Engineering Next-Generation Human Nervous System Microphysiological Systems (R01)

This Funding Opportunity Announcement (FOA) encourages research grant applications directed toward developing next-generation human cell-derived microphysiological systems (MPS) with improved fidelity to complex human brain, spinal, peripheral nervous system and/or sensory end organ circuit physiology


in vivo, which will ultimately facilitate analysis of higher order functional deficits relevant to complex nervous system disorders.

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Agency: Department of Health and Human Services

Office: National Institutes of Health

Estimated Funding: Not Available





Obtain Full Opportunity Text:
http://grants.nih.gov/grants/guide/pa-files/PAR-16-398.html

Additional Information of Eligibility:
Other Eligible Applicants include the following: Alaska Native and Native Hawaiian Serving Institutions; Asian American Native American Pacific Islander Serving Institutions (AANAPISISs); Eligible Agencies of the Federal Government; Faith-based or Community-based Organizations; Hispanic-serving Institutions; Historically Black Colleges and Universities (HBCUs); Indian/Native American Tribal Governments (Other than Federally Recognized); Non-domestic (non-U.S.) Entities (Foreign Organizations); Regional Organizations; Tribally Controlled Colleges and Universities (TCCUs) ; U. S. Territory or Possession.

Full Opportunity Web Address:
http://grants.nih.gov/grants/guide/pa-files/PAR-16-398.html

Contact:
NIH OER WebmasterFBOWebmaster@OD.NIH.GOV

Agency Email Description:
If you have any problems linking to this funding announcement, please contact the NIH OER Webmaster

Agency Email:
FBOWebmaster@OD.NIH.GOV

Date Posted:
2016-08-11

Application Due Date:
2020-01-07

Archive Date:
2020-02-07


Co-founders William Mann and David Mravyan devised the Sensimat during a mandatory project for their MBA at the Richard Ivey School of Business in Canada. Sensimat is a device that helps manage and assess pressure among wheelchair users.






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