Sort by
Refine Your Search
-
Category
-
Country
-
Program
-
Employer
- NIST
- University of North Carolina at Chapel Hill
- Harvard University
- SUNY University at Buffalo
- Baylor College of Medicine
- Texas A&M University
- The University of Arizona
- University of Florida
- University of Minnesota
- University of Oregon
- University of Texas at Austin
- Anacker Lab
- Arizona State University
- Baylor College of Medicine (BCM)
- Baylor University
- Biophysical and Biomedical Measurement Group, National Institute of Standards and Technology
- Boise State University
- CNRS
- California Institute of Technology
- Carnegie Mellon University
- Eli Lilly and Company
- Massachusetts Institute of Technology
- Missouri University of Science and Technology
- Newcastle University
- North Carolina State University
- Northeastern University
- South Dakota Mines
- St Jude Children's Research Hospital
- Stephen & Denise Adams Center for Parkinson's Disease at Yale School of Medicine
- Texas A&M AgriLife
- The California State University
- Universitat Politècnica de Catalunya (UPC)- BarcelonaTECH
- University of Denver
- University of Michigan
- University of Pittsburgh
- University of San Diego
- University of Texas at Dallas
- Washington State University
- Yale University
- 29 more »
- « less
-
Field
-
team at IETR, CNRS, Rennes, France. Our research focuses on developing passive implantable biosensors that use backscattering to wirelessly transmit sensing data. The researcher will work in a
-
? No Offer Description Mission: Work in the area of characterization of nanomaterials and biosensors using atomic force microscopy. Functions to be developed: Characterize the morphology of nanoparticles
-
environmental change. This fully funded project will explore design principles for whole-cell biosensors to help create robust biosensing technologies for aquatic environments. Environmental pollution in aquatic
-
on data-centric artificial intelligence (AI) and wearable biosensors for enhancing student learning, engagement, and stress management. The project combines wearable physiological sensing with machine
-
biosensors of metabolism, and we study the dynamics of metabolism in mouse brain using both ex vivo and in vivo imaging methods. We also work to learn the role of altered metabolism in preventing epileptic
-
University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 2 months ago
focused on the development, fabrication, and characterization of electrochemical biosensors for biomedical applications. The candidate will work on biosensor design, electrode fabrication, surface
-
University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 22 hours ago
should have an interest and research experience in biosensor development and performance using various receptors spanning proteins and antibodies, aptamers, nanoparticles, polymers, and small molecules
-
chemogenetic (DREADD) manipulations • In vivo Ca2+ imaging (miniature microscopes and fiber photometry) in freely moving mice • Neurotransmitter biosensor imaging in freely moving mice • Behavioral paradigms
-
-based proteomics or related protein-analysis workflows. Experience with fiber photometry, optical biosensors, or in vivo physiological measurements. Experience studying metabolism, hypothalamic circuits
-
apply a novel metagenomic "biosensor" framework to investigate microbial carbon cycling in the ocean and translate this approach to studies of the gut microbiome in the context of colorectal cancer