EP4366646B1

Co-manipulation surgical system having optical scanners for use with surgical instruments for performing laparoscopic surgery

Abstract

This record has no abstract on file.

EP4366646B1, drawing sheet 1
Sheet 1 of 53

Term

15.8 yearsleft in the term

Expires 1 July 2042.

  1. Priority and filed
  2. Granted
  3. Today
  4. Expires

15 claims: 1 independent, 14 dependent

  1. 1
    A co-manipulation surgical system to assist with laparoscopic surgery performed using a surgical instrument having a handle, an operating end, and an elongated shaft therebetween, the co-manipulation surgical system comprising:a robot arm (300) comprising a proximal end, a distal end configured to be removably coupled to the surgical instrument, a plurality of links (305, 306, 308, 310, 311), and a plurality of joints (303, 318, 320, 322, 324, 326, 328) between the proximal end and the distal end;a base (302, 304) operatively coupled to the proximal end of the robot arm;a plurality of motors (M1, M2, M3) disposed within the base, the plurality of motors operatively coupled to at least some joints of the plurality of joints;and a controller (1400) operatively coupled to the plurality of motors and configured to permit the robot arm to be freely moveable relative to the base responsive to movement at the handle of the surgical instrument for performing laparoscopic surgery using the surgical instrument, the controller programmed to: measure a position of the distal end of the robot arm;determine, when the surgical instrument is removably coupled to the distal end of the robot arm and inserted within the patient through a trocar port fixed relative to the patient, a point of entry (Tr) of the surgical instrument into the patient corresponding to the position of the trocar port by determining a point of intersection of a plurality of virtual lines continuously established along the longitudinal axis of the surgical instrument as the position of the distal end of the robot arm moves relative to the point of entry and the surgical instrument moves about the trocar port;calculate, upon determining the point of entry, a compensation force required to compensate for gravity of the surgical instrument based on the position of the distal end of the robot arm, the point of entry, and one or more instrument parameters stored in a memory of the controller, the one or more instrument parameters comprising instrument mass and center of mass;and apply torque to the at least some joints of the plurality of joints of the robot arm via the plurality of motors based on the compensation force to compensate for gravity of the surgical instrument during operation of the co-manipulation surgical system.