Nova Patents
EP1557129A1

Vascular tissue sealing pressure control

Abstract

A clamping force mechanism (10) and its method of use with electrosurgery allow a user to seal and/or joint patient's particular vascular tissue; the mechanism is elongate with user and patient ends (14). An actuator (15) is at the user end (13) and the effectors are at the patient end (14). Each effector has a face of an area to contact the particular vascular tissue. A lost motion connection (18) transfers user actuation to the effectors to hold a predetermined clamping force during electrosurgical tissue sealing. A yielding member (19) in the loss motion connection clamps the particular tissue between the faces with a predetermined force. The yielding member (19) is a spring (20), slip clutch (36) or hydraulic coupling possibly near the actuator (15). An active electrode is carried on one end effector and a return electrode (24) contacts the tissue so an electrosurgical energy supply (25) connected thereacross delivers energy therebetween. A feedback circuit (27) responds to parameters of energy delivered to tissue. A temperature sensor (28) on one face and an impedance monitor (29) respond to energy delivered. A control (30) applies energy to held tissue to seal and/or join it. The method transfers user actuation of the effectors with the lost motion connection (18), maintains clamping force while sealing and applying electrosurgical energy to seal and/or join held tissue. Energy is applied to a temperature or an impedance. The method shifts the yielding member (19) so the opposing faces (17) clamp the particular tissue therebetween with the force from the spring (20), via a transfer rod or by hydraulic coupling or the slip clutch (36) for a range of pressure.

EP1557129A1, drawing sheet 1
Sheet 1 of 7

Term

Term ended

Projected expiry passed 12 August 2016, 10.1 years ago.

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

11 claims: 1 independent, 10 dependent

  1. 1
    A clamping force mechanism (10) for an instrument for allowing a user to clamp and apply force and electrosurgical energy, to seal and/or join, to particular vascular tissue of a patient, comprising:an elongate support (12) having a user end (13) and a patient end (14);an actuator (15) at the user end for operation by the user;a pair of end effectors (16) at the patient end, the pair of end effectors being both pivotally coupled to an elongated transfer rod (21) which is connected to the actuator for operation of the end effectors thereby from the user end, to control the relative motion between the pair of end effectors, the pair of end effectors each having an opposing face (17) of an area for contact with the particular tissue of the patient;a lost motion connection (18) at the user end between the elongate transfer rod and the actuator, the lost motion connection transferring user manipulation of the actuator through the elongate transfer rod to the pair of end effectors to maintain a predetermined clamping force over the face area during sealing of the particular tissue of the patient between the pair of end effectors in which the end effector coupling is urged against the elongate support at the patient end to force the end effectors to pivotally clamp towards each other;an active electrode carried on one of the pair of end effectors;a return electrode (24) for contact with the tissue of the patient for forming an electrosurgical circuit between the active and return electrodes, an electrosurgical energy supply (25) connected across the active electrode of the pair of end effectors and the return electrode, the electrosurgical energy supply for delivery of electrosurgical energy through the electrosurgical circuit between and across the active electrode and the return electrode when the particular tissue of the patient is held by the pair of end effectors, and a control (30) associated with the electrosurgical energy supply for applying electrosurgical energy to the held particular tissue of the patient under the application of the predetermined force for sealing the particular tissue between the pair of end effectors.