IPC분류정보
국가/구분 |
United States(US) Patent
등록
|
국제특허분류(IPC7판) |
|
출원번호 |
US-0080344
(2002-02-21)
|
등록번호 |
US-7422563
(2008-09-09)
|
발명자
/ 주소 |
- Roschak,Ed
- Keast,Thomas
- Melton, Jr.,Hewlett E.
- Willink,Christopher Lee
- Haugaard,Dave
- Thompson,David
|
출원인 / 주소 |
- Broncus Technologies, Inc.
|
대리인 / 주소 |
|
인용정보 |
피인용 횟수 :
53 인용 특허 :
305 |
초록
▼
Disclosed herein are devices for altering gaseous flow within a lung to improve the expiration cycle of an individual, particularly individuals having Chronic Obstructive Pulmonary Disease (COPD). More particularly, devices are disclosed to produce collateral openings or channels through the airway
Disclosed herein are devices for altering gaseous flow within a lung to improve the expiration cycle of an individual, particularly individuals having Chronic Obstructive Pulmonary Disease (COPD). More particularly, devices are disclosed to produce collateral openings or channels through the airway wall so that expired air is able to pass directly out of the lung tissue to facilitate both the exchange of oxygen ultimately into the blood and/or to decompress hyper-inflated lungs.
대표청구항
▼
We claim: 1. A medical device for applying energy to tissue, the medical device comprising: an elongate member having a proximal portion and a distal portion; a transducer assembly located entirely within an interior of the elongate member and towards said distal portion of said elongate member, an
We claim: 1. A medical device for applying energy to tissue, the medical device comprising: an elongate member having a proximal portion and a distal portion; a transducer assembly located entirely within an interior of the elongate member and towards said distal portion of said elongate member, an RF tissue-cutting electrode comprising an electrically conductive tip located entirely distally to said transducer assembly at a distal end of said distal portion of said elongate member, said tip having a front face covering said distal end of said distal portion, said tip being adapted to conduct energy to tissue, said tip having a front and back surface, said back surface being in acoustical communication with said transducer assembly wherein said tip is adapted to communicate a source signal from said transducer assembly out through said surface, said tip also being adapted to communicate a reflected signal said front surface to said transducer assembly; and at least two conducting members extending through at least a portion of said elongate member, at least one of said conducting members capable of electrically coupling an RF energy supply to said tip to electrosurgically remove tissue. 2. The medical device of claim 1, wherein a length of said tip is selected from a multiple of one-quarter of said wavelength of said signal. 3. The medical device of claim 2, wherein said length of said tip is approximately seven-quarters of said wavelength of said signal. 4. The medical device of claim 1, wherein said tip comprises a material selected from the group consisting of titanium, aluminum, and stainless steel. 5. The medical device of claim 1, wherein the tip comprises an electrically conductive coating about at least a portion of the tip. 6. The medical device of claim 1, wherein the tip is adapted as a lens to disperse the signal over a substantial portion of an outer surface of the tip. 7. The medical device of claim 1, wherein the tip is adapted to direct the signal toward the ultrasonic transducer. 8. The medical device of claim 1, wherein the tip has a substantially flat surface. 9. A catheter comprising: a proximal section, a flexible intermediate section, a distal section, and a distal end; a blood vessel sensor means comprising an ultrasonic transducer, said ultrasonic transducer adapted to emit and receive ultrasonic signals; and an electrosurgical cutting means for cutting tissue comprising an electrode located entirely distally to said ultrasonic transducer and attached to said distal end of said catheter, said electrode being connected to an energy source, and said electrode and said ultrasonic transducer being positioned such that when ultrasonic signals are emitted and received by said ultrasonic transducer said signals are transmitted through said electrode. 10. The catheter of claim 9, wherein a length from the ultrasonic transducer to the distal end is selected from a multiple of one-quarter of a wavelength of said the ultrasonic signal. 11. The catheter of claim 10, wherein the length from the ultrasonic transducer to the distal end is approximately seven-quarters of the wavelength of said the ultrasonic signal. 12. The catheter of claim 9, wherein the distal section comprises a material selected from the group consisting of titanium, aluminum, and stainless steel. 13. The catheter of claim 9, wherein said catheter comprises an insulating material. 14. The catheter of claim 9, wherein the distal end comprises an electrically conductive coating about at least a portion of the distal end. 15. The catheter of claim 9, wherein the distal end is adapted as a lens to disperse the signal over a substantial portion of an outer surface of the distal end. 16. The catheter of claim 9, wherein the distal end is adapted to direct the signal toward the ultrasonic transducer.
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