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DTSTART;TZID=Europe/Paris:20190919T140000
DTEND;TZID=Europe/Paris:20190919T150000
DTSTAMP:20190729T114731Z
CREATED:20190729T114731Z
LAST-MODIFIED:20190729T114731Z
UID:7766-1568901600-1568905200@www.loria.fr
SUMMARY:Seminar OLKi : "Ontology applied to data sharing"
DESCRIPTION:Adrien BARTON\, researcher at the Institut de recherche en informatique in Toulouse  will come at Loria for a philosophy-informatics seminar on Sept. 19th at 2pm in LORIA in room A008. \nThis seminar is part of the LUE project Open Language and Knowledge for Citizens and is initiated by our colleagues from the Archives Henri-Poincaré Lab. \nOntology applied to data sharing\n\nApplied ontology is a field at the crossroads of various disciplines\, including computer science and philosophy. It aims to systematically develop general categorizations that promote semantic interoperability of data (that is\, ensuring the preservation of the meaning of data when it is transmitted from one system to another). An applied ontology defines the categories of entities relevant to a field of knowledge\, and sets out formal axioms that clarify the relationships between these entities. \nAn ontology can be represented as a computer file – the OWL (Web Ontology Language) format being frequently used today. The field of biomedical ontologies is particularly active\, with the continued development of a large set of interoperable biomedical ontologies\, the OBO Foundry (http://www.obofoundry.org/). But ontologies are also widely used in many other fields (engineering\, internet of things\, geographic information systems\, environment\, ecology\, etc.). \nI will show how philosophical work on causality or the nature of informational entities can support the development of coherent ontologies\, considering various examples from biomedical ontology. I will briefly present the Quebec PARS3 project for a learning health system\, based on these ontologies\, which aims to support a coupling between care and research activities. \n 
URL:https://www.loria.fr/event/seminar-olki-ontology-applied-to-data-sharing/
CATEGORIES:Séminaire
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BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20190919T160000
DTEND;TZID=Europe/Paris:20190919T170000
DTSTAMP:20190913T075028Z
CREATED:20190913T075025Z
LAST-MODIFIED:20190913T075028Z
UID:7949-1568908800-1568912400@www.loria.fr
SUMMARY:Seminar 3D Printing : Tim Kuipers (Netherlands)
DESCRIPTION:Tim Kuipers (Netherlands) will be our invited speakers. He will give a talk on Thursday\, September 19\, 2019 at 16H00 in room A008.\n  \n\nTim Kuipers is a software engineer working on path planning for 3D printing at Ultimaker\, a manufacturer of desktop / concrete floor FDM 3D printers.\nHe started a PhD trajectory 2 years ago at the Delft University of Technology which is aimed on physicalizing heterogeneous model properties – everywhere from varying surface colors to varying stiffness throughout the print.\n  \nOn Thursday 19 September he will present his latest work « CrossFill: Foam Structures with Graded Density for Continuous Material Extrusion » which utilizes a space-filling surface to enforce continuous extrusion of print paths along each layer.\n  \nFor more info:\nhttps://kuipers.weblog.tudelft.nl/
URL:https://www.loria.fr/event/seminar-3d-printing-tim-kuipers-netherlands/
CATEGORIES:Séminaire
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20190920T100000
DTEND;TZID=Europe/Paris:20190920T110000
DTSTAMP:20190919T123311Z
CREATED:20190919T113257Z
LAST-MODIFIED:20190919T123311Z
UID:8020-1568973600-1568977200@www.loria.fr
SUMMARY:Talk Ahmed Ali - Qatar Computing Research Institute (QCRI)
DESCRIPTION:Ahmed Ali from the QCRI (Qatar Computing Research Institute) will give a talk on Friday 20 at 10:00 in room C005.\nHe will present his work on Automatic speech recognition developed on 1200 hours of speech. \nAbstract:  \nDialectal Arabic speech is suffering from a lack of labelled resources and a lack of orthography. There are three main challenges in dialectal Arabic speech recognition: (1) finding labelled dialectal speech\, (2) building robust dialectal speech recognition with limited labelled and (3) evaluating speech recognition for dialects with no standard orthographic rules.\nMy talk is divided into three parts: \n\nThe first section addresses dialect identification using speech data\, and introduces our novel approach in combining acoustic\, lexical and phonetic features using deep learning.\nThe second section presents our effort in the Multi-Genre Broadcast challenges. In the MGB-2\, more than 1\,200 hours lightly supervised speech data has been used for training multi-dialect broadcast system. The MGB-3 and MGB-5 will highlight the effort in building dialectal challenge in the wild\, where limited dialectal multi-general YouTube data has been used for transfer learning.\nThe third part of my talk addresses our effort in evaluating dialectal speech with no standard orthographic rules. Our methods learn from multiple transcribers and align the speech hypothesis to overcome the non-orthographic aspect. We have also automated this process by learning from twitter data different writing and propose a new evaluation metric. Finally\, we tried to estimate the word error rate with no reference transcription using decoding and language features. We show that our word error rate estimation is robust for many scenarios with and without the decoding features.\n\nBiography :  \nAhmed Ali is a Principal Engineer at the Arabic Language Technologies group (ALT) at the Qatar Computing Research Institute (QCRI). His work interests are in the area of speech recognition and natural language processing. Ahmed completed his PhD at the University of Edinburgh and BSc at Cairo University. He joined QCRI in 2011.\nPrior to joining QCRI\, Ahmed worked for Nuance in Cambridge\, UK from 2006-2011. Before Nuance\, Ahmed worked for six years at different IBM labs\, including two years at Watson\, USA\, labs. His current research on speech recognition has led to the development of state-of-the-art multi-dialect Arabic speech recognition: QCRI advanced transcription system (QATS). QATS is used by Al-Jazeera to transcribe their online content. DW and BBC have been using QATS. Ahmed’s team has won first place in the worldwide MGB-2 speech recognition competition. He also won the prestigious Qatar Foundation Best Innovation Award in 2018.
URL:https://www.loria.fr/event/talk-ahmed-ali-qatar-computing-research-institute-qcri/
CATEGORIES:Séminaire
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BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20190926T110000
DTEND;TZID=Europe/Paris:20190926T120000
DTSTAMP:20190913T075437Z
CREATED:20190913T075434Z
LAST-MODIFIED:20190913T075437Z
UID:7952-1569495600-1569499200@www.loria.fr
SUMMARY:Seminar on Protein : Didier Devaurs (Grenoble\, France)
DESCRIPTION:The next Capsid seminar will be held on Thursday\, September 26\, 2019 at 11H00 in room B013.\n\nOur invited speaker is Didier Devaurs (Grenoble\, http://www.linkedin.com/in/devaurs )\, details below. \nEfficient Strategies to Explore the Conformational Space of Proteins and Molecular Complexes \nDidier Devaurs\nPostdoctoral Research Associate\nUniv. Grenoble Alpes / Inria \nProteins are the main effectors of genomic information and are involved in a wide range of physiological and pathological processes. A protein’s\nfunction is known to be influenced or mediated by its interactions with other molecules. These interactions are often associated with changes in\nthe protein’s conformation (i.e.\, its 3D structure). Studying this structure-function relationship requires gathering information about a\nprotein’s conformational space. While experimental techniques have enabled the description of numerous molecular structures\, computational\nmethods are required to exhaustively explore the conformational space of proteins. However\, because of the curse of dimensionality\,\nconformational exploration remains a critical challenge in structural biology.\nIn this talk\, I will present three strategies (that can be combined) to mitigate the curse of dimensionality when computationally exploring the\nconformational space of a protein or a molecular complex. The first strategy consists of using coarse-grained conformational sampling\nmethods\, instead of more accurate but more computationally-expensive all-atom simulation methods. The second strategy consists of guiding the\nconformational exploration with experimental data. The third strategy consists of adopting a purely geometric abstraction of the\nconformational exploration problem to enhance the scalability of existing computational methods.
URL:https://www.loria.fr/event/seminar-on-protein-didier-devaurs-grenoble-france/
CATEGORIES:Séminaire
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BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20190927T100000
DTEND;TZID=Europe/Paris:20190927T110000
DTSTAMP:20190926T132521Z
CREATED:20190913T111429Z
LAST-MODIFIED:20190926T132521Z
UID:7966-1569578400-1569582000@www.loria.fr
SUMMARY:D3 (networks\, systems and services) seminar on reversible computing
DESCRIPTION:The next Department 3 seminar will take place on Friday September 27th 10:00am at room A008. \nThe talk will be given by Harun Siljak\, researcher from Trinity College Dublin. \nTitle: Maxwell’s Demon in the communication channel: the reversible perspective\n \n \nAbstract: Thermodynamics of computation and wireless communications are rarely mentioned in the same sentence: this talk\, and the works presented in it aims to show the important relationship of these two scientific and engineering disciplines. What benefits insisting on reversibility in communication channel models\, equipment and algorithms involved in wireless communications can bring\, and is there an even bigger picture to look at? We will discuss a set of examples and recent results\, as well as a roadmap for the future of this pioneering work. \n\n \nBio: Harun Šiljak obtained his BoE and MoE degrees in control engineering from the University of Sarajevo in 2010 and 2012\, respectively\, and his PhD in electrical engineering from International Burch University Sarajevo in 2015. After working at International Burch University and Bell Labs Ireland\, he joined Trinity College Dublin as an EDGE Marie Curie Fellow in 2017 to work on his project on complexity and control in distributed massive MIMO. His research interests include complex systems science\, physics of computation\, reversibility\, wave propagation and nonlinear dynamics. His other interests include popular science and science fiction writing\, as well as collaborations with artists and writers (https://harunsiljak.com/research/).
URL:https://www.loria.fr/event/d3-seminar-on-reversible-computing/
CATEGORIES:Séminaire
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