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Kafe 바로가기국가/구분 | United States(US) Patent 등록 |
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국제특허분류(IPC7판) |
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출원번호 | US-0643787 (2003-08-19) |
발명자 / 주소 |
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출원인 / 주소 |
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대리인 / 주소 |
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인용정보 | 피인용 횟수 : 753 인용 특허 : 130 |
An electrosurgical working end for automatic modulation of active Rf density in a targeted tissue volume. The working end of the probe of the present invention defines a tissue-engagement surface of an elastomeric material with conductive elements that extend therethrough. In one embodiment, the ex
An electrosurgical working end for automatic modulation of active Rf density in a targeted tissue volume. The working end of the probe of the present invention defines a tissue-engagement surface of an elastomeric material with conductive elements that extend therethrough. In one embodiment, the expansion of the elastomeric material can de-couple the conductive elements from an interior electrode based temperature to modulate current flow. In another embodiment, the elastomeric material can couple and de-couple the conductive elements from an interior electrode based engagement pressure to modulate current flow.
What is claimed is: 1. An electrosurgical probe for delivering energy to tissue, the probe comprising: a body having a working end comprising an interior conductor covered by a surface layer comprising a substantially insulative material; at least one conductive element extending though the surfac
What is claimed is: 1. An electrosurgical probe for delivering energy to tissue, the probe comprising: a body having a working end comprising an interior conductor covered by a surface layer comprising a substantially insulative material; at least one conductive element extending though the surface layer, wherein the conductive element has an exposed first end and an interior second end disposed proximate to the interior conductor; wherein the surface layer has a thermal expansion coefficient configured such that the surface layer at a first lower temperature maintains said second end of the conductive element in contact with the interior conductor, and at a second higher temperature moves said second end away from contact with the interior conductor. 2. The working end of claim 1, further comprising an electrical energy source operatively coupled to said interior conductor. 3. The working end of claim 1, further comprising a return electrode carried about an exterior of the probe and spaced apart from the surface layer. 4. The working end of claim 3, further comprising a resistor disposed between the interior conductor and the return electrode. 5. The working end of claim 1, wherein the surface layer comprises a resilient material. 6. The working end of claim 1, wherein the surface layer comprises a polymer. 7. The working end of claim 1, wherein the surface layer comprises a polymer having a positive temperature coefficient. 8. The working end of claim 7, wherein the surface layer is configured to minimize tissue dehydration from Rf energy delivery. 9. The working end of claim 7, wherein the surface layer is configured to utilize Rf energy to actively and passively heat tissue. 10. The working end of claim 9, wherein the surface layer comprises a resistive material configured to be heated by Rf current. 11. The working end of claim 9, wherein the surface layer and the interior electrode have a thermal mass configured to passively conduct heat to tissue to maintain a tissue volume at a selected temperature. 12. The working end of claim 1, further comprising a resistor disposed proximal to the surface layer. 13. The working end of claim 1, wherein the surface layer comprises a ceramic. 14. The working end of claim 1, wherein the surface layer extends around a perimeter of the probe exterior. 15. The working end of claim 1, wherein the surface layer has an open cell structure. 16. The working end of claim 1, wherein the surface layer has a closed cell structure. 17. A working end of a surgical probe for pressure-controlled Rf energy application to tissue, the working end comprising: an interior electrode having an elastomeric surface layer; at least one conductive element extending through the elastomeric surface layer, the element having a first exposed end and a second end disposed proximate to the interior electrode; the second end being movable into or away from electrical contact with the interior electrode responsive to a selected pressure on the surface layer. 18. The working end of claim 17, further comprising an Rf energy source operatively coupled to said interior electrode. 19. The working end of claim 17, further comprising a return electrode carried about an exterior of the probe. 20. The working end of claim 19, further comprising a resistor disposed intermediate the interior electrode and the return electrode. 21. The working end of claim 17, wherein the surface layer comprises a non-conductive polymer. 22. The working end of claim 17, wherein the surface layer comprises a polymer having a positive temperature coefficient. 23. The working end of claim 17, wherein the surface layer comprises silicone doped with a conductive composition. 24. The working end of claim 17, wherein the surface layer extends around a perimeter of the probe exterior.
해당 특허가 속한 카테고리에서 활용도가 높은 상위 5개 콘텐츠를 보여줍니다.
더보기 버튼을 클릭하시면 더 많은 관련자료를 살펴볼 수 있습니다.
IPC | Description |
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A | 생활필수품 |
A62 | 인명구조; 소방(사다리 E06C) |
A62B | 인명구조용의 기구, 장치 또는 방법(특히 의료용에 사용되는 밸브 A61M 39/00; 특히 물에서 쓰이는 인명구조 장치 또는 방법 B63C 9/00; 잠수장비 B63C 11/00; 특히 항공기에 쓰는 것, 예. 낙하산, 투출좌석 B64D; 특히 광산에서 쓰이는 구조장치 E21F 11/00) |
A62B-1/08 | .. 윈치 또는 풀리에 제동기구가 있는 것 |
내보내기 구분 |
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구성항목 |
관리번호, 국가코드, 자료구분, 상태, 출원번호, 출원일자, 공개번호, 공개일자, 등록번호, 등록일자, 발명명칭(한글), 발명명칭(영문), 출원인(한글), 출원인(영문), 출원인코드, 대표IPC 관리번호, 국가코드, 자료구분, 상태, 출원번호, 출원일자, 공개번호, 공개일자, 공고번호, 공고일자, 등록번호, 등록일자, 발명명칭(한글), 발명명칭(영문), 출원인(한글), 출원인(영문), 출원인코드, 대표출원인, 출원인국적, 출원인주소, 발명자, 발명자E, 발명자코드, 발명자주소, 발명자 우편번호, 발명자국적, 대표IPC, IPC코드, 요약, 미국특허분류, 대리인주소, 대리인코드, 대리인(한글), 대리인(영문), 국제공개일자, 국제공개번호, 국제출원일자, 국제출원번호, 우선권, 우선권주장일, 우선권국가, 우선권출원번호, 원출원일자, 원출원번호, 지정국, Citing Patents, Cited Patents |
저장형식 |
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메일정보 |
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안내 |
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