1. Technical Field
The present disclosure relates to a surgical access assembly. More particularly, the present disclosure relates to a surgical access assembly including a seal assembly with seal components adapted for relative rotational movement to assist in establishing a seal about a surgical object.
2. Description of the Related Art
Minimally invasive surgical procedures including endoscopic, arthroscopic, and laparoscopic procedures permit surgery to be performed on organs, tissues, and vessels far removed from an opening within the tissue. These procedures generally require that any instrumentation inserted into the body be sealed, e.g., provisions may be made to ensure that gases and/or liquids do not enter or exit the body through the incision as, for example, in surgical procedures utilizing insufflating or irrigating fluids. These procedures typically employ surgical instruments which are introduced into the body through a cannula. The cannula has a seal associated therewith. The seal is intended to form a substantially fluid tight seal about the instrument to preserve the integrity of the established surgical site.
Seals may be limited by their ability to sustain a seal when a smaller surgical instrument is moved off-axis relative to a central axis of the cannula. Seals may also be limited by their ability to sustain their integrity when the surgical instrument is angulated. Such extreme ranges of motion of smaller diameter surgical instruments within the cannula can create a “cat eye” or crescent shaped gap in the seal that can result in a loss of seal integrity. This difficulty in maintaining seal integrity is increased when sutures are also present alongside of the surgical instrument. Additional problems include the flexibility of the seal in maintaining its integrity when both small diameter and large diameter surgical instruments are used.
Accordingly, a surgical access assembly for use during a surgical procedure includes a housing, an access member extending distally from the housing and being dimensioned for positioning within tissue and a seal assembly disposed within the housing. The seal assembly includes first and second seal components operatively coupled to each other. Each of the first and second seal components includes respective passages for passage of a surgical object. The first seal component is adapted for rotational movement about the longitudinal axis and relative to the second seal component. The first seal component may be capable of relative rotation between a first position, in which the passages of the first and second seal members are in substantial longitudinal alignment, and a second position in which the passages of the first and second seal members are radially offset to inhibit the communication of fluid through the seal assembly.
The seal members each may include a slit which defines the passage. Each of the first and second seal components may include an outer segment and an inner segment depending radially inwardly from the outer segment. The outer segment of the second seal component may include a peripheral wall defining an internal boundary. The first seal component may be at least partially disposed within the internal boundary defined by the peripheral wall of the second seal component.
The first seal component may include an O-ring configured to form a seal within a surface of the housing. The first seal component may include at least one structure configured to facilitate rotational movement of the first seal component. The at least one structure may includes one or more posts extending orthogonally from a proximal surface of the first seal component. The posts are dimensioned and positioned to be engaged by a clinician. The first seal component may include one of an annular recess and an annular rib, and the second seal component may include the other of the annular recess and the annular rib. The annular recess is dimensioned to at least partially accommodate the annular rib when the first and second seal components are mounted relative to each other.
A method of performing a surgical procedure is provided. The method includes the steps of:
Various embodiments of the present disclosure are described herein with reference to the drawings wherein:
In the drawings and in the description which follows, in which like references numerals identify similar or identical elements, the term “proximal” should be understood to refer to the end of the disclosed surgical access assembly, or any component thereof that is closest to a practitioner during use, while the term “distal” should be understood as referring to the end that is farthest from the practitioner during use. Additionally, the term “surgical object” should be understood to include any surgical object or instrument that may be employed during the course of surgical procedure, including but not being limited to an obturator, a surgical stapling device, or the like; the term “filament” should be understood to refer to any elongate member suitable for the intended purpose of joining tissue, including but not limited to sutures, ligatures, and surgical tape; and the term “tissue” should be understood to refer to any bodily tissue, including but not limited to skin, fascia, ligaments, tendons, muscle, and bone.
With reference to
With reference now to
Seal component 102 includes a generally circular configuration having an outer diameter “OD1” that allows seal component 102 to securely and movably couple to seal component 104. With this purpose in mind, seal components 102 and 104, or components associated therewith may be coated with or made from a material that is relatively slick (e.g., PTFE). Seal component 102 includes respective proximal and distal surfaces 108 and 116 connected by an outer segment or generally circumferential sidewall 132. Side wall 132 may or may not extend in a general longitudinal direction from either of proximal and distal surfaces 108,116. In the embodiment illustrated in
With continued reference to
In
As noted above, seal assembly 100 includes a seal component 102 that is rotatably movable relative to seal component 104 when seal component 102 is operatively engaged with seal component 104. To this end, in an embodiment illustrated in
With reference to
From the foregoing and with reference to the various figure drawings, those skilled in the art will appreciate that certain modifications can also be made to the present disclosure without departing from the scope of the same. For example, while seal assembly 100 has been described herein as being fixedly secured to housing 1006 of access device 1000, it is within the purview of the present disclosure to provide seal assembly 100 detachably mountable to the proximal end of housing 1006 and/or access device 1000. In this embodiment, seal assembly may operably couple to access device 1000 (e.g., seal component 104 includes an outer diameter OD2 that is dimensioned to securely couple or engage an interior of housing 1006). Thus, the surgeon can remove seal assembly 100 from the access device 1000, for example, at any time during the surgical procedure and, similarly, mount the seal assembly 100 to the access device 1000 when desired. In addition, seal assembly 100 may be readily adapted for mounting to conventional cannulas of differing structures. The detachability of seal assembly 100 from access device 1000 or other conventional cannulas, for example, is intended to facilitate specimen removal through access device 1000.
It is contemplated that seal assembly 100 may include a tactile member (not shown) to facilitate repositioning of a portion of the seal assembly 100 between the first and second positions. The tactile member can be coupled to either the seal components 102, 104, and may be configured to depend outwardly from through an opening associated with the housing 1006 of the surgical access assembly 1000 such that the practitioner can manually manipulate the relative position of the seal components 102, 104.
It is envisioned that in embodiments of the seal assembly 100, relative movement between the seal components 102, 104 may be effectuated in any suitable manner, including but not limited to the incorporation of a mechanized assembly, such as a motor and gear set. To this end, either or both of the seal components 102, 104 may include bearings, or any other suitable structure, to assist in the relative movement of the seal components 102, 104 between the first and second positions. It is further envisioned that the seal components 102, 104 may be rotatably biased (with a spring or other suitable biasing mechanism) toward the aligned position of
The access assembly may be used in conjunction with a laparoscopic surgical procedure performed, e.g., with the peritoneal cavity of the patient. In accordance with such procedures, the peritoneal cavity is insufflated and access may be established with the access assembly in a manner known in the art, e.g., with an obturator which is positioned within the access assembly and advanced to penetrate the peritoneal lining. Thereafter, the obturator may be removed leaving the access assembly 100o within the peritoneal body cavity. Instruments may be introduced within the access assembly and the seal components 102, 104 may be manipulated to establish a seal about the surgical instrument.
While several embodiments of the disclosure have been shown in the drawings and/or discussed herein, it is not intended that the disclosure be limited thereto, as it is intended that the disclosure be as broad in scope as the art will allow and that the specification be read likewise. Therefore, the above description should not be construed as limiting, but merely as exemplifications of particular embodiments. Those skilled in the art will envision other modifications within the scope and spirit of the claims appended hereto.
This application claims priority to and the benefit of U.S. Provisional Application Ser. No. 61/248,510, filed Oct. 5, 2009, the entire contents of which is incorporated herein by reference.
Number | Name | Date | Kind |
---|---|---|---|
4000739 | Stevens | Jan 1977 | A |
4130113 | Graham | Dec 1978 | A |
4610665 | Matsumoto et al. | Sep 1986 | A |
4673393 | Suzuki et al. | Jun 1987 | A |
4798594 | Hillstead | Jan 1989 | A |
4943280 | Lander | Jul 1990 | A |
5000745 | Guest et al. | Mar 1991 | A |
5176652 | Littrell | Jan 1993 | A |
5197955 | Stephens et al. | Mar 1993 | A |
5211633 | Stouder et al. | May 1993 | A |
5312363 | Ryan et al. | May 1994 | A |
5389081 | Castro | Feb 1995 | A |
5460615 | Storz | Oct 1995 | A |
5478318 | Yoon | Dec 1995 | A |
5549565 | Ryan et al. | Aug 1996 | A |
5603702 | Smith et al. | Feb 1997 | A |
5681314 | Derouin et al. | Oct 1997 | A |
5743884 | Hasson et al. | Apr 1998 | A |
5807338 | Smith et al. | Sep 1998 | A |
5947954 | Bonaldo | Sep 1999 | A |
6033426 | Kaji | Mar 2000 | A |
6520939 | LaFontaine | Feb 2003 | B2 |
6551282 | Exline et al. | Apr 2003 | B1 |
6551283 | Guo et al. | Apr 2003 | B1 |
6595946 | Pasqualucci | Jul 2003 | B1 |
6632200 | Guo et al. | Oct 2003 | B2 |
6702787 | Pasqualucci et al. | Mar 2004 | B2 |
6923783 | Pasqualucci | Aug 2005 | B2 |
7081106 | Guo et al. | Jul 2006 | B1 |
7083626 | Hart et al. | Aug 2006 | B2 |
7153319 | Haberland et al. | Dec 2006 | B1 |
7165568 | Kessell et al. | Jan 2007 | B2 |
7169130 | Exline et al. | Jan 2007 | B2 |
D537941 | Haberland et al. | Mar 2007 | S |
D545964 | Blanco | Jul 2007 | S |
7244244 | Racenet et al. | Jul 2007 | B2 |
7322964 | Pajunk et al. | Jan 2008 | B2 |
7390317 | Taylor et al. | Jun 2008 | B2 |
7438702 | Hart et al. | Oct 2008 | B2 |
7470255 | Stearns et al. | Dec 2008 | B2 |
7559918 | Pasqualucci | Jul 2009 | B2 |
7585288 | Haberland et al. | Sep 2009 | B2 |
7731695 | McFarlane | Jun 2010 | B2 |
7762990 | Judson et al. | Jul 2010 | B2 |
7771395 | Hart et al. | Aug 2010 | B2 |
20030181858 | Lajtai et al. | Sep 2003 | A1 |
20040171993 | Bonaldo | Sep 2004 | A1 |
20040230161 | Zeiner | Nov 2004 | A1 |
20070238337 | Kimball et al. | Oct 2007 | A1 |
20080033363 | Haberland et al. | Feb 2008 | A1 |
20080221607 | White et al. | Sep 2008 | A1 |
20090076456 | Armstrong et al. | Mar 2009 | A1 |
20090292251 | Wenchell | Nov 2009 | A1 |
20110015491 | Ravikumar et al. | Jan 2011 | A1 |
Number | Date | Country |
---|---|---|
1707133 | Oct 2006 | EP |
2226023 | Sep 2010 | EP |
WO 2005097234 | Oct 2005 | WO |
Entry |
---|
US 7,282,043, 10/2007, Racenet et al. (withdrawn) |
European Search Report for corresponding EP 10251740 date of mailing is Feb. 1, 2011 (3 pages). |
Number | Date | Country | |
---|---|---|---|
20110082344 A1 | Apr 2011 | US |
Number | Date | Country | |
---|---|---|---|
61248510 | Oct 2009 | US |