Sort by
Refine Your Search
-
Country
-
Employer
- University of Maryland, Baltimore
- Duke University
- The University of Arizona
- Indiana University
- FAPESP - São Paulo Research Foundation
- Northeastern University
- Stony Brook University
- University of Colorado
- Baylor College of Medicine
- Boehringer Ingelheim International GmbH
- CNRS
- Chalmers University of Technology
- EPFL
- King's College London
- Loyola University
- Marquette University
- Pennsylvania State University
- Purdue University
- Saint Louis University
- St Jude Children's Research Hospital
- Stanford University
- The University of Iowa
- University of Cambridge;
- University of Florida
- University of Kent;
- University of Miami
- University of Minnesota
- University of Nebraska Medical Center
- University of Nevada, Reno
- University of North Carolina at Chapel Hill
- Łukasiewicz Research Network – PORT Polish Center for Technology Development
- 21 more »
- « less
-
Field
-
remodel their internal structures to drive tissue growth, function, and regeneration. We focus particularly on the mechanisms underlying cell-cell fusion, using skeletal muscle as a primary model system
-
Medicine at the University of Arizona. The environment features a world-class group of investigators with vast expertise in cardiovascular and skeletal muscle science. The laboratory is focused broadly
-
of scientists focussing on understanding the role of smooth muscle cells in vascular calcification. This role involves the development of an engineered 3D flow system for understanding how mechanical signals
-
(Liver-Muscle-Bone) as a mediator of cachexia and mechanisms underlying muscle weakness during cancer survivorship. These studies are funded by multiple sources, including NIH/NCI and the American Cancer
-
generation of DeepLabCut and related open-source tools used by labs worldwide. Position 2: Embodied AI Train muscle-actuated, biomechanically realistic agents to perform skilled motor tasks using reinforcement
-
and smooth muscle cells. For related publications, please see below: https://pubmed.ncbi.nlm.nih.gov/38898303/ https://pubmed.ncbi.nlm.nih.gov/31504245/ https://pubmed.ncbi.nlm.nih.gov/22896585
-
, trams, and urban vehicles – face real injury risks from unexpected disturbances caused by road conditions and driver maneuvers, particularly for passengers with limited muscle strength such as the elderly
-
presumed skeletal muscle tumor, as an endothelial progenitor cell ( Cancer Cell, 33:108-124, 2018 and Nature Communications , 14:729, 2023). We now seek to elucidate the mechanism of this cell reprogramming
-
airway muscles. You will receive extensive training in the relevant techniques, including whole cell patch clamp electrophysiology of brainstem neurons, immunohistochemistry, RNA-sequencing, etc. You will
-
or at a designated assignment location. Be Bold. In this position, you will Study skeletal muscle biology and function in regulating other tissues, using cellular, molecular, and model animal (transgenic