Nova Patents
IL118702A

Electrosurgical generator and system

Abstract

This record has no abstract on file.

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

33 claims: 8 independent, 25 dependent

  1. 1
    32 CLAIMS 1 A method of operating an electrosurgical tissue coagulation or desiccation in-vitro including a generator which generates at a pair of output terminals a radio-frequency electrosurgical output signal, and an electrosurgical instrument having a bipolar electrode assembly with a pair of electrodes for operation in a conductive liquid, which are connected to the generator output terminals, wherein the method comprises the steps oft- applying the electrosurgical output signal via the generator output terminals to the electrodes of the instrument thereby to cause a radio frequency current to flow through the conductive liquid, the liquid being heated due to the flow of current. deriving a sensing signal representative of the radio frequency voltage across the electrodes, and automatically controlling the radio-frequency power delivered by the generator to the electrodes in response to the sensing signal to maintain the liquid adjacent the electrodes at its boiling point without creating a vapour pocket around one of the electrodes.
  2. 14
    An electrosurgical generator arranged to supply radio frequency power to a bipolar electrosurgical instrument for tissue coagulation or desiccation, the generator comprising a radio frequency output stage having at least a pah of electrosurgical output connections for the deliveiy of radio frequency power to the instrument, a power supply coupled to the output stage for supplying power to the output stage, and control circuitry including sensing means for sensing the radio frequency output voltage developed across the output connections, the control circuitry being operable to determine whether the output voltage has reached a predetermined threshold and automatically to reduce the applied radio frequency power in response to attainment of the predetermined threshold, characterised in that, when operated to perform tissue coagulation or desiccation, at a given supply voltage the output power versus load impedance characteristic of the generator output stage has an output power peak at a radio frequency voltage less than the predetermined voltage threshold, thereby to facilitate rapid reduction in the radio frequency output power when the threshold is attained. 35
  3. 17
    A generator according to any of claims 14 to 16, wherein the control circuitry is adapted to reduce the output power of the generator by reducing the supply voltage to the output stage from the power supply,
  4. 18
    A generator according to any of claims 14 to 17, wherein the control circuitry is selectively operable to be responsive to a first output voltage threshold to operate in a coagulation or desiccation mode, or to a second output voltage threshold, higher than the first threshold, to operate in a tissue cutting or vaporisation mode.
  5. 20
    A generator according to any of claims 14 to 19, wherein by being operable in a tissue coagulation or desiccation mode and in a tissue cutting or vaporisation mode, the output stage having respective first and second power versus load impedance characteristics, the peak power of the second characteristic being higher than that of the first characteristic, and in that the shapes and positions of the said characteristics are such that the output power delivered in the coagulation or desiccation mode when the load impedance is in the region of 160 ohms is higher than that output power delivered in the cutting or vaporisation mode when the load impedance is 1 kilohm or higher. 36
  6. 21
    A generator according to any of claims 14 to 20, wherein the output stage has an output impedance in the range of from 50 ohms to 250 ohms.
  7. 23
    An electrosurgical system including a generator according to any of claims 14 to 20 and a bipolar electrosurgical instrument which includes an electrode assembly with electrodes arranged for operation in a conductive, the electrodes being coupled to the 10 output connections of the generator.
  8. 32
    33. A system according to claim 32, wherein the means for causing a reduction in 30 the applied radio frequency power include a first control line coupled to the said output stage for feeding a signal to the said power device to alter its radio frequency duty cycle and a second control line coupled to power supply means within the generator, the 38 control circuitry being arranged such that a second power reduction signal is fed to the power supply means to effect a reduction in the average power supply voltage supplied to the said output stage when the said predetermined voltage is reached. 5 34. A system according to claim 32 or claim 33, wherein the control circuitry is operable repeatedly to effect a rapid reduction in the cycle-by-cycle reduction period of the said power device from a peak level to a trough level followed by a less rapid progressive increase in the conduction period until the conduction period again reaches its peak level, and rapid-reduction and progressive-increase sequence being repeated 10 until the said peak conduction period level can be reached without the output voltage exceeding the predetermined voltage value.
  9. 33
    35. A system according to any of claims 32 to 34, wherein the generator has a switched mode power supply with a supply current switching device, and the control 15 circuitiy is operable to disable the output of die said switching device for a whole number n of the power supply switching cycles, where n is greater than or equal to 1, until the sensing signal is indicative of the generator output voltage no longer reaching the predetermined voltage value. 20 36. A system according to any of claims 23 to 36, wherein the electrode assembly is a bipolar electrode assembly having an active electrode and a return electrode adjacent the active electrode. C:ORDr 25351