Federal grant · project grant (b)
Ires Track I: Advanced Imaging and Characterization at the Interface Between Living and Nonliving Materials -the Goals of This Project Are to Develop Advanced Imaging Techniques and Innovative Microscopic Probes to Determine How Biological Cells Respond to Force and to Train U.s. Students in These Techniques. These Experiments Will Help Us Understand How Stem Cells Differentiate Into Functional Cell Types, How Cancer Cells Spread, and How Blood Flow Is Regulated. Understanding How Cells Interact With Their Environment Is Essential for Developing Treatments for a Variety of Health-related Issues, Ranging Across Joint Repairs, Cancer Therapeutics, Tissue Engineering, and Heart and Vascular Disease Prevention and Treatment. the Scientific Goals Will Be Accomplished via a Focused International Collaboration That Provides Intensive Research Training for Graduate and Undergraduate Students. Each Year, Research Will Be Conducted by 4 - 6 U.s. Students Working Toward Their PH.D. or Undergraduate Senior Thesis Under Joint Supervision of Professors From Lehigh University and Researchers in the French National Laboratories in the University of Bordeaux, France. Each of the Participating Students Will Work in Bordeaux Laboratories in the Summer and at Lehigh for the Rest of the Year. Gender Balance and Race and Ethnic Diversities Will Be Considered to Ensure the Development of the United States Stem Workforce in a Diverse, Inclusive and International Environment. a Team of Lehigh Faculty in Science and Engineering Departments in Collaboration With CNRS Researchers in the University of Bordeaux, France Will Conduct Themed Research Projects With Aims to Develop Multiscale Microrheology to Investigate Mechanotransduction of Multicellular Organoids, Time-lapse Confocal Imaging of Stem Cell Differentiation in 3D-PRINTED Scaffolds, and Magnetic Nanoparticle-mediated Transport of Membrane-bound Proteins on a Supported Membrane. Three Model Systems Are to Be Developed for Such Investigation: Organelles Confined by Sub-millimeter Hydrogel Capsules, 3D Printed Bio-scaffolds and Supported Lipid Membranes Embedded With Magnetic Nanoparticle-labeled Membrane-bound Proteins. Multiscale Imaging Modalities, Including Fluorescence Confocal Microscopy and Optical Coherent Tomography, Will Be Used to Examine Cellular and Extracellular Milieu at Different Length Scales. Multiscale Rheology Probes, Including Microbeads Manipulated by Optical Tweezers, Deformable Microgels and Oil or Fat Droplets, Will Be Used to Map the Stress-strain Field in Subcellular to Multicellular Domains. Correlation Between Cellular Growth and Response and the Stress-strain Maps Will Guide the Researchers in Developing Theoretical Models as Well as Testing the Validity of These Models. This Project Will Advance Understanding of Mechanotransduction of Stem Cell Differentiation and Cell Migration in Complex Three Dimensional Environments. Experiments on Transport of Membrane Proteins Will Generate New Data and Experimental Approaches to Discover the Mechanisms That Cells Use to Respond to Blood Flow. Success of This Project Will Be Assessed by Journal Publications and by Presentations of Research by the Participating Students in National and International Conferences. This Award Reflects NSF'S Statutory Mission and Has Been Deemed Worthy of Support Through Evaluation Using the Foundation's Intellectual Merit and Broader Impacts Review Criteria.
Committed
$300,000
Paid out
$191.6K
64%
Committed, not yet paid
$108.4K
36%
Loading…
Everything here is this single award's whole record — signed, amended, paid — not a fiscal-year slice. The by-year charts elsewhere split an award across the years it was committed; this page keeps it whole.
Committed is what the government has legally promised on this award so far. Contracts can also carry a ceiling — the maximum if every option is exercised. Unspent ceiling is headroom, not money owed.
The cash actually disbursed against this award. The gap from committed is the disbursement pipeline: promised, not yet cashed.
Each transaction is a signing event — an action that created or changed the award, dated the day it was signed — not a payment. Negative amounts are real: money de-committed at closeout or renegotiation.
One bar, the award’s whole arithmetic: paid out, then committed, not yet paid, then unspent ceiling.