Nova Patents
EP1566150A2

Robotically guided catheter

Abstract

Apparatus is provided for use with a steerable catheter that includes a thumb control adapted to control a deflection of a distal tip of the catheter. The apparatus includes a robot, including an end-effector, adapted to be coupled to the thumb control, and a controller, adapted to drive the end-effector to deflect the distal tip by manipulating the thumb control.

EP1566150A2, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Projected expiry passed 22 February 2025, 1.6 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

28 claims: 10 independent, 18 dependent

  1. 1
    Apparatus for use with a steerable catheter that includes a thumb control adapted to control a deflection of a distal tip of the catheter, the apparatus comprising a robot, comprising:an end-effector, adapted to be coupled to the thumb control;and a controller, adapted to drive the end-effector to deflect the distal tip by manipulating the thumb control.
  2. 4
    The apparatus according to any one of claims 1 to 3, wherein:the catheter includes a handle, adapted to advance and withdraw the catheter, the robot comprises a handle end-effector, adapted to be coupled to the handle, and the controller is adapted to drive the handle end-effector to perform, by manipulating the handle, at least one of advancing the catheter and withdrawing the catheter.
  3. 5
    The apparatus according to any one of claims 1 to 4, comprising a computer pointing device, adapted to receive an indication of a desired position of the distal tip, wherein    the catheter includes a position sensor, fixed in a vicinity of the distal tip, and adapted to generate a position signal, and    the controller is adapted to receive the position signal, and, responsive thereto, to drive the end-effector to position the distal tip at the desired position.
  4. 6
    Apparatus comprising:a steerable catheter, comprising a thumb control, which is adapted to control a deflection of a distal tip of the catheter;and a robot as defined in any one of claims 1 to 5.
  5. 7
    Apparatus for use with a steerable catheter that includes controls adapted to control a deflection of a distal tip of the catheter, which controls are generally optimized for manipulation by a human hand, the apparatus comprising a robot, comprising:at least one end-effector, adapted to be coupled to at least a portion of the controls;and a controller, adapted to drive the at least one end-effector to deflect the distal tip by inducing motion of the portion of the controls that generally mimics motion of the portion of the controls induced when a human hand manipulates the controls.
  6. 10
    The apparatus according to any one of claims 7 to 9, wherein    the controls are adapted to advance and withdraw the catheter,    the robot comprises a longitudinal motion end-effector, adapted to be coupled to the controls, and    the controller is adapted to drive the longitudinal motion end-effector to perform, by inducing motion of the controls that generally mimics motion of the controls induced when a human hand manipulates the controls, at least one of advancing the catheter and withdrawing the catheter.
  7. 11
    The apparatus according to any one of claims 7 to 10, comprising a computer pointing device, adapted to receive an indication of a desired position of the distal tip, wherein    the catheter includes a position sensor, fixed in a vicinity of the distal tip, and adapted to generate a position signal, and    the controller is adapted to receive the position signal, and, responsive thereto, to drive the end-effector to position the distal tip at the desired position.
  8. 12
    Apparatus comprising:a steerable catheter, comprising controls adapted to control a deflection of a distal tip of the catheter, which controls are generally optimized for manipulation by a human hand;and a robot as defined in any one of claims 7 to 11.
  9. 13
    Apparatus comprising:a steerable catheter, comprising: a distal tip adapted to be controllably deflectable in no more than two directions for any given rotation of the distal tip, such that a set of all points to which the tip can be deflected at the given rotation forms a deflection curve for the given rotation;and a position sensor, fixed in a vicinity of the distal tip, and adapted to generate a position signal;a robot, adapted to manipulate a proximal end of the catheter;and a control unit, adapted to: receive the position signal, and position the distal tip at a target by driving the robot to: position the distal tip in a vicinity of the target, responsive to the position signal, rotate the proximal end in order to cause the distal tip to roll to a rotation the deflection curve of which includes the target, the rotation determined responsive to the position signal, and deflect the distal tip along the deflection curve to the target.
  10. 16
    The apparatus according to any one of claims 13 to 15, comprising a computer pointing device, adapted to receive an indication of a position of the target, wherein the control unit is adapted to drive the robot to position the distal tip at the position of the target, responsive to the position signal.
  11. 17
    The apparatus according to any one of claims 13 to 16, wherein the position sensor is adapted to generate the position signal having six dimensions of position and orientation information.
  12. 18
    Apparatus comprising:a steerable catheter having a distal tip, the catheter comprising a position sensor, fixed in a vicinity of the distal tip, and adapted to generate a position signal;a robot, adapted to be coupled to a proximal end of the catheter;and a control unit, adapted to: drive the robot to apply rotation to the proximal end of the catheter, receive the position signal, responsive to the position signal, determine a roll of the distal tip, and responsive to a determination that the roll lags the rotation, drive the robot to move a portion of the proximal end of the catheter.
  13. 21
    The apparatus according to any one of claims 18 to 20, wherein the control unit is adapted to drive the robot to move the portion of the proximal end of the catheter to perform at least one action selected from the list consisting of:advancing the distal tip and withdrawing the distal tip.
  14. 22
    The apparatus according to any one of claims 18 to 21, wherein the position sensor is adapted to generate the position signal having six dimensions of position and orientation information.
  15. 23
    The apparatus according to any one of claims 18 to 22, wherein the control unit is adapted to move the portion of the proximal end of the catheter to jiggle the distal tip.
  16. 25
    A method for use with a steerable catheter that includes a thumb control adapted to control a deflection of a distal tip of the catheter, the method comprising:coupling a robotic end-effector to the thumb control;and driving the end-effector to deflect the distal tip by manipulating the thumb control.
  17. 26
    A method for use with a steerable catheter that includes controls adapted to control a deflection of a distal tip of the catheter, which controls are generally optimized for manipulation by a human hand, the method comprising:coupling at least one robotic end-effector to at least a portion of the controls;and driving the at least one end-effector to deflect the distal tip by inducing motion of the portion of the controls that generally mimics motion of the portion of the controls induced when a human hand manipulates the controls.
  18. 27
    A method for use with a steerable catheter having a distal tip adapted to be controllably deflectable in no more than two directions for any given rotation of the distal tip, such that a set of all points to which the tip can be deflected at the given rotation forms a deflection curve for the given rotation, the method comprising:receiving a position signal from a vicinity of the distal tip;and robotically positioning the distal tip at a target by: robotically positioning the distal tip in a vicinity of the target, responsive to the position signal, robotically rotating the proximal end in order to cause the distal tip to roll to a rotation the deflection curve of which includes the target, the rotation determined responsive to the position signal, and robotically deflecting the distal tip along the deflection curve to the target.
  19. 28
    A method for use with a steerable catheter having a distal tip and a proximal end, the method comprising:robotically rotating the proximal end of the catheter;receiving a position signal from a vicinity of the distal tip of the catheter;responsive to the position signal, determining a roll of the distal tip;and responsive to a determination that the roll lags the rotation, robotically moving a portion of the proximal end of the catheter.
Independent claims19