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US20020148476A1 - Method of ligating hollow anatomical structures - Google Patents

Method of ligating hollow anatomical structures
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Publication number
US20020148476A1
US20020148476A1US10/164,928US16492802AUS2002148476A1US 20020148476 A1US20020148476 A1US 20020148476A1US 16492802 AUS16492802 AUS 16492802AUS 2002148476 A1US2002148476 A1US 2002148476A1
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US
United States
Prior art keywords
primary
catheter
leads
primary leads
lead
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Abandoned
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US10/164,928
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Brian Farley
Christopher Jones
Mark Parker
Joseph Tartaglia
Arthur Zikorus
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Individual
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Individual
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Publication date
Priority claimed from US08/927,251external-prioritypatent/US6200312B1/en
Application filed by IndividualfiledCriticalIndividual
Priority to US10/164,928priorityCriticalpatent/US20020148476A1/en
Publication of US20020148476A1publicationCriticalpatent/US20020148476A1/en
Priority to US12/258,358prioritypatent/US8267931B2/en
Abandonedlegal-statusCriticalCurrent

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Abstract

A catheter includes a plurality of expandable primary leads to deliver energy to a fallopian tube, a vein such as a hemorrhoid or an esophageal varix, or another hollow anatomical structure requiring ligation or occlusion. Each of the primary leads includes an electrode located at the working end of the catheter. Separation is maintained between the primary leads such that the leads can receive power of selected polarity. The primary leads are constructed to expand outwardly to place the electrodes into apposition with a hollow anatomical structure. High frequency energy can be applied from the leads to create a heating effect in the surrounding tissue of the anatomical structure. The diameter of the hollow anatomical structure is reduced by the heating effect, and the electrodes of the primary leads are moved closer to one another.

Description

Claims (46)

What is claimed is:
1. A method of applying energy intraluminally to a fallopian tube from a power source, the method comprising the steps of:
introducing into the fallopian tube a catheter having a working end with a plurality of expandable primary leads disposed at the working end, each primary lead having a distal end and being connected to the power source;
expanding the primary leads outwardly from the working end of the catheter, wherein the distal ends of the primary leads move away from each other and into contact with the wall of the fallopian tube; and
applying energy to the fallopian tube from the distal end of the primary leads to collapse and effectively occlude the fallopian tube.
2. The method ofclaim 1 further comprising the step of moving a sheath and the plurality of expandable primary leads in relation to each other to selectively expand the primary leads outwardly or contract the primary leads.
3. The method ofclaim 1 wherein the step of introducing a catheter into the fallopian tube comprises the step of introducing a plurality of expandable primary leads that are mounted to the working end in a cantilever arrangement.
4. The method ofclaim 3 further comprising the step of moving a sheath away from the cantilevered expandable primary leads such that the primary leads extend past an orifice of the sheath at the working end of the catheter and expand outwardly.
5. The method ofclaim 1 further comprising the step of moving the catheter in the fallopian tube during the step of applying energy to the fallopian tube.
6. The method ofclaim 5 further comprising the step of compressing the fallopian tube to reduce the fallopian tube to a desired size during the step of applying energy to the fallopian tube.
7. The method ofclaim 1 wherein the step of introducing a catheter into the fallopian tube comprises introducing a catheter also having a secondary lead mounted at the working end, the secondary lead having a distal end and having a length exceeding that of the primary leads; and
wherein the step of extending the plurality of primary leads further includes the step of extending the secondary lead through the distal orifice.
8. The method ofclaim 1 wherein the step of applying energy to the fallopian tube comprises the steps of:
controlling the power source so that adjacent primary leads are of opposite polarity while maintaining the secondary lead so that it is electrically neutral;
switching the polarity of the primary leads so that they are all of the same polarity upon collapse of the fallopian tube around the primary leads; and
controlling the power source so that the secondary lead is of opposite polarity relative to the primary leads upon performing the step of switching the polarity of the primary leads so that they are of the same polarity.
9. The method ofclaim 1 wherein the step of introducing a catheter into the fallopian tube comprises introducing a catheter also having an outward bend formed in each primary lead, the bend formed in the direction away from the other primary leads such that each primary lead tends to move outward away from the other primary leads in the step of expanding the primary leads.
10. The method ofclaim 1 further comprising the steps of:
sensing the temperature at a primary lead;
controlling the application of power to the primary lead in response to the temperature sensed at the lead.
11. The method ofclaim 1 further comprising the step of flushing the fallopian tube with fluid before the step of applying energy.
12. The method ofclaim 1 further comprising the step of compressing the fallopian tube during the step of applying energy.
13. The method ofclaim 12 wherein the step of compressing the fallopian tube comprises the step of applying negative pressure to the fallopian tube.
14. The method ofclaim 12 wherein the step of compressing the fallopian tube comprises the step of creating a pneumoperitoneum.
15. The method ofclaim 1 further comprising the step of compressing the fallopian tube to a desired size before and during the step of applying energy.
16. A method of applying energy intraluminally to a hemorrhoid from a power source, the method comprising the steps of:
introducing into the hemorrhoid a catheter having a working end with a plurality of expandable primary leads disposed at the working end, each expandable primary lead having a distal end and being connected to the power source;
expanding the primary leads outwardly from the working end of the catheter, wherein the distal ends of the primary leads move away from each other and into contact with the wall of the hemorrhoid; and
applying energy to the hemorrhoid from the distal end of the primary leads to collapse the hemorrhoid to effectively occlude the hemorrhoid.
17. The method ofclaim 16 further comprising the step of moving a sheath and the plurality of expandable primary leads in relation to each other to selectively expand the primary leads outwardly or contract the primary leads.
18. The method ofclaim 16 wherein the step of introducing a catheter into the hemorrhoid comprises the step of introducing a plurality of expandable primary leads that are mounted to the working end in a cantilever arrangement.
19. The method ofclaim 18 further comprising the step of moving a sheath away from the cantilevered expandable primary leads such that the primary leads extend past an orifice of the sheath at the working end of the catheter and expand outwardly.
20. The method ofclaim 16 further comprising the step of moving the catheter in the hemorrhoid while continuing to apply energy to the hemorrhoid.
21. The method ofclaim 20 further comprising the step of compressing the hemorrhoid during the step of applying energy.
22. The method ofclaim 16 wherein the step of introducing a catheter into the hemorrhoid comprises introducing a catheter also having a secondary lead mounted at the working end, the secondary lead having a distal end and having a length exceeding that of the primary leads; and
wherein the step of extending the plurality of primary leads further includes the step of extending the secondary lead through the distal orifice.
23. The method ofclaim 16 wherein the step of applying energy to the hemorrhoid comprises the steps of:
controlling the power source so that adjacent primary leads are of opposite polarity while maintaining the secondary lead so that it is electrically neutral;
switching the polarity of the primary leads so that they are all of the same polarity upon collapse of the hemorrhoid around the primary leads; and
controlling the power source so that the secondary lead is of opposite polarity relative to the primary leads upon performing the step of switching the polarity of the primary leads so that they are of the same polarity.
24. The method ofclaim 16 wherein the step of introducing a catheter into the hemorrhoid comprises introducing a catheter also having an outward bend formed in each primary lead, the bend formed in the direction away from the other primary leads such that each primary lead tends to move outward away from the other primary leads in the step of expanding the primary leads.
25. The method ofclaim 16 further comprising the steps of:
sensing the temperature at a primary lead;
controlling the application of power to the primary lead in response to the temperature sensed at the lead.
26. The method ofclaim 16 further comprising the step of flushing the hemorrhoid with fluid before the step of applying energy.
27. The method ofclaim 16 further comprising the step of compressing the hemorrhoid to a desired size before and during the step of applying energy.
28. The method ofclaim 27 wherein the step of compressing the hemorrhoid comprises the step of applying negative pressure to the hemorrhoid.
29. The method ofclaim 16 further comprising the step of exsanguinating the hemorrhoid before and during the step of applying energy.
30. The method ofclaim 29 wherein the step of exsanguinating the hollow anatomical structure comprises the step of delivering fluid to displace blood from the hemorrhoid.
31. A method of applying energy intraluminally to an esophageal varix from a power source, the method comprising the steps of:
introducing into the esophageal varix a catheter having a working end with a plurality of primary leads disposed at the working end, each primary lead having a distal end and being connected to the power source;
expanding the primary leads outwardly from the working end of the catheter, wherein the distal ends of the primary leads move away from each other and into contact with the wall of the esophageal varix; and
applying energy to the esophageal varix from the distal end of the primary leads to collapse the esophageal varix to effectively occlude the esophageal varix.
32. The method ofclaim 31 further comprising the step of moving a sheath and the plurality of expandable primary leads in relation to each other to selectively expand the primary leads outwardly or contract the primary leads.
33. The method ofclaim 31 wherein the step of introducing a catheter into the esophageal varix comprises the step of introducing a plurality of expandable primary leads that are mounted to the working end in a cantilever arrangement.
34. The method ofclaim 33 further comprising the step of moving a sheath away from the cantilevered expandable primary leads such that the primary leads extend past an orifice of the sheath at the working end of the catheter and expand outwardly.
35. The method ofclaim 31 further comprising the step of moving the catheter in the esophageal varix while continuing to apply energy to the esophageal varix.
36. The method ofclaim 31 further comprising the step of compressing the esophageal varix during the step of applying energy.
37. The method ofclaim 31 wherein the step of introducing a catheter into the esophageal varix comprises introducing a catheter also having a secondary lead mounted at the working end, the secondary lead having a distal end and having a length exceeding that of the primary leads; and
wherein the step of extending the plurality of primary leads further includes the step of extending the secondary lead through the distal orifice.
38. The method ofclaim 31 wherein the step of applying energy to the esophageal varix comprises the steps of:
controlling the power source so that adjacent primary leads are of opposite polarity while maintaining the secondary lead so that it is electrically neutral;
switching the polarity of the primary leads so that they are all of the same polarity upon collapse of the esophageal varix around the primary leads; and
controlling the power source so that the secondary lead is of opposite polarity relative to the primary leads upon performing the step of switching the polarity of the primary leads so that they are of the same polarity.
39. The method ofclaim 31 wherein the step of introducing a catheter into the esophageal varix comprises introducing a catheter also having an outward bend formed in each primary lead, the bend formed in the direction away from the other primary leads such that each primary lead tends to move outward away from the other primary leads in the step of expanding the primary leads.
40. The method ofclaim 31 further comprising the steps of:
sensing the temperature at a primary lead;
controlling the application of power to the primary lead in response to the temperature sensed at the lead.
41. The method ofclaim 31 further comprising the step of flushing the esophageal varix with fluid before the step of applying energy.
42. The method ofclaim 31 further comprising the step of compressing the esophageal varix to a desired size before the step of applying energy.
43. The method ofclaim 42 wherein the step of compressing the esophageal varix comprises the step of applying negative pressure to the esophageal varix.
44. The method ofclaim 42 wherein the step of compressing the esophageal varix comprises the step of applying pressure external to the esophageal varix from within the esophagus.
45. The method ofclaim 31 further comprising the step of exsanguinating the esophageal varix before and during the step of applying energy.
46. The method ofclaim 45 wherein the step of exsanguinating the hollow anatomical structure comprises the step of delivering fluid to displace blood from the esophageal varix.
US10/164,9281997-09-112002-06-07Method of ligating hollow anatomical structuresAbandonedUS20020148476A1 (en)

Priority Applications (2)

Application NumberPriority DateFiling DateTitle
US10/164,928US20020148476A1 (en)1997-09-112002-06-07Method of ligating hollow anatomical structures
US12/258,358US8267931B2 (en)1997-09-112008-10-24Method of ligating hollow anatomical structures

Applications Claiming Priority (4)

Application NumberPriority DateFiling DateTitle
US08/927,251US6200312B1 (en)1997-09-111997-09-11Expandable vein ligator catheter having multiple electrode leads
US08/958,766US6165172A (en)1997-09-111997-10-26Expandable vein ligator catheter and method of use
US09/138,808US6401719B1 (en)1997-09-111998-08-21Method of ligating hollow anatomical structures
US10/164,928US20020148476A1 (en)1997-09-112002-06-07Method of ligating hollow anatomical structures

Related Parent Applications (1)

Application NumberTitlePriority DateFiling Date
US09/138,808ContinuationUS6401719B1 (en)1997-09-111998-08-21Method of ligating hollow anatomical structures

Related Child Applications (1)

Application NumberTitlePriority DateFiling Date
US12/258,358DivisionUS8267931B2 (en)1997-09-112008-10-24Method of ligating hollow anatomical structures

Publications (1)

Publication NumberPublication Date
US20020148476A1true US20020148476A1 (en)2002-10-17

Family

ID=27129940

Family Applications (6)

Application NumberTitlePriority DateFiling Date
US09/138,808Expired - LifetimeUS6401719B1 (en)1997-09-111998-08-21Method of ligating hollow anatomical structures
US09/497,278Expired - Fee RelatedUS6689126B1 (en)1997-09-112000-02-03Expandable vein ligator catheter and method of use
US09/497,099Expired - LifetimeUS6398780B1 (en)1997-09-112000-02-03Expandable vein ligator catheter and method of use
US10/162,057Expired - Fee RelatedUS7041098B2 (en)1997-09-112002-06-03Expandable vein ligator catheter and method of use
US10/164,928AbandonedUS20020148476A1 (en)1997-09-112002-06-07Method of ligating hollow anatomical structures
US10/775,841AbandonedUS20040162555A1 (en)1997-09-112004-02-09Expandable vein ligator catheter and method of use

Family Applications Before (4)

Application NumberTitlePriority DateFiling Date
US09/138,808Expired - LifetimeUS6401719B1 (en)1997-09-111998-08-21Method of ligating hollow anatomical structures
US09/497,278Expired - Fee RelatedUS6689126B1 (en)1997-09-112000-02-03Expandable vein ligator catheter and method of use
US09/497,099Expired - LifetimeUS6398780B1 (en)1997-09-112000-02-03Expandable vein ligator catheter and method of use
US10/162,057Expired - Fee RelatedUS7041098B2 (en)1997-09-112002-06-03Expandable vein ligator catheter and method of use

Family Applications After (1)

Application NumberTitlePriority DateFiling Date
US10/775,841AbandonedUS20040162555A1 (en)1997-09-112004-02-09Expandable vein ligator catheter and method of use

Country Status (13)

CountryLink
US (6)US6401719B1 (en)
EP (1)EP1035796A2 (en)
JP (1)JP4131609B2 (en)
CN (1)CN1154447C (en)
AU (1)AU740000B2 (en)
BR (1)BR9814738A (en)
CA (1)CA2303021C (en)
IL (1)IL135008A0 (en)
NO (1)NO328108B1 (en)
NZ (1)NZ503367A (en)
PL (1)PL339518A1 (en)
RU (1)RU2207822C2 (en)
WO (1)WO1999012489A2 (en)

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US6398780B1 (en)2002-06-04
CA2303021A1 (en)1999-03-18
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EP1035796A2 (en)2000-09-20
JP4131609B2 (en)2008-08-13

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