DEVICE AND METHOD FOR SUTURING
20180199937 ยท 2018-07-19
Assignee
Inventors
Cpc classification
A61B2017/0414
HUMAN NECESSITIES
A61B17/06114
HUMAN NECESSITIES
A61B2017/0462
HUMAN NECESSITIES
A61B17/0401
HUMAN NECESSITIES
A61B2017/06157
HUMAN NECESSITIES
International classification
Abstract
Provided is a system, a device, a cassette for use therein and method for suturing two tissue sections, for example two sections of a tissue, by using a plurality of consecutively-arranged anchoring units.
Claims
1.-31. (canceled)
32. A device for suturing together two tissue sections, comprising: a holder holding a plurality of consecutive anchoring units for deployment in a tissue, the units being linked to one another by one or more suturing threads, each comprising a tissue-anchoring element and a thread-coupling element coupled to the thread, the two elements in each unit being linked to one another; each anchoring element being configured for penetration through the tissue and for deployment after tissue penetration in a manner so as to arrest said anchoring element from retracting back through the tissue; the one or more threads being slidably coupled to the thread-coupling element and extending between thread-coupling elements of consecutive anchoring units, such that manipulating the thread brings a deployed unit into proximity with a previous deployed unit; the thread-coupling elements being configured for locking to the suturing thread once brought into said proximity; and comprising an actuation arrangement configured for deploying an anchoring unit such that the anchoring element is fixed into the tissue, and for manipulating the thread to bring a deployed unit into said proximity.
33. The device of claim 32, wherein the actuation arrangement comprises a displacing member axially reciprocating in a forward-rearward direction and configured for displacement of the anchoring unit or tissue-penetrating portion thereof to position the anchoring element within the tissue.
34. The device of claim 33, wherein said displacing member has an elongated forward portion defined between a tapered, tissue-penetrating end and a shoulder, said displacing member being configured for insertion of said forward portion through said bore, to thereby axially displace said tissue-penetrating portion into the tissue with said tapered end providing a tissue-penetrating passage therefor.
35. The device of claim 32, wherein the anchoring unit comprises a tissue-penetrating shaft axially extending between a first, tapered end portion and a second, opposite end portion, an anchoring element at said first end portion configured as flaps switchable between a deployment state in which they are flush with the surface of the shaft's first end portion and a deployed state and biased into the latter state in which they extend in the radial direction away from said surface to thereby arrest retraction of the shaft back through the tissue, and a coupling element associated with the shaft in an axially slidable manner.
36. The device of claim 35, wherein the actuation arrangement is configured to axially displace said shaft into the tissue, and/or wherein during displacement the shaft axially slides within an a bore defined by the coupling element whereby after deployment the coupling element is positioned at said second end portion.
37. The device of claim 32, comprising an auxiliary locking member fitting into said coupling element to lock the thread in its tensioned state.
38. The device of claim 32, wherein the coupling element is in rigid association with the anchoring element of the same unit to define together the anchoring unit.
39. The device of claim 32, wherein the anchoring element and the coupling element of a unit are linked to one another by the one or more suturing threads.
40. The device of claim 39, wherein the one or more threads are slidably coupled to the anchoring element.
41. The device of claim 32, wherein said one or more threads pass through the coupling elements of all anchoring members.
42. A cassette for a suturing device of claim 32, comprising a plurality of consecutive anchoring units for deployment in a tissue, the units being linked to one another by one or more suturing threads, each comprising a tissue-anchoring element and a thread-coupling element coupled to the thread, the two elements in each unit being linked to one another; each anchoring element being configured for penetration through the tissue and for deployment after tissue penetration in a manner so as to arrest said anchoring element from retracting back through the tissue; the one or more threads being slidably coupled to the thread-coupling element and extending between thread-coupling elements of consecutive anchoring units, such that manipulating the thread brings a deployed unit into proximity with a previous deployed unit; the thread-coupling elements being configured for locking to the suturing thread once brought into said proximity; the anchoring units being arranged in said cassette to permit manipulation of a first-in-line anchoring unit for inserting the anchoring element into the tissue.
43. The cassette of claim 42, wherein each of the anchoring units has a tissue-penetration portion with an axial bore.
44. The cassette of claim 42, wherein each anchoring unit defines a tissue penetration axis between a first, tapered, end portion forwardly directed and between second, opposite end portion; the anchoring unit being fitted at said first end portion and the coupling element being at the opposite, second end portion.
45. The cassette of claim 42, wherein each anchoring unit has a tissue-penetrating shaft axially extending between a first, tapered end portion and a second, opposite end portion, an anchoring element at said first end portion configured as flaps switchable between a deployment state in which they are flush with the surface shaft's first end portion and a deployed state and biased into the latter state in which they extend in the radial direction away from said surface to thereby arrest retraction of the shaft back through the tissue, and a coupling element associated with the shaft in an axially slidable manner.
46. The cassette of claim 42, comprising a series of consecutive auxiliary locking members corresponding to the anchoring units for fitting into the coupling elements to lock the thread in its tensioned state.
47. The cassette of claim 42, wherein the coupling element is in rigid association with the anchoring element of the same unit to define together the anchoring unit.
48. The cassette of claim 42, wherein the one or more threads are slidably coupled to the anchoring element, or wherein said one or more threads pass through the coupling elements of all anchoring members.
49. The cassette of claim 42, wherein the anchoring units are dimensioned for penetrating through fascia with the anchoring element being deployed at the fascia's interior.
50. The cassette of claim 42, wherein the coupling element is coupled to the one or more threads in a manner permitting one-directional movement of the thread relative said coupling element.
51. A tissue suturing system for suturing together two tissue sections, comprising: an arrangement of a plurality of consecutive anchoring units for deployment in a tissue, the units being linked to one another by one or more suturing threads, each comprising a tissue-anchoring element and a thread-coupling element coupled to the thread, the two elements in each unit being linked to one another; each anchoring element being configured for penetration through the tissue and for deployment after tissue penetration in a manner so as to arrest said anchoring element from retracting back through the tissue; the one or more threads being slidably coupled to the thread-coupling element and extending between thread-coupling elements of consecutive anchoring units, such that manipulating the thread brings a deployed unit into proximity with a previous deployed unit; the thread-coupling elements being configured for locking to the suturing thread once brought into said proximity; and comprising an actuation arrangement configured for deploying an anchoring unit such that the anchoring element is fixed into the tissue, and for manipulating the thread to bring a deployed unit into said proximity.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0080] In order to better understand the subject matter that is disclosed herein, understand the features that distinguish it from the art and exemplify how it may be carried out in practice, embodiments will now be described, by way of non-limiting example only, with reference to the accompanying drawings, in which:
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DETAILED DESCRIPTION OF EMBODIMENTS
[0099] In the following description, some of the novel features of this disclosure will be illustrated with respect to certain embodiments. This description, as can be appreciated, is intended to illustrate the entire scope of the invention, as defined above, and is not intended to be limiting. Furthermore, these embodiments will be described with respect to suturing of cut fascia sections. As can be appreciated, the invention is not limited to fascia and may apply to suturing of other tissue sections in surgical procedures other than such involving cutting through fascia.
[0100] In accordance with this disclosure, anchoring units are used, which may, by one embodiment be the kind of anchoring unit 25, illustrated in
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[0102] The interaction between thread 35 and the coupling element 33 may, for example, be such to allow only for unidirectional sliding of the thread vis--vis the coupling element or a number of other arrangements.
[0103] One, non-limiting, example of such an arrangement is shown in
[0104] A suturing device according to an embodiment of this disclosure is schematically shown in
[0105] A suturing procedure according to an embodiment of this disclosure is schematically illustrated in
[0106] Referring now to
[0107] As seen in
[0108] Each of units 120 also include a coupling element 138 which has a first portion 140 coupled to the thread and a second portion 142 with bore 144 accommodating shaft 122. This provides for a slidable connection between the coupling element and the shaft, consequently when axially pushed by displacing member 108, the shaft passes through the bore 144 and into the tissue. The relative sliding action is arrested by the shaft's opposite end 128 by means of disk portion 130.
[0109] Displacing member 108 has a forward narrow section 150 extending from a sharp tapered end 152 to shoulders 154. Shaft 122 is provided with a bore 156 dimensioned to receive the forward portion of 150 but not the section beyond shoulders 154. Consequently, once the forward section 150 is fully received within the bore (as can be seen in
[0110] Once into the tissue, illustrated schematically in
[0111] Reference is again made to
[0112] Reference is now made to
[0113] The anchoring element 201 is provided with an aperture 203, through which the thread passes (see also below); the anchoring element has a longitudinal bore 256 extending between the opposite anchoring endsa rear end 228 and a front end 224, the front end being tapered. The anchoring element 201 is inserted into the tissue, in a manner similar to that shown in the embodiments of
[0114] Coupling element 240 has a generally prismatic shape arranged about a hollow space 241 with two lateral walls having bores 243. The thread 218 passes through the two opposite bores 243, and thus extends between the bores within space 241. The coupling element 240 also comprises an auxiliary locking element 246, formed with a ridge 247 extending from its slanted lead end 249, and a rear end 245. Once auxiliary locking element 246 is pushed into the hollow space 241, the thread 218 slides over the slanted portion 249 and then becomes locked in the coupling element, between the ridge 247 and the upper interior face 251 of coupling element 240, as illustrated in
[0115] The system 200 having an arrangement of the anchoring units and their elements, prior to their deployment, is shown in
[0116] During deployment, the thread 218 is continuously unwound from the bobbin 216. There is typically an associated mechanism which may provide a counter-force, in order to permit tensioning of the thread. The rotation of the bobbin 216 may be manually controlled to tightly tension the thread, after deployment of the unit, to bring the two opposite tissue sections close to one another. The tensioning mechanism may also be operable and controlled by mechanical means or electrical motors.