CA2544034C

Registration of electro-anatomical map with pre-acquired image using ultrasound

Abstract

A system and method for imaging a target in a patient's body includes the steps of providing a pre-acquired image of the target and placing a catheter having a position sensor, an ultrasonic imaging sensor and at least one electrode, in the patient's body. Positional information of a portion of the catheter in the patient's body is determined using the position sensor and electrical activity data-points of a surface of the target are acquired using the at least one electrode. An ultrasonic image of the target is obtained using the ultrasonic imaging sensor and positional information for the electrical activity data-points of the surface of the target is determined. An electrophysiological map of the target is generated based on the electrical activity data-points and the positional information for the electrical activity data- points. Positional information for any pixel of the ultrasonic image of the target is determined and the pre-acquired image and the electrophysiological map are registered with the ultrasonic image. The registered pre-acquired image, electrophysiological map and ultrasonic image are displayed on a display.

CA2544034C, drawing sheet 1
Sheet 1 of 11

Term

Term ended

Expired 19 April 2026, 0.4 years ago.

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

38 claims: 5 independent, 33 dependent

  1. 1
    CA 02544034 2013-11-12 Claims:1. A system for imaging a target in a patient’s body, the target having one or more features, the system comprising: a pre-acquired image of the target;an electrophysiological map of the target;a catheter comprising a position sensor and an ultrasonic imaging sensor, the position sensor transmitting electrical signals indicative of positional information of a portion of the catheter in the patient’s body, and the ultrasonic imaging sensor transmitting ultrasonic energy at the target in the patient’s body, receiving ultrasonic echoes reflected from the target in the patient’s body and transmitting signals relating to the ultrasonic echoes reflected from the target in the patient’s body;a positioning processor operatively connected to the catheter for determining positional information of the portion of the catheter based on the electrical signals transmitted by the position sensor;an image processor operatively connected to the catheter and the positioning processor, the image processor generating two-dimensional (2-D) ultrasonic images of the target based on the signals transmitted by the ultrasonic sensor and determining positional information for any pixel of the ultrasonic images of the target, wherein the 2-D ultrasonic images are tagged with contours-of-interest, the image processor assigning three-dimensional (3-D) coordinates to the contours-of-interest, arranging the tagged contours-of-interest from the 2-D images to produce a 3-D model of the target, and registering the pre-acquired image and the electrophysiological map with the 3-D model;and a display for displaying the registered pre-acquired image, electrophysiological map and 3-D model.
  2. 2
    The system according to Claim 1, wherein the electrophysiological map comprises at least one electrical activity data-point. CA 02544034 2013-11-12
  3. 3
    The system according to Claim 2, wherein the at least one electrical activity data-point comprises local electrical potentials on a surface of the target.
  4. 4
    The system according to Claim 2, wherein the at least one electrical activity data-point comprises activation time values on a surface of the target.
  5. 5
    The system according to Claim 1, wherein the electrophysiological map comprises an electro-anatomical map.
  6. 6
    The system according to Claim 1, wherein the position sensor is used for determining location and orientation coordinates as the positional information.
  7. 7
    The system according to Claim 6, wherein the position sensor is responsive to an electromagnetic field.
  8. 8
    The system according to Claim 7, wherein the electromagnetic field defines a working volume for the catheter.
  9. 9
    The system according to Claim 8, wherein the ultrasonic imaging sensor is an array of ultrasonic transducers.
  10. 10
    The system according to Claim 9, wherein the array of ultrasonic transducers is a phased array.
  11. 11
    The system according to Claim 10, wherein the pre-acquired image is a MRI image.
  12. 12
    The system according to Claim 10, wherein the pre-acquired image is a CT image.
  13. 13
    The system according to Claim 10, wherein the pre-acquired image is an X-ray image.
  14. 14
    A system for imaging a target in a patient’s body, the target having one or more features, the system comprising:a pre-acquired image of the target;a catheter comprising a position sensor, an ultrasonic imaging sensor and at least one electrode, the position sensor transmitting electrical signals indicative of positional CA 02544034 2013-11-12 information of a portion of the catheter in the patient’s body, the ultrasonic imaging sensor transmitting ultrasonic energy at the target in the patient’s body, receiving ultrasonic echoes reflected from the target in the patient’s body and transmitting signals relating to the ultrasonic echoes reflected from the target in the patient’s body and the at least one electrode acquiring electrical activity data-points of a surface of the target;a positioning processor operatively connected to the catheter for determining positional information of the portion of the catheter based on the electrical signals transmitted by the position sensor;an image processor operatively connected to the catheter and the positioning processor, the image processor generating 2-D ultrasonic images of the target based on the signals transmitted by the ultrasonic sensor and determining positional information for any pixel of the ultrasonic image of the target and for the electrical activity data-points of the target, wherein the 2-D ultrasonic images are tagged with contours-of-interest, the image processor assigning 3-D coordinates to the contours-of-interest, arranging the tagged contours-ofinterest from the 2-D images to produce a 3-D model of the target, and creating an electrophysiological map of the target based on the electrical activity data-points of the target and the positional information for the electrical activity data-points and registering the preacquired image and the electrophysiological map with the 3-D model;and a display for displaying the registered pre-acquired image, electrophysiological map and 3D model.
  15. 15
    The system according to Claim 14, wherein the electrophysiological map comprises at least one electrical activity data-point.
  16. 16
    The system according to Claim 15, wherein the at least one electrical activity data-point comprises local electrical potentials on a surface of the target.
  17. 17
    The system according to Claim 14, wherein the at least one electrical activity data-point comprises activation time values on a surface of the target.
  18. 18
    The system according to Claim 14, wherein the electrophysiological map comprises an CA 02544034 2013-11-12 electro-anatomical map.
  19. 19
    The system according to Claim 14, wherein the position sensor is used for determining location and orientation coordinates as the positional information.
  20. 20
    The system according to Claim 19, wherein the position sensor is responsive to an electromagnetic field.
  21. 21
    The system according to Claim 20, wherein the electromagnetic field defines a working volume for the catheter.
  22. 22
    The system according to Claim 21, wherein the ultrasonic imaging sensor is an array of ultrasonic transducers.
  23. 23
    The system according to Claim 22, wherein the array of ultrasonic transducers is a phased array.
  24. 24
    The system according to Claim 23, wherein the pre-acquired image is a MRI image.
  25. 25
    The system according to Claim 23, wherein the pre-acquired image is a CT image.
  26. 26
    The system according to Claim 23, wherein the pre-acquired image is an X-ray image.
  27. 27
    A method for imaging a target in a patient’s body, the target having one or more features, the method comprising the steps of:providing a pre-acquired image of the target;providing an electrophysiological map of the target;determining using a position sensor positional information of a portion of a catheter in the patient’s body, the catheter comprising the position sensor and an ultrasonic imaging sensor;generating 2-D ultrasonic images of the target using the ultrasonic imaging sensor;determining positional information for any pixel of the ultrasonic images of the target;CA 02544034 2013-11-12 tagging contours-of-interest in the 2-D ultrasonic images and assigning 3-D coordinates to the contours-of-interest;arranging the tagged contours-of-interest from the 2-D images to produce a 3-D model of the target;registering the pre-acquired image and the electrophysiological map with the 3-D model;and displaying the registered pre-acquired image, electrophysiological map and the 3-D model.
  28. 28
    The method according to Claim 27, further comprising providing an electrophysiological map comprising at least one electrical activity data-point.
  29. 29
    The method according to Claim 28, further comprising using local electrical potentials on a surface of the target for the at least one electrical activity data-point.
  30. 30
    The method according to Claim 28, further comprising using activation time values on a surface of the target for the at least one electrical activity data-point.
  31. 31
    The method according to Claim 27, further comprising using an electro-anatomical map for the electrophysiological map.
  32. 32
    The method according to Claim 27, further comprising determining location and orientation coordinates as the positional information using the position sensor.
  33. 33
    A method for imaging a target in a patient’s body the target having one or more features, the method comprising the steps of:providing a pre-acquired image of the target;determining using a position sensor positional information of a portion of a catheter in a patient’s body, the catheter comprising the position sensor, an ultrasonic imaging sensor and at least one electrode;CA 02544034 2013-11-12 acquiring electrical activity data-points of a surface of the target from the at least one electrode;generating 2-D ultrasonic images of the target using the ultrasonic imaging sensor;determining positional information for the electrical activity data-points of the surface of the target and generating an electrophysiological map of the target based on the electrical activity data-points and the positional information for the electrical activity data-points;determining positional information for any pixel of the ultrasonic images of the target;tagging contours-of-interest in the 2-D ultrasonic images and assigning 3-D coordinates to the contours-of-interest;arranging the tagged contours-of-interest from the 2-D images to produce a 3-D model of the target;registering the pre-acquired image and the electrophysiological map with the 3-D model;and displaying the registered pre-acquired image, electrophysiological map and 3-D model.
  34. 34
    The method according to Claim 33, further comprising using local electrical potentials on a surface of the target for the electrical activity data-points.
  35. 35
    The method according to Claim 33, further comprising using activation time values on a surface of the target for the electrical activity data-points.
  36. 36
    The method according to Claim 33, further comprising using an electro-anatomical map for the electrophysiological map.
  37. 37
    The method according to Claim 36, further comprising determining location and orientation coordinates as the positional information using the position sensor.
  38. 38
    A use of the system of any one of Claims 1 to 26 for imaging a target in a patient’s body.
Independent claims38