retrieve:
Return the details about the given Event id.

list:
List all Event objects.

GET /api/v1/events/?format=api&offset=140&ordering=-event__contact
HTTP 200 OK
Allow: GET, HEAD, OPTIONS
Content-Type: application/json
Vary: Accept

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            "id": 71489,
            "title": "Adapting to Conflict: Equilibrium structure and adaptive learning in harmonic games",
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            "start_date": "2026-04-09",
            "end_date": "2026-04-09",
            "start_time": "11:15:00",
            "end_time": "12:00:00",
            "description": "<strong>Abstract</strong><br>\r\nWe propose an adaptive, “parameter-agnostic” algorithm for learning in harmonic games, a class of finite games characterized by strictly opposed, conflicting interests. In contrast to zero-sum games—which do not always capture conflict, even between two players—harmonic games may exhibit highly non-convex equilibrium configurations. In particular, if the game’s ambient dimension is odd, we show that the set of totally mixed Nash equilibria is a (typically non-convex) real algebraic variety of dimension at least one, which extends all the way to the boundary of the game’s strategy space. Despite the difficulties incurred by this complicated equilibrium structure, we provide an extrapolation-based variant of “follow-the-regularized-leader” (FTRL) which converges to Nash equilibrium with order-optimal regret guarantees: O(1) in self-play, and O( sqrt(T) ) against arbitrary play.<br>\r\n<br>\r\n<br>\r\n<strong>Biography</strong><br>\r\nDavide Legacci is a PhD candidate in Computer Science at Université Grenoble Alpes, CNRS and Inria, within the GHOST team, supervised by Panayotis Mertikopoulos and Bary S. R. Pradelski. His research lies at the intersection of game theory and online learning, with a focus on the geometric structure of competitive interactions and the design of no-regret learning dynamics for adversarial environments. His work has been presented at leading machine learning venues including ICML and NeurIPS. He is expected to defend his PhD in September 2026.<br>\r\n ",
            "image_description": "",
            "creation_date": "2026-03-30T14:40:05",
            "last_modification_date": "2026-03-31T17:07:35",
            "link_label": "",
            "link_url": "",
            "canceled": "False",
            "cancel_reason": "",
            "place_and_room": "ME B0 374",
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            "speaker": "Davide Legacci, PhD candidate in Computer Science at <a href=\"https://www.inria.fr/fr/centre-inria-universite-grenoble-alpes\">Université Grenoble Alpes, CNRS and Inria,</a>",
            "organizer": "Prof. Maryam Kamgarpour",
            "contact": "[email protected]",
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            "id": 71384,
            "title": "Sustainable Buildings and Construction Summit",
            "slug": "sustainable-buildings-and-construction-summit",
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            "start_date": "2026-04-20",
            "end_date": "2026-04-22",
            "start_time": null,
            "end_time": null,
            "description": "<p>The <a href=\"https://sustainable-construction.org/\"><strong><u>Sustainable Buildings and Construction Summit 2026</u></strong></a> (20-22 April, Lausanne, Switzerland) convenes government officials alongside academics, private sector leaders, financiers, and civil society—converging policymakers, researchers, and practitioners to translate global sustainability commitments into practical solutions. Co-organised by EPFL and the UNEP-hosted Global Alliance for Buildings and Construction, the Summit aims to accelerate the transition to a resilient built environment worldwide, with particular focus on emerging markets and developing economies where built environment growth is most significant.The Summit will include thought-evoking keynotes, cross-disciplinary workshops, academic showcases, and solution-focused roundtables on themes such as upfront embodied emissions, climate resilient construction, circularity, affordable housing, and sustainable urban planning. </p>",
            "image_description": "Sustainable Buildings & Construction Summit announcement",
            "creation_date": "2026-03-16T14:04:45",
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            "organizer": "EPFL Centre for Worldwide Sustainable Construction, UNEP, Global Alliance for Buildings and Construction.",
            "contact": "Anne Dekeukelaere: [email protected];\r\n\r\nCarolien van der Voorden: [email protected];",
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            "id": 70968,
            "title": "From Functional Genomics to Tissue Models: Investigating Pseudomonas aeruginosa-Macrophage Interactions",
            "slug": "from-functional-genomics-to-tissue-models-invest-2",
            "event_url": "https://memento.epfl.ch/event/from-functional-genomics-to-tissue-models-invest-2",
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            "start_date": "2026-04-24",
            "end_date": "2026-04-24",
            "start_time": "17:00:00",
            "end_time": null,
            "description": "<p>Thesis Director: Prof. A. L. A. Persat,<br>\r\nBiotechnology and Bioengineering doctoral program<br>\r\nThesis Nr. 11340<br>\r\n<br>\r\nTo take part in the public defense, please contact directly the speaker</p>",
            "image_description": "",
            "creation_date": "2026-01-27T10:25:22",
            "last_modification_date": "2026-01-27T10:25:22",
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            "spoken_languages": [],
            "speaker": "<strong>Tania DISTLER</strong>",
            "organizer": "",
            "contact": "<strong>Tania DISTLER</strong>",
            "is_internal": "False",
            "theme": "",
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            "id": 71272,
            "title": "An Artificial Sphincter based on Dielectric Elastomer Actuators in the context of Urinary Incontinence",
            "slug": "an-artificial-sphincter-based-on-dielectric-elasto",
            "event_url": "https://memento.epfl.ch/event/an-artificial-sphincter-based-on-dielectric-elasto",
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            "lang": "en",
            "start_date": "2026-04-24",
            "end_date": "2026-04-24",
            "start_time": "17:00:00",
            "end_time": null,
            "description": "<p>Thesis Directors: Prof. Y. Perriard, Dr Y. R. C. Civet<br>\r\nAdvanced Manufacturing doctoral program<br>\r\nThesis Nr. 11322<br>\r\n<br>\r\nTo take part in the public defense, please contact directly the speaker</p>",
            "image_description": "",
            "creation_date": "2026-03-02T10:55:01",
            "last_modification_date": "2026-03-02T10:55:01",
            "link_label": "",
            "link_url": "",
            "canceled": "False",
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            "place_and_room": "MC A1 272",
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            "spoken_languages": [],
            "speaker": "<strong>Quentin Philippe Mario DE MENECH</strong>",
            "organizer": "",
            "contact": "<strong>Quentin Philippe Mario DE MENECH</strong>",
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            "keywords": "EDAM",
            "file": null,
            "icalendar_url": "https://memento.epfl.ch/event/export/119932/",
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        {
            "id": 71426,
            "title": "7T MRI Seminar: Leveraging the potential of UHF scanners for fMRI studies",
            "slug": "7t-mri-seminar-leveraging-the-potential-of-uhf-sca",
            "event_url": "https://memento.epfl.ch/event/7t-mri-seminar-leveraging-the-potential-of-uhf-sca",
            "visual_url": "https://memento.epfl.ch/image/32772/200x112.jpg",
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            "lang": "en",
            "start_date": "2026-04-21",
            "end_date": "2026-04-21",
            "start_time": "10:00:00",
            "end_time": "11:30:00",
            "description": "<p>Hosted by <a href=\"https://cibm.ch/community/frederic-grouiller/\">Frédéric Grouiller</a>, CIBM MRI HUG-UNIGE Section head, we are pleased  to invite you to attend the CIBM 7T MRI Seminar on April 21st at 10:00 CEST by Caroline Le Ster from the CEA Neurospin, Paris who will be sharing on<strong> “Leveraging the potential of UHF scanners for fMRI studies”.<br>\r\nAbstract</strong><br>\r\nThere is a growing availability of 7T scanners, with approximately 100 systems currently installed worldwide. These ultra-high-filed (UHF) scanners are particularly relevant for neuroimaging, where anatomical and functional images can be acquired with higher spatial and temporal resolution than on conventional scanners. However, UHF scanners remain difficult to operate, and understanding their specific limitations is essential. These systems indeed face several challenges arising from MR physics and biological effects that must be addressed within engineering constraints. Leverage the potential of UHF scanners, for instance through field monitoring, is therefore important to make the most of these scanners and benefit from the intrinsic SNR gain.<br>\r\nfMRI particularly benefits from the increase in magnetic field strength, enabling studies to be performed at higher resolution than at lower fields. In order to maintain reasonable acquisition times despite larger imaging matrices, several acceleration strategies have been developed, e.g. multi-slice EPI (SMS-EPI), three-dimensional EPI (3D-EPI) and non-Cartesian sampling schemes. In addition, functional contrasts also benefit from the field increase, including improved spatial localization of the BOLD contrast and the possibility to exploit VASO contrast.</p>",
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            "creation_date": "2026-03-23T10:36:15",
            "last_modification_date": "2026-03-23T10:39:08",
            "link_label": "Website of the event",
            "link_url": "https://cibm.ch/event/7t-mri-seminar-leveraging-the-potential-of-uhf-scanners-for-fmri-studies/",
            "canceled": "False",
            "cancel_reason": "",
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            "speaker": "<strong>Caroline Le Ster</strong>, CEA Neurospin, Paris, France",
            "organizer": "<a href=\"https://cibm.ch\">CIBM Center for Biomedical Imaging</a>",
            "contact": "<strong>Miguel Molina</strong>, CIBM Media &amp; Events Manager",
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            "keywords": "7T MRI scanner, fMRI, UHF, Biomedical imaging",
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            "id": 71510,
            "title": "Physics and mathematics of quantum many-body scars and beyond",
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            "event_url": "https://memento.epfl.ch/event/physics-and-mathematics-of-quantum-many-body-scars",
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            "lang": "en",
            "start_date": "2026-04-10",
            "end_date": "2026-04-10",
            "start_time": "14:30:00",
            "end_time": null,
            "description": "<p>Thesis Directors: Prof. F. Mila, Dr M. Müller<br>\r\nPhysics doctoral program<br>\r\nThesis Nr. 11527<br>\r\n<br>\r\nTo take part in the public defense, please contact directly the speaker</p>",
            "image_description": "",
            "creation_date": "2026-04-01T10:12:46",
            "last_modification_date": "2026-04-01T10:12:46",
            "link_label": "",
            "link_url": "",
            "canceled": "False",
            "cancel_reason": "",
            "place_and_room": "PSI, WHGA 001/Auditorium, 5232 Villigen",
            "url_place_and_room": "",
            "url_online_room": "",
            "spoken_languages": [],
            "speaker": "<strong>Keita OMIYA</strong>",
            "organizer": "",
            "contact": "<strong>Keita OMIYA</strong>",
            "is_internal": "False",
            "theme": "",
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            },
            "keywords": "",
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            "icalendar_url": "https://memento.epfl.ch/event/export/120255/",
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                "code": "CONF",
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        {
            "id": 71374,
            "title": "Quantitative Holographic Imaging for Single-Cell Phenotyping in a Microfluidic System",
            "slug": "quantitative-holographic-imaging-for-single-cell-p",
            "event_url": "https://memento.epfl.ch/event/quantitative-holographic-imaging-for-single-cell-p",
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            "lang": "en",
            "start_date": "2026-04-09",
            "end_date": "2026-04-09",
            "start_time": "17:00:00",
            "end_time": null,
            "description": "<p>Thesis Director: Prof. B. Deplancke,<br>\r\nBiotechnology and Bioengineering doctoral program<br>\r\nThesis Nr. 11521<br>\r\n<br>\r\nTo take part in the public defense, please contact directly the speaker</p>",
            "image_description": "",
            "creation_date": "2026-03-13T14:00:35",
            "last_modification_date": "2026-03-16T10:41:22",
            "link_label": "",
            "link_url": "",
            "canceled": "False",
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        {
            "id": 71109,
            "title": "Next-Generation Stem Cell-based Human Embryo Models Through Bioengineering",
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            "event_url": "https://memento.epfl.ch/event/next-generation-stem-cell-based-human-embryo-mod-2",
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            "lang": "en",
            "start_date": "2026-05-29",
            "end_date": "2026-05-29",
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