CA2492483A1

Method and apparatus for 3-d imaging of internal light sources

Abstract

The present invention provides systems and methods for obtaining a three- dimensional (3D) representation of one or more light sources inside a sample , such as a mammal. Mammalian tissue is a turbid medium, meaning that photons are both absorbed and scattered as they propagate through tissue. In the cas e where scattering is large compared with absorption, such as red to near- infrared light passing through tissue, the transport of light within the sample is described by diffusion theory. Using imaging data and computer- implemented photon diffusion models, embodiments of the present invention produce a 3D representation of the light sources inside a sample, such as a 3D location, size, and brightness of such light sources.

CA2492483A1, drawing sheet 1
Sheet 1 of 18

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

50 claims: 24 independent, 26 dependent

  1. 1
    CA 02492483 2005-01-13 2004/008123 PCT/US2003/022273 What is claimed is:1. A method for obtaining a three-dimensional representation of a light source distribution located inside a sample, the method comprising: providing surface light image data from light emitted from a surface of the sample originating from the light source distribution located inside the sample;and reconstructing a three-dimensional representation of the light source distribution internal to the sample based on the surface light emission data.
  2. 8
    The method of any of claims 5-7 further comprising converting the surface light image data into photon density just inside the surface of the sample.
  3. 10
    The method of any of claims 5-9 further comprising defining a cost function and a set of constraints for obtaining a solution for the three-dimensional representation of the light source distribution.
  4. 13
    The method of any of claims 10-12 wherein the cost function and constraints are described mathematically by a system of linear equations, and a solution for the three-dimensional representation of the source distribution is obtained using a SIMPLEX method.
  5. 14
    The method of any of claims 10-13 further comprising including a weighting factor in the cost function that can be varied to produce a set of solutions for the threedimensional representation of the source distribution.
  6. 15
    The method of any of claims 10-14 further comprising varying the number of surface elements to produce a set of solutions for the three-dimensional representation of the source distribution.
  7. 16
    The method of any of claims 5-15 further comprising varying one of a) the number of volume elements, and b) the configuration of volume elements, to produce a set of solutions for the three-dimensional representation of the source distribution. 17 The method of any of claims 5-15 further comprising optimizing the threedimensional representation of the light source distribution by calculating the surface light emission for each solution and selecting a solution which minimizes a difference between a calculated and measured surface emission.
  8. 20
    21. The method of any of claims 5-20 wherein the transport of light within the sample from a given volume element to a given surface element is described by a Green’s function. 22 The method of claim 21 wherein the Green’s function is defined as a solution for light diffusion in a homogenous half space having a planar boundary perpendicular to the line connecting the volume element and the surface element.
  9. 22
    24. The method of any of claims 21-23 wherein the Green’s function is defined in a look-up table.
  10. 23
    25. The method of any of claims 21-23 wherein the Green’s function is calculated using Monte Carlo simulations or Finite Element Modeling. 5
  11. 24
    26. The method of any of claims 1-25 wherein the light source is comprised of bioluminescent or fluorescent emission.
  12. 25
    27. The method of any of claims 1-26 further comprising applying a noise threshold to the surface light image data.
  13. 29
    31. The method of any of claims 1-30 wherein the sample is an animal and the light source emits light that passes through animal tissue. 20
  14. 31
    33. The method of any of claims 1-32 wherein the sample has a complex boundary.
  15. 32
    34. The method of any of claims 1-33 further comprising producing multiple possible three-dimensional representations of the light source and the three25 dimensional representation of the light source obtained is the representation that best fits the measured surface light image data.
  16. 33
    35. The method of any of claims 1-35 further comprising placing the sample on a stage included in an imaging chamber coupled to a camera configured to capture an image of the sample on the stage. 30
  17. 39
    41. An imaging system for obtaining a three-dimensional representation of a light source located inside a sample, the imaging system comprising:an imaging chamber having a set of walls enclosing an interior cavity, and comprising: a camera mount configured to position a camera;a moveable stage apparatus including a transport mechanism and a stage configured to support the sample within the interior cavity, the stage being coupled with the transport mechanism for movement of the sample to one of a plurality of positions in the interior cavity;a light transport mechanism for transmitting light emitted from a surface of the sample to the camera;and a processor designed or configured to provide surface light image data from light emitted from the surface of the sample originating from the light source distribution located inside the sample to obtain a three-dimensional representation of the internal light source distribution based on the surface light image data.
  18. 41
    43. The system of claims 41 or 42 wherein the transport mechanism is capable of moving the stage in two dimensions. CA 02492483 2005-01-13 WO 2004/008123 PCT/US2003/022273
  19. 42
    44. The system of any of claims 41-43 wherein the light transport device rotates about a fixed axis.
  20. 43
    45. The system of any of claims 41-44 further comprising a structured light source configured to transmit structured light onto the sample. 5
  21. 45
    47. The system of any of claims 41-46, wherein the light source is comprised of bioluminescent or fluorescent emission.
  22. 46
    48. A computer program product comprising a computer readable medium and 10 program instructions provided via the computer readable medium, the program instructions comprising reconstruction instructions for obtaining a three-dimensional representation of a light source distribution located inside a sample, the reconstruction instructions capable of providing surface light image data from light emitted from a surface of the sample originating from the light source distribution located inside the 15 sample and obtaining a three-dimensional representation of the light source distribution based on the surface light image data.
  23. 48
    50. The computer program product of claims 48 or 49 further comprising 20 instructions for mapping light image data received by a camera onto a surface representation of the sample.
  24. 50
    52. The computer program product of any of claims 48-51 wherein the light source 25 is comprised of bioluminescent or fluorescent emission.
Independent claims24