Multiple RF return pad contact detection system

MULTIPLE RF RETURN PAD CONTACT DETECTION SYSTEM Abstract A multiple RF return pad contact detection system (100) is provided which is adaptive to different physiological characteristics of patients without being susceptible to electrosurgical current interference (e.g., interference or measurement i...

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Hauptverfasser: FREDRICKS, RAYMOND A, GREGG, WILLIAM N, STRUM, THOMAS A
Format: Patent
Sprache:eng
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Zusammenfassung:MULTIPLE RF RETURN PAD CONTACT DETECTION SYSTEM Abstract A multiple RF return pad contact detection system (100) is provided which is adaptive to different physiological characteristics of patients without being susceptible to electrosurgical current interference (e.g., interference or measurement interaction between components of the detection system). The detection system (100) can measure or sense the contact resistance or impedance between the patient and pairs of RF return pads (20a, 20b, 22a, 22b) or return electrodes (18a, 18b) where multiple pairs of RF return pads are utilized due to the high current frequently needed during electrosurgery while eliminating or minimizing the risk of measurement interaction between the RF return pad pairs (20a, 20b, 22a, 22b). The system allows for the independent and simultaneous measurement of the pad contact impedance for each pair of RF return pads. If the impedance of any pad pair (20a, 20b, 22a, 22b) is above a predetermined limit, the system turns off or reduces the electrosurgical output of the electrosurgical generator to prevent excess heating. The system (100) eliminates or minimizes interference or measurement interaction between the pad pairs (20a, 20b, 22a, 22b) by providing a different signal source frequency (42a, 42b) for each pad contact pair (20a, 20b, 22a, 22b), but a frequency which matches an associated series resonant network frequency. The current that flows in the series resonant network is a direct reflection or function of the pad impedance of the corresponding pad pair. 1771674 1 DOC IRN: 713252D]