The present invention relates to systems and methods for compressing, crimping and loading a medical device into a delivery apparatus.
Stents are generally implantable cylindrical shaped devices that are radially expandable to hold open a segment of a blood vessel or other anatomical lumen. A stent acts as a scaffold to support the lumen in an open position. Various configurations of stents include coils and cylindrical tubes defined by a mesh or other interconnected segments. Balloon-expandable stents are mounted on a collapsed balloon and have a diameter smaller than when the stents are deployed. Stents can also be self-expanding, assuming a final diameter when deployed from a delivery device.
In order to load a stent into a tube-like delivery apparatus and ultimately deliver the stent into the patient, the stent is generally first collapsed to reduce its diameter or annular perimeter. One method of accomplishing this is using a funnel attached to the tube-like delivery apparatus to cause a gradual reduction in the diameter or annular perimeter of the stent. Optimally, the funnel should uniformly collapse the stent to the smallest diameter desired (e.g., small enough to fit into a delivery tube of a delivery apparatus) without damaging the stent.
According to an embodiment of the present invention, a stent compression and crimping system is provided. A sheath has a proximal end, a distal end comprising a removable funnel, and a lumen extending between the proximal and distal ends. The system further comprises a guidewire extending through the sheath's lumen. The system also includes a plurality of elongate wires. Each wire has a proximal end attached to a collar, a distal free end, and a wire body extending between the proximal end and the distal end. The plurality of elongate wires is collectively disposed about the guidewire in an operative configuration.
According to an embodiment of the present invention, a method of compressing and crimping a stent is provided. A stent compression and crimping system is provided, the system comprising a sheath, the sheath having a proximal end, a distal end comprising a removable funnel, and a lumen extending between the proximal and distal ends. A guidewire extends through the lumen of the sheath. A plurality of elongate wires are provided, with each wire having a proximal end attached to a collar, a distal free end, and a wire body extending between the proximal end and the distal end. The sheath is clamped to a clamp at a position proximal to the funnel. A stent is placed onto the guidewire. The guidewire extends through the lumen of the sheath and through the funnel. The plurality of wires is disposed about the guidewire and stent. The plurality of wires is positioned against the stent. The proximal end of the stent is placed into the funnel. The guidewire is pulled to allow the plurality of wires to draw the stent into the funnel and through the clamp, the clamp crimping the stent and the funnel compressing the stent.
The present invention provides systems and methods for compressing and crimping a medical device and loading the device onto a delivery apparatus. Although the medical device can be any suitable medical device that desirably has a reduction in its diameter prior to insertion or implantation in a patient, the medical device will be described herein as being a stent. More specifically, the medical device is described herein as being a self-expanding stent.
The disclosure herein refers to the term “substantially” with respect to certain geometric shapes and configurations. By “substantially” is meant that the shape or configuration of the described component, feature or element need not have the mathematically exact described shape or configuration, but can have a shape that is recognizable by one skilled in the art as generally or approximately having the described shape or configuration. Also, the disclosure herein refers to an “operative configuration.” This is the configuration of the system when the medical device has been inserted into the patient and is being steered to the target site. Further, as used herein with respect to a described component, the terms “a,” “an,” and “the” include at least one or more of the described component unless otherwise indicated. In addition, it will be understood that when an element is referred to as being “on,” “attached” to, “connected” to, “coupled” with, “contacting”, etc., another element, it can be directly on, attached to, connected to, coupled with or contacting the other element or intervening elements may also be present. In contrast, when an element is referred to as being, for example, “directly on”, “directly attached” to, “directly connected” to, “directly coupled” with, or “directly contacting” another element, there are no intervening elements present. It will also be appreciated by those of skill in the art that references to a structure or feature that is disposed “adjacent” another feature may have portions that overlap or underlie the adjacent feature.
Referring to
System 10 also includes a plurality of elongate wires 20 collectively connected to a collar at the wires' proximal end. In particular, each wire 20 is a strand having a proximal end attached to a collar 22 (seen in
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Although
One or more of the wires 20 may have an inner, longitudinal, elongate edge facing the guidewire and stent that is relatively tapered. The term “tapered” is used herein to indicate a thin, keen edge that has a significantly smaller lateral width than another portion of the wire located laterally further from the guidewire.
Each wire 20 may have a substantially arcuate lateral cross-sectional shape, as shown in
The wires 20 can be fabricated from any suitable material that allows the wires to draw a stent into the funnel of an exemplary system as described in more detail below. For example, the wire 20 could be at least partially fabricated from a biocompatible metal or polymeric material, such as stainless steel or nitinol, for example.
Referring to
A stent is positioned over guidewire 18 as shown in
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While aspects of the present invention have been particularly shown and described with reference to the preferred embodiment above, it will be understood by those of ordinary skill in the art that various additional embodiments may be contemplated without departing from the spirit and scope of the present invention. For example, the specific methods described above for using the described system 10 are merely illustrative; one of ordinary skill in the art could readily determine any number or type of components, sequences of steps, or other means/options for operating a system in a manner substantially similar to those shown and described herein. Any of the described structures and components could be integrally formed as a single piece or made up of separate sub-components, with either of these formations involving any suitable stock or bespoke components and/or any suitable material or combinations of materials. Though certain components described herein are shown as having specific geometric shapes, all structures of the present invention may have any suitable shapes, sizes, configurations, relative relationships, cross-sectional areas, or any other physical characteristics as desirable for a particular application of the present invention. Any structures or features described with reference to one embodiment or configuration of the present invention could be provided, singly or in combination with other structures or features, to any other embodiment or configuration, as it would be impractical to describe each of the embodiments and configurations discussed herein as having all of the options discussed with respect to all of the other embodiments and configurations. The system 10 could be at least partially disposable or intended for one-time use, possibly by including a sacrifice feature (not shown) rendering the instrument unusable after an initial use—this may be particularly helpful in a medical use environment if the apparatus is not intended for repeat sterilization and reuse. A device or method incorporating any of these features should be understood to fall under the scope of the present invention as determined based upon the claims below and any equivalents thereof.
Other aspects, objects, and advantages of the present invention can be obtained from a study of the drawings, the disclosure, and the appended claims.
This application claims priority from U.S. Provisional Application No. 61/779,244, filed 13 Mar. 2013, the subject matter of which is incorporated herein by reference in its entirety.
Number | Date | Country | |
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61779244 | Mar 2013 | US |