EMC and ASB provided technical assistance. The authors thank Gerald Lincoln for critical feedback on a previous version of this manuscript.
Resumo:
In traditional electrical sensing applications, multiplexing and interconnecting the different sensing elements is a major challenge. Recently, many optical alternatives have been investigated including optical fiber sensors of which the sensing elements consist of fiber Bragg gratings. Different sensing points can be integrated in one optical fiber solving the interconnection problem and avoiding any electromagnetical interference (EMI). Many new sensing applications also require flexible or stretchable sensing foils which can be attached to or wrapped around irregularly shaped objects such as robot fingers and car bumpers or which can even be applied in biomedical applications where a sensor is fixed on a human body. The use of these optical sensors however always implies the use of a light-source, detectors and electronic circuitry to be coupled and integrated with these sensors. The coupling of these fibers with these light sources and detectors is a critical packaging problem and as it is well-known the costs for packaging, especially with optoelectronic components and fiber alignment issues are huge. The end goal of this embedded sensor is to create a flexible optical sensor integrated with (opto)electronic modules and control circuitry. To obtain this flexibility, one can embed the optical sensors and the driving optoelectronics in a stretchable polymer host material. In this article different embedding techniques for optical fiber sensors are described and characterized. Initial tests based on standard manufacturing processes such as molding and laser structuring are reported as well as a more advanced embedding technique based on soft lithography processing.
Resumo:
An ethnobotanical survey of medicinal plants was carried out in the Central Middle Atlas in the years 2013 and 2014 to establish the catalog of medicinal plants used in traditional medicine in the treatment of diabetes. Thus, 1560 people were interviewed, using questionnaires. The latter enabled us to gather information on traditional healing practices of the local population including scientific name, French name, vernacular name, plant parts used , therapeutic indications , revenues and mode of administration. The results show that 76 medicinal species were inventoried in the study area. These plant species are included into 67 genus and 40 families. The most represented families are: Lamiaceae (12 species), Asteraceae and Brassicaceae species with 14 each. Of 76 medicinal species found in the region, four species are reported for the first time in the traditional treatment of diabetes in Morocco. They are Pistacia atlantica, Ptychotis verticillata, Anacyclus pyrethrum, Alyssum spinosum, Cistus albidus, Juniperus thurifera, Ephedra nebrodensis, Thymus algeriensis, Th. munbyanus, Th. zygis, Abelmoschus esculentus, Fraxinus augustifolia, Sorghum vulgare and, Eriobotrya japonica. The leaves are the most used organs (38%). The decoction is the dominant mode of preparation (50%) and administration is mostly for oral use (97%).
Resumo:
Based on the results of an ethnographic study with people diagnosed with schizophrenia and their relatives in Barcelona and Tarragona along one year, I problematize the transformation of roles and relationships inside the household from the first burst and the assignation of a diagnosis as rite of passage. I appeal to a cultural interpretation of family, understanding the family group as a specific ethnoscape. I analyze the chronicity meaning, and its consequences in the conformation of the “role of sick person” in the context of parental relationships. I also discuss the paradoxes in terms of autonomy for the affected persons because of the projection of cultural connotation of chronicity.
Resumo:
La música puede afectar al individuo en todos sus niveles –físico, mental y espiritual–. El presente artículo se centra en el papel que ésta desempeña en el desarrollo de la vida espiritual y trascendental. Para ello, realizaremos un repaso histórico de su evolución estética y social, abordaremos dicho fenómeno a nivel fisiológico y presentaremos sus aplicaciones clínicas y sociales. Seguidamente y a modo de ejemplo de las concepciones de pensamiento occidental y oriental, trataremos la forma en que el cristianismo y el budismo conciben la música dentro de su doctrina. Finalizaremos con algunas reflexiones sobre el tema.
Resumo:
Recent studies indicate that a single bout of physical exercise can have immediatepositive effects on cognitive performance of children and adolescents. However, thetype of exercise that affects cognitive performance the most in young adolescents isnot fully understood. Therefore, this controlled study examined the acute effects ofthree types of 12-min classroom-based exercise sessions on information processingspeed and selective attention. The three conditions consisted of aerobic, coordination,and strength exercises, respectively. In particular, this study focused on the feasibilityand efficiency of introducing short bouts of exercise in the classroom. One hundredand ninety five students (5th and 6th grade; 10–13 years old) participated in a doublebaseline within-subjects design, with students acting as their own control. Exercise typewas randomly assigned to each class and acted as between-subject factor. Before andimmediately after both the control and the exercise session, students performed twocognitive tests that measured information processing speed (Letter Digit SubstitutionTest) and selective attention (d2 Test of Attention). The results revealed that exercisingat low to moderate intensity does not have an effect on the cognitive parameters testedin young adolescents. Furthermore, there were no differential effects of exercise type.The results of this study are discussed in terms of the caution which should be takenwhen conducting exercise sessions in a classroom setting aimed at improving cognitive performance.
Resumo:
Most liquid electrolytes used in commercial lithium-ion batteries are composed by alkylcarbonate mixture containing lithium salt. The decomposition of these solvents by oxidation or reduction during cycling of the cell, induce generation of gases (CO2, CH4, C2H4, CO …) increasing of pressure in the sealed cell, which causes a safety problem [1]. The prior understanding of parameters, such as structure and nature of salt, temperature pressure, concentration, salting effects and solvation parameters, which influence gas solubility and vapor pressure of electrolytes is required to formulate safer and suitable electrolytes especially at high temperature.
We present in this work the CO2, CH4, C2H4, CO solubility in different pure alkyl-carbonate solvents (PC, DMC, EMC, DEC) and their binary or ternary mixtures as well as the effect of temperature and lithium salt LiX (X = LiPF6, LiTFSI or LiFAP) structure and concentration on these properties. Furthermore, in order to understand parameters that influence the choice of the structure of the solvents and their ability to dissolve gas through the addition of a salt, we firstly analyzed experimentally the transport properties (Self diffusion coefficient (D), fluidity (h-1), and conductivity (s) and lithium transport number (tLi) using the Stock-Einstein, and extended Jones-Dole equations [2]. Furthermore, measured data for the of CO2, C2H4, CH4 and CO solubility in pure alkylcarbonates and their mixtures containing LiPF6; LiFAP; LiTFSI salt, are reported as a function of temperature and concentration in salt. Based on experimental solubility data, the Henry’s law constant of gases in these solvents and electrolytes was then deduced and compared with values predicted by using COSMO-RS methodology within COSMOthermX software. From these results, the molar thermodynamic functions of dissolution such as the standard Gibbs energy, the enthalpy, and the entropy, as well as the mixing enthalpy of the solvents and electrolytes with the gases in its hypothetical liquid state were calculated and discussed [3]. Finally, the analysis of the CO2 solubility variations with the salt addition was then evaluated by determining specific ion parameters Hi by using the Setchenov coefficients in solution. This study showed that the gas solubility is entropy driven and can been influenced by the shape, charge density, and size of the anions in lithium salt.
References
[1] S.A. Freunberger, Y. Chen, Z. Peng, J.M. Griffin, L.J. Hardwick, F. Bardé, P. Novák, P.G. Bruce, Journal of the American Chemical Society 133 (2011) 8040-8047.
[2] P. Porion, Y.R. Dougassa, C. Tessier, L. El Ouatani, J. Jacquemin, M. Anouti, Electrochimica Acta 114 (2013) 95-104.
[3] Y.R. Dougassa, C. Tessier, L. El Ouatani, M. Anouti, J. Jacquemin, The Journal of Chemical Thermodynamics 61 (2013) 32-44.
Resumo:
Combining intrinsically conducting polymers with carbon nanotubes (CNT) helps in creating composites with superior electrical and thermal characteristics. These composites are capable of replacing metals and semiconductors as they possess unique combination of electrical conductivity, flexibility, stretchability, softness and bio-compatibility. Their potential for use in various organic devices such as super capacitors, printable conductors, optoelectronic devices, sensors, actuators, electrochemical devices, electromagnetic interference shielding, field effect transistors, LEDs, thermoelectrics etc. makes them excellent substitutes for present day semiconductors.However, many of these potential applications have not been fully exploited because of various open–ended challenges. Composites meant for use in organic devices require highly stable conductivity for the longevity of the devices. CNT when incorporated at specific proportions, and with special methods contributes quite positively to this end.The increasing demand for energy and depleting fossil fuel reserves has broadened the scope for research into alternative energy sources. A unique and efficient method for harnessing energy is thermoelectric energy conversion method. Here, heat is converted directly into electricity using a class of materials known as thermoelectric materials. Though polymers have low electrical conductivity and thermo power, their low thermal conductivity favours use as a thermoelectric material. The thermally disconnected, but electrically connected carrier pathways in CNT/Polymer composites can satisfy the so-called “phonon-glass/electron-crystal” property required for thermoelectric materials. Strain sensing is commonly used for monitoring in engineering, medicine, space or ocean research. Polymeric composites are ideal candidates for the manufacture of strain sensors. Conducting elastomeric composites containing CNT are widely used for this application. These CNT/Polymer composites offer resistance change over a large strain range due to the low Young‟s modulus and higher elasticity. They are also capable of covering surfaces with arbitrary curvatures.Due to the high operating frequency and bandwidth of electronic equipments electromagnetic interference (EMI) has attained the tag of an „environmental pollutant‟, affecting other electronic devices as well as living organisms. Among the EMI shielding materials, polymer composites based on carbon nanotubes show great promise. High strength and stiffness, extremely high aspect ratio, and good electrical conductivity of CNT make it a filler of choice for shielding applications. A method for better dispersion, orientation and connectivity of the CNT in polymer matrix is required to enhance conductivity and EMI shielding. This thesis presents a detailed study on the synthesis of functionalised multiwalled carbon nanotube/polyaniline composites and their application in electronic devices. The major areas focused include DC conductivity retention at high temperature, thermoelectric, strain sensing and electromagnetic interference shielding properties, thermogravimetric, dynamic mechanical and tensile analysis in addition to structural and morphological studies.