Method for the control of a medical device as a function of neutral electrode impedance
The method disclosed herein permits the operator of an electrosurgical device to move a safety switch-off threshold for a contact resistance at a neutral electrode from a first value to a second and slightly higher value. This way, for patients with a relatively high resistance yielding a somewhat elevated contact resistance despite correct attachment of the neutral electrode, uninterrupted operation of the device is achievable.
1. An electrosurgical device comprising:
an electrical generator to supply power to an electrosurgical instrument,
a connection for a neutral electrode for attachment to a patient, the neutral electrode having at least two sections that are electrically insulated from one another, and
a control device having a control module to record the electrical impedance between the two sections and which is connected to the electrical generator, said control module configured to:
enable without restriction operation of the generator if the measured impedance is below a first limit value,
disable operation of the generator if the measured impedance exceeds the first limit value,
generate a warning signal if the measured impedance is above the first limit value and below a second limit value that is greater than the first limit value,
end the disablement upon input of an appropriate user command if the measured impedance is above the first limit value and below the second limit value, and
disable operation of the generator such that it cannot be overridden when the impedance exceeds the second limit value,
wherein the first limit value and second limit value are fixed.
2. The device of claim 1 , wherein the generator is a high frequency (HF) generator.
3. The device of claim 1 , wherein the control device repeatedly monitors the impedance during operation of the generator.
4. The device of claim 1 , wherein after the first limit value has been exceeded and a subsequent manual enabling of the operation of the generator has occurred, the control device continuously monitors the impedance to determine whether the first limit value has been exceeded again and, in such an event, emits a warning and/or disables operation of the generator once again.
5. The device of claim 4 , wherein re-enabling operation of the generator can occur abased on receiving an input signal to end the disablement.