retrieve:
Return the details about the given Event id.

list:
List all Event objects.

GET /api/v1/events/?format=api&offset=30&ordering=-event__label_link
HTTP 200 OK
Allow: GET, HEAD, OPTIONS
Content-Type: application/json
Vary: Accept

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            "title": "Managing Data for Value in Life Science  [CAS Management in Life Sciences 2027]",
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            "description": "<strong>Module 3: Managing Data for Value in Life Science</strong><br>\r\n<br>\r\nThe medical devices, diagnostics, pharmaceuticals and biotechnology all depend on smart data management strategies. The Managing Data module shares successful approaches to the many critical data management opportunities &amp; challenges and illustrates how to integrate them using real-life examples.<br>\r\n<br>\r\n*************<br>\r\n<br>\r\n<strong><u>About the CAS Managament in Life Sciences:</u><br>\r\nLeading multi-disciplinary projects in BioTech, MedTech and Pharma</strong><br>\r\n<br>\r\nThe world of therapeutic development is becoming increasingly complex. Competition is diversifying and innovating across industries, just as new regulations and multi-stakeholder engagements disrupt the competitive landscape. Challenge or opportunity? It is up to you!<br>\r\n<br>\r\nThis program explores the entire development process of therapeutic interventions, from initial planning all the way to commercialization, allowing our participants to deepen their expertise. They also learn the leadership qualities and management tools required to lead multi-disciplinary projects in Biotech, Medtech and Pharma ventures.<br>\r\n<br>\r\nThis Certificate of Advanced Studies (CAS) runs every year, from January to June at the EPFL Campus in Lausanne.\r\n<ul>\r\n\t<li>7 modules</li>\r\n\t<li>Flexible format</li>\r\n\t<li>Part-time</li>\r\n</ul>",
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            "id": 70058,
            "title": "BMI Distinguished Seminar // Mitra Hartmann: Touching the world and the wind: sensorimotor control and flow sensing with whiskers",
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            "description": "<p>In rodents, the whisker (vibrissal) system supports behaviors ranging from locomotor guidance and object exploration to social interactions and anemotaxis (flow sensing). This versatility makes whisker-dependent behavior a powerful lens on sensorimotor control. The first part of the talk describes use of the whisker system to study embodied sensing and closed-loop sensorimotor control. On the sensory side, I will present models of whisker mechanics and signal encoding by primary sensory neurons. On the motor side, I will describe models of whisker musculature and emerging insights into the circuits that generate whisker movements. I will then outline key challenges in linking sensing to movement within an integrated closed-loop framework. The second part of the talk will highlight how whiskers interact with moving air. Bending and vibration encode direction and speed, including regimes where vibrations emerge at subcritical Reynolds numbers through coupled structural nonlinearities and fluid-structure interactions.<br>\r\n<br>\r\n<br>\r\n </p>",
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            "title": "BMI Distinguished Seminar // Yvette Fisher: Flexibility of visual input to the Drosophila head direction network",
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            "description": "<p>Many plasticity rules rely on adjusting the strength of synapses between pairs of cells based on their coincident activity. We uncovered a new mechanism for coincidence detection in the Drosophila head direction network. To maintain an accurate sense of direction, head direction neurons that signal orientation during navigation must learn to anchor to relevant external sensory cues in novel environments. Yet the synaptic mechanism for this form of unsupervised learning is unknown in any organism. In Drosophila, GABAergic visual inputs converge onto head direction neurons, and these inhibitory synapses change strength with experience to learn the relationship between visual landmarks and head direction. However, how coincident pre- and postsynaptic activity is detected across this inhibitory synapse is not understood. We discovered that neurons which release the monoamine octopamine close a feedback loop that conveys postsynaptic head direction activity onto presynaptic terminals of visual inputs. This octopamine pathway is required for anchoring the head direction network to visual cues. Furthermore, pairing structured activation of octopamine neurons with a visual cue is sufficient to drive rapid plasticity, even without postsynaptic head direction cell activity. Previous work has extensively characterized coincidence detection mechanisms at excitatory synapses; our work defines a novel mechanism for coincidence detection at an inhibitory synapse, in which postsynaptic activity is relayed via a neuromodulatory neuron onto presynaptic terminals.<br>\r\n </p>",
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            "creation_date": "2026-01-21T16:26:07",
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            "title": "BMI Distinguished Seminar // Manish Saggar",
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            "start_date": "2026-09-09",
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            "creation_date": "2026-01-21T16:42:23",
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            "speaker": "Manish Saggar, Stanford University",
            "organizer": "SV BMI Host: K. Hess Bellwald",
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            "id": 71009,
            "title": "BMI Seminar // Sung Han: Revealing the role of neuropeptides in neural circuit function and behavior",
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            "event_url": "https://memento.epfl.ch/event/bmi-seminar-sung-han-revealing-the-role-of-neurope",
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            "start_date": "2026-04-13",
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            "start_time": "14:00:00",
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            "description": "<p>Neuropeptides play a critical role in modulating neural circuits and influencing behavior, yet their precise mechanisms of action remain largely unexplored. In this talk, I will present our latest findings on the role of neuropeptides in neural circuit function, uncovered through the use of novel genetically encoded sensors and silencers designed specifically for peptidergic transmission. By applying these innovative tools, we have identified key pathways and mechanisms by which neuropeptides regulate neuronal activity and orchestrate complex behavioral responses. This presentation will highlight the biological insights gained from these studies, offering a deeper understanding of how neuropeptide signaling shapes brain function and behavior.<br>\r\n </p>",
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            "speaker": "Sung Han, Salk Institute for Biological Studies",
            "organizer": "<strong>BMI LSYM</strong> <strong>Host:  Ralf Schneggenburger</strong>",
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            "title": "BMI Seminar // Pierre Le Merre: A prefrontal cortex map based on single-neuron activity",
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            "event_url": "https://memento.epfl.ch/event/bmi-seminar-pierre-le-merre-a-prefrontal-cortex-ma",
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            "creation_date": "2026-02-05T16:08:19",
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            "speaker": "Pierre Le Merre, Lyon Neuroscience Research Centre, University of Lyon | Karolinska Institute, Stockholm",
            "organizer": "BMI - LSENS Host: Carl Petersen",
            "contact": "[email protected]",
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        {
            "id": 71300,
            "title": "BMI Seminar // Seung-Hee Lee: Balance between stability and flexibility",
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            "event_url": "https://memento.epfl.ch/event/bmi-seminar-seung-hee-lee-balance-between-stabilit",
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            "start_date": "2026-05-22",
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            "description": "<p>TBD</p>",
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            "creation_date": "2026-03-04T18:39:30",
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            "speaker": "Seung-Hee Lee, Dept. of Biological Sciences, KAIST, South Korea",
            "organizer": "SV BMI LSENS\r\n\r\nHost: Carl Petersen",
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            "id": 70945,
            "title": "Une éducation au réel. L'Atelier Cantàfora à l'EPFL / ARCHIZOOM",
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            "start_date": "2026-04-14",
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            "description": "<strong>UNE ÉDUCATION AU RÉEL <br>\r\nL’ATELIER CANTÀFORA<br>\r\n18.03-05.06.2026</strong><br>\r\n<br>\r\nGuided tour by Nicola Braghieri<br>\r\nFollowed by a School Lecture by Truwant + Rodet +<br>\r\n<br>\r\nThis exhibition explores the vast field of graphic representation in architecture through fifteen years of teaching architectural representation at EPFL at the turn of the 2000s. It presents around a hundred paintings on wood, didactic works produced between 1997 and 2007 in the teaching units of the painter Arduino Cantàfora. They suggest a possible way of making, between thought and <em>actio</em>, where drawing and painting structure a concept and become an essential language for expressing the founding idea of a project. Despite the transition to digital technology, the exhibition conveys the conviction that the artisanal culture of drawing and painting continues to play a fundamental and indispensable role in training architects.<br>\r\n<br>\r\n<em>An exhibition produced in collaboration with the LAPIS laboratory at the EPFL’s Institute of Architecture and Urban Planning.</em><br>\r\n<br>\r\nGuided tours are available upon <a href=\"https://forms.gle/gev6sJt7sk9V4xFP9\">registration</a>. <br>\r\nGuided tours can be organized upon request for groups and schools. ",
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            "id": 71170,
            "title": "Une éducation au réel / ARCHIZOOM",
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