IP Library Granted Patent US 8,608,732
Granted Patent B2
US 8,608,732 · App. 12/202,982 · Granted Dec 17, 2013

Flammable substance sensing during a surgical procedure

Inventor: Arnold Steven Seid (Santa Monica, CA)
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Quick Facts
Patent No.
US 8,608,732
App. No.
12/202,982
Granted
Dec 17, 2013
Kind
B2
Abstract

A surgical safety apparatus for use in connection with an energizable surgical device minimizes inadvertent activation of a surgical tool when the oxygen or flammable gas level is too high. An activation circuit is connected with an energy source and with a hand piece of the tool. A sensor measures the oxygen or flammable gas near the tool and can operate in a first state to disconnect the energy source from the hand piece. In a second state the source of energy is connected to the hand piece. The sensing element is connected to the activation circuit. The sensing element signals the activation circuit to convert the activation circuit from the first state to the second state provided the oxygen or flammable gas level is safe.

Claims (29)

1. A surgical apparatus comprising:

an energizable surgical device having a hand piece connectable to a source of energy, the piece having a surgical tool supported by the hand piece;

an activation circuit in connection with the source of energy, the activation circuit being connectable with the hand piece, the activation circuit having a first state disconnecting the source of energy from the hand piece, and the activation circuit having a second state for connecting the source of energy to the hand piece;

an electrical switch operable with the hand piece, the electrical switch being disposed to connect the source of energy to the surgical tool when the activation circuit is in the second state; and

a sensing element for sensing in a nature of the air environment area of the surgical tool, the sensing element being operable to change the activation circuit between the first state and the second state, or the second state to the first state according to the sensed nature of the air environment area.

2. The apparatus of claim 1 including an acoustical tone generator with the activation circuit, generator acting to audibly indicate when the activation circuit is converted from the first state to the second state.

3. The apparatus of claim 1 including an acoustical tone generator with the activation circuit, the generator acting to audibly indicate when the activation circuit is converted from the second state to the first state.

4. The apparatus of claim 1 wherein the activation circuit includes a relay, the relay being electrically connected to close when the activation circuit is in its second state.

5. The apparatus of claim 1 wherein the energy source is power for the hand piece being an electrosurgical hand piece.

6. The apparatus of claim 1 including the energy source, the source of energy having several modes and the electrical switch to select and operate modes, permit selection and operation of different modes of energy from the energy source.

7. The apparatus of claim 1 wherein the electrical switch is a foot operated switch.

8. The apparatus of claim 1 including a conduit between an area adjacent the tool, the conduit being for directing the condition of the air in the environment of a tool to the sensing element.

9. The apparatus of claim 1 wherein the energy source is power for a laser.

10. An electrocautering surgical device for receiving a blade comprising:

a hand piece connectable to a source of electrical energy, the hand piece having a surgical tool supported by the hand piece;

a sensing device associated with the hand piece, the sensing device being for determining the condition of the air environment and the vicinity of the tool; and

a connector between the sensing device and an activation circuit, the activation circuit being connectable with the electrical energy source, and the activation circuit being connectable with the hand piece, the activation circuit acting to disconnect the energy source from the hand piece when the level of oxygen or a nature of the air in the vicinity of the hand piece exceeds a predetermined level.

11. The apparatus of claim 10 wherein the energy source is power for an electrosurgical hand piece.

12. The apparatus of claim 10 wherein the energy source is power for a laser.

13. A method for using a surgical tool having an energizable surgical device for receiving a blade, the energizable surgical device being connectable to an energy source, a hand piece for the tool, the hand piece having a surgical tool, the method comprising the steps of:

connecting an activation circuit to an energy source and to a hand piece, the activation circuit having a first state for disconnecting the energy source from the hand piece, and the activation circuit having a second state for connecting the energy source to the hand piece;

connecting the energy source to the surgical tool with an electrical switch when the activation circuit is in the second state, and

responding to a designated level of oxygen or a nature of the air in the air environment of the hand tool as sensed with a sensing element when the activation circuit is in the first state to change the activation circuit from the first state to the second state when the sensed level of oxygen or nature of the air is less than a threshold level.

14. The method of claim 13 including connecting an electrical switch to the energy source to operate various modes of energy from the energy source.

15. A method for using a surgical tool having an energizable surgical device for receiving a blade, the energizable surgical device being connectable to an energy source, a hand piece for the tool, the hand piece having a surgical tool, the method comprising the steps of:

connecting an activation circuit to an energy source and to a handpiece, the activation circuit having a first state for disconnecting the energy source from the hand piece, and the activation circuit having a second state for connecting the energy source to the hand piece;

connecting the energy source to the surgical tool with an electrical switch when the activation circuit is in the second state, and

responding to a designated level of oxygen or a nature of the air in the air environment of the hand tool as sensed with a sensing element when the activation circuit is in the second state to change the activation circuit from the second state to the first state when the sensed level of oxygen or nature of the air is greater than a threshold level.

16. The method of claim 15 including connecting an electrical switch to the energy source to operate various modes of energy from the energy source.

Continuity (4)
Continuation In Part 11872323 · Oct 15, 2007
Continuation 10965652 · Oct 13, 2004
Provisional Application 60511367 · Oct 14, 2003
Related Publication 20080319441A1 · Dec 25, 2008