Ultrasound device for precise tissue sealing and blade-less cutting
An electrosurgical instrument for sealing and cutting tissue is provided. The instrument includes a housing having a plurality of transducers included therein and a waveguide coupled to and extending from the housing. An end effector assembly disposed at a distal end of the waveguide includes a pair of opposing jaw members, where at least one of the jaw members includes a transducer. The transducer is configured to receive an acoustic signal from the plurality of transducers in the housing.
1. An electrosurgical instrument, comprising:
a housing having a plurality of transducers included therein;
a waveguide coupled to and extending from the housing; and
an end effector assembly disposed at a distal end of the waveguide including a pair of opposing jaw members, at least one of the jaw members including a probe, the probe configured to receive an acoustic signal from the plurality of transducers in the housing.
2. The electrosurgical instrument according to claim 1 , wherein the probe is coupled to a generator and the probe converts the received acoustic signal into an electrical signal that is transmitted to the generator.
3. The electrosurgical instrument according to claim 2 , wherein the generator receives the electrical signal and outputs a time-reversed signal to the plurality of transducers in the housing.
4. The electrosurgical instrument according to claim 3 , wherein the plurality of transducers in the housing transmits the time-reversed signal to the probe through the waveguide.
5. The electrosurgical instrument according to claim 1 , wherein the probe is a piezoceramic transducer.
6. The electrosurgical instrument according to claim 1 , wherein the probe is formed beneath a sealing surface of the at least one jaw member.
7. The electrosurgical instrument according to claim 1 , wherein the probe is formed as an integral part of a sealing surface of the at least one jaw member.
8. The electrosurgical instrument according to claim 1 , wherein the probe is formed as a stop member on top of a sealing surface of the at least one jaw member.
9. An electrosurgical system comprising:
an electrosurgical instrument including:
a housing having a plurality of transducers included therein;
a waveguide coupled to and extending from the housing;
an end effector assembly disposed at a distal end of the waveguide including a pair of opposing jaw members, at least one of the jaw members including a transducer, the transducer configured to receive an acoustic signal from the plurality of transducers in the housing; and
a generator coupled to the plurality of transducers in the housing and the transducer in the end effector assembly.
10. The electrosurgical system according to claim 9 , wherein the transducer in the end effector assembly converts the received acoustic signal from the plurality of transducers in the housing into an electrical signal that is transmitted to the generator.
11. The electrosurgical system according to claim 10 , wherein the generator includes a phase/time reversal unit configured to receive the electrical signal from the transducer in the end effector assembly and output a reversed electrical signal to the plurality of transducers in the housing.
12. The electrosurgical instrument according to claim 9 , wherein the transducer in the end effector assembly is a piezoceramic transducer.
13. The electrosurgical instrument according to claim 9 , wherein the transducer in the end effector assembly is formed beneath a sealing surface of the at least one jaw member.
14. The electrosurgical instrument according to claim 9 , wherein the transducer in the end effector assembly is formed as an integral part of a sealing surface of the at least one jaw member.
15. The electrosurgical instrument according to claim 9 , wherein the transducer in the end effector assembly is formed as a stop member on top of a sealing surface of the at least one jaw member.
16. A method of providing energy to tissue comprising:
providing an electrosurgical instrument having:
a housing having a plurality of transducers included therein;
a waveguide coupled to and extending from the housing; and
an end effector assembly disposed at a distal end of the waveguide including a pair of opposing jaw members, at least one of the jaw members including a probe;
generating an acoustic signal from the plurality of transducers;
propagating the acoustic signal through the waveguide;
receiving the acoustic signal at the probe;
converting the acoustic signal to an electrical signal;
transmitting the electrical signal to a generator;
processing the electrical signal in the generator to generate a time-reversed signal;
transmitting the time-reversed signal to the plurality of transducers;
converting the time-reverse signal to a time-reversed acoustic signal; and
transmitting the time-reversed acoustic signal to the probe.