Nova Patents
CA3022982C

Electrosurgical system

Abstract

Phase end point determination is provided to automatically halt the application of energy to tissue. Prior to the application of energy, the phase end point determination is identified by measuring the product of permittivity and conductivity of the tissue to be treated. An electrosurgical system can include an electrosurgical generator, a feedback circuit or controller, and an electrosurgical tool. The feedback circuit can provide an electrosurgery endpoint by determining the phase end point of a tissue to be treated. The electrosurgical system can include more than one electrosurgical tool for different electrosurgical operations and can include a variety of user interface features and audio/visual performance indicators. The electrosurgical system can also power conventional bipolar electrosurgical tools and direct current surgical appliances.

CA3022982C, drawing sheet 1
Sheet 1 of 109

Term

2.5 yearsleft in the term

Expires 31 March 2029.

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

171 claims: 22 independent, 149 dependent

  1. 1
    CLAIMS:1. An electrosurgical tool comprising: a first jaw;a second jaw pivotable with respect to the first jaw;a plurality of electrodes comprising a first, second and third electrodes;wherein the electrosurgical tool is selectively configurable in a coagulation configuration such that at least one of the first, second, and third electrodes is electrically couplable with a source of electrical energy having a first polarity and at least one other of the plurality of electrodes is electrically couplable with a source of electrical energy having a second polarity opposite the first polarity, and in a cutting configuration such that one of the first, second, and third electrodes is electrically couplable with a source of electrical energy having a cutting voltage and at least one other of the plurality of electrodes is configured to be a return electrode;wherein the electrosurgical tool is selectively configurable between the coagulation configuration and the cutting configuration by actuation of a switch and further comprises a handle assembly operable to pivot the first jaw and the second jaw relative to one another between an open position and a closed position, and wherein the switch is actuated by movement of the handle assembly and is configured such that the electrosurgical tool is in the coagulation configuration when the first and second jaws are in the open position, and the electrosurgical tool is in the cutting configuration when the first and second jaws are moved towards the closed position.
  2. 2
    The electrosurgical tool of Claim 1, wherein the first, second and third electrodes are all on die first jaw or the second jaw.
  3. 3
    The electrosurgical tool of Claim 1, wherein the first, second and third electrodes are on the first jaw.
  4. 4
    The electrosurgical tool of any one of the Claims 1-3, wherein in the coagulation configuration, the first electrode is electrically coupled with the source of electrical energy having the first polarity, and the second electrode is electrically coupled with the source of electrical energy having the second polarity. Date Reçue/Date Received 2021-05-28 -113-
  5. 5
    The electrosurgical tool of any one of the Claims 1-3, wherein in the cutting configuration, the third electrode is electrically coupled with the source of electrical energy having the cutting voltage and the first and second electrodes are configured to be return electrodes.
  6. 6
    The electrosurgical tool of Claim 5, wherein the third electrode has an exposed surface area and the first and second electrodes have an exposed combined surface area, and wherein the exposed surface area of the third electrode is less than the exposed combined surface area of the first and second electrodes.
  7. 7
    The electrosurgical tool of any one of the Claims 1-3, further comprising one or more insulating members electrically insulating the first, second, and third electrodes from one another.
  8. 8
    The electrosurgical tool of Claim 7, wherein the one or more insulating members comprises a first insulating member disposed on the first jaw between the first electrode and the third electrode and a second insulating member disposed on the first jaw between the third electrode and the second electrode.
  9. 9
    The electrosurgical tool of Claim 1 wherein in the coagulation configuration, a potential difference between the source of electrical energy having the first polarity and the source of electrical energy having the second polarity is no more than 200 V.
  10. 10
    The electrosurgical tool of Claim 1 wherein in the cutting configuration, a potential difference between the source of electrical energy having a cutting voltage and the return electrodes is between 300 V and 500 V.
  11. 11
    The electrosurgical tool of any one of the Claims 1-3,9 or 10, further comprising a fourth electrode positioned on the second jaw. Date Reçue/Date Received 2021-05-28 -114-
  12. 12
    The electrosurgical tool of Claim 11, wherein in the coagulation configuration, the first and second electrodes are electrically coupled with the source of electrical energy having the first polarity, and the fourth electrode is electrically coupled with the source of electrical energy having the second polarity.
  13. 13
    The electrosurgical tool of Claim 11, wherein in the cutting configuration, the third electrode is electrically coupled with the source of electrical energy having the cutting voltage and the fourth electrode is configured as a return electrode.
  14. 14
    The electrosurgical tool of Claim 11, further comprising a fifth electrode positioned on the second jaw.
  15. 15
    The electrosurgical tool of Claim 14, wherein in the coagulation configuration, one of the first and second electrodes and one of the fourth and fifth electrodes are electrically coupled to the source of electrical energy having the first polarity and the other of the first and second electrodes and the other of the fourth and fifth electrodes are electrically coupled to the source of electrical energy having the second polarity.
  16. 16
    The electrosurgical tool of Claim 14, wherein in the cutting configuration, the third electrode is electrically coupled to the source of electrical energy having the cutting voltage, and at least one of the first electrode, the second electrode, the fourth electrode, and the fifth electrode is configured as a return electrode.
  17. 17
    The electrosurgical tool of any one of the Claims 9-10, wherein the electrosurgical tool is selectively configurable between the coagulation configuration and the cutting configuration by actuation of a switch.
  18. 18
    The electrosurgical tool of Claim 17, further comprising a handle assembly operable to pivot the first jaw and the second jaw relative to one another between an open position and a closed position, and wherein the switch is actuated by movement of the handle assembly. Date Reçue/Date Received 2021-05-28 -115-
  19. 19
    The electrosurgical tool of Claim 18, wherein the switch is configured such that the electrosurgical tool is in the coagulation configuration when the first and second jaws are in the open position, and the electrosurgical tool is in the cutting configuration when the first and second jaws are moved towards the closed position.
  20. 20
    The electrosurgical tool of Claim 1 wherein the electrosurgical tool further comprises:a distal end-piece positioned at a distal end of the tool, the distal end-piece comprising the first jaw and the second jaw;an elongate shaft having a distal end connected to the distal end-piece and a proximal end;a handle assembly positioned at a proximal end of the tool and connected to the proximal end of the elongate shaft, the handle assembly comprising;a hand-piece;and a trigger pivotally coupled to the hand-piece and operably coupled to the distal end-piece such that movement of the trigger relative to the hand-piece moves the first and second jaw relative to one another;and a switching mechanism electrically coupled to the distal end-piece to selectively configure the plurality of electrodes in one of the coagulation configuration and the cutting configuration.
  21. 21
    The electrosurgical tool of Claim 20, wherein the switching mechanism is operable by movement of the trigger relative to the hand-piece such that movement of the trigger selectively configures the plurality of electrodes in one of the coagulation configuration and the cutting configuration.
  22. 22
    The electrosurgical tool of Claim 21, wherein the switching mechanism configures the plurality of electrodes in the coagulation configuration when the first jaw and the second jaw are in an open position. Date Reçue/Date Received 2021-05-28 -116-
  23. 23
    The electrosurgical tool of Claim 21 or 22, wherein the switching mechanism configures the plurality of electrodes in the cutting configuration when the first jaw and the second jaw are moved from the open position towards a closed position.
  24. 24
    The electrosurgical tool of Claim 20, 21 or 22, wherein the switching mechanism comprises:a first electrical contact, a second electrical contact, and a third electrical contact all positioned on the hand-piece;and a fourth electrical contact and a fifth electrical contact positioned on the trigger.
  25. 25
    The electrosurgical tool of Claim 24, wherein the first electrical contact, second electrical contact, third electrical contact, fourth electrical contact, and fifth electrical contact are positioned to engage and disengage one another at predetermined relative positions of die trigger and the hand-piece.
  26. 26
    The electrosurgical tool of Claim 24, wherein when the first jaw and the second jaw are in an open position, the fourth electrical contact on the trigger engages the first electrical contact on the hand-piece, and the fifth electrical contact on the trigger engages the second electrical contact on the hand-piece.
  27. 27
    The electrosurgical tool of Claim 24 or 26, wherein when the first jaw and the second jaw are between the open position and a closed position, the fourth electrical contact on the trigger engages the second electrical contact on the hand-piece, and the fifth electrical contact on the trigger engages the third electrical contact on the hand-piece.
  28. 28
    The electrosurgical tool of Claim 20,21 or 22, wherein the switching mechanism comprises a plurality of contact strips disposed on the hand-piece, and a plurality of contact pins mounted on the trigger.
  29. 29
    The electrosurgical tool of Claim 28, wherein the plurality of pins comprises two pins. Date Reçue/Date Received 2021-05-28 -117-
  30. 30
    The electrosurgical tool of Claim 28 or 29, wherein the plurality of contact strips comprises two concentric contact strips.
  31. 31
    The electrosurgical tool of Claim 20,21 or 22, wherein the switching mechanism comprises a single pole electrical switch and a double pole electrical switch.
  32. 32
    The electrosurgical tool of Claim 20,21 or 22, wherein the switching mechanism comprises a first double pole electrical switch and a second double pole electrical switch.
  33. 33
    The electrosurgical tool of Claim 32, wherein the switching mechanism birther comprises a third double pole electrical switch.
  34. 34
    The electrosurgical tool of Claim 20,21 or 22, wherein the switching mechanism comprises a multi-electrode switching power supply.
  35. 35
    The electrosurgical tool of Claim 20, 21 or 22, further comprising a force regulation mechanism coupling the handle assembly to the distal end-piece, the force regulation assembly configured such that in a closed configuration, the distal end-piece delivers a gripping force between the first jaw and the second jaw between a predetermined minimum force and a predetermined maximum force.
  36. 36
    The electrosurgical tool of Claim 35, wherein the force regulation mechanism comprises:a first pivot point coupling the trigger to the hand-piece, the first pivot point positioned longitudinally slidable relative to the hand-piece;a second pivot point coupling the trigger to the hand-piece, the second pivot point being slidable relative to the hand-piece;and an actuator spring biasing the second pivot point with a predetermined preload.
  37. 37
    The electrosurgical tool of Claim 36, wherein the force regulation mechanism further comprises an actuation member and an actuation rod longitudinally movable with respect to the elongate shaft and coupling the handle assembly to the distal end-piece. Date Reçue/Date Received 2021-05-28 -118-
  38. 38
    The electrosurgical tool of Claim 37, wherein the handle assembly comprises at least one guide defining an actuation path of the second pivot point.
  39. 39
    The electrosurgical tool of Claim 37, wherein the force regulation mechanism is configured such that the distal end-piece delivers a gripping force to develop a pressure between the first and second jaws of between 3 kg/cm 2 and 39 kg/cm 2 .
  40. 40
    The electrosurgical tool of Claim 37, wherein the force regulation mechanism is configured such that the distal end-piece delivers a gripping force to develop an average pressure between the first and second jaws of 23 kg/cm 2 .
  41. 41
    The electrosurgical tool of Claim 37, wherein the distal end-piece has a proximal end and a distal end, and a pressure between the first and second jaws has a first pressure at the proximal end of the distal end-piece and a second pressure at the distal end of the distal end-piece, the second pressure less than the first pressure, and wherein both the first pressure and the second pressure are between 3 kg/cm 2 and 39 kg/cm 2 .
  42. 42
    The electrosurgical tool of Claim 37, wherein the distal end-piece further comprises a cutting blade positioned in one of the first jaw and the second jaw and advanceable from a proximal position to a distal position.
  43. 43
    The electrosurgical tool of Claim 42, wherein the handle assembly further comprises a blade trigger movable with respect to the hand-piece, the blade trigger coupled to the cutting blade such that movement of the trigger moves the cutting blade between the proximal position and the distal position.
  44. 44
    The electrosurgical tool of any one of the Claims 1-3 or 20, wherein the first jaw has a proximal end and a distal end, wherein the second jaw has a proximal end and a distal end, and wherein the distal end of the second jaw extends further distally than the distal end of the first jaw when the distal end-piece is in a closed configuration. Date Reçue/Date Received 2021-05-28 -119-
  45. 45
    The electrosurgical tool of Claim 44, further comprising a cutting electrode positioned on an outer surface of the distal end of the second jaw.
  46. 46
    The electrosurgical tool of Claim 45, further comprising a rotational coupling connecting the distal end-piece to the handle assembly.
  47. 47
    The electrosurgical tool of Claim 46, wherein the rotational coupling is configured to allow infinite rotation of the distal end-piece about a central longitudinal axis with respect to the handle assembly.
  48. 48
    The electrosurgical tool of any one of the Claims 1-3, 20 or 35, wherein at least one of the first, second, and third electrodes is disposed on an inner surface of the first or second jaw, the at least one of the first, second, and third electrodes comprises a u-shaped electrode having two parallel legs extending longitudinally along the first or second jaw from a proximal end towards a distal end and a curved connector portion extending between the two parallel legs, the connector portion positioned adjacent the distal end of the first or second jaw.
  49. 49
    The electrosurgical tool of any one of the Claims 1-3, 20 or 35, wherein at least one of the first, second, and third electrodes disposed on an inner surface of the first or second jaw comprises two u-shaped electrodes each having two parallel legs extending longitudinally along the first or second jaw from a proximal end towards a distal end and a curved connector portion extending between the two parallel legs, the connector portion positioned adjacent the distal end of the first or second jaw.
  50. 50
    The electrosurgical tool of Claim 49, wherein the two u-shaped electrodes on the first jaw are connected by at least one bridge member, and the two u-shaped electrodes on the second jaw are connected by at least one bridge member.
  51. 51
    The electrosurgical tool of any one of the Claims 20 or 35, wherein the first jaw and the second jaw are curved with respect to a central longitudinal axis of the elongate shaft. Date Reçue/Date Received 2021-05-28 -120 -
  52. 52
    The electrosurgical tool of any one of the Claims 1-3, 20, 35 or 51, wherein at least one of the first, second or third electrode disposed on an inner surface of the first or second jaw comprises a u-shaped electrode having two parallel arc-segment legs extending curvilinearly along the first or second jaw from a proximal end towards a distal end and a curved connector portion extending between the two parallel legs, the connector portion positioned adjacent the distal end of the first or second jaw.
  53. 53
    The electrosurgical tool of any one of the Claims 20,35 or 52, wherein the elongate shaft further comprises:a slidable actuation tube having a proximal end and a distal end, the distal end coupled to at least one of the first jaw and the second jaw, and the proximal end coupled to the handle assembly;a cover tube surrounding the slidable actuation tube;and an outer tube surrounding the cover tube, the outer tube defining an outer surface of the elongate shaft.
  54. 54
    The electrosurgical tool of Claim 53, wherein the handle assembly further comprises a blade trigger coupled to a blade to selectively advance the blade between a retracted position and an advanced position.
  55. 55
    The electrosurgical tool of Claim 54, wherein the handle assembly further comprises a blade advancement member coupling a blade trigger to the blade, the blade advancement member positioned within the slidable actuation tube.
  56. 56
    The electrosurgical tool of Claim 55, wherein the blade advancement member comprises a blade advancement shaft.
  57. 57
    The electrosurgical tool of Claim 56, wherein the blade advancement shaft comprises a proximal section and a distal section, the proximal and distal portions connected by a mating interface. Date Reçue/Date Received 2021-05-28 -121 -
  58. 58
    The electrosurgical tool of Claim 56, wherein the blade advancement shaft is comprised of a polymeric material.
  59. 59
    The electrosurgical tool of any one of the Claims 1,20,35 or 52 wherein:the first jaw has an inner surface, an outer surface, a proximal end and a distal end, and the first electrode is disposed on the inner surface of the first jaw;and the second jaw has an inner surface, an outer surface, a proximal end and a distal end and the second electrode is disposed on the inner surface of the second jaw and the third electrode is disposed on the outer surface of the second jaw.
  60. 60
    The electrosurgical tool of Claim 59, wherein the distal end of one of the first jaw and the second jaw extends distally further with respect to a central longitudinal axis than the distal end of the other of the first jaw and die second jaw.
  61. 61
    The electrosurgical tool of Claim 59, wherein the distal end of the second jaw extends distally further with respect to a central longitudinal axis than the distal end of the first jaw.
  62. 62
    The electrosurgical tool of any one of the Claims 1, 20, 35,52 or 59, further comprising an electrosurgical generator configured to supply electrosurgical energy to the plurality of electrodes.
  63. 63
    The electrosurgical tool of Claim 62, further comprising:a memory module storing tool data;and wherein the electrosurgical generator is configured to receive the tool data from the memory module and apply an electrosurgical signal profile to the electrosurgical tool based on the tool data.
  64. 64
    The electrosurgical tool of Claim 63, wherein the tool data comprises electrode configuration data. Date Reçue/Date Received 2021-05-28 -122 -
  65. 65
    The electrosurgical tool of Claim 63 or 64, wherein the tool data is stored in an encrypted format.
  66. 66
    The electrosurgical tool of Claim 63,64 or 65, wherein the tool data comprises tool usage data.
  67. 67
    The electrosurgical tool of Claim 63, 64,65 or 66, wherein the electrosurgical generator comprises an analysis module configured to receive the tool data from the memory module.
  68. 68
    The electrosurgical tool of Claim 67, wherein the analysis module is configured to monitor operational data from the electrosurgical tool.
  69. 69
    The electrosurgical tool of Claim 68, wherein the operational data comprises a complex impedance value.
  70. 70
    The electrosurgical tool of Claim 62, wherein the electrosurgical generator further comprises a relay bank.
  71. 71
    The electrosurgical tool of Claim 70, wherein the electrosurgical generator is configured to switch the electrosurgical tool into a cutting configuration by selectively switching relays within the relay bank.
  72. 72
    The electrosurgical tool of Claim 71, wherein the generator further comprises a multielectrode switching power supply comprising the relay bank.
  73. 73
    The electrosurgical tool of any one of the Claims 63-72, wherein the electrosurgical generator further comprises:a power supply;a signal generation module electrically coupled to the power supply, the signal generation module configured to generate a radiofrequency signal;and Date Reçue/Date Received 2021-05-28 -123 a first tool port configured to interface with the electrosurgical tool;the first tool port adapted to receive the tool data stored on the electrosurgical tool and to supply the radiofrequency signal from the signal generation module to the tool.
  74. 74
    The electrosurgical tool of Claim 73, wherein the electrosurgical generator further comprises a second tool port configured to interface with a second electrosurgical tool having tool data stored therein;the second tool port adapted to receive the tool data stored on the second electrosurgical tool and to supply the radiofrequency signal from the signal generation module to the second tool.
  75. 75
    The electrosurgical tool of Claim 73 or 74, wherein the electrosurgical generator further comprising a bipolar tool port adapted to couple the generator to a bipolar electrosurgical tool.
  76. 76
    The electrosurgical tool of Claim 73, 74 or 75 wherein the electrosurgical generator further comprising a power port adapted to couple the generator to a direct current device.
  77. 77
    The electrosurgical tool of Claim 73, 74, 75 or 76, wherein the electrosurgical generator further comprising an actuator port electrically coupled to the first tool port.
  78. 78
    The electrosurgical tool of Claim 73, 74, 75 or 76, wherein the electrosurgical generator further comprising an actuator port electrically coupled to the first tool port and the second tool port.
  79. 79
    The electrosurgical tool of Claim 77 or 78, wherein the actuator port comprises a foot pedal controller port.
  80. 80
    The electrosurgical tool of any one of the Claims 1,20,35,52 or 59, further comprising a controller further comprising:a first actuator movable between an on position and an off position for actuating a first electrosurgical action when in the on position;Date Reçue/Date Received 2021-05-28 -124 a second actuator movable between an on position and an off position for actuating a second electrosurgical action when in the on position;and a tool selector having a first state wherein the controller is adapted to be operatively coupled to a first electrosurgical tool and a second state wherein the controller is adapted to be operatively coupled to a second electrosurgical tool.
  81. 81
    The electrosurgical tool of Claim 80, wherein the first actuator comprises a coagulation switch for actuating a coagulation operation.
  82. 82
    The electrosurgical tool of Claim 81, wherein the coagulation switch comprises a foot pedal.
  83. 83
    The electrosurgical tool of Claim 80, 81 or 82, wherein the second actuator comprises a cut switch for actuating a cutting operation.
  84. 84
    The electrosurgical tool of Claim 83, wherein the cut switch comprises a cut foot pedal.
  85. 85
    The electrosurgical tool of Claim 80, 81, 82, 83 or 84, wherein the tool selector comprises a toggle switch.
  86. 86
    The electrosurgical tool of Claim 1 wherein the first jaw has a proximal end and a distal end, wherein the second jaw has a proximal end and a distal end, and wherein the distal end of the second jaw extends further distally than the distal end of the first jaw.
  87. 87
    The electrosurgical tool of Claim 86, further comprising a cutting electrode positioned on an outer surface of the distal end of the second jaw.
  88. 88
    The electrosurgical tool of Claim 87, further comprising a rotational coupling connecting the first and second jaws to a handle assembly. Date Reçue/Date Received 2021-05-28 -125 -
  89. 89
    The electrosurgical tool of Claim 88, wherein the rotational coupling is configured to allow infinite rotation of the first and second jaws about a central longitudinal axis with respect to the handle assembly.
  90. 90
    The electrosurgical tool of Claim 1 wherein at least one of the first, second, and third electrodes is disposed on an inner surface of the first or second jaw, the at least one of the first, second, and third electrodes comprises a u-shaped electrode having two parallel legs extending longitudinally along the first or second jaw from a proximal end towards a distal end and a curved connector portion extending between the two parallel legs, the connector portion positioned adjacent the distal end of the first or second jaw.
  91. 91
    The electrosurgical tool of Claim 1 wherein at least one of the first, second, and third electrodes is disposed on an inner surface of the first or second jaw comprises two u-shaped electrodes each having two parallel legs extending longitudinally along the first or second jaw from a proximal end towards a distal end and a curved connector portion extending between the two parallel legs, the connector portion positioned adjacent the distal end of the first or second jaw.
  92. 92
    The electrosurgical tool of Claim 91, wherein the two u-shaped electrodes on the first jaw are connected by at least one bridge member, and the two u-shaped electrodes on the second jaw are connected by at least one bridge member.
  93. 93
    The electrosurgical tool of Claim 1 wherein at least one of the first, second or third electrode is disposed on an inner surface of the first or second jaw comprises a u-shaped electrode having two parallel arc-segment legs extending curvilinearly along the first or second jaw from a proximal end towards a distal end and a curved connector portion extending between the two parallel legs, the connector portion positioned adjacent the distal end of the first or second jaw.
  94. 94
    The electrosurgical tool of Claim 1 wherein the first jaw has an inner surface, an outer surface, a proximal end and a distal end, and the first electrode is disposed on the inner surface of Date Reçue/Date Received 2021-05-28 -126 the first jaw;and the second jaw has an inner surface, an outer surface, a proximal end and a distal end and the second electrode is disposed on the inner surface of the second jaw and the third electrode is disposed on the outer surface of the second jaw.
  95. 95
    The electrosurgical tool of Claim 94, wherein the distal end of one of the first jaw and the second jaw extends distally further with respect to a central longitudinal axis than the distal end of the other of the first jaw and the second jaw.
  96. 96
    The electrosurgical tool of Claim 94, wherein the distal end of the second jaw extends distally further with respect to a central longitudinal axis than the distal end of the first jaw.
  97. 97
    The electrosurgical tool of Claim 1 further comprising a controller further comprising:a first actuator movable between an on position and an off position for actuating a first electrosurgical action when in the on position;and a second actuator movable between an on position and an off position for actuating a second electrosurgical action when in the on position;and a tool selector having a first state wherein the controller is adapted to be operatively coupled to a first electrosurgical tool and a second state wherein the controller is adapted to be operatively coupled to a second electrosurgical tool.
  98. 98
    The electrosurgical tool of Claim 97, wherein the first actuator comprises a coagulation switch for actuating a coagulation operation.
  99. 99
    The electrosurgical tool of Claim 98, wherein the coagulation switch comprises a foot pedal.
  100. 100
    The electrosurgical tool of Claim 97,98 or 99, wherein the second actuator comprises a cut switch for actuating a cutting operation.
  101. 101
    The electrosurgical tool of Claim 100, wherein the cut switch comprises a cut foot pedal. Date Reçue/Date Received 2021-05-28 -127 -
  102. 102
    The electrosurgical tool of Claim 97,98,99, 100 or 101, wherein the tool selector comprises a toggle switch.
  103. 103
    The electrosurgical tool of any one of the Claims 86-102, further comprising an electrosurgical generator configured to supply electrosurgical energy to the plurality of electrodes.
  104. 104
    The electrosurgical tool of Claim 1 further comprising an electrosurgical generator configured to supply electrosurgical energy to the plurality of electrodes.
  105. 105
    The electrosurgical tool of Claim 103 or 104, further comprising:a memory module storing tool data;and wherein the electrosurgical generator is configured to receive the tool data from the memory module and apply an electrosurgical signal profile to the electrosurgical tool based on the tool data.
  106. 106
    The electrosurgical tool of Claim 105, wherein the tool data comprises electrode configuration data.
  107. 107
    The electrosurgical tool of Claim 105 or 106, wherein the tool data is stored in an encrypted format.
  108. 108
    The electrosurgical tool of Claim 105,106 or 107, wherein the tool data comprises tool usage data.
  109. 109
    The electrosurgical tool of Claim 105,106,107 or 108, wherein the electrosurgical generator comprises an analysis module configured to receive the tool data from the memory module.
  110. 110
    The electrosurgical tool of Claim 109, wherein the analysis module is configured to monitor operational data from the electrosurgical tool. Date Reçue/Date Received 2021-05-28 -128 -
  111. 111
    The electrosurgical tool of Claim 110, wherein the operational data comprises a complex impedance value.
  112. 112
    The electrosurgical tool of Claim 103 or 104, wherein the electrosurgical generator further comprises a relay bank.
  113. 113
    The electrosurgical tool of Claim 112, wherein the electrosurgical generator is configured to switch the electrosurgical tool into a cutting configuration by selectively switching relays within the relay bank.
  114. 114
    The electrosurgical tool of Claim 113, wherein the electrosurgical generator further comprises a multi-electrode switching power supply comprising the relay bank.
  115. 115
    The electrosurgical tool of any one of the Claims 103-114, wherein the electrosurgical generator further comprises:a power supply;a signal generation module electrically coupled to the power supply, the signal generation module configured to generate a radiofrequency signal;and a first tool port configured to interface with the electrosurgical tool;the first tool port adapted to receive the tool data stored on the electrosurgical tool and to supply the radiofrequency signal from the signal generation module to the tool.
  116. 116
    The electrosurgical tool of Claim 115, wherein the electrosurgical generator further comprises a second tool port configured to interface with a second electrosurgical tool having tool data stored therein;the second tool port adapted to receive the tool data stored on the second electrosurgical tool and to supply the radiofrequency signal from the signal generation module to the second tool.
  117. 117
    The electrosurgical tool of Claim 115 or 116, wherein the electrosurgical generator further comprising a bipolar tool port adapted to couple the generator to a bipolar electrosurgical tool. Date Reçue/Date Received 2021-05-28 -129 -
  118. 118
    The electrosurgical tool of Claim 115,116 or 117 wherein the electrosurgical generator further comprising a power port adapted to couple the generator to a direct current device.
  119. 119
    The electrosurgical tool of Claim 115,116,117 or 118, wherein the electrosurgical generator further comprising an actuator port electrically coupled to the first tool port.
  120. 120
    The electrosurgical tool of Claim 115,116,117 or 118, wherein the electrosurgical generator further comprising an actuator port electrically coupled to the first tool port and the second tool port.
  121. 121
    The electrosurgical tool of Claim 119 or 120, wherein the actuator port comprises a foot pedal controller port.
  122. 122
    The electrosurgical tool of any one of the Claims 86-121, further comprising:a distal end-piece comprising the first and second jaws;an elongate shaft having a distal end connected to the distal end-piece and a proximal end;a handle assembly positioned at a proximal end of the tool and connected to the proximal end of the elongate shaft, the handle assembly comprising;a hand-piece;and a trigger pivotally coupled to the hand-piece and operably coupled to the distal end-piece such that movement of the trigger relative to the hand-piece moves the first and second jaw relative to one another;and a switching mechanism electrically coupled to the distal end-piece to selectively configure the plurality of electrodes in one of the coagulation configuration and the cutting configuration.
  123. 123
    The electrosurgical tool of Claim 122, wherein the elongate shaft further comprises:Date Reçue/Date Received 2021-05-28 -130 - a slidable actuation tube having a proximal end and a distal end, the distal end coupled to at least one of the first jaw and the second jaw, and the proximal end coupled to the handle assembly;a cover tube surrounding the slidable actuation tube;and an outer tube surrounding the cover tube, the outer tube defining an outer surface of the elongate shaft.
  124. 124
    The electrosurgical tool of Claim 123, wherein the handle assembly further comprises a blade trigger coupled to a blade to selectively advance the blade between a retracted position and an advanced position.
  125. 125
    The electrosurgical tool of Claim 124, wherein the handle assembly further comprises a blade advancement member coupling a blade trigger to the blade, the blade advancement member positioned within the slidable actuation tube.
  126. 126
    The electrosurgical tool of Claim 125, wherein the blade advancement member comprises a blade advancement shaft.
  127. 127
    The electrosurgical tool of Claim 126, wherein the blade advancement shaft comprises a proximal section and a distal section, the proximal and distal portions connected by a mating interface.
  128. 128
    The electrosurgical tool of Claim 126 or 127, wherein the blade advancement shaft is comprised of a polymeric material.
  129. 129
    The electrosurgical tool of Claim 1 wherein the electrosurgical tool further comprises:a distal end-piece positioned at a distal end of the tool, the distal end-piece comprising the first jaw and the second jaw;and a switching mechanism electrically coupled to the distal end-piece to selectively configure the plurality of electrodes in one of the coagulation configuration and the cutting configuration. Date Reçue/Date Received 2021-05-28 -131 -
  130. 130
    The electrosurgical tool of Claim 129, wherein the switching mechanism configures the plurality of electrodes in the coagulation configuration when the first jaw and the second jaw are in an open position.
  131. 131
    The electrosurgical tool of Claim 130, wherein the switching mechanism configures the plurality of electrodes in the cutting configuration when the first jaw and the second jaw are moved from an open position towards a closed position.
  132. 132
    The electrosurgical tool of Claim 131, further comprising a handle assembly positioned at a proximal end of the tool, the handle assembly comprising;a hand-piece;and a trigger pivotally coupled to the hand-piece and operably coupled to foe distal end-piece such that movement of the trigger relative to the hand-piece moves the first and second jaw relative to one another.
  133. 133
    The electrosurgical tool of Claim 132, wherein the switching mechanism comprises:a first electrical contact, a second electrical contact, and a third electrical contact all positioned on the hand-piece;and a fourth electrical contact and a fifth electrical contact positioned on the trigger.
  134. 134
    The electrosurgical tool of Claim 132, wherein the first electrical contact, second electrical contact, third electrical contact, fourth electrical contact, and fifth electrical contact are positioned to engage and disengage one another at predetermined relative positions of the trigger and the hand- piece.
  135. 135
    The electrosurgical tool of Claim 132, wherein when the first jaw and the second jaw are in an open position, the fourth electrical contact on the trigger engages the first electrical contact on the hand-piece, and the fifth electrical contact on the trigger engages the second electrical contact on the hand-piece. Date Reçue/Date Received 2021-05-28 -132 -
  136. 136
    The electrosurgical tool of Claim 133 or 135, wherein when the first jaw and the second jaw are between the open position and the closed position, the fourth electrical contact on the trigger engages the second electrical contact on the hand-piece, and the fifth electrical contact on the trigger engages the third electrical contact on the hand-piece.
  137. 137
    The electrosurgical tool of Claim 132, wherein the switching mechanism comprises a plurality of contact strips disposed on the hand-piece, and a plurality of contact pins mounted on the trigger.
  138. 138
    The electrosurgical tool of Claim 137, wherein the plurality of pins comprises two pins.
  139. 139
    The electrosurgical tool of Claim 137 or 138, wherein the plurality of contact strips comprises two concentric contact strips.
  140. 140
    The electrosurgical tool of Claim 129,130 or 131, wherein the switching mechanism comprises a single pole electrical switch and a double pole electrical switch.
  141. 141
    The electrosurgical tool of Claim 129,130 or 131, wherein the switching mechanism comprises a first double pole electrical switch and a second double pole electrical switch.
  142. 142
    The electrosurgical tool of Claim 141, wherein the switching mechanism further comprises a third double pole electrical switch.
  143. 143
    The electrosurgical tool of Claim 129,130 or 131, wherein the switching mechanism comprises a multi-electrode switching power supply.
  144. 144
    The electrosurgical tool of Claim 1 further comprising:a distal end-piece positioned at a distal end of the tool, the distal end-piece comprising the first jaw and the second jaw;Date Reçue/Date Received 2021-05-28 -133 - a handle assembly positioned at a proximal end of the tool, the handle assembly comprising;a hand-piece;and a trigger pivotally coupled to the hand-piece and operably coupled to the distal end-piece such that movement of the trigger relative to the hand-piece moves the first and second jaw relative to one another;and a force regulation mechanism coupling the handle assembly to the distal end-piece, the force regulation assembly configured such that in a closed configuration, the distal end-piece delivers a gripping force between the first jaw and the second jaw between a predetermined minimum force and a predetermined maximum force.
  145. 145
    The electrosurgical tool of Claim 144, wherein the force regulation mechanism comprises:a first pivot point coupling the trigger to the hand-piece, the first pivot point positioned longitudinally slidable relative to the hand-piece;a second pivot point coupling the trigger to the hand-piece, the second pivot point being slidable relative to the hand-piece;and an actuator spring biasing the second pivot point with a predetermined preload.
  146. 146
    The electrosurgical tool of Claim 145, wherein the handle assembly comprises at least one guide defining an actuation path of the second pivot point.
  147. 147
    The electrosurgical tool of Claim 144 or 145, wherein the force regulation mechanism is configured such that the distal end-piece delivers a gripping force to develop a pressure between the first and second jaws of between 3 kg/cm 2 and 39 kg/cm 2 .
  148. 148
    The electrosurgical tool of Claim 144 or 145, wherein the force regulation mechanism is configured such that the distal end-piece delivers a gripping force to develop an average pressure between the first and second jaws of 23 kg/cm 2 . Date Reçue/Date Received 2021-05-28 -134 -
  149. 149
    The electrosurgical tool of Claim 144 or 145, wherein the distal end-piece has a proximal end and a distal end, and a pressure between the first and second jaws has a first pressure at the proximal end of the distal end-piece and a second pressure at the distal end of the distal endpiece, the second pressure less than the first pressure, and wherein both the first pressure and the second pressure are between 3 kg/cm 2 and 39 kg/cm 2 .
  150. 150
    The electrosurgical tool of Claim 144 or 145, wherein the distal end-piece further comprises a cutting blade positioned in one of the first jaw and the second jaw and advanceable from a proximal position to a distal position.
  151. 151
    The electrosurgical tool of Claim 150, wherein the handle assembly further comprises a blade trigger movable with respect to the hand-piece, the blade trigger coupled to the cutting blade such that movement of the trigger moves the cutting blade between the proximal position and the distal position.
  152. 152
    The electrosurgical tool of any one of the Claims 129-151, further comprising an electrosurgical generator configured to supply electrosurgical energy to the plurality of electrodes.
  153. 153
    The electrosurgical tool of Claim 152, further comprising:a memory module storing tool data;and wherein the electrosurgical generator is configured to receive the tool data from the memory module and apply an electrosurgical signal profile to the electrosurgical tool based on the tool data.
  154. 154
    The electrosurgical tool of Claim 153, wherein the tool data comprises electrode configuration data.
  155. 155
    The electrosurgical tool of Claim 153 or 154, wherein the tool data is stored in an encrypted format. Date Reçue/Date Received 2021-05-28 -135-
  156. 156
    The electrosurgical tool of Claim 153,154 or 155, wherein the tool data comprises tool usage data.
  157. 157
    The electrosurgical tool of Claim 153,154,155 or 156, wherein the electrosurgical generator comprises an analysis module configured to receive the tool data from the memory module.
  158. 158
    The electrosurgical tool of Claim 157, wherein the analysis module is configured to monitor operational data from the electrosurgical tool.
  159. 159
    The electrosurgical tool of Claim 158, wherein the operational data comprises a complex impedance value.
  160. 160
    The electrosurgical tool of Claim 152, wherein the electrosurgical generator further comprises a relay bank.
  161. 161
    The electrosurgical tool of Claim 160, wherein the electrosurgical generator is configured to switch the electrosurgical tool into a cutting configuration by selectively switching relays within the relay bank.
  162. 162
    The electrosurgical tool of Claim 161, wherein the electrosurgical generator further comprises a multi-electrode switching power supply comprising the relay bank.
  163. 163
    The electrosurgical tool of any one of the Claims 152-162, wherein the electrosurgical generator further comprises:a power supply;a signal generation module electrically coupled to the power supply, the signal generation module configured to generate a radiofrequency signal;and a first tool port configured to interface with the electrosurgical tool;the first tool port adapted to receive the tool data stored on the electrosurgical tool and to supply the radiofrequency signal from the signal generation module to the tool. Date Reçue/Date Received 2021-05-28 -136 -
  164. 164
    The electrosurgical tool of Claim 163, wherein the electrosurgical generator further comprises a second tool port configured to interface with a second electrosurgical tool having tool data stored therein;the second tool port adapted to receive the tool data stored on the second electrosurgical tool and to supply the radiofrequency signal from the signal generation module to the second tool.
  165. 165
    The electrosurgical tool of Claim 163 or 164, wherein the electrosurgical generator further comprising a bipolar tool port adapted to couple the generator to a bipolar electrosurgical tool.
  166. 166
    The electrosurgical tool of Claim 163,164 or 165 wherein the electrosurgical generator further comprising a power port adapted to couple the generator to a direct current device.
  167. 167
    The electrosurgical tool of Claim 163,164,165 or 166, wherein the electrosurgical generator further comprising an actuator port electrically coupled to the first tool port.
  168. 168
    The electrosurgical tool of Claim 163,164,165 or 166, wherein the electrosurgical generator further comprising an actuator port electrically coupled to the first tool port and the second tool port.
  169. 169
    The electrosurgical tool of Claim 167 or 168, wherein the actuator port comprises a foot pedal controller port.
  170. 170
    The electrosurgical tool of any one of the Claims 1,20, 86,90,91,93-94,97,104,129, or 144, wherein in the coagulation configuration, a potential difference between the source of electrical energy having the first polarity and the source of electrical energy having the second polarity is no more than approximately 200 V.
  171. 171
    The electrosurgical tool of any one of the Claims 1,20,86,90,91,93-94,97,104,129, 144 or 170, wherein in the cutting configuration, a potential difference between the source of Date Reçue/Date Received 2021-05-28 -137 electrical energy having a cutting voltage and the return electrodes is between approximately 300 V and approximately 500 V.
Independent claims171