Nova Patents
EP1922011A2

Localization of a radioactive source

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 10 August 2026, 0.1 years ago.

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34 claims: 22 independent, 12 dependent

  1. 1
    Claims of equivalent WO 2007017846 A2 CLAIMS 1. An angle-responsive sensor, comprising:a radiation detector adapted to detect ionizing radiation;at least one radiation absorbing element arranged to block radiation from reaching said detector in a manner dependent on a relative orientation of a radiation source, said detector and said element, said detector and said element defining an aim for said sensor;and circuitry coupled to said detector and which generates an output signal which varies as a function of said relative orientation, wherein said detector and said element are arranged to have a working volume of at least 10 cm in depth and having an angular width, such that said signal defines an accuracy of better than 3 mm within one standard deviation, over said working volume.
  2. 4
    A sensor according to any of claims 1-3, wherein said signal is near linear over said working volume.
  3. 5
    A sensor according to any of claims 1-4, wherein a ratio between an accuracy when said sensor is aimed at said source and when said sensor is at an angle within said working volume, is between 1 :4 and 4: 1.
  4. 6
    A sensor according to any of claims 1-5, wherein said working volume has an angular range of at least 10 milliradians.
  5. 7
    A sensor according to any of claims 1-6, wherein said working volume has an angular range of at least 20 milliradians.
  6. 8
    A sensor according to any of claims 1-7, wherein said circuitry generates said signal based on a combining of contributions of at least two separate sections of said detector.
  7. 10
    A sensor according to any of claims 1-9, comprising a motor configured to rotate said sensor and change its aim thereby.
  8. 11
    A sensor according to any of claims 1-10, wherein said circuitry generates said signal for a source distance of at least 10 cm.
  9. 12
    A sensor according to any of claims 1-11, wherein said circuitry generates said signal for a source distance of at least 20 cm.
  10. 13
    A sensor according to any of claims 1-12, wherein said working volume has a range of depths having a ratio of at least 1 :2.
  11. 14
    A multi-focal non-imaging radiation sensor, comprising:a detector comprising at least two distinguishable sections;and a collimator arranged to differently collimate radiation on each of said sections.
  12. 16
    A sensor according to 14, wherein said collimator provides multiple focal points for each of said sections.
  13. 17
    A sensor according to any of claims 14-16, wherein said collimator allows wide angle radiation at a spatial angle of at least 10 degrees for at least two sections.
  14. 18
    A sensor according to any of claims 14-17, wherein a focal point of a first section is distanced from a focal point of a second section in a direction parallel to said detector, a distance of at least 1 mm.
  15. 21
    A sensor according to any of claims 18-20, wherein said sensor has a relatively linear angular response over a depth range of at least 10cm.
  16. 22
    A method of collimator design, comprising:defining an object range and movement rate;and determining a collimator design responsive to said defining which has a linear- like angular response within said range and suitable for tracking said movement rate.
  17. 25
    A method according to any of claims 22-24, wherein determining comprises optimizing.
  18. 26
    A method according to any of claims 22-25, wherein determining comprises determining in response to a desired accuracy of said angular response.
  19. 27
    A method of collimator design, comprising:defining an object range, movement rate and accuracy;and determining a collimator design responsive to said defining which has said accuracy over said range and suitable for tracking said movement rate.
  20. 28
    A collimator set, comprising:at least two collimators, each collimator having a better angular-accuracy under a different set of conditions, each set of conditions defining a depth and an angular range, said two sets differing in at least one of depth and angular range, said angular ranges being greater than 10 milliradians.
  21. 31
    A method of tracking a radioactive object, comprising:(a) aiming at least one non-imaging sensor at said object;(b) detecting an angular offset of said object from said sensor, based on a radiation detection by said sensor;(c) re-aiming said sensor at said object according to said angular offset by automatic circuitry;and (d) repeating (b)-(c) at least 10 times within a minute.
  22. 34
    A method according to any of claims 31-33, wherein said re-aiming comprises an estimate of a future position of the object.
Independent claims22