IP Library Granted Patent US 8,574,228
Granted Patent B2
US 8,574,228 · App. 12/801,886 · Granted Nov 5, 2013

Ultrasound treatment system

Inventors: Mitsumasa Okada (Hachioji, JP); Toshiya Sugai (Hachioji, JP); Yoshitaka Honda (Tokorozawa, JP); Manabu Ishikawa (Hachioji, JP); Tomohisa Sakurai (Sagamihara, JP)
Assignee: Olympus Corporation
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Quick Facts
Patent No.
US 8,574,228
App. No.
12/801,886
Granted
Nov 5, 2013
Kind
B2
Abstract

An ultrasound treatment system comprises an ultrasonic transducer, a handpiece, a probe, a sheath, a clamping member, an operation unit, an operating member, a suction base, and a perfusion base. The ultrasonic transducer generates ultrasonic vibrations. The handpiece has the ultrasonic transducer incorporated therein. The probe is connected to the ultrasonic transducer for transmitting ultrasonic vibrations to a distal member realizing a stationary portion that is a treatment portion for treating a living tissue. The sheath serves as a protecting member for shielding the probe. The clamping member is opposed to the distal member at the distal end of the sheath for clamping a living tissue in cooperation with the distal member. The operation unit is manipulated for clamping a living tissue with the clamping member and distal member or freeing the living tissue therefrom.

Claims (76)

1. An ultrasonic incision or coagulation apparatus comprising:

an ultrasonic transducer for generating ultrasonic vibrations;

an ultrasonic-transducer-driving power supply that supplies an ultrasonic-transducer-driving current to the ultrasonic transducer, thereby driving the ultrasonic transducer;

a probe having conductivity and extended in an axial direction, the probe being operatively coupled to the ultrasonic transducer to allow transmission of ultrasonic vibrations generated by the ultrasonic transducer;

a clamp member having conductivity and disposed to be operable to open and close with respect to the probe to hold a living tissue between the clamp member and the probe to incise or coagulate the living tissue;

an operating handle adapted to operate opening or closing actions of the clamp member;

a transmitter that transmits an operating force, in accordance with an operation amount of the operating handle, to the clamp member;

and a high-frequency power supply which is electrically coupled to the probe and the clamp member, and which supplies a high-frequency current between the probe and the clamp member to perform treatment to the living tissue;

a signal output section which outputs an operation signal to the ultrasonic-transducer-driving power supply and the high-frequency power supply; and

a control section which controls, based on the operation signal outputted from the signal output section, the ultrasonic-transducer-driving power supply, and the high-frequency power supply so as to provide one of

(I) a first state of simultaneously supplying both of the ultrasonic-transducer-driving current and the high-frequency current, or

(ii) a second state of supplying only one of the ultrasonic-transducer-driving current and the high-frequency current.

2. The ultrasonic incision or coagulation apparatus according to claim 1 , further comprising electrical insulators electrically insulating the transmitter and the probe from each other, and for electrically insulating each of the transmitter and the probe from the outside.

3. The ultrasonic incision or coagulation apparatus according to claim 1 , further comprising a connector provided to the operating handle, the connector being provided to be electrically connectable to the high-frequency power supply and being electrically connected to at least one of the probe and the clamp member,

wherein the high-frequency current from the high-frequency power supply is supplied between the probe and the clamp member, whereby a living tissue held between the probe and the clamp member conducts the high-frequency current to allow incising or coagulating the living tissue along a longitudinal axial direction of the probe.

4. The ultrasonic incision or coagulation apparatus according to claim 3 , further comprising:

a probe insertion channel through which the probe is inserted, the probe insertion channel being disposed in an insertion unit for insertion into a body cavity;

and an electrically insulating portion disposed on an inner circumference surface of the probe insertion channel, at a junction portion between a proximal side section of the probe insertion channel and an ultrasonic transducer housing.

5. The ultrasonic incision or coagulation apparatus according to claim 3 , further comprising a counter electrode board connected to a feedback unit in the high-frequency power supply to allow supplying the high-frequency current from the high-frequency power supply between one of the probe and the clamp member and the counter electrode board, or between both of the probe and the clamp member and the counter electrode board, whereby the living tissue conducts the high-frequency current.

6. The ultrasonic incision or coagulation apparatus according to claim 5 , further comprising:

a probe insertion channel through which the probe is inserted, the probe insertion channel being disposed in an insertion unit for insertion into a body cavity; and

an electrically insulating portion disposed on an inner circumference surface of the probe insertion channel, at a junction portion between a proximal side section of the probe insertion channel and an ultrasonic transducer housing.

7. An ultrasonic incision or coagulation apparatus comprising:

an ultrasonic transducer for generating ultrasonic vibrations;

an ultrasonic-transducer-driving power supply that supplies an ultrasonic-transducer-driving current to the ultrasonic transducer, thereby driving the ultrasonic transducer;

a probe extended in an axial direction, the probe being operatively coupled to the ultrasonic transducer to allow transmission of ultrasonic vibrations generated by the ultrasonic transducer to a distal end section of the probe;

a clamp member having conductivity and disposed to be operable to open and close with respect to the probe to hold a living tissue between the clamp member and the probe to incise or coagulate the living tissue;

an operating handle adapted to operate opening or closing actions of the clamp member;

a transmitter that transmits an operation amount of the operating handle such that opening or closing actions in accordance with the operation amount occur at the clamp member;

and a high-frequency power supply which is electrically coupled to the probe and the clamp member, and which supplies a high-frequency current between the probe and the clamp member to perform treatment to the living tissue;

a signal output section which outputs an operation signal to the ultrasonic-transducer-driving power supply and the high-frequency power supply; and

a control section which controls, based on the operation signal outputted from the signal output section, the ultrasonic-transducer-driving power supply, and the high-frequency power supply so as to provide one of

(I) a first state of simultaneously supplying both of the ultrasonic-transducer-driving current and the high-frequency current, or

(ii) a second state of supplying only one of the ultrasonic-transducer-driving current and the high-frequency current.

8. The ultrasonic incision or coagulation apparatus according to claim 7 , further comprising electrical insulators electrically insulating the transmitter and the probe from each other, and for electrically insulating each of the transmitter and the probe from the outside.

9. The ultrasonic incision or coagulation apparatus according to claim 7 , further comprising a connector provided to the operating handle, the connector being provided to be electrically connectable to the high-frequency power supply and being electrically connected to at least one of the probe and the clamp member,

wherein the high-frequency current from the high-frequency power supply is supplied between the probe and the clamp member, whereby a living tissue held between the probe and the clamp member conducts the high-frequency current to allow incising or coagulating the living tissue along a longitudinal axial direction of the probe.

10. The ultrasonic incision or coagulation apparatus according to claim 9 , further comprising:

a probe insertion channel through which the probe is inserted, the probe insertion channel being disposed in an insertion unit for insertion into a body cavity; and

an electrically insulating portion disposed on an inner circumference surface of the probe insertion channel, at a junction portion between a proximal side section of the probe insertion channel and an ultrasonic transducer housing.

11. The ultrasonic incision or coagulation apparatus according to claim 9 , further comprising a counter electrode board connected to a feedback unit in the high-frequency power supply to allow supplying the high-frequency current from the high-frequency power supply between one of the probe and the clamp member and the counter electrode board, or between both of the probe and the clamp member and the counter electrode board, whereby the living tissue conducts the high-frequency current.

12. The ultrasonic incision or coagulation apparatus according to claim 11 , further comprising:

a probe insertion channel through which the probe is inserted, the probe insertion channel being disposed in an insertion unit for insertion into a body cavity; and

an electrically insulating portion disposed on an inner circumference surface of the probe insertion channel, at a junction portion between a proximal side section of the probe insertion channel and an ultrasonic transducer housing.

13. An ultrasonic incision or coagulation apparatus comprising:

an ultrasonic transducer for generating ultrasonic vibrations;

an ultrasonic-transducer-driving power supply that supplies an ultrasonic-transducer-driving current to the ultrasonic transducer, thereby driving the ultrasonic transducer;

a probe having conductivity and extended in an axial direction, the probe being operatively coupled to the ultrasonic transducer to allow transmission of ultrasonic vibrations generated by the ultrasonic transducer to a distal end section of the probe;

a clamp member disposed to be operable to open and close with respect to the probe to hold a living tissue between the clamp member and the probe to incise or coagulate the living tissue;

an operating handle adapted to operate opening or closing actions of the clamp member;

a transmitter that transmits an operation amount of the operating handle such that opening or closing actions in accordance with the operation amount occur at the clamp member; and

a high-frequency power supply which is electrically coupled to the probe and the clamp member, and which supplies a high-frequency current between the probe and the clamp member to perform treatment to the living tissue;

a signal output section which outputs an operation signal to the ultrasonic-transducer-driving power supply and the high-frequency power supply; and

a control section which controls, based on the operation signal outputted from the signal output section, the ultrasonic-transducer-driving power supply, and the high-frequency power supply so as to provide one of

(I) a first state of simultaneously supplying both of the ultrasonic-transducer-driving current and the high-frequency current, or

(ii) a second state of supplying only one of the ultrasonic-transducer-driving current and the high-frequency current.

14. The ultrasonic incision or coagulation apparatus according to claim 13 , further comprising a connector provided to the operating handle, the connector being provided to be electrically connectable to the high-frequency power supply and being electrically connected to at least one of the probe and the clamp member,

wherein the high-frequency current from the high-frequency power supply is supplied between the probe and the clamp member, whereby a living tissue held between the probe and the clamp member conducts the high-frequency current to allow incising or coagulating the living tissue along a longitudinal axial direction of the probe.

15. The ultrasonic incision or coagulation apparatus according to claim 14 , further comprising:

a probe insertion channel through which the probe is inserted, the probe insertion channel being disposed in an insertion unit for insertion into a body cavity; and

an electrically insulating portion disposed on an inner circumference surface of the probe insertion channel, at a junction portion between a proximal side section of the probe insertion channel and an ultrasonic transducer housing.

16. The ultrasonic incision or coagulation apparatus according to claim 14 , further comprising a counter electrode board connected to a feedback unit in the high-frequency power supply to allow supplying the high-frequency current from the high-frequency power supply between one of the probe and the clamp member and the counter electrode board, or between both of the probe and the clamp member and the counter electrode board, whereby the living tissue conducts the high-frequency current.

17. The ultrasonic incision or coagulation apparatus according to claim 16 , further comprising:

a probe insertion channel through which the probe is inserted, the probe insertion channel being disposed in an insertion unit for insertion into a body cavity; and

an electrically insulating portion disposed on an inner circumference surface of the probe insertion channel, at a junction portion between a proximal side section of the probe insertion channel and an ultrasonic transducer housing.

18. An ultrasonic incision or coagulation apparatus comprising:

an ultrasonic transducer for generating ultrasonic vibrations;

a probe having conductivity and extended in an axial direction, the probe being operatively coupled to the ultrasonic transducer to allow transmission of ultrasonic vibrations generated by the ultrasonic transducer;

a clamp member having conductivity and disposed to be operable to open and close with respect to the probe to hold a living tissue between the clamp member and the probe to incise or coagulate the living tissue;

an operating handle adapted to operate opening or closing actions of the clamp member;

a transmitter that transmits an operating force, in accordance with an operation amount of the operating handle, to the clamp member;

a high-frequency power supply including a first oscillation circuit that supplies an electric current to the ultrasonic transducer, thereby driving the ultrasonic transducer, and a second oscillation circuit which is electrically coupled to the probe and the clamp member to perform treatment by high-frequency current to the living tissue;

a signal output section which outputs an operation signal to the first oscillation circuit and the second oscillation circuit; and

a control section which controls, based on the operation signal outputted from the signal output section, the first oscillation circuit and the second oscillation circuit so as to provide one of

(I) a first state of simultaneously supplying both of an ultrasonic-transducer-driving current and the high-frequency current, or

(ii) a second state of supplying only one of the ultrasonic-transducer-driving current and the high-frequency current.

Assignments (1)
CHANGE OF NAME Recorded Jul 23, 2010
From: OLYMPUS OPTICAL CO., LTD.
To: OLYMPUS CORPORATION
Reel/Frame 024731/0817 →
Priority Claims (8)
JP H7-081466 · Apr 6, 1995 · national
JP H7-113410 · May 11, 1995 · national
JP H7-193250 · Jul 28, 1995 · national
JP H7-195155 · Jul 31, 1995 · national
JP H7-195156 · Jul 31, 1995 · national
JP H7-259990 · Oct 6, 1995 · national
JP H7-292938 · Nov 10, 1995 · national
JP H10-201965 · Jul 16, 1998 · national
Continuity (6)
Division 10650759 · Aug 29, 2003
Division 09353652 · Jul 15, 1999
Continuation In Part 09345794 · Jul 1, 1999
Division 08938523 · Sep 26, 1997
Continuation In Part 08627500 · Apr 4, 1996
Related Publication 20100324458A1 · Dec 23, 2010