EP0446028A2

Method and apparatus for improving the signal to noise ratio of an image formed of an object hidden or behind a semi-opaque random media.

Abstract

The quality of image of an object (10) hidden inside a highly scattering semi-opaque disordered medium (11) is improved by using space gate imaging or time gate imaging or space time gate imaging. In space gate imaging, a small segment of the object is illuminated at a time. The scattered light is passed through a spatial noise filter (12). On the image plane, an aperture (17) is open at the position of the image segment which correspond to the segment of the illuminated object. A full image is obtained by scanning the object segment by segment and simultaneously recording the signal at the corresponding image segment. In time gate imaging, the unscattered (i.e. ballistic) portion of the pulse which contains the information of the image is temporally separated from the other (i.e. scattered) portions which contains the noise using a ultrafast laser pulse and temporal gating devices. The technique is in space-time gate imaging, the two techniques are combined to produce an image with a much higher signal to noise ratio. The time separation between the ballistic and scattered light may be increased by increasing thickness of random medium or by introducing small scatters into the random medium so as to make the medium more random. The signal to noise ratio can also be increased by making the random medium less random (so that there will be less scattered light). In addition, the signal to noise ratio can be increased by introducing an absorbing dye into the medium or by using a wavelength for the light which is in the absorption spectrum of the random medium or by making the medium more ordered (i.e. less random).

EP0446028A2, drawing sheet 1
Sheet 1 of 24

Term

Term ended

Projected expiry passed 6 March 2011, 15.6 years ago.

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9 claims: 5 independent, 4 dependent

  1. 1
    In an apparatus for imaging an object that is in or behind a random or biomedical medium with a beam of electromagnetic or particle radiation and which includes time gate detecting means for temporally separating the unscattered radiation or those arrived at early time from the diffuse radiation, the improvement comprising means disposed along the beam path for increasing the time separation between said scattered light and said unscattered light, the unscattered radiation or the early time radiation being used for imaging.
  2. 4
    In an apparatus for imaging an object that is in or behind a random or biological medium the improvement comprising an absorbing dye in the random or biological medium.
  3. 5
    A nethod of imaging an object that is in or behind a random or biological medium comprising:(a) illuminating the object with radiation of a wavelength or wavelengths in the absorption spectrum of the random or biological medium;(b) imaging the transmitted radiation;and (c) detecting the imaged radiation.
  4. 6
    In an apparatus for imaging an object with electromagnetic radiation that is in or behind a random or biological medium the improvement comprising parallel polarization means disposed along the path of radiation.
  5. 7
    A system for imaging an object hidden in or behind a random medium comprising:(a) a light for illuminating the object;(b) collection means for collecting light transmitted through the object;and (c) a noise filter between the object and the collecting means;(d) a detector system for detecting light recovered by the collection means;and (e) a computer system for processing and recording the output of the detector system.