Sort by
Refine Your Search
-
Category
-
Country
-
Employer
- CNRS
- Rutgers University
- University of Minnesota
- Argonne
- Carnegie Mellon University
- EPFL
- Pennsylvania State University
- Texas A&M University
- The Ohio State University
- The University of Arizona
- Virginia Tech
- Delft University of Technology (TU Delft)
- Empa
- Forschungszentrum Jülich
- Stanford University
- University of Basel
- University of Delaware
- Yale University
- Aalborg University
- Aarhus University
- BioMed X Germany GmbH
- Brookhaven National Laboratory
- George Washington University
- Harvard University
- Heidelberg University
- ICN2
- Institut Català de Nanociència i Nanotecnologia
- Istituto Italiano di Tecnologia
- Karolinska Institutet (KI)
- King's College London
- Lunds universitet
- New York University
- Northeastern University
- Oak Ridge National Laboratory
- Royal Netherlands Academy of Arts and Sciences (KNAW)
- Rutgers University Shumyatsky lab
- SUNY University at Buffalo
- Technical University of Munich
- UNIVERSITY OF HELSINKI
- UNIVERSITY OF SYDNEY
- UNIVERSITY OF VIENNA
- University of Amsterdam (UvA)
- University of Connecticut
- University of Kentucky
- University of Liverpool
- University of Lund
- University of New England
- University of Oregon
- University of Oslo
- University of Oxford
- University of Oxford;
- University of Sydney
- University of Washington
- Université Bourgogne Franche-Comté
- VIB
- Washington State University
- 46 more »
- « less
-
Field
-
neuromodulatory circuits, sensory processing, in vivo imaging, and/or behavior. Training and mentorship will be provided to support the development of independent fellowship and grant applications. About The Lab
-
) is a generalization of the standard QBF that allows them to succinctly encode many hard problems arising in hardware verification, circuit design and software synthesis. The main goal of this project
-
are developing technology to robotically manufacture robust optical circuits for quantum technology and beyond. We provided the circuit boards for the AQuRA optical lattice clock and are offering
-
for bioinspired robotics. The main focus of this project is how neural circuits in the motor system of the fly, Drosophila melanogaster, orchestrate limb movements and autonomous behavior in complex environments
-
Qualifications • PhD in Biomedical Engineering, Mechanical Engineering, Electrical Engineering, Robotics, or a related engineering field. • Experience in robotics design, mechatronics, electromechanical systems
-
What we are looking for The BioMed X Institute in New Haven, Connecticut, USA is establishing a new, fully funded research group in the following field: Neural Circuit Regulation of Immune Function
-
. Collaboration with and supervision of bioinformatics Master’s and PhD students will support the integration of circuit and behavioral data with transcriptomic and proteomic datasets generated within the project
-
the Italian Multiple Sclerosis Foundation (AISM/FISM), involving Dr. Raffaella Tonini (Neuromodulation of Cortical and Subcortical Circuits), Dr. Arash Ajoudani (Human-Robot Interfaces and Interaction), Dr
-
, and how those conversations shape health and disease across tissues — including the skin and the meninges. Our long-term goal is to define druggable neuroimmune circuits and translate them
-
, circuit, and computational approaches to examine neural activity in awake-behaving rodents performing auditory and audiovisual tasks. These approaches include high-channel count silicon-probe