WIRE GUIDE HAVING DISTAL COUPLING TIP FOR ATTACHMENT TO A PREVIOUSLY INTRODUCED WIRE GUIDE
A coupling wire guide structured to be slidably coupled to a previously introduced wire guide. The coupling wire guide generally includes a main body having a distal end and a coupling tip connection to the distal end. The coupling tip includes a coupling portion defining a coupling passageway having a proximal port and a distal port. A slot is formed in the coupling tip and is in communication with the coupling passageway. The slot extends from the proximal port to the distal port, thereby permitting the coupling wire guide to be “clipped-on” to the mid-section of the previously introduced wire guide or any location having the most efficacy.
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This application is a continuation of Ser. No. 11/699,171 filed on Jan. 29, 2007, entitled WIRE GUIDE HAVING DISTAL COUPLING TIP FOR ATTACHMENT TO A PREVIOUSLY INTRODUCED WIRE GUIDE, which claims the benefit of U.S. Provisional Application Ser. No. 60/763,523 filed on Jan. 31, 2006, entitled “WIRE GUIDE HAVING DISTAL COUPLING TIP”, the entire contents of all the foregoing are incorporated herein by reference.
FIELD OF THE INVENTIONThis invention relates generally to a wire guide for use in intracorporeal procedures, and more particularly relates to the construction of a wire guide to be coupled to a previously introduced wire guide for assistance during interventional procedures in vessels with proximal tortuosity, or as a more substantial wire guide for angioplasty procedures, stenting procedures, and other device placement procedures and their related devices.
BACKGROUND OF THE INVENTIONProximal tortuosity of the vasculature is problematic for all medical catheter devices such as atherectomy devices, angioplasty devices, stent delivery devices, and filter delivery devices. Wire guides are therefore typically used to navigate the vasculature of a patient during percutaneous interventional procedures. Once the wire guide has been introduced, it may then be used to introduce one or more medical catheter devices. Thus, most wire guides are typically 0.014 inches in diameter and have a lubricious coating to enhance wire guide introduction movement. Conventional 0.014 inch floppy wire guides must have sufficient flexibility and torque control for navigation through tortuous vessels. At the same time, the wire guide must have a certain amount of rigidity to pass through lesions, straighten extremely tortuous vessels, and support medical catheter devices that are introduced over the wire guide.
Accordingly, wire guides are subjected to potentially conflicting requirements. Conventional 0.014 inch floppy wire guides are usually sufficient for navigation of moderately tortuous vessels. However, in some situations the wire guide tip may prolapse from the site to which it is guiding the device. For example, balloon angioplasty in vessels with proximal tortuosity has been associated with a higher incidence of acute complications and procedural failure due to the inability to cross lesions with a conventional floppy wire guide, and due to the inability of the wire guide to provide adequate support to the balloon catheter. Heavy-duty wire guides, on the other hand, are generally not well suited as primary wire guides because of their stiffness and potential for causing injury to the vessel during introduction.
It may therefore be desirable to use conventional floppy wire guides for navigation of tortuous vessels, and then enhance the conventional wire guide with a supplemental wire guide. The supplemental wire guide will straighten out the vessel curves and ease further wire guide movement. Additionally, the supplemental wire guide provides greater support and enhances the tracking of balloons, stents, stent delivery devices, atherectomy devices, and other medical catheter devices as compared to a conventional floppy wire guide. This technique is commonly referred to as the “Buddy Wire” technique, details of which are disclosed in U.S. patent application Ser. No. 11/081,146, filed Mar. 16, 2005.
However, the navigation of the supplemental wire guide parallel to the first wire guide is an exacting and time consuming process in which additional difficulties are encountered. For example, the second wire guide can cork screw or coil around the first wire guide, which may result in immobilization or unintended movement of the first wire guide, which in turn may require the retraction and re-feeding of the supplemental wire guide and/or the primary wire guide. Moreover, if retraction of the supplemental wire guide is necessary, either of the wire guides may become contaminated and the entire process may need to be restarted with sterile components. The time consumed by this process can be critical to the success of the procedure. Additionally, when traversing through the heart of a patient, and particularly the ostium, the larger open space of the heart makes identical placement of the supplemental wire guide somewhat difficult.
Accordingly, there exists a need to provide a supporting wire guide for intracorporeal procedures that may be easily and reliably traversed to a position proximate a previously introduced wire guide.
BRIEF SUMMARY OF THE INVENTIONThe present invention provides a supporting wire guide for intracorporeal procedures that may be easily and reliably traversed to a position proximate a previously introduced wire guide. The supporting wire guide is a coupling wire guide that is structured to be slidably coupled to the previously introduced wire guide. In one embodiment constructed in accordance with the teachings of the present invention, the coupling wire guide generally includes a main body having a distal end and a coupling tip connected to the distal end. The coupling tip includes a coupling portion defining a coupling passageway having a proximal port and a distal port. A slot is formed in the coupling tip and is in communication with the coupling passageway. The slot extends from the proximal port to the distal port, thereby permitting the coupling wire guide to be “clipped-on” to the mid-section of the previously introduced wire guide or any location having the most efficacy.
According to more detailed aspects of the invention, the slot may take many forms. For example, the slot may follow a linear path, or the slot may follow a curved path. In several embodiments, the slot follows a helical path around the coupling portion. In several configurations, the slot has a width less than a diameter of the previously introduced wire guide, and in other configurations the slot has a width greater than or equal to the diameter of the previously introduced wire guide. In the later case, the coupling portion preferably includes retention tabs projecting into an area of the slot. The coupling portion is formed of a resilient material and thus the coupling portion flexes to adjust the size of the slot. Likewise, the coupling portion can adapt the contour of the coupling passageway to correspond to the contour of the previously introduced wire guide and the vasculature being traversed.
Another embodiment constructed in accordance with the teaching of the present invention provides a coupling wire guide having a main body and coupling tip. The coupling tip includes an attachment portion connection to the distal end of the main body. A coupling portion of the coupling tip defines a coupling passageway opening radially. The coupling portion further includes flexible retention tabs structured to hold the previously introduced wire guide within the coupling passageway. Preferably, the tabs project from opposing circumferential sides of the radially opening passageway and extend circumferentially around the coupling passageway. The retention tabs are preferably axially spaced apart and circumferentially overlap.
In yet another embodiment constructed in accordance with the teachings of the present invention, a coupling wire guide is provided having a main body and a coupling tip. The coupling tip is connected to a distal end of the main body. The coupling tip includes a coupling portion defining a coupling passageway and a laterally opening slot in communication with the coupling passageway. The coupling wire guide further includes means for directly attaching the coupling portion to the previously introduced wire guide at a point between the ends of the previously introduced wire guide and retaining the previously introduced wire guide within the coupling passageway during relative translation of the coupling wire guide and the previously introduced wire guide. The attachment means may include constructing the coupling portion of a resilient material and sizing the slot to have a width less than a diameter of the previously introduced wire guide. The attachment means may alternatively include forming the coupling portion as a helically wound strip. The attachment means may also alternately include retention tabs extending into the area of the slot.
The accompanying drawings incorporated in and forming a part of the specification illustrate several aspects of the present invention, and together with the description serve to explain the principles of the invention. In the drawings:
Turning now to the figures,
As best seen in
As best seen in
To provide the side-loading function, the coupling portion 38 includes a slot 46 extending from the proximal port 42 to the distal port 44. By way of the slot 46, the coupling passageway 40 can be considered as opening laterally (i.e. radially), while the proximal and distal ports 42, 46 face axially. In this embodiment, the slot 46 follows a linear path generally parallel to an axis of the coupling passageway 40. Further, the slot 46 has a width W (as measured generally perpendicular to a central axis of the slot 46) that in its natural condition (as depicted in
The attachment portion 34 is preferably constructed as a semi-annular strip (i.e. semi-annular in cross-section) which is connected to the distal end 24 of the main body 22. In particular, the attachment portion 34 is preferably soldered or welded to the main body 22. However, as the main body 22 and the coupling tip 32 may be constructed of numerous types of materials, it will be recognized that numerous types of attachment structures or methods may be employed such as adhesives, fasteners, material deformation, latches, plastic welding techniques and the like. The strip portion 36 is also preferably a semi-annular strip of material representing an extension of the attachment portion 34. The strip portion 36 provides flexibility to the coupling tip 32, and in particular permits the coupling portion 38 to deflect to one side when the coupling wire guide 20 is attached to and traversed along a previously introduced wire guide 10. At the same time, the strip portion 36 preferably has sufficient rigidity to maintain an aligned configuration of the coupling wire guide 20 in its natural state, as depicted in
Turning now to
Turning now to
Accordingly, it can be seen that all of the embodiments of the coupling wire guide include a coupling tip having means for directly attaching the coupling portion of the tip to the previously introduced wire guide at a point between the ends of the previously introduced wire guide. Likewise, each of the coupling tip retains the previously introduced wire guide within the coupling passageway during relative translation of the coupling wire guide and previously introduced wire guide. The coupling tips are connected to the distal end of a main body and include a coupling portion defining a coupling passageway and a laterally opening slot in communication with the coupling passageway. Generally, the attachment means may include constructing the coupling portion of a resilient material and sizing a slot extending from the proximal port to the distal port which is sized to have a width less than the diameter of the previously introduced wire guide. The attachment means may also include forming the coupling portion as a helically wound strip. The helical strip may have different axial spacing and thus differently sized helical slots, and may also change circumferential direction along its path. Further, the attachment means may include retention tabs extending into an area of the slot.
Through all of these various embodiments, interconnection of the coupling wire guide and a previously introduced wire guide is improved through interconnection at a mid-point of the previously introduced wire guide, while also providing a coupling tip which is generally aligned with the main body when decoupled and sufficiently resilient to be used alone, while also having the flexibility to adapt to the contour of the previously introduced wire guide and the vasculature that is being traversed.
The foregoing description of various embodiments of the invention has been presented for purposes of illustration and description. It is not intended to be exhaustive or to limit the invention to the precise embodiments disclosed. Numerous modifications or variations are possible in light of the above teachings. The embodiments discussed were chosen and described to provide the best illustration of the principles of the invention and its practical application to thereby enable one of ordinary skill in the art to utilize the invention in various embodiments and with various modifications as are suited to the particular use contemplated. All such modifications and variations are within the scope of the invention as determined by the appended claims when interpreted in accordance with the breadth to which they are fairly, legally, and equitably entitled.
Claims
1. A coupling wire guide for coupling to a previously introduced wire guide during intracorporeal procedures, the coupling wire guide comprising:
- a main body having a distal end defining a longitudinal axis, the distal end including a solid endcap defining a closed distal end surface;
- a coupling tip connected to the distal end of the main body, the coupling tip including a coupling portion, an attachment portion and a strip portion, the attachment portion connected to the main body, the strip portion extending between the coupling portion and attachment portion to space the coupling portion away from the attachment portion, the coupling portion defining a coupling passageway having a proximal port and a distal port;
- the proximal port facing axially towards the endcap, wherein a previously introduced wire guide positioned within the coupling passageway engages the closed distal end surface of the endcap and is deflected away from the longitudinal axis; and
- a slot formed in the coupling tip, the slot in communication with the coupling passageway and extending from the proximal port to the distal port.
2. The coupling wire guide of claim 1, wherein the strip portion has a semi-annular cross-sectional shape.
3. The coupling wire guide of claim 2, wherein a curvature of the semi- annular cross-sectional shape of the strip portion corresponds to a curvature of the coupling portion.
4. The coupling wire guide of claim 2, wherein a curvature of the semi- annular cross-sectional shape of the strip portion corresponds to a curvature of the attachment portion.
5. The coupling wire guide of claim 1, wherein the slot follows a curved path.
6. The coupling wire guide of claim 5, wherein the curved path is sinusoidal.
7. The coupling wire guide of claim 1, wherein the slot follows a helical path around the coupling portion.
8. The coupling wire guide of claim 1, wherein the slot follows a helical path that changes circumferential direction at a point along the path.
9. The coupling wire guide of claim 1, wherein the coupling portion is formed of a resilient material and is structured to adapt the contour of the coupling passageway to correspond to the contour of the previously introduced wire guide.
10. The coupling wire guide of claim 1, wherein the coupling portion flexes to adjust the size of the slot.
11. A coupling wire guide for coupling to a previously introduced wire guide during intracorporeal procedures, the coupling wire guide comprising:
- a main body having a distal end and defining a longitudinal axis;
- a coupling tip having an attachment portion, a coupling portion and a strip portion, the attachment portion connected to the distal end of the main body, the strip portion extending between the coupling portion and attachment portion to space the coupling portion away from the attachment portion, the coupling portion defining a coupling passageway having a proximal port and a distal port;
- the coupling portion having a semi-annular cross-sectional shape defining a slot in communication with the coupling passageway, the slot extending from the proximal port to the distal port, the slot having a width greater than a diameter of the previously introduced wire guide; and
- the coupling portion including flexible retention tabs projecting into the slot and structured to hold the previously introduced wire guide within the coupling passageway.
12. The coupling wire guide of claim 11, wherein the retention tabs have a curvature corresponding to the semi-annular cross-sectional shape of the coupling portion.
13. The coupling wire guide of claim 11, wherein the attachment portion has a semi-annular cross-sectional shape corresponding to the shape of the coupling portion
14. The coupling wire guide of claim 11, wherein the distal end defines a closed end surface exposed to the coupling portion, and wherein the proximal port faces longitudinally towards the closed end surface.
15. The coupling wire guide of claim 11, wherein there are at least three retention tabs spaced longitudinally apart.
16. The coupling wire guide of claim 11, wherein the retention tabs are longitudinally spaced apart and circumferentially overlap.
17. A coupling wire guide for coupling to a previously introduced wire guide during intracorporeal procedures, the coupling wire guide comprising:
- a main body having a distal end defining a longitudinal axis;
- a coupling tip having an attachment portion, a coupling portion and a strip portion, the attachment portion connected to the distal end of the main body, the strip portion extending between the coupling portion and attachment portion to space the coupling portion away from the attachment portion, the coupling portion defining a coupling passageway having a proximal port and a distal port; and the coupling portion including a strip having a semi-annular cross-sectional shape, the strip wound in a helical path about the longitudinal axis to define an interior coupling passageway.
18. The coupling wire guide of claim 17, wherein the strip portion has a semi-annular cross-sectional shape corresponding to the shape of the coupling portion.
19. The coupling wire guide of claim 17, wherein the helical strip defines a helical slot between adjacent coils of the strip, adjacent turns of the helical strip being longitudinally spaced apart by the helical slot.
20. The coupling wire guide of claim 18, wherein the helical path changes circumferential direction at a point between the proximal port and the distal port.
Type: Application
Filed: Aug 18, 2010
Publication Date: Dec 16, 2010
Applicant: COOK INCORPORATED (Bloomington, IN)
Inventor: Jeffry S. Melsheimer (Springville, IN)
Application Number: 12/858,712
International Classification: A61M 25/09 (20060101);