UG3DA065120
Cooperative Agreement
Overview
Grant Description
BREAKING THE SCATTERING BARRIER: MULTIMODAL NON-INVASIVE DEEP TISSUE IMAGING USING REFLECTION MATRIX BASED WAVEFRONT SHAPING - PROJECT SUMMARY THIS PROPOSAL AIMS TO DEVELOP A HIGH-SPEED, MULTIMODAL DEEP TISSUE IMAGING SYSTEM THAT INTEGRATES REFLECTION MATRIX OPTICAL COHERENCE TOMOGRAPHY (RM-OCT) WITH WAVEFRONT SHAPING TO OVERCOME THE FUNDAMENTAL LIMITATIONS OF LIGHT SCATTERING IN BIOLOGICAL TISSUES. BY LEVERAGING HIGH-SPEED LOCK-IN CAMERAS, HIGH-SPEED SPATIAL LIGHT MODULATORS (SLMS), AND TIKHONOV-REGULARIZED MATRIX INVERSION, THE SYSTEM WILL ACHIEVE REAL-TIME, NON-INVASIVE IMAGING WITH CELLULAR RESOLUTION AT UNPRECEDENTED DEPTHS, ENABLING IN VIVO APPLICATIONS. THIS TECHNOLOGY WILL SYNERGIZE RM-OCT WITH MULTIPHOTON MICROSCOPY (MPM) AND PHOTOACOUSTIC MICROSCOPY (PAM), PROVIDING A UNIFIED PLATFORM FOR COMPREHENSIVE STRUCTURAL, METABOLIC, AND HEMODYNAMIC IMAGING. THE SPECIFIC AIMS ARE: (1) DEVELOP REFLECTION MATRIX-BASED WAVEFRONT SHAPING AND DEMONSTRATE THE ENHANCED IMAGING DEPTH EX VIVO; (2) OPTIMIZE SYSTEM PERFORMANCE FOR DEEP TISSUE IMAGING AND INTEGRATE RM-OCT WITH MPM AND PAM; (3) ACHIEVE, VALIDATE, AND CHARACTERIZE IN VIVO MULTIMODAL DEEP TISSUE IMAGING IN ANIMAL MODELS. THIS PROJECT PROPOSES A TRANSFORMATIVE SOLUTION WITH THREE KEY ADVANTAGES: (1) IT USES A MODEL ENERGY MATRIX TO VISUALIZE LIGHT DISTRIBUTION INSIDE SCATTERING SAMPLES, EFFECTIVELY ACTING AS AN INTERNAL CAMERA TO ASSESS FOCUSING QUALITY; (2) IT ACHIEVES GUIDE-STAR-FREE FOCUSING DEEP WITHIN SCATTERING MEDIA; AND (3) IT DESIGNS OPTIMAL WAVEFRONTS TO FOCUS LIGHT ACROSS ENTIRE TARGET PLANES, RATHER THAN SINGLE SPOTS. BY OVERCOMING THE SPEED-DEPTH TRADE-OFF, THIS TECHNOLOGY WILL ENABLE RESEARCHERS TO STUDY DYNAMIC BIOLOGICAL PROCESSES IN VIVO WITH UNPRECEDENTED SPATIOTEMPORAL PRECISION. THE PROPOSED SYSTEM HAS BROAD APPLICATIONS IN NEUROSCIENCE, CANCER RESEARCH, AND CARDIOVASCULAR DISEASES, ENABLING RESEARCHERS TO STUDY DYNAMIC BIOLOGICAL PROCESSES IN VIVO WITH UNPRECEDENTED PRECISION. BY BREAKING THE SCATTERING BARRIER, THIS TECHNOLOGY WILL TRANSFORM BIOMEDICAL RESEARCH AND ACCELERATE THE DEVELOPMENT OF NEW THERAPIES.
Awardee
Funding Goals
<P><SPAN STYLE="BACKGROUND-COLOR:WHITE;">THE OFFICE OF STRATEGIC COORDINATION (</SPAN><A HREF="HTTPS://COMMONFUND.NIH.GOV/"><SPAN STYLE="BACKGROUND-COLOR:WHITE;">COMMON FUND</SPAN></A><SPAN STYLE="BACKGROUND-COLOR:WHITE;">)</SPAN><SPAN STYLE="BACKGROUND-COLOR:#F9F9F9;"> SUPPORTS RESEARCH AND OTHER PROJECTS THAT WILL ACCELERATE FUNDAMENTAL BIOMEDICAL DISCOVERY AND TRANSLATION OF THAT KNOWLEDGE INTO EFFECTIVE PREVENTION STRATEGIES AND NEW TREATMENTS.</SPAN></P>
Grant Program (CFDA)
Awarding Agency
Place of Performance
Irvine,
California
92617
United States
Geographic Scope
Single Zip Code
Irvine University Of California was awarded
Revolutionizing Deep Tissue Imaging: Multimodal Non-Invasive Technology
Cooperative Agreement UG3DA065120
worth $3,044,814
from the National Institute of Allergy and Infectious Diseases in September 2025 with work to be completed primarily in Irvine California United States.
The grant
has a duration of 2 years and
was awarded through assistance program 93.310 Trans-NIH Research Support.
The Cooperative Agreement was awarded through grant opportunity In Vivo Non-Invasive Optical Imaging Approaches for Biological Systems (UG3/UH3 Clinical Trials Not Allowed.
Status
(Ongoing)
Last Modified 9/5/25
Period of Performance
9/1/25
Start Date
8/31/27
End Date
Funding Split
$3.0M
Federal Obligation
$0.0
Non-Federal Obligation
$3.0M
Total Obligated
Activity Timeline
Additional Detail
Award ID FAIN
UG3DA065120
SAI Number
UG3DA065120-3502406541
Award ID URI
SAI UNAVAILABLE
Awardee Classifications
Public/State Controlled Institution Of Higher Education
Awarding Office
75N600 NIH National Insitute on Drug Abuse
Funding Office
75NA00 NIH OFFICE OF THE DIRECTOR
Awardee UEI
MJC5FCYQTPE6
Awardee CAGE
0VWL0
Performance District
CA-47
Senators
Dianne Feinstein
Alejandro Padilla
Alejandro Padilla
Modified: 9/5/25