Sort by
Refine Your Search
-
research environment Access to state-of-the-art core facilities (genomics, imaging, flow cytometry, bioinformatics, and more) Multidisciplinary training at the interface of cancer biology, functional
-
to work on cutting-edge foundation models for real-world oncology reasoning Access to unique multimodal clinical datasets and close collaboration with Kaiko.ai and clinical partners Highly interdisciplinary
-
Substantial scientific independence and the opportunity to shape experimental methods and research directions within the ERC project Access to state-of-the-art high-repetition-rate laser systems, XUV sources
-
the Robotic Fabrication Laboratory (RFL) and the Zero Carbon Building System Laboratory (ZCBS) for daylight and integrated systems research, and the Digital Design Lab. LUS provides access to unique design and
-
motor neuroscience and biomechanics is a plus. We offer A vibrant, collaborative research environment at the intersection of AI and neuroscience Access to EPFL's compute infrastructure and to the broader
-
-invasive targeted drug delivery to the brain. Our laboratory recently developed a novel focused ultrasound-mediated targeted drug delivery platform, published in Nature Communications (https://www.nature.com
-
of scientific collaborators Access to the outstanding technological infrastructure of ETH Zurich Professional administrative support Working, teaching and research at ETH Zurich We value diversity and