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Institution

University of Udine

EducationUdine, Italy
About: University of Udine is a education organization based out in Udine, Italy. It is known for research contribution in the topics: Population & Large Hadron Collider. The organization has 6745 authors who have published 20530 publications receiving 669088 citations. The organization is also known as: Università degli Studi di Udine & Universita degli Studi di Udine.


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Journal ArticleDOI
Yanick J. Crow1, Diana Chase1, Johanna Lowenstein Schmidt2, Marcin Szynkiewicz1, Gabriella Forte1, Hannah Gornall1, Anthony Oojageer1, Beverley Anderson1, Amy Pizzino2, Guy Helman2, Mohamed S. Abdel-Hamid, Ghada M H Abdel-Salam, Sam Ackroyd3, Alec Aeby4, Guillermo Agosta5, Catherine Albin6, Stavit Allon-Shalev7, Montse Arellano8, Giada Ariaudo9, Vijay Aswani10, Riyana Babul-Hirji11, Eileen Baildam, Nadia Bahi-Buisson12, Kathryn Bailey13, Christine Barnerias12, Magalie Barth14, Roberta Battini15, Michael W. Beresford16, Geneviève Bernard17, Marika Bianchi, Thierry Billette de Villemeur18, Edward Blair19, Miriam Bloom2, Alberto B. Burlina, Maria Luisa Carpanelli, Daniel R. Carvalho, Manuel Castro-Gago20, Anna Cavallini, Cristina Cereda, Kate Chandler21, David Chitayat11, Abigail Collins22, Concepcion Sierra Corcoles, Nuno Cordeiro23, Giovanni Crichiutti24, Lyvia Dabydeen25, Russell C. Dale26, Stefano D'Arrigo, Christian de Goede, Corinne De Laet, Liesbeth De Waele, Inés Denzler5, Isabelle Desguerre12, Koenraad Devriendt27, Maja Di Rocco28, Michael C Fahey29, Elisa Fazzi30, Colin D. Ferrie31, António Figueiredo, Blanca Gener, Cyril Goizet, Nirmala Rani Gowrinathan6, Kalpana Gowrishankar, Donncha Hanrahan32, Bertrand Isidor33, Bülent Kara34, Nasaim Khan21, Mary D. King35, Edwin P. Kirk36, Ram L. Kumar, Lieven Lagae27, Pierre Landrieu37, Heinz Lauffer38, Vincent Laugel, Roberta La Piana17, Ming K. Lim39, Jean-Pierre Lin40, Tarja Linnankivi41, Mark T Mackay42, Daphna Marom, Charles Marques Lourenço43, Shane McKee32, Isabella Moroni, Jenny Morton, Marie Laure Moutard44, Kevin J. Murray45, Rima Nabbout12, Sheela Nampoothiri46, Noemi Nunez-Enamorado, Patrick J. Oades, Ivana Olivieri, John R. Østergaard47, Belén Pérez-Dueñas8, Julie S. Prendiville48, Venkateswaran Ramesh36, Magnhild Rasmussen49, Luc Régal27, Federica Ricci, Marlène Rio12, Diana Rodriguez18, Agathe Roubertie, Elisabetta Salvatici50, Karin Segers51, Gyanranjan P. Sinha, Doriette Soler52, Ronen Spiegel7, Tommy Stödberg53, Rachel Straussberg54, Kathryn J. Swoboda55, Mohnish Suri56, Uta Tacke57, Tiong Yang Tan58, Johann te Water Naude59, Keng Wee Teik, Maya Thomas60, Marianne Till, Davide Tonduti, Enza Maria Valente61, Rudy Van Coster62, Marjo S. van der Knaap63, Grace Vassallo36, Raymon Vijzelaar, Julie Vogt, Geoffrey Wallace36, Evangeline Wassmer36, Hannah J. Webb64, William P Whitehouse65, Robyn Whitney66, Maha S. Zaki, Sameer M. Zuberi67, John H. Livingston31, Flore Rozenberg12, Pierre Lebon12, Adeline Vanderver2, Simona Orcesi, Gillian I. Rice1 
University of Manchester1, George Washington University2, Bradford Royal Infirmary3, Université libre de Bruxelles4, Hospital Italiano de Buenos Aires5, Kaiser Permanente6, Technion – Israel Institute of Technology7, University of Barcelona8, University of Pavia9, Marshfield Clinic10, University of Toronto11, University of Paris12, University Hospitals Coventry and Warwickshire NHS Trust13, University of Angers14, University of Pisa15, University of Liverpool16, McGill University17, French Institute of Health and Medical Research18, University of Oxford19, University of Santiago de Compostela20, St Mary's Hospital21, University of Colorado Boulder22, NHS Ayrshire and Arran23, University of Udine24, University Hospitals of Leicester NHS Trust25, University of Sydney26, Katholieke Universiteit Leuven27, Istituto Giannina Gaslini28, Monash University29, University of Brescia30, Leeds General Infirmary31, Belfast Health and Social Care Trust32, University of Nantes33, Kocaeli University34, Temple University35, Boston Children's Hospital36, University of Paris-Sud37, University of Greifswald38, HealthPartners39, Guy's and St Thomas' NHS Foundation Trust40, University of Helsinki41, Royal Children's Hospital42, University of São Paulo43, Pierre-and-Marie-Curie University44, Princess Margaret Hospital for Children45, Amrita Vishwa Vidyapeetham46, Aarhus University47, University of British Columbia48, Rikshospitalet–Radiumhospitalet49, University of Milan50, University of Liège51, Mater Dei Hospital52, Karolinska Institutet53, Tel Aviv University54, University of Utah55, Nottingham University Hospitals NHS Trust56, University of Basel57, University of Melbourne58, University Hospital of Wales59, Christian Medical College & Hospital60, Casa Sollievo della Sofferenza61, Ghent University62, VU University Amsterdam63, Mount Sinai St. Luke's and Mount Sinai Roosevelt64, University of Nottingham65, McMaster University66, University of Glasgow67
TL;DR: A robust relationship between mutations in all seven genes with increased type I interferon activity in cerebrospinal fluid and serum, and the increased expression of interferOn‐stimulated gene transcripts in peripheral blood is observed.
Abstract: Aicardi-Goutieres syndrome is an inflammatory disease occurring due to mutations in any of TREX1, RNASEH2A, RNASEH2B, RNASEH2C, SAMHD1, ADAR or IFIH1. We report on 374 patients from 299 families with mutations in these seven genes. Most patients conformed to one of two fairly stereotyped clinical profiles; either exhibiting an in utero disease-onset (74 patients; 22.8% of all patients where data were available), or a post-natal presentation, usually within the first year of life (223 patients; 68.6%), characterized by a sub-acute encephalopathy and a loss of previously acquired skills. Other clinically distinct phenotypes were also observed; particularly, bilateral striatal necrosis (13 patients; 3.6%) and non-syndromic spastic paraparesis (12 patients; 3.4%). We recorded 69 deaths (19.3% of patients with follow-up data). Of 285 patients for whom data were available, 210 (73.7%) were profoundly disabled, with no useful motor, speech and intellectual function. Chilblains, glaucoma, hypothyroidism, cardiomyopathy, intracerebral vasculitis, peripheral neuropathy, bowel inflammation and systemic lupus erythematosus were seen frequently enough to be confirmed as real associations with the Aicardi-Goutieres syndrome phenotype. We observed a robust relationship between mutations in all seven genes with increased type I interferon activity in cerebrospinal fluid and serum, and the increased expression of interferon-stimulated gene transcripts in peripheral blood. We recorded a positive correlation between the level of cerebrospinal fluid interferon activity assayed within one year of disease presentation and the degree of subsequent disability. Interferon-stimulated gene transcripts remained high in most patients, indicating an ongoing disease process. On the basis of substantial morbidity and mortality, our data highlight the urgent need to define coherent treatment strategies for the phenotypes associated with mutations in the Aicardi-Goutieres syndrome-related genes. Our findings also make it clear that a window of therapeutic opportunity exists relevant to the majority of affected patients and indicate that the assessment of type I interferon activity might serve as a useful biomarker in future clinical trials.

437 citations

Journal ArticleDOI
TL;DR: The most relevant information concerning APE1's different functions are attempted to coalesce in order to shed new light and to focus current and future studies to fully understand this unique molecule that is acquiring more and more interest and translational relevance in the field of molecular medicine.
Abstract: APE1/Ref-1 (APE1), the mammalian ortholog of Escherichia coli Xth, and a multifunctional protein possessing both DNA repair and transcriptional regulatory activities, has a pleiotropic role in controlling cellular response to oxidative stress. APE1 is the main apurinic/apyrimidinic endonuclease in eukaryotic cells, playing a central role in the DNA base excision repair pathway of all DNA lesions (uracil, alkylated and oxidized, and abasic sites), including single-strand breaks, and has also cotranscriptional activity by modulating genes expression directly regulated by either ubiquitous (i.e., AP-1, Egr-1, NF-κB, p53, and HIF) and tissue specific (i.e., PEBP-2, Pax-5 and −8, and TTF-1) transcription factors. In addition, it controls the intracellular redox state by inhibiting the reactive oxygen species (ROS) production. At present, information is still inadequate regarding the molecular mechanisms responsible for the coordinated control of its several activities. Both expression and/or sub-cellu...

437 citations

Journal ArticleDOI
Georges Aad1, Brad Abbott2, J. Abdallah3, S. Abdel Khalek4  +3073 moreInstitutions (193)
TL;DR: In this paper, a Fourier analysis of the charged particle pair distribution in relative azimuthal angle (Delta phi = phi(a)-phi(b)) is performed to extract the coefficients v(n,n) =.
Abstract: Differential measurements of charged particle azimuthal anisotropy are presented for lead-lead collisions at root sNN = 2.76 TeV with the ATLAS detector at the LHC, based on an integrated luminosity of approximately 8 mu b(-1). This anisotropy is characterized via a Fourier expansion of the distribution of charged particles in azimuthal angle relative to the reaction plane, with the coefficients v(n) denoting the magnitude of the anisotropy. Significant v(2)-v(6) values are obtained as a function of transverse momentum (0.5 = 3 are found to vary weakly with both eta and centrality, and their p(T) dependencies are found to follow an approximate scaling relation, v(n)(1/n)(p(T)) proportional to v(2)(1/2)(p(T)), except in the top 5% most central collisions. A Fourier analysis of the charged particle pair distribution in relative azimuthal angle (Delta phi = phi(a)-phi(b)) is performed to extract the coefficients v(n,n) = . For pairs of charged particles with a large pseudorapidity gap (|Delta eta = eta(a) - eta(b)| > 2) and one particle with p(T) < 3 GeV, the v(2,2)-v(6,6) values are found to factorize as v(n,n)(p(T)(a), p(T)(b)) approximate to v(n) (p(T)(a))v(n)(p(T)(b)) in central and midcentral events. Such factorization suggests that these values of v(2,2)-v(6,6) are primarily attributable to the response of the created matter to the fluctuations in the geometry of the initial state. A detailed study shows that the v(1,1)(p(T)(a), p(T)(b)) data are consistent with the combined contributions from a rapidity-even v(1) and global momentum conservation. A two-component fit is used to extract the v(1) contribution. The extracted v(1) isobserved to cross zero at pT approximate to 1.0 GeV, reaches a maximum at 4-5 GeV with a value comparable to that for v(3), and decreases at higher p(T).

435 citations

Journal ArticleDOI
Georges Aad1, Brad Abbott2, Jalal Abdallah3, A. A. Abdelalim4  +3104 moreInstitutions (190)
TL;DR: In this paper, the particle multiplicity, its dependence on transverse momentum and pseudorapidity and the relationship between the mean transversal momentum and the charged-particle multiplicity are measured.
Abstract: Measurements are presented from proton-proton collisions at centre-of-mass energies of root s = 0.9, 2.36 and 7 TeV recorded with the ATLAS detector at the LHC. Events were collected using a single-arm minimum-bias trigger. The charged-particle multiplicity, its dependence on transverse momentum and pseudorapidity and the relationship between the mean transverse momentum and charged-particle multiplicity are measured. Measurements in different regions of phase space are shown, providing diffraction-reduced measurements as well as more inclusive ones. The observed distributions are corrected to well-defined phase-space regions, using model-independent corrections. The results are compared to each other and to various Monte Carlo (MC) models, including a new AMBT1 pythia6 tune. In all the kinematic regions considered, the particle multiplicities are higher than predicted by the MC models. The central charged-particle multiplicity per event and unit of pseudorapidity, for tracks with p(T) > 100 MeV, is measured to be 3.483 +/- 0.009 (stat) +/- 0.106 (syst) at root s = 0.9 TeV and 5.630 +/- 0.003 (stat) +/- 0.169 (syst) at root s = 7 TeV.

435 citations

Journal ArticleDOI
Justin Albert1, E. Aliu, H. Anderhub, P. Antoranz2, A. Armada, M. Asensio2, C. Baixeras3, Juan Abel Barrio2, M. Bartelt4, H. Bartko5, Denis Bastieri6, S. R. Bavikadi7, W. Bednarek8, K. Berger1, Ciro Bigongiari6, Adrian Biland, E. Bisesi7, R. K. Bock5, Pol Bordas9, Valentí Bosch-Ramon9, Thomas Bretz1, I. Britvitch, M. Camara2, E. Carmona5, Ashot Chilingarian10, Stefano Ciprini, J. A. Coarasa5, S. Commichau, Jose Luis Contreras2, Juan Cortina, V. Curtef4, V. Danielyan10, Francesco Dazzi6, A. De Angelis7, R. de los Reyes2, B. De Lotto7, E. Domingo-Santamaría, Daniela Dorner1, Michele Doro6, Manel Errando, Michela Fagiolini11, Daniel Ferenc12, E. Fernandez, R. Firpo, Jose Flix, M. V. Fonseca2, Ll. Font3, M. Fuchs5, Nicola Galante11, M. Garczarczyk5, Markus Gaug6, Maria Giller8, Florian Goebel5, D. Hakobyan10, Masaaki Hayashida5, T. Hengstebeck13, D. Höhne1, J. Hose5, C. C. Hsu5, Paula Gina Isar5, P. Jacon8, O. Kalekin13, R. Kosyra5, D. Kranich1, D. Kranich12, M. Laatiaoui5, A. Laille12, T. Lenisa7, P. Liebing5, Elina Lindfors, S. Lombardi6, Francesco Longo14, Josue J. Lopez, M. López2, E. Lorenz5, F. Lucarelli2, P. Majumdar5, G. Maneva, K. Mannheim1, Oriana Mansutti7, Mosè Mariotti6, M. I. Martínez, K. Mase5, Daniel Mazin5, C. Merck5, Mario Meucci11, M. Meyer1, Jose Miguel Miranda2, R. Mirzoyan5, S. Mizobuchi5, Abelardo Moralejo, K. Nilsson, E. Oña-Wilhelmi, R. Orduña3, N. Otte5, I. Oya2, David Paneque5, Riccardo Paoletti11, Josep M. Paredes9, M. Pasanen, D. Pascoli6, F. Pauss, N. Pavel13, R. Pegna11, Massimo Persic, L. Peruzzo6, A. Piccioli11, M. Poller1, Guy G. Pooley15, Elisa Prandini6, A. Raymers10, Wolfgang Rhode4, Marc Ribó9, J. Rico, B. Riegel1, M. Rissi, A. Robert3, Gustavo E. Romero16, S. Rügamer1, A. Saggion6, Alvaro Sanchez3, P. Sartori6, V. Scalzotto6, V. Scapin6, R. Schmitt1, T. Schweizer13, M. Shayduk13, K. Shinozaki5, Steven N. Shore17, N. Sidro, A. Sillanpää, Dorota Sobczyńska8, Antonio Stamerra11, L. S. Stark, L. O. Takalo, Petar Temnikov, D. Tescaro, Masahiro Teshima5, N. Tonello5, A. Torres3, Diego F. Torres18, Nicola Turini11, H. Vankov, V. Vitale7, Robert Wagner5, Tadeusz Wibig8, W. Wittek5, R. Zanin6, J. Zapatero3 
23 Jun 2006-Science
TL;DR: The detection of variable gamma-ray emission above 100 gigaelectron volts from the microquasar LS I 61 + 303 is reported, which suggests that the emission is periodic.
Abstract: Microquasars are binary star systems with relativistic radio-emitting jets. They are potential sources of cosmic rays and can be used to elucidate the physics of relativistic jets. We report the detection of variable gamma-ray emission above 100 gigaelectron volts from the microquasar LS I 61 + 303. Six orbital cycles were recorded. Several detections occur at a similar orbital phase, which suggests that the emission is periodic. The strongest gamma-ray emission is not observed when the two stars are closest to one another, implying a strong orbital modulation of the emission or absorption processes.

433 citations


Authors

Showing all 6857 results

NameH-indexPapersCitations
M.-Marsel Mesulam15055890772
Francesco Longo14274589859
Georges Aad135112188811
Bobby Samir Acharya1331121100545
G. Della Ricca133159892678
Marina Cobal132107885437
Fernando Barreiro130108283413
Saverio D'Auria129114283684
Jean-Francois Grivaz128132297758
Evgeny Starchenko12886475913
Muhammad Alhroob12788071982
Michele Pinamonti12684669328
Reisaburo Tanaka12696769849
Kerim Suruliz12679569456
Kate Shaw12584170087
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
202350
2022142
20211,338
20201,388
20191,223
20181,102