Claims
- 1. A catheter for directing a guidewire device substantially laterally with respect to a body passage within which the catheter is introduced, comprising:
an elongate member having proximal and distal ends, having a distal portion adapted for insertion within a body passage, and defining a longitudinal axis and an outer peripheral surface; a lumen extending between the proximal end and a peripheral opening in the distal portion; and a deflecting member adjacent the peripheral opening for directing a guidewire device substantially laterally with respect to the longitudinal axis.
- 2. The catheter of claim 1, wherein the deflecting member has a predetermined acute deflection angle for directing the guidewire device substantially distally and laterally.
- 3. The catheter of claim 1, wherein the deflecting member has a predetermined oblique deflection angle for directing the guidewire device substantially proximally and laterally.
- 4. The catheter of claim 1, wherein the guidewire device comprises a needle assembly having a guidewire lumen extending therethrough.
- 5. The catheter of claim 1, wherein the guidewire device comprises a snaring member having a snaring element deployable therefrom for securing a guidewire to the snaring member.
- 6. The catheter of claim 5, wherein the snaring element comprises a releasable snare for releasably securing a guidewire to the snaring member.
- 7. The catheter of claim 1, further comprising an orientation element on the distal portion having a predetermined relationship with the peripheral opening.
- 8. A catheter for directing a guidewire substantially laterally with respect to a body passage within which the catheter is introduced, comprising:
an elongate member having proximal and distal ends, having a distal portion adapted for insertion within a body passage, and defining a longitudinal axis and an outer peripheral surface; a first lumen extending proximally from a first axial opening in the distal end; and a second lumen extending between the proximal end of the elongate member and a second lateral opening in the distal portion proximate the distal end.
- 9. The catheter of claim 8, wherein the second lateral opening is located on the peripheral surface of the elongate member.
- 10. The catheter of claim 8, wherein the second lumen includes a deflection ramp adjacent the second lateral opening.
- 11. The catheter of claim 8, wherein the distal portion comprises an angled step tapering to a distal tip, the second lateral opening being located on the angled step.
- 12. The catheter of claim 8, further comprising a snaring member deployable from the second lateral opening.
- 13. The catheter of claim 12, wherein the snaring member comprises a loop extending distally from the second lateral opening and surrounding the distal portion of the elongate member such that as the snaring member is directed proximally and distally, the loop substantially engages and disengages, respectively, the outer surface of the elongate member.
- 14. The catheter of claim 8, wherein the first lumen has a peripheral opening proximate the first axial opening.
- 15. A snaring device for snaring a guidewire, comprising:
an elongate member having proximal and distal portions, the elongate member having a first lumen extending between the proximal and distal portions, the first lumen having a first distal opening proximate to a distal tip of the distal portion; and a snaring member including a loop on its distal end slidably received in the first lumen, the loop extending distally from the first distal opening and surrounding the distal portion of the elongate member such that the snaring member may be directed proximally and distally, the loop thereby substantially engaging and disengaging, respectively, an outer surface of the distal portion of the elongate member.
- 16. The snaring device of claim 15, wherein the loop is biased to assume an enlarged substantially circular configuration.
- 17. The snaring device of claim 16, wherein the substantially circular configuration defines a predetermined diameter corresponding to a diameter of a lumen of a blood vessel, and wherein the distal portion of the elongate member has a diameter substantially smaller than the predetermined diameter.
- 18. The snaring device of claim 15, further comprising a radiopaque marker on the distal portion of the elongate member.
- 19. The snaring device of claim 15, wherein the distal portion comprises an angled step tapering to a distal tip, the first distal opening being located on the angled step.
- 20. A system for directing a guidewire device through an interstitial passage between two adjacent blood vessels, comprising:
an elongate guidewire device having a substantially flexible distal portion having a size adapted for insertion within a blood vessel; a directing member having a proximal end and a distal end having a size adapted for insertion within a blood vessel, and defining a longitudinal axis, the directing member having a portion that is directable substantially laterally with respect to the longitudinal axis; and cooperating end effectors on the distal portion of the guidewire device and the distal end of the directing member for securing the distal portion of the guidewire device and the distal end of the directing member together.
- 21. The system of claim 20, wherein the cooperating end effectors are selectively detachable from one another for detachably securing the distal portion of the guidewire device and the distal end of the directing member together.
- 22. The system of claim 20, wherein the end effectors include a magnet on either the guidewire device or the directing member.
- 23. The system of claim 20, wherein the end effectors comprise an enlarged distal tip on the guidewire device.
- 24. The system of claim 20, wherein the end effectors comprise a tip with a recess therein on one of the guidewire device or the directing member, and a loop and pin on the other of the guidewire device or the directing member, the loop defining an aperture adapted to receive the tip therethrough, the pin being deployable within the aperture to detachably engage the recess.
- 25. The system of claim 20, wherein:
the directing member comprises a catheter having at least one lumen extending between the proximal and distal ends thereof; and one of the end effectors is deployable from the distal end of the directing member through the at least one lumen.
- 26. The system of claim 25, wherein the end effector on the directing member comprises a snare including a loop adapted to receive an end effector on the distal portion of the guidewire device therethrough.
- 27. The system of claim 26, wherein the catheter comprises first and second lumens, and wherein the snare includes a looped wire having first and second ends which extending proximally through the first and second lumens, respectively, to define an enclosed loop extending beyond the distal end.
- 28. The system of claim 26, wherein the snare comprises a basket assembly expandable between contracted and enlarged conditions.
- 29. A method for directing an elongate guidewire device between two blood vessels connected by an interstitial channel, comprising the steps of:
advancing a guidewire device along a first vessel to a location proximate an interstitial channel to a second vessel; advancing a directing member along the second vessel and through the interstitial channel into the first vessel; capturing a distal end of the guidewire device with the directing member; and withdrawing the directing member through the interstitial channel back into the second vessel, thereby pulling the distal end of the guidewire device into the second vessel.
- 30. The method of claim 29, comprising the additional step of releasing the distal end of the guidewire device from the directing member within the second vessel.
- 31. The method of claim 30, comprising the additional step of directing the directing member along the second vessel to a predetermined location before releasing the distal end of the guidewire device.
- 32. The method of claim 29, comprising the additional step of withdrawing the directing member completely from the second vessel to outside the body, thereby pulling the distal end of the guidewire device through the second vessel to outside the body.
- 33. The method of claim 29, wherein the guidewire device comprises a guidewire or a micro-catheter.
- 34. The method of claim 29, wherein the distal end of the guidewire device and the directing member include cooperating end effectors for detachably securing the distal end of the guidewire device and the directing member together.
- 35. The method of claim 34, wherein the end effectors comprise a magnet.
- 36. The method of claim 34, wherein the end effectors comprise a loop and pin on the directing member and a recess in the distal end of the guidewire device, and wherein the distal end is received through the loop and the recess is engaged by the pin when the guidewire device is captured by the directing member.
- 37. A method for placing a guidewire in a predetermined orientation between two blood vessels within a patient's body, the method comprising the steps of:
advancing a distal end of a first guidewire distally from a first percutaneous entry site into a first vessel to a first selected location adjacent to the first vessel and a second vessel; advancing a snaring member from a second percutaneous entry site distally into the second vessel adjacent to the first selected location; advancing the distal end of the first guidewire or the snaring member between the first and second vessels; and snaring the distal end of the first guidewire with the snaring member.
- 38. The method of claim 37, wherein the first selected location is a proximal channel extending between the first and second vessels.
- 39. The method of claim 37, wherein the first vessel comprises a vein, and the second vessel comprises an artery.
- 40. The method of claim 37, wherein the first vessel comprises a coronary vein and the second vessel comprises a coronary artery.
- 41. The method of claim 37, wherein the snaring member is advanced over a second guidewire into the second vessel.
- 42. The method of claim 37, comprising the additional step of withdrawing the snaring member proximally from the second vessel and out the second entry site, thereby flossing the first guidewire through the first and second vessels between the first and second entry sites.
- 43. The method of claim 42, comprising the additional steps of:
advancing a catheter from the second entry site over the flossed first guidewire into the second vessel adjacent to the first selected location; advancing a snaring member from the first entry site into the first vessel; deploying a second guidewire from the catheter; advancing the catheter, the second guidewire or the snaring member between the first and second vessels; snaring a distal end of the second guidewire with the snaring member; directing the snaring member distally along the first vessel to a second selected location; and releasing the distal end of the second guidewire from the snaring member at the second selected location.
- 44. The method of claim 43, wherein the catheter is directed through the channel into the first vessel prior to the deployment of the second guidewire.
- 45. The method of claim 43, wherein:
a third guidewire is advanced from the first entry site into the first vessel prior to the snaring member being advanced from the first entry site into the first vessel; and the snaring member is advanced into the first vessel over the third guidewire.
- 46. The method of claim 43, wherein the second selected location is a distal location in the second vessel, and wherein the snaring member is advanced through a distal channel from the first vessel into the second vessel to advance the second guidewire into the distal location in the second vessel.
- 47. The method of claim 46, wherein the snaring member is advanced through the distal channel over a fourth guidewire previously placed from the first entry site through the first vessel and the distal channel into the distal location in the second vessel.
- 48. The method of claim 43, wherein the second vessel comprises an artery, and wherein the artery includes a lesion at a location between the first and second locations.
- 49. A control mechanism for a snaring device for detachably snaring a guidewire device, comprising:
an outer housing having proximal and distal ends and defining a longitudinal axis therebetween, the outer housing including an axial cavity extending along the longitudinal axis; an inner member slidably received in the axial cavity of the outer housing, the inner member including a locking mechanism for securing a control wire from a snaring device to the inner member, the inner member being slidable between proximal and distal positions within the axial cavity; and a biasing mechanism for biasing the inner member towards either the proximal or the distal position.
- 50. The control mechanism of claim 49, further comprising a cooperating elongate slot and control tab on the outer housing and the inner member for limiting the axial movement of the inner member between the proximal and distal positions.
- 51. The control mechanism of claim 49, wherein the biasing mechanism comprises a spring within the axial cavity engaging the outer housing and the inner member.
- 52. The control mechanism of claim 49, further comprising a snaring device including an elongate member having proximal and distal ends, the proximal end of the elongate member being connected to the distal end of the outer housing, and a snaring member on the distal end of the elongate member.
- 53. The control mechanism of claim 52, further comprising a control wire extending from the snaring member proximally along the elongate member to the outer housing, the control wire being securable to the locking mechanism, whereby when the inner member is directed between the proximal and distal positions, the snaring member is directed to release and capture positions, respectively.
- 54. A method for manipulating a guidewire device within a body passage, comprising the steps of:
introducing a distal portion of a guidewire device into a first location in a body passage; introducing a distal end of a directing member into the body passage until it is adjacent to the distal end of the guidewire device; capturing the distal portion of the guidewire device with a grasping mechanism on the distal end of the directing member; and directing the directing member to a second location with the distal portion of the guidewire device captured by the grasping mechanism.
- 55. The method of claim 54, comprising the additional step of releasing the distal portion of the guidewire device from the grasping mechanism at the second location.
- 56. The method of claim 54, wherein the distal portion of the guidewire device is magnetically coupled to the grasping mechanism during the capturing step.
- 57. The method of claim 54, wherein the distal portion of the guidewire device is snared within a loop on the grasping mechanism during the capturing step.
- 58. The method of claim 54, wherein the distal portion of the guidewire device is secured to an outer surface of the directing member by the grasping mechanism during the capturing step.
- 59. A method for manipulating a guidewire device between adjacent body passages, comprising the steps of:
introducing a distal portion of a guidewire directing member into a first body passage until it is at a first location near a second body passage; advancing a snaring member substantially laterally from the guidewire directing device into the second body passage; capturing the distal portion of a guidewire device in the second body passage with a grasping mechanism on the snaring member; and withdrawing the snaring member into the first body passage, with the guidewire device captured by the grasping mechanism.
- 60. The method of claim 59, comprising the additional step of directing the guidewire directing device to a second location with the guidewire device captured by the grasping mechanism.
- 61. The method of claim 60, comprising the additional step of releasing the distal portion of the guidewire device from the grasping mechanism at the second location.
- 62. The method of claim 60, wherein the guidewire directing device is directed through a channel between the first body passage and another body passage when the guidewire directing device is directed to the second location.
- 63. The method of claim 60, wherein the first location comprises a location adjacent to a portion of the second body passage upstream of a lesion in the second body passage.
- 64. The method of claim 63, wherein the second location comprises a location downstream of the lesion in the second body passage.
- 65. The method of claim 60, wherein the guidewire directing device is introduced over a first guidewire placed between the first location and the second location.
- 66. The method of claim 59, wherein the snaring member is directed over a second guidewire placed between the first location and the second body passage.
- 67. The method of claim 59, wherein the first and second body passages comprise adjacent blood vessels within the coronary system.
- 68. A catheter having a self-knuckling tip, comprising:
a catheter having a distal portion adapted for insertion into a body passage; a weakened region on the distal portion proximate a distal tip of the catheter, the weakened region being adapted to cause a prolapse in the distal portion when subjected to a substantially lateral force.
- 69. The catheter of claim 68, wherein the weakened region is located between first and second regions on the distal portion, the first and second regions having a Durometer substantially harder than a Durometer of the weakened region.
- 70. The catheter of claim 68, wherein the weakened region is located between first and second regions on the distal portion, the weakened region having a cross-section substantially smaller than the first and second regions.
- 71. The catheter of claim 68, wherein the weakened region is located between first and second regions on the distal portion, the weakened region having a wall thickness substantially smaller than the first and second regions.
- 72. A method for directing a guidewire device between first and second body passages connected by an interstitial channel using a catheter having a distal portion including a weakened region proximate to a distal tip of the catheter, the method comprising the steps of:
introducing a distal end of the guidewire device into the first body passage proximate the interstitial channel; introducing the distal portion of the catheter into the second body passage proximate the interstitial channel; securing the distal end of the guidewire device and the distal tip of the catheter together through the interstitial channel; and directing the distal portion of the catheter, with the guidewire device secured thereto, distally within the second passage, thereby causing the distal portion of the catheter to prolapse at the weakened region.
- 73. The method of claim 72, wherein the step of securing the distal end of the guidewire device and the distal tip of the catheter comprises the steps of:
directing the distal tip of the catheter through the interstitial channel 84 into the first body passage; and deploying a snaring device from the catheter to capture the distal end of the guidewire device.
- 74. The method of claim 73, comprising the additional step of withdrawing the distal portion of the catheter back into the second body passage, thereby pulling the guidewire device into the second body passage.
Parent Case Info
[0001] This application is a continuation-in-part of application Ser. No. 08/970,694, filed Nov. 14, 1997, which is a continuation-in-part of application Ser. No. 08/730,327, filed Oct. 11, 1996, the disclosures of which are expressly incorporated herein by reference.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09179737 |
Oct 1998 |
US |
Child |
10136929 |
Apr 2002 |
US |
Continuation in Parts (2)
|
Number |
Date |
Country |
Parent |
08970694 |
Nov 1997 |
US |
Child |
09179737 |
Oct 1998 |
US |
Parent |
08730327 |
Oct 1996 |
US |
Child |
08970694 |
Nov 1997 |
US |