IP Library Granted Patent US 7,296,571
Granted Patent B2
US 7,296,571 · App. 10/856,205 · Granted Nov 20, 2007

Electrical cautery-oxygen safety device

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Quick Facts
Patent No.
US 7,296,571
App. No.
10/856,205
Granted
Nov 20, 2007
Kind
B2
Abstract

Operating room fires are prevented by a safety interlock that disables instrumentalities (such as an electrical cautery device) capable of igniting a fire in the presence of oxygen and a fuel source or combustible material such as skin, hair and/or prep agents containing alcohol. Removal of, e.g., the cautery device is sensed by a sensor to disable an oxygen source supplying oxygen to a patient and set a timer. Electrical activation of the cautery device only is permitted upon timing-out of the timer, which timing out is set for a time when oxygen will have cleared from the patient's immediate surroundings. A further safety feature is provided in a further timing, by the same or another timer, of the time during which the patient has been deprived of oxygen. After a short duration, then, the cautery (or other) device is denied electrical power and oxygen is permitted to flow again to the patient.

Claims (25)

1. A fire prevention apparatus for use in a medical setting where oxygen-rich gas is often supplied to a patient during a medical procedure; the apparatus comprising:

(a) means for supplying oxygen-rich gas to a patient;

(b) an electrically operable cut-off valve operative to interrupt the supply of oxygen-rich gas to the patient;

(c) a receptacle for an electrically heated surgical tool;

(d) a sensor associated with the receptacle for sensing the presence of the tool in the receptacle;

(e) a control circuit comprising:

(i) means responsive to the sensor signaling removal of the tool from the receptacle for operating the cut-off valve to interrupt the supply of oxygen; and

(ii) means responsive to the sensor signaling removal of the tool from the receptacle to delay electrical activation of the tool for a period of time during which oxygen has been interrupted.

2. The fire prevention apparatus of claim 1 , wherein the control circuit further comprises:

(iii) means for automatically interrupting electrical power to the tool after a predetermined time during which the oxygen supply has been interrupted.

3. The fire prevention apparatus of claim 1 , further comprising a manual override valve connected to deliver oxygen-rich gas past the cut-off valve to a patient upon manual activation.

4. The fire prevention apparatus of claim 2 , further comprising timing means responsive to the cutoff of oxygen to a patient to activate the cut-off valve in an oxygen-rich gas supplying condition after a predetermined period.

5. The fire prevention apparatus of claim 4 , wherein the timing means responsive to the cutoff of oxygen is further operative to interrupt electrical power delivered to the tool.

6. The fire prevention apparatus of claim 5 , further comprising timing means operative to set a delay of re-energizing the tool subsequent to an interruption of electrical power to the tool by the timing means responsive to the cutoff of oxygen, thereby to assure satisfactory oxygenation of a patient.

7. The fire prevention apparatus of claim 6 , wherein the timing means operative to set a delay of re-energizing the tool is operatively connected with the sensor to begin a timing period of delay of re-energizing the tool upon return of the tool to the receptacle.

8. A surgery fire prevention system including:

(a) a heat producing electrically activated surgical tool,

(b) a control circuit,

(c) an electrically operable valve connected in flow controlling relation to a path of oxygen-rich gas supply for a surgical patient,

(d) a tool receptacle for receiving the electrically activated surgical tool when the tool is not in use,

(e) a detector for detecting removal of the tool from the receptacle,

(f) the detector having an output connected as an input to the control circuit,

(g) the control circuit having an output for supplying electrical power to the tool in response to a detector output indicating removal of the tool from the receptacle,

(h) the control circuit having a further output for operating the electrically operable valve, and

(i) the control circuit being operative to close the electrically operative valve and stop the flow of oxygen-rich gas in response to the output from the detector indicating removal of the tool from the receptacle and to delay the output for supplying electrical power to the tool for a predetermined time period following removal of the tool from the receptacle and closure of the valve.

Continuity (2)
Provisional Application 6047413100 · May 28, 2003
Related Publication 20050021021A1 · Jan 27, 2005