This invention relates to closed loop suture for anchoring tissue grafts.
An increasing number of surgical techniques are now performed arthroscopically. One type of arthroscopic procedure reconstructs the anterior cruciate ligament (ACL) in the knee. Several ACL reconstruction techniques are described in U.S. Pat. Nos. 5,139,520, 5,306,301, and 5,769,894, incorporated herein by reference in their entirety.
When the ACL has ruptured and is nonrepairable, it can be replaced using a substitute graft harvested from the patient or from a donor. The substitute ACL graft may be a portion of a patellar tendon or a semitendinosus and/or gracilis tendon graft. Alternatively, an artificial graft formed from synthetic materials or from a combination of artificial and natural materials may be used and is sometimes referred to as a ligament augmentation device (LAD). The term “tissue graft” is used herein to encompass all of these tissue replacements.
In general, the replacement tissue graft is placed within a passage formed within the femur and a passage formed in the tibia, and secured to the femur and tibia.
In one aspect, the invention features a suture loop comprising a braided length of filaments and a non-braided length of the filaments, where the braided length of the filaments and the non-braided length of the filaments form the loop.
One or more of the following features may also be included. The filaments are in the form of yarns, each yarn including multiple filaments. The braided length of the filaments comprises braided yarn. The non-braided length of the filaments comprises yarn twisted together. The yarns comprise monofilaments twisted together. The yarns comprise air-entangled monofilaments. Each yarn has a minimum denier of 198 and comprises monofilaments. The braided length of the filaments comprises a first section of braided filaments and a second section of braided filaments, and the non-braided length of the filaments is located between the first and second sections, wherein the first and second sections connect to form the suture loop. The second section defines a hollow conduit and a portion of the first section is inside the conduit to form the suture loop. The suture loop comprises at least one stitch securing the connection between the first and second sections of the braided filaments.
In another aspect, the invention features a method of manufacturing a suture loop. The method comprises connecting a first braided length of suture and a second braided length of suture to form the suture loop, the suture loop including a non-braided length of suture.
One or more of the following features may also be included. The method comprises threading the first braided length of suture through a button of a fixation device before connecting the first braided length of suture and the second braided length of suture to form the suture loop. Connecting the first braided length of suture and the second braided length of suture to form the suture loop comprises inserting the first braided length of suture into a hollow interior of the second braided length of suture. The method comprises stitching the connection between the first braided length of suture and the second braided length of suture. The method comprises before connecting the first braided length of suture and the second braided length of suture to form the suture loop, twisting the non-braided length of suture.
In another aspect, the invention features a method for securing a tissue graft within a bone passage. The method comprises forming a bone passage in a bone to accommodate the tissue graft. The method comprises coupling the tissue graft to a loop of suture, the loop of suture comprising a braided length of filaments and a non-braided length of the filaments. The tissue graft is positioned within the bone passage, and the tissue graft is secured in the bone passage.
One or more of the following features may also be included. The loop of suture is part of a fixation device and securing the tissue graft comprises placing a button of the fixation device across an opening of the bone passage. Positioning the tissue graft comprises pulling a filament attached to the button of the fixation device. The bone passage is formed in a femur.
In another aspect, a surgical device for securing a tissue graft within a bone passage comprises an elongated body and a loop of suture housed by the elongated body, wherein the loop of suture comprises a braided portion and a non-braided portion.
One or more of the following features may also be included. The elongated body defines a hole that receives a loop of suture. The elongated body defines a first hole and a second hole that receive the loop of suture. The elongated body defines a third hole and a fourth hole. A leading filament and a trailing filament are each received by one of the third and fourth holes. The first hole and the second hole are positioned centrally, the third hole is positioned on one side of the first and second holes and the fourth hole is positioned on an opposite side of the first and second holes.
Embodiments have one or more of the following advantages. The closed loop having both braided lengths of filaments and non-braided lengths of filaments provides added strength at the braided portions of the loop, and added compliance and improved wear at the non-braided portions of the loop. Fixing the braided portion of the loop to the graft fixation device strengthens the junction between the loop and the graft fixation device. Similarly, fixing the non-braided portion of the loop to the tissue graft allows for a more reliable junction with the tissue graft. The closed loop having both braided and non-braided lengths provides superior strength over loops that are tied or taped, or that do not feature both braided and non-braided portions. Moreover, the closed loop having both braided and non-braided lengths of filaments allows for added flexibility in the manufacturing of closed loop sutures, as the sutures can be manufactured independently of the graft fixation device and at varying lengths as required by the specific application.
The details of one or more embodiments of the invention are set forth in the accompanying drawings and the description below. Other features, objects, and advantages of the invention will be apparent from the description and the drawings, and from the claims.
Referring to
Referring to
As described in further detail below, the closed loop suture 30 is a hybrid construct including a braided portion 31 of filaments located within the holes 103, 104 and passing over the top surface 106 of button 100, and a non-braided section 32 of the filaments located under the bottom surface 107 of the button 100. In some implementations, the braided portion 31 of filaments can extend below the holes 103, 104 and bottom surface 107 of the button 100, as shown at
As illustrated in
As shown in
In some implementations, the length of the overlap between the braided end sections 31a, 31b can be adjusted to increase or decrease the strength of the “finger trap” connection. Since the “finger trap” connection relies on friction between the overlapping braided end sections 31a, 31b to complete the closed loop suture 30, a longer overlap increases the strength of the connection. Additionally or alternatively, the connection between the braided end sections 31a, 31b can be formed or reinforced using at least one stitch at a seam 35 or at one or more other locations along the length of the overlap between the braided end sections 31a, 31b. In other examples, the braided end sections 31a, 31b can be connected to form the closed loop suture 30 by other means, for example, by tying, gluing, stapling, or otherwise fixing the end sections together.
Referring to
The button 100 is formed, for example, of a biocompatible material (such as titanium or PEEK), or a bioabsorbable material (such as polylactic acid, polyglycolic acid or a combination of absorbable polymers). The body of the graft fixation device 100 is sized such that the graft fixation device 100 can be pulled through the tibial channel 16, the femoral channel 14, and a passing channel 18 (
The four holes 101-104 may be distributed equally along the length of the button 100, as shown in
The closed loop suture 30 is comprised of monofilament fibers that form the braided end sections 31a, 31b and the non-braided section 32. In some instances, the braided end sections 31a, 31b and non-braided section 32 (
In one example, the first braided end section 31a of braided suture and the second braided end section 31b of braided suture can have similar dimensions, including a similar length, a similar outer diameter defined by the outer portion of the tubular braid, and a similar inner diameter, defined by the hollow conduit of the inner portion of the tubular braid.
In some instances the braided length 31 of the closed loop suture 30 and the non-braided length of the closed loop suture 30 can also have similar dimensions. For example, a closed loop suture 30 with a circumference of 20 mm can include a non-braided portion 32 that is 10 mm in length, and a braided portion that is also 10 mm in length, such that each of the sections 31a, 31b is more than 5 mm in length to allow for the overlapping of the sections 31a, 31b to form the “finger trap” connection between the two braided ends 31a, 31b. In some examples, the length of the non-braided portion 32 is equal to, more, or less than half of the loop diameter. In some examples, the non-braided portion 32 is twisted, where twisting the non-braided length of suture 32 can increase the uniformity and deter fraying of the non-braided portion 32 of suture. For example, the non-braided portion 32 can be twisted one half rotation to deter fraying of the non-braided portion 32 of suture. The non-braided portion 32 may be twisted by other amounts, for example, by twisting the non-braided portion 32 a full rotation or multiple rotations.
The graft fixation device can include a closed loop suture 30 formed in a double loop and used with a bone-tendon-bone tissue graft, as described, for example, in U.S. Pat. No. 7,530,990, hereby incorporated by reference in its entirety.
In general, the graft fixation device 22 can be used to secure any suitable kind of graft, such as allografts, autografts, and xenografts and can be used in surgical soft tissue reconstruction procedures other than those related to ACL repair and reconstruction. For example, the graft fixation device 22 can be used for the fixation of tendons and ligaments during other orthopedic reconstruction procedures such as posterior cruciate ligament (PCL) repair and reconstruction, biceps tenodesis, distal biceps, and small joint procedures.
The closed loop suture 30 can be assembled independently of the button 100 using the techniques discussed with respect to
The present invention is a divisional of U.S. patent application Ser. No. 14/630,868, filed Feb. 25, 2015, now allowed. The contents of the prior application are incorporated herein by reference in their entirety.
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Number | Date | Country | |
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Parent | 14630868 | Feb 2015 | US |
Child | 15345969 | US |