EP0869745B1

Surgical navigation systems including reference and localization frames

Abstract

The invention is a system for use during a medical or surgical procedure on a body. The system generates a display from an image data set (106) representing the position of one or more body elements (10, 20, 30; 141; 806; 940) during the procedure based on scans (40) taken of the body. At least some of the body elements are movable with respect to each other. Each scan (40) has a reference for each of the one or more body elements (10, 20, 30; 141; 806; 940) and the reference of a particular body element (10, 20, 30; 141; 806; 940) has a known spatial relation to the particular body element (10, 20, 30; 141; 806; 940). The system comprises a plurality of reference frames (116; 122; 200; 302; 400; 900; 956), at least one attached to each of the movable body elements. It also comprises a localizer (108; 136; 1100) for identifying, during the procedure, the position of the reference for each of the body elements (10, 20, 30; 141; 806; 940) to be displayed, as well as a processor (104; 1108) for modifying the image data set (106) according to the identified position of the reference during the procedure, as identified by the localizer (108; 136; 1100), said processor (104; 1108) being adapted to generate an image data set (122) representing the position and geometry of the body elements (10, 20, 30; 141; 806; 940) according to the identified position of the reference frames during the procedure, as identified by the localizer. Also included in the system is a display (124; 1106) utilizing the displaced image data set (122) generated by the processor (104; 1108), illustrating the position and geometry of the body elements (10, 20, 30; 141; 806; 940) during the procedure.

EP0869745B1, drawing sheet 1
Sheet 1 of 19

Term

Term ended

Expired 5 October 2015, 11 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

31 claims: 3 independent, 28 dependent

  1. 1
    A system for use during a medical or surgical procedure on a body, said system being adapted to generate a display from an image data set representing the position of one or more body elements (10, 20, 30; 141; 806; 940) during the procedure based on scans (40) taken of the body by a scanner prior to the procedure, each scan (40) having reference points (10A, 10B, 10C, 20A, 20B, 20C, 30A, 30B, 30C) for each of the one or more body elements (10, 20, 30; 141; 806; 940), the reference points (10A, 10B, 10C, 20A, 20B, 20C, 30A, 30B, 30C) of a particular body element (10, 20, 30; 141; 806; 940) having a known spatial relation to the particular body element (10, 20, 30; 141; 806; 940), said system comprising:a localizer (108;136;1100) for identifying, during the procedure, the position of the reference points (10A, 10B, 10C, 20A, 20B, 20C, 30A, 30B, 30C) for each of the body elements (10, 20, 30;141;806;940) to be displayed;a processor (104;1108) for substantially discriminating the body elements (10, 20, 30;141;806;940) of the image data set by creating an image data subset (106) defining each of the body elements (10, 20, 30;141;806;940) and for modifying the image data subset (106) according to the identified position of the reference points (10A, 10B, 10C, 20A, 20B, 20C, 30A, 30B, 30C) during the procedure, as identified by the localizer (108;136;1100), said processor (104;1108) being adapted to generate a displaced image data set (122) representing the position and geometry of the body elements (10, 20, 30;141;806;940) during the procedure;and a display (124;1106) utilizing the displaced image data set (122) generated by the processor (104;1108), illustrating the position and geometry of the body elements (10, 20, 30;141;806;940) during the procedure.
  2. 7
    A system according to any one of claims 2 to 6, further comprising a reference frame (116;1122;200;900;956) having a position in known relation to one of the body elements (10, 20, 30;141;806;940), said reference frame (116;1122;200;900;956) being adapted to be in communication with the reference array (110;1110), and wherein the localizer (108;136;1100) is adapted to determine the position of the reference frame (116;1122;200;900;956) relative to the reference array (110;1110), the body being movable during the procedure while the body elements (10, 20, 30;141;806;940) remain in fixed relation to each other and in known relation to the reference frame (116;1122;200;900;956) so that the system can determine the position of each of the body elements (10, 20, 30;141;806;940) after movement without again identifying the relative position of each of the reference points (10A, 10B, 10C, 20A, 20B, 20C, 30A, 30B, 30C) for each of the body elements (10, 20, 30;141;806;940).
  3. 12
    A system according to any one of claims 2 to 7, further comprising a plurality of reference frames, each having a corresponding position in known relation to each of the body elements (10, 20, 30;141;806;940), said reference frames being adapted to be in communication with the reference array (110;1110), and wherein the localizer (108;136;1100) is adapted to determine the position of the reference frames relative to the reference array (110;1110), the body being movable during the procedure while the body elements (10, 20, 30;141;806;940) remain in known relation to the reference frames so that the system can determine the position of each of the body elements (10, 20, 30;141;806;940) after movement without again identifying the relative position of each of the reference points (10A, 10B, 10C, 20A, 20B, 20C, 30A, 30B, 30C) for each of the body elements (10, 20, 30;141;806;940).
  4. 14
    A system according to any one of claims 2 to 13, wherein the reference points (10A, 10B, 10C, 20A, 20B, 20C, 30A, 30B, 30C) are defined in relation to the body elements (10, 20, 30; 141; 806; 940), wherein the system further comprises:a device including one of a medical instrument, surgical instrument (300;350;400;800), probe (128;1130) and radiation delivery system (138) ;wherein the localizer (108;136;1100) is adapted to identify, during the procedure, the position of the device relative to the body elements (10, 20, 30;141;806;940),    wherein the display (124;1106) is adapted to illustrate the position of the body elements (10, 20, 30;141;806;940) relative to the device during the procedure, and    wherein the reference frame (116;1122;200;900;956) includes sensors and the reference array (110;1110) is attached to one of the body elements (10, 20, 30;141;806;940) and includes emitters communicating with the sensors of the reference frame (116;1122;200;900;956) to indicate the position of the reference frame (116;1122;200;900;956) relative to the reference array (110;1110).
  5. 17
    A system according to any one of claims 14 to 16, wherein the processor (104;1108) transforms the image data subset (106) representing the position and shape of the body elements (10, 20, 30;141;806;940) prior to the procedure to represent the position and shape of the body elements (10, 20, 30;141;806;940) during the procedure, and the displaced data set (122) consists of the transformed image data subset (106).
  6. 18
    A system according to any one of claims 14 to 17, further comprising robotics to control the position of the device and wherein the processor (104;1108) monitors the position of the instrument and instruct the robotics to control it in a predetermined manner.
  7. 19
    A system according claim 2, wherein the reference array (110;1110) includes emitters generating light, sound or electromagnetic energy.
  8. 20
    A system according to any one of claims 1 to 19, wherein the processor (104;1108) is adapted to translate the image data subset (106) from the position of the body elements (10, 20, 30;141;806;940) prior to the procedure to the position of the body elements (10, 20, 30;141;806;940) during the procedure, and the displaced data set consists of the translated image data subset (122).
  9. 21
    A system according to any one of claims 1 to 20, further comprising a device (126a) for determining a position of a contour of each of the body elements (10, 20, 30;141;806;940) during the procedure and wherein the processor (104;1108) is adapted to compare the position of the contour of each of the body elements (10, 20, 30;141;806;940) during the procedure as determined by the device (126a) to the position of the contour of each of the body elements (10, 20, 30;141;806;940) prior to the procedure as represented by the image data subset (106).
  10. 25
    A system according to any one of claims 22 to 24, wherein the reference array (110;1110) has emitters thereon in communication with the scanner (128), and the localizer (108;136;1100) is adapted to determine the position of the scanner (128) relative to the reference array (110;1110), and the position of the contour of each of the body elements (10, 20, 30;141;806;940) can be determined.
  11. 26
    A system accordign to any one of claims 22 to 25, wherein the scanner (128) has emitters (130) thereon in communication with the reference array (110;1110), and the localizer (108;136;1100) is adapted to determine the position of the scanner (128) relative to the reference array (110;1110), and the position of the contour of each of the body elements (10, 20, 30;141;806;940) can be determined.
  12. 27
    A system according to any one of claims 22 to 26, wherein the reference array (110;1110) has emitters (114;142;208;912, 914, 916;958, 960, 962, 964) thereon in communication with the scanner (128), and the localizer (108;136;1100) is adapted to determine the position of the scanner (128) relative to the reference array (110;1110), and the position of the contour of each of the body elements (10, 20, 30;141;806;940) can be determined.
  13. 28
    A system according to any one of claims 1 to 27, wherein the localizer (108;136;1100) comprises a fluoroscopic device (136) for determining a position of a projection of each of the body elements (141) during the procedure and wherein the processor (104;1108) compares the position of the projection of the each of the body elements (141) during the procedure to the position of the projection of each of the body elements (141) prior to the procedure.