Dynamic Phase Imaging Interference 4D Microscope System

Information

  • Research Project
  • 8121675
  • ApplicationId
    8121675
  • Core Project Number
    R44RR028170
  • Full Project Number
    2R44RR028170-02
  • Serial Number
    28170
  • FOA Number
    PA-10-050
  • Sub Project Id
  • Project Start Date
    12/15/2009 - 14 years ago
  • Project End Date
    1/31/2013 - 11 years ago
  • Program Officer Name
    FRIEDMAN, FRED K.
  • Budget Start Date
    4/1/2011 - 13 years ago
  • Budget End Date
    1/31/2012 - 12 years ago
  • Fiscal Year
    2011
  • Support Year
    2
  • Suffix
  • Award Notice Date
    3/21/2011 - 13 years ago

Dynamic Phase Imaging Interference 4D Microscope System

DESCRIPTION (provided by applicant): This project will develop a dynamic quantitative phase-imaging interference 4D microscope system to enable creating phase image movies and quantifying motion of live cells and cellular processes in vitro using harmless light levels without the need for adding contrast or labeling agents. The primary use of this microscope is to study the structure and mechanics of cells, cellular processes and tissues. This interference microscope will enable looking at cellular morphology, cellular development and structures within cells and tissues over periods of time. It is intended to have a flexible design that enables options of different magnifications, resolutions, and wavelengths. The Phase II project focuses on developing a production prototype for a commercial dynamic phase imaging interference microscope system using interchangeable interference objectives and low coherence sources with fiber delivery. Polarization states will be used to differentiate object and reference beams. Technology originally developed for dynamically measuring the seeing quality of large telescopes in situ will be utilized for imaging on the microscopic level. This technology utilizes a pixilated single-shot phase-measurement camera to enable instantaneous quantitative determination of optical phase and refractive index variations in real time to create movies of dynamic motions. Goals for Phase II include 1) designing, building and testing a production prototype microscope system with multiple magnifications, 2) development of software and algorithms to display optical thickness data in real time relative to a background surface and capture bursts of data to quantify cellular motion, morphology and volume, 3) demonstrating quantitative measurements on dynamic living cells at multiple beta sites with research partners, and to obtain written user feedback for implementation in Phase III. PUBLIC HEALTH RELEVANCE: This dynamic quantitative phase-imaging technology implemented within an interferometric microscope system represents a key element in advancing the ability to rapidly image tissues, cells, and cellular components in real-time without the need for toxic contrasts agents using harmless light levels to observe cellular processes in living biological objects, and track changes among and within cells. This instrument will create dynamic 4D phase image movies of cellular events for studying in vitro cellular structure and morphology, motion, motility and mechanics.

IC Name
NATIONAL CENTER FOR RESEARCH RESOURCES
  • Activity
    R44
  • Administering IC
    RR
  • Application Type
    2
  • Direct Cost Amount
  • Indirect Cost Amount
  • Total Cost
    500934
  • Sub Project Total Cost
  • ARRA Funded
    False
  • CFDA Code
    389
  • Ed Inst. Type
  • Funding ICs
    NCRR:500934\
  • Funding Mechanism
    SBIR-STTR
  • Study Section
    ZRG1
  • Study Section Name
    Special Emphasis Panel
  • Organization Name
    4 D TECHNOLOGY CORPORATION
  • Organization Department
  • Organization DUNS
    111037482
  • Organization City
    TUCSON
  • Organization State
    AZ
  • Organization Country
    UNITED STATES
  • Organization Zip Code
    857065023
  • Organization District
    UNITED STATES