This invention relates to medical procedures and apparatus in general, and more particularly to medical procedures and apparatus for repairing soft tissue defects such as abdominal hernias and the like.
In the reconstruction of soft tissue defects in humans and animals, such as in abdominal hernia repairs, surgical mesh is often used to reinforce the soft tissue defect so as to facilitate healing and to prevent subsequent defect recurrence. More particularly, when performing a closure of a soft tissue defect in an anatomical wall (e.g., to repair an abdominal hernia), it is common to secure a surgical mesh to the soft tissue at the edge of the soft tissue defect, with some overlap between the surgical mesh and the soft tissue, so as to increase the healed strength of the surgical repair. The surgical mesh is typically secured to the soft tissue adjacent to the soft tissue defect with suture or tacks.
In practice, and looking now at
However, it has been found that when pulling up on continuous skirt or rim 15 of skirted surgical mesh 5 (e.g., for suturing and/or tacking), this pulling up of the continuous skirt or rim 15 can cause base layer 10 to distort significantly (e.g., to transform from a smooth planar configuration to a curved configuration, such as is shown in
Efforts have been made to reduce this distortion of base layer 10 of skirted surgical mesh 5 when pulling up on continuous skirt or rim 15 of skirted surgical mesh 5.
In one such effort, and looking now at
In another such effort, and looking now at
Thus there is a need for a novel surgical mesh which provides a skirt or rim of surgical mesh about the outer perimeter of a base layer of surgical mesh but which allows the skirt or rim of surgical mesh to be pulled upward without distorting the smooth planar configuration of the base layer of surgical mesh.
The present invention comprises the provision and use of a novel surgical mesh which provides a skirt or rim of surgical mesh about the outer perimeter of a base layer of surgical mesh but which allows the skirt or rim of surgical mesh to be pulled upward without distorting the smooth planar configuration of the base layer of surgical mesh.
In one preferred form of the invention, there is provided a segmented skirted surgical mesh for use in reconstructing a soft tissue defect, the segmented skirted surgical mesh comprising:
a base layer of surgical mesh, said base layer of surgical mesh comprising an outer edge; and
a segmented continuous skirt of surgical mesh comprising an outer edge and an inner edge which defines a central opening, said segmented continuous skirt of surgical mesh being secured to said base layer of surgical mesh at said outer edge of said segmented continuous skirt of surgical mesh, and said segmented continuous skirt of surgical mesh comprising a plurality of slits formed in said segmented continuous skirt of surgical mesh, wherein said plurality of slits extend outwardly from said inner edge of said segmented continuous skirt of surgical mesh, whereby to form a plurality of flaps of surgical mesh in said segmented continuous skirt of surgical mesh, such that at least one of said flaps of surgical mesh can be lifted away from said base layer of surgical mesh and secured to soft tissue without causing distortion of said base layer of surgical mesh.
In another preferred form of the invention, there is provided a method for reconstructing a soft tissue defect, the method comprising:
providing a segmented skirted surgical mesh comprising:
These and other objects and features of the present invention will be more fully disclosed or rendered obvious by the following detailed description of the preferred embodiments of the invention, which is to be considered together with the accompanying drawings wherein like numbers refer to like parts, and further wherein:
The present invention comprises the provision and use of a novel surgical mesh which provides a skirt or rim of surgical mesh about the outer perimeter of a base layer of surgical mesh but which allows the skirt or rim of surgical mesh to be pulled upward without distorting the smooth planar configuration of the base layer of surgical mesh.
More particularly, and looking now at
The segmented continuous skirt or rim 115 of surgical mesh is segmented by providing a plurality of breaks or cuts or slits 122 in the continuity of segmented continuous skirt or rim 115 of surgical mesh 105, whereby to form a plurality of segments or flaps 123A, 123B, 123C, etc. of the segmented continuous skirt or rim 115. In one preferred form of the invention, there are at least three breaks or cuts or slits 122 in the continuity of segmented continuous skirt or rim 115 of surgical mesh 105, whereby to form at least three segments or flaps 123A, 123B, 123C, etc.
Each of the segments or flaps 123A, 123B, 123C, etc. of segmented continuous skirt or rim 115 provides an easily accessed section of surgical mesh which facilitates fixation of segmented skirted surgical mesh 105 to the soft tissue, i.e., by fixing the various segments or flaps 123A, 123B, 123C, etc. of segmented continuous skirt or rim 115 to the edges of the soft tissue defect using conventional suture or tack fixation. By providing segmented skirted surgical mesh 5 with the segmented continuous skirt or rim 115 of surgical mesh, when segmented skirted surgical mesh 105 is being secured to the soft tissue, the sharp ends of the fixation elements (e.g., the suture needle or tack) are isolated from the delicate internal organs of the patient by base layer 110 of segmented skirted surgical mesh 105, whereby to prevent inadvertent damage to the delicate internal organs of the patient. At the same time, and significantly, by providing a segmented continuous skirt or rim 115 of surgical mesh, where the segmented continuous skirt or rim 115 is segmented (through the provision of breaks or cuts or slits 122) into a plurality of segments or flaps 123A, 123B, 123C, etc., distortion of base layer 110 of segmented skirted surgical mesh 105 can be reduced or eliminated when segmented continuous skirt or rim 115 is pulled upward, since then only the surgical mesh of a particular segment or flap 123A, 123B, 123C, etc. is pulled upward—the remainder of the segments or flaps 123A, 123B, 123C, etc. of the segmented continuous skirt or rim 115 are unaffected, which results in reduced distortion of base layer 110 of segmented skirted surgical mesh 105.
By way of example but not limitation, having three or four evenly-spaced breaks or cuts or slits 122 in segmented continuous skirt or rim 115 of a small oval or circular segmented skirted surgical mesh 105 keeps base layer 110 of segmented skirted surgical mesh 105 substantially flat even when some or all of segments or flaps 123A, 123B, 123C, etc. of the segmented continuous skirt or rim 115 is lifted up from base layer 110 of segmented skirted surgical mesh 105 (
In larger constructions, an oval configuration (
The breaks or cuts or slits 122 in segmented continuous skirt or rim 115 of segmented skirted surgical mesh 105 are preferably accomplished by cutting through segmented continuous skirt or rim 115, preferably starting at inner edge 118 of segmented continuous skirt or rim 115 and extending radially outwardly, and preferably terminating just short of the outer edge 117 of segmented continuous skirt or rim 115. In one preferred embodiment, breaks or cuts or slits 122 extend at an angle of 90 degrees to the adjacent inner edge 118 of segmented continuous skirt or rim 115. Alternatively, the breaks or cuts or slits 122 in segmented continuous skirt or rim 115 may be made at varying angles to inner edge 118 of segmented continuous skirt or rim 115 so as to further minimize distortion in base layer 110 of segmented skirted surgical mesh 105 when segments or flaps 123A, 123B, 123C, etc. are subjected to lifting away from base layer 110.
The breaks or cuts or slits 122 in segmented continuous skirt or rim 115 preferably extend almost all the way to outer edge 117 of segmented continuous skirt or rim 115, although the breaks or cuts or slits may also extend all the way to outer edge 117 if desired, or may terminate intermediate of segmented continuous skirt or rim 115 if desired.
The number of cuts or breaks or slits 122 formed in segmented continuous skirt or rim 115 of segmented skirted surgical mesh 105, and the placement of those breaks or cuts or slits 122, may be optimized so as to (i) minimize distortion of base layer 110 when a segment or flap 123A, 123B, 123C, etc. is pulled upward, and (ii) minimize the overall number of segments or flaps 123A, 123B, 123C, etc. that the segmented continuous skirt or rim 115 is divided into (since “too many segments or flaps” has the potential to complicate the fixation process for the surgeon). In practice, it is generally preferred to make three or four cuts or breaks or slits 122 in the segmented continuous skirt or rim 115 of segmented skirted surgical mesh 105, whereby to provide three or four segments or flaps 123A, 123B, 123C, etc. in segmented continuous skirt or rim 115 of segmented skirted surgical mesh 105, since providing less than three cuts or breaks or slits 122 in segmented continuous skirt or rim 115 makes it difficult to lift the segments or flaps of continuous segmented skirt or rim 115 away from base layer 110 without distorting base layer 110.
It should also be appreciated that, if desired, outer edge 117 of segmented continuous skirt or rim 115 could terminate inboard of outer edge 112 of base layer 110. Alternatively, outer edge 117 of segmented continuous skirt or rim 115 could overlap outer edge 112 of base layer 110 (e.g., outer edge 117 of segmented continuous skirt or rim 115 could be folded over edge 112 of base layer 110).
By minimizing the distortion of base layer 110 of segmented skirted surgical mesh 105 when one or more of the segments or flaps 123A, 123B, 123C, etc. of segmented continuous skirt or rim 115 is lifted up during fixation, the fixation itself is facilitated, i.e., the fixation will take less time and the final repair geometry is controlled so that there are no gathered areas that might lead to potential sites of discomfort for the patient. Thus, the segmented skirted surgical mesh of the present invention benefits both the surgeon (through facilitated fixation) and the patient (by producing a more cosmetic and comfortable reconstruction).
It should be understood that many additional changes in the details, materials, steps and arrangements of parts, which have been herein described and illustrated in order to explain the nature of the present invention, may be made by those skilled in the art while still remaining within the principles and scope of the invention.
This patent application: (i) claims benefit of pending prior U.S. Provisional Patent Application Ser. No. 61/843,771, filed Jul. 8, 2013 by BG Medical, LLC and John W. Huelskamp et al. for SEGMENTED SKIRTED HERNIA MESH (Attorney's Docket No. BGMEDICAL-1 PROV); and(ii) claims benefit of pending prior U.S. Provisional Patent Application Ser. No. 61/845,191, filed Jul. 11, 2013 by BG Medical, LLC and John W. Huelskamp et al. for SEGMENTED SKIRTED HERNIA MESH (Attorney's Docket No. BGMEDICAL-2 PROV). The two (2) above-identified patent applications are hereby incorporated herein by reference.
Number | Date | Country | |
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61843771 | Jul 2013 | US | |
61845191 | Jul 2013 | US |
Number | Date | Country | |
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Parent | 17558121 | Dec 2021 | US |
Child | 18401870 | US | |
Parent | 16372685 | Apr 2019 | US |
Child | 17558121 | US | |
Parent | 14325969 | Jul 2014 | US |
Child | 16372685 | US |