TISSUE DISSECTORS
20170056049 ยท 2017-03-02
Inventors
- JOSEPH D. BRANNAN (LYONS, CO, US)
- Kaylen J. Haley (Westminster, CO, US)
- Casey M. Ladtkow (Erie, CO, US)
- Richard A. Willyard (Loveland, CO, US)
Cpc classification
A61B2017/22074
HUMAN NECESSITIES
A61B17/3417
HUMAN NECESSITIES
A61B18/00
HUMAN NECESSITIES
A61B2018/1869
HUMAN NECESSITIES
A61B17/320016
HUMAN NECESSITIES
A61B2017/3488
HUMAN NECESSITIES
A61B2017/347
HUMAN NECESSITIES
International classification
A61B18/18
HUMAN NECESSITIES
Abstract
A tissue dissector is provided. The tissue dissector includes a cannula and an introducer coaxially coupled to the cannula and movable therein from a retracted position to an extended position. An introducer is coaxially coupleable to the cannula and movable therein from a retracted position to an extended position. The introducer including a generally annular lumen disposed in fluid communication with an inflation port operably disposed on the introducer and in fluid communication with an inflatable balloon that couples to the introducer. The inflatable balloon is movable from a deflated condition for positioning the introducer adjacent target tissue, to an inflated condition for separating the target tissue from nearby tissue and for providing a barrier therebetween such that the nearby tissue is not affected during the electrosurgical procedure.
Claims
1-20. (canceled)
21. A surgical device for separating tissue, comprising: a cannula defining a longitudinal lumen therethrough; and an introducer including: a shaft; an outer member having a first portion coupled to the shaft and a second portion disposed in spaced relation to the shaft to define an annular lumen between the second portion of the outer member and the shaft; an inflatable member coupled to the second portion of the outer member and in fluid communication with the annular lumen, the inflatable member transitionable between a deflated configuration permitting movement of the introducer within the longitudinal lumen defined through the cannula and an inflated configuration; and an inflation port in fluid communication with the annular lumen and configured to supply an inflation fluid to the annular lumen to transition the inflatable member between the inflated and deflated configurations.
22. The surgical device according to claim 21, wherein the first portion of the outer member is disposed proximal to the second portion of the outer member.
23. The surgical device according to claim 21, further comprising an annular projection disposed around a distal end portion of the introducer and configured to engage the cannula.
24. The surgical device according to claim 23, wherein the annular projection is disposed distal to the inflatable member.
25. The surgical device according to claim 21, wherein the cannula defines a notch configured to receive the inflation port therein.
26. The surgical device according to claim 25, wherein the inflation port is configured to move longitudinally within the notch upon movement of the introducer within the lumen defined through the cannula.
27. The surgical device according to claim 21, wherein the introducer includes a distal tip configured to pierce tissue.
28. The surgical device according to claim 21, wherein a proximal end portion of the introducer includes a flange configured to engage a proximal end portion of the cannula to control movement of the introducer within the lumen defined through the cannula.
29. The surgical device according to claim 21, further comprising a temperature sensor disposed within the inflatable member and configured to sense a temperature of fluid within the inflatable member.
30. A surgical device for separating tissue, comprising: an elongated shaft configured to move within a cannula; an outer member having a first portion coupled to the elongated shaft and a second portion disposed in spaced relation to the elongated shaft to define an annular lumen between the second portion of the outer member and the elongated shaft; an inflatable member coupled to the second portion of the outer member and in fluid communication with the annular lumen, the inflatable member configured to move between a deflated configuration and an inflated configuration; and an inflation port in fluid communication with to the annular lumen and configured to facilitate movement of the inflatable member between the inflated and deflated configurations.
31. The surgical device according to claim 30, further comprising a cannula defining a longitudinal lumen therethrough, the elongated shaft configured to move within the longitudinal lumen defined through the cannula.
32. The surgical device according to claim 30, wherein the first portion of the outer member is disposed proximal to the second portion of the outer member.
33. The surgical device according to claim 30, further comprising an annular projection disposed around the elongated shaft distal to the inflatable member.
34. The surgical device according to claim 33, wherein the second portion of the outer member is disposed proximal to the annular projection.
35. The surgical device according to claim 30, wherein the first portion of the outer member is coupled to the elongated shaft proximal to the inflation port.
36. The surgical device according to claim 30, wherein the elongated shaft includes a distal tip configured to pierce tissue.
37. The surgical device according to claim 30, wherein the elongated shaft includes a proximal portion having a first diameter and a distal portion having a second diameter different than the first diameter.
38. An electrosurgical system, comprising: a fluid source; an electrosurgical energy source; an electrosurgical instrument operably coupled to the electrosurgical energy source and configured to deliver electrosurgical energy to tissue; and a surgical device for separating tissue, the surgical device including: an elongated shaft configured to move within a cannula for placement in tissue; an outer member having a first portion coupled to the elongated shaft and a second portion disposed in spaced relation to the elongated shaft to define an annular lumen disposed between the second portion of the outer member and the elongated shaft; an inflatable member coupled to the second portion of the outer member and in fluid communication with to the annular lumen, the inflatable member configured to move between a deflated configuration and an inflated configuration; and an inflation port in fluid communication with to the fluid source for delivering fluid to the annular lumen to move the inflatable member between the inflated and deflated configurations.
39. The electrosurgical system according to claim 38, further comprising a cannula defining a longitudinal lumen therethrough, the elongated shaft configured to move within the longitudinal lumen defined through the cannula.
40. The surgical device according to claim 38, wherein the surgical device includes an annular projection disposed around the elongated shaft distal to the second portion of the outer member.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0010] Embodiments of the presently disclosed tissue dissectors are described hereinbelow with reference to the drawings wherein:
[0011]
[0012]
[0013]
[0014]
[0015]
[0016]
[0017]
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0018] Detailed embodiments of the present disclosure are disclosed herein; however, the disclosed embodiments are merely examples of the disclosure, which may be embodied in various forms. Therefore, specific structural and functional details disclosed herein are not to be interpreted as limiting, but merely as a basis for the claims and as a representative basis for teaching one skilled in the art to variously employ the present disclosure in virtually any appropriately detailed structure.
[0019] In the drawings and in the descriptions that follow, the term proximal, as is traditional, will refer to an end of a surgical instrument that is closer to the user, while the term distal will refer to an end of a surgical instrument that is farther from the user.
[0020] Referring to
[0021] With continued reference to
[0022] Continuing with reference to
[0023] Cannula 8 includes open proximal and distal ends 9 and 11, respectively (
[0024] Distal end 11 is configured to releasably couple to the introducer 10 to facilitate inserting the introducer 10 into tissue. More particularly, distal end 11 overlaps (
[0025] Cannula 8 includes a longitudinal channel 12 (
[0026] A notch 14 (
[0027] With continued reference to
[0028] Introducer 10 includes a proximal end 16 that functions as a handle that is maneuverable by a user, e.g., a clinician, such that a user may position the introducer 10 within the lumen 12 of the cannula 8 (
[0029] The introducer 10 includes a generally elongated configuration. In particular, introducer 10 includes a shaft 18 that extends from the proximal end 16 to the distal end 19, see
[0030] The annular lumen 20 extends along the length of the outer member 17 to the inflatable balloon 22 (
[0031] A generally annular projection in the form of a ring 26 (
[0032] Sharpened distal tip 15 is disposed at the distal end 19 adjacent the ring 26 and is configured to pierce tissue to facilitate positioning the tissue dissector 6 adjacent target tissue T (
[0033] With reference again to
[0034] Inflatable balloon 22 is movable from a deflated condition (
[0035] The inflatable balloon 22 operably couples to the outer member 17 and the ring 26 of the introducer 10 by one or more suitable coupling methods, e.g., ultrasonic welding, soldering, etc (
[0036] Inflatable balloon 22 may be made from any suitable material including but not limited to elastomers, metals or combination thereof. In the embodiment illustrated in
[0037] Inflatable balloon 22 is in fluid communication with the annular lumen 20 and the inflation port 24 such that one or more suitable fluids or gases, e.g., CO.sub.2, saline, water, D5W, DI, etc., may be introduced to an interior of the inflatable balloon 22, as best seen in
[0038] In certain embodiments, the interior wall 28 of the inflatable balloon 22 is configured to support (via one or more suitable coupling methods) one or more temperature sensors or probes 32 thereon (
[0039] Operation of the system 100 is described in terms of use of a method for electrosurgically treating tissue, e.g., a microwave ablation procedure for treating target tissue T on a lung L. The introducer 10 including the distal tip 15, initially, is utilized to pierce tissue such that the introducer 10 may be positioned adjacent target tissue T,
[0040] As can be appreciated, the tissue dissector 6 disclosed herein effectively separates and isolates the nearby tissue NT from the target tissue T and reduces and/or eliminates the likelihood of the nearby tissue NT being critically affected as the target tissue T is electrosurgically treated. This is accomplished without the need of having to introduce any extra fluid to the surgical environment, which, as noted above, may increase the length of time needed to effectively perform the surgical procedure.
[0041] With reference to
[0042] An annular lumen 120 defined between an outer member 117 and an elongated shaft 118 includes a split configuration defining two hemispherical lumens 120a and 120b (
[0043]
[0044] Unlike inflatable balloon 22, one or more suitable conductive materials, such as, for example, metal, is operably disposed on the inflatable balloon 122. More particularly, a portion or side, e.g., a hemisphere of the inflatable balloon that corresponds to a chamber that is configured to receive the CO.sub.2, is made from or configured to operably couple to one or more suitable conductive materials. For example, and in one particular embodiment, a coating of one or more suitable metals 134, e.g., a thin film 134 of copper or stainless steel, conductive polymer, titanium, gold, etc., is disposed on an exterior (or in some instances both an exterior and interior) surface along a side of the inflatable balloon 122 that corresponds to the chamber 130a (
[0045] In certain instances, it may prove advantageous to coat the divider membrane 132 with a thin metal film or conductive material to achieve the same or similar effect as coating the exterior and/or interior surface of the inflatable balloon 122. In this instance, the CO.sub.2 hemisphere provides space, the saline hemisphere attenuates the microwave energy and the divider membrane 132 reflects microwave energy back toward target tissue T and away from neighboring tissue NT.
[0046] In use, the chamber 130a, i.e., the chamber that includes the conductive material 134 and, thus, configured to receive the CO.sub.2 therein, is positioned adjacent the neighboring tissue NT and chamber 130b, i.e., the chamber that is configured to receive the saline therein, is positioned adjacent the target tissue T, see
[0047] 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, in certain embodiments, the inflatable balloons 22/122 may be configured to inflate or fill in a specific manner to conform to a specific tissue structure. For example, and in certain instances, the inflatable balloon 22/122 may be configured to have a cupped surface in an inflated configuration that conforms to a shape of a kidney. In certain instances, the inflatable balloon 22/122 may be configured to have a flat or slightly curved surface in an inflated configuration that conforms to a shape of a liver.
[0048] While several embodiments of the disclosure have been shown in the drawings, 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.