EP1527747B1

Electrosurgical instrument which reduces collateral damage to adjacent tissue

Abstract

This record has no abstract on file.

EP1527747B1, drawing sheet 1
Sheet 1 of 18

Term

Term ended

Expired 6 April 2021, 5.5 years ago.

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

15 claims: 11 independent, 4 dependent

  1. 1
    Electrode assembly (21) for use with an electrosurgical instrument (20) having opposing end effectors (22, 24) and a handle (16, 18) for effecting movement of the end effectors relative to one another, comprising:a housing (71) having at least one portion which is removably engageable with at least one portion of the instrument;a pair of electrodes (110, 120) each including an electrically conductive sealing surface (116, 126) and an insulating substrate (111, 121), the electrodes being removably engageable with the end effectors of the instrument such that the electrodes reside in opposing relation relative to one another;wherein each of the electrically conductive sealing surfaces are raised relative to the respective insulating substrates;wherein the dimensions of the insulating substrate are different from the dimensions of the electrically conductive sealing surface to reduce thermal spread to adjacent tissue structures, characterised in that : each of the electrically conductive sealing surfaces includes an outer peripheral edge (145, 147) which has a radius (r, r') and the respective insulating substrate meets the electrically conductive sealing surface along the radiused outer peripheral edge of the electrically conductive sealing surface.
  2. 5
    Electrode assembly according to any one of the preceding claims, wherein the electrically conductive sealing surface of at least one electrode includes a pinch trim (131) and the insulating substrate extends beyond a periphery of the electrically conductive sealing surface.
  3. 6
    Electrode assembly according to any one of the preceding claims, wherein the insulating substrate of each of the electrodes includes at least one mechanical interface (122) for engaging a complementary mechanical interface (41) disposed on the corresponding end effector of the instrument, wherein the mechanical interface of at least one of the substrates preferably includes at least one detent (122) and the mechanical interface of the corresponding end effector includes at least one complementary socket (41) for receiving the detent.
  4. 7
    Electrode assembly according to any one of the preceding claims, wherein the housing includes a bifurcated distal end which forms two prongs (103, 105) and each prong is removably attached to one of the end effectors.
  5. 8
    Electrode assembly according to any one of the preceding claims, wherein at least one of the opposing end effectors and opposing electrodes is tapered.
  6. 9
    Electrode assembly according to any one of the preceding claims, wherein the end effectors are disposed at an angle (α) relative to the shaft of the electrosurgical instrument.
  7. 11
    Electrode assembly according to any one of the preceding claims, wherein the electrode assembly is disposable.
  8. 12
    Electrode assembly according to any one of the preceding claims, having the handle (16, 18) and at least one shaft (12, 14) for effecting movement of the pair of opposing end effectors (22, 24) relative to one another, wherein the housing has at least one portion which is removably engageable with at least one of the handle and the shaft;the electrically conductive sealing surface has a first geometric shape and the insulating substrate has a second geometric shape;and the second geometric shape of the insulating substrate is different from the first geometric shape of the sealing surface to reduce thermal spread to adjacent tissue structures.
  9. 13
    Electrode assembly of any one of the preceding claims, wherein each of the insulators meets the respective electrically conductive sealing surface along a radiused adjoining edge (129, 139).
  10. 14
    Electrode assembly of any one of the preceding claims wherein the insulators respectively meet the radiused outer peripheral edge of the electrically conductive sealing surfaces and form adjoining edges (129, 139) which track along the respective radiused outer peripheral edges.
  11. 15
    Electrode assembly of any one of the preceding claims, wherein the radius of the outer peripheral edge of one of the electrically conducive sealing surfaces is different from the radius of the outer peripheral edge of the other of the electrically conductive sealing surfaces.