FORCE FIT EYE CANNULA WITH AUGMENTED SURFACE
20250268623 ยท 2025-08-28
Inventors
Cpc classification
A61F9/00763
HUMAN NECESSITIES
A61F9/00736
HUMAN NECESSITIES
A61B2017/3484
HUMAN NECESSITIES
A61B17/3423
HUMAN NECESSITIES
International classification
Abstract
A cannula with an augmented frictional surface to enhance physical security thereof. The augmented surface may be of unique morphology with rows or ribs. The ribs may be continuons or individual projections. They may be horizontal or screw-like. In one embodiment of screw-like ribs, rotations during placement and removal of the cannula may be employed.
Claims
1. A cannula configured to be inserted into an eye during a surgical procedure, the cannula comprising: a cannula head; a tubular port coupled to the cannula head; an augmentation region on an outer surface of the tubular port adjacent the cannula head; wherein the augmentation region provides enhanced frictional resistance against dislodging of the cannula from the eye during the surgical procedure; and wherein the augmentation region comprises horizontal features.
2. The cannula of claim 1, wherein the horizontal features comprise individual projections.
3. The cannula of claim 1, wherein the horizontal features comprise scales.
4. The cannula of claim 1, wherein the horizontal features comprise teeth-like structures.
5. The cannula of claim 1 wherein the horizontal features comprise a plurality of horizontal rows of ribs.
6. The cannula of claim 5 wherein the horizontal rows of ribs have a profile with a height approximately in a range of 5 to 10 microns.
7. The cannula of claim 1 wherein the tubular port includes a lumen inner diameter of between about 0.40 millimeters (mm) and about 0.65 mm.
8. The cannula of claim 1 wherein the augmentation region occupies a substantial entirety of an outer surface of the tubular port.
9. A trocar assembly comprising: a trocar with a blade for penetrating a body of a patient; a cannula about the trocar to support a surgical procedure directed at the body upon trocar removal, the cannula comprising an outer surface configured with an augmentation region for enhanced frictional resistance to dislodging of the cannula from the body; and wherein the augmentation region comprises horizontal features.
10. The trocar assembly of claim 9, wherein the cannula further comprises a tubular port to accommodate the augmentation region at an outer surface thereof.
11. The trocar assembly of claim 9, wherein the horizontal features comprise a plurality of horizontal rows of ribs.
12. The trocar assembly of claim 9, wherein the horizontal features comprise individual projections.
13. The trocar assembly of claim 9, wherein the horizontal features comprise scales.
14. The trocar assembly of claim 9, wherein the horizontal features comprise teeth-like structures.
15. A method comprising: placing a cannula in a patient's eye; enhancing frictional resistance to dislodging of the cannula from the patient's eye with an outer surface of the cannula configured with an augmentation region; wherein the cannula comprises a cannula head and a tubular port coupled to the cannula head; wherein the augmentation region is on an outer surface of the tubular port adjacent the cannula head; and wherein the augmentation region comprises horizontal features.
16. The method of claim 15, further comprising: altering an angle of the cannula in the patient's eye after the placing; and enhancing frictional resistance to dislodging with the augmentation region during the altering.
17. The method of claim 15, further comprising: removing a trocar from an internal lumen of the cannula; inserting a surgical tool through the cannula into the patient's eye; performing an eye surgery with the surgical tool; and enhancing frictional resistance to dislodging with the augmentation region during the removing, inserting and performing.
18. The method of claim 15, wherein the horizontal features comprise individual projections.
19. The method of claim 15, wherein the horizontal features comprise scales or teeth-like structures.
20. The method of claim 15, wherein the horizontal features comprise a plurality of horizontal rows of ribs.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0010]
[0011] augmented surface force fit cannula.
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DETAILED DESCRIPTION
[0019] In the following description, numerous details are set forth to provide an understanding of the present disclosure. However, it will be understood by those skilled in the art that the embodiments described may be practiced without these particular details. Further, numerous variations or modifications may be employed which remain contemplated by the embodiments as specifically described.
[0020] Embodiments are described with reference to certain types of vitrectomy surgical procedures. For example, a procedure in which vitreous humor is removed to address different eye conditions is illustrated. For such a procedure, embodiments of augmented surface force fit cannulas may be utilized at various locations. For example, such a cannula may facilitate positioning for a needle of a vitreous probe, a light source or an infusing instrument. Such procedures may be utilized to address retinal detachments, macular pucker, macular holes, vitreous floaters, diabetic retinopathy or a variety of other eye conditions. The interventional tools for eye surgery may each be supported by an augmented surface force fit cannula.
[0021] Referring now to
[0022] Continuing with reference to
[0023] Continuing with
[0024] Referring specifically now to
[0025] With the region 100 present at the surface of each cannula 110, they may be safely and securely moved to a relatively perpendicular position for receiving of instruments 265, 225 as noted above. That is, as detailed below, an enhanced friction interface may reduce the possibility of accidental cannula removal. In the illustrated example, the needle 290 of a vitrectomy probe 265 is inserted through one of the cannulas 110 and directed toward a region 210 where vitreous humor is to be removed. Specifically, as described above, a suction is applied and the port 277 is used for the uptake of the vitreous humor or other substances. For example, in the procedure illustrated, a hemorrhage may be taking place in the region 210 such that blood is drawn into the port 277 along with the vitreous humor.
[0026] The surgery illustrated also includes a light instrument 225 reaching into the eye 250 through another cannula 110. In both cases, the cannulas 110 are positioned in an offset manner at the sclera 270. In this way, the more delicate cornea 290 and lens 280 may be avoided.
[0027] Referring now to
[0028] For the embodiment of
[0029] Referring now to
[0030] Indeed, a variety of additional morphologies are also possible. For example, the projections 400 may be continuous ribs or made up of rows of individual scale or teeth-like structures presenting a frictional grid to the adjacent tissue 270. Once more, the depicted projections 400 emerge perpendicularly or horizontally from the port structure 175 for a distance/height of about 25 microns (other dimensions are also possible, for example, the distance/height may be approximately in a range of 5 to 10 microns high). However, this is not required and in one embodiment, the projections 400 may be angled upward such that insertion is even more favored over dislodging relative the surrounding tissue 270.
[0031] Referring now to
[0032] Referring now to
[0033] As indicated at 660, 675 and 690, the cannula may have its angle repeatedly altered, a surgical tool placed therethrough and even support ongoing surgery with the tool. Indeed, these things may all occur repeatedly and in various sequence throughout the surgery, including prior to surgery with the cannula placement. Nevertheless, the force fit cannula is uniquely configured with an augmented surface region for enhanced frictional capacity relative to adjacent tissue. Thus, in spite of all of the noted movements, the possibility of cannula dislodging is reduced.
[0034] Embodiments described hereinabove include cannulas that enhance retention during and following placement for a surgical procedure. Additionally, the unique morphology is such that the placement avoids the introduction of stretching forces that might add to injury. Ultimately, a more water tight and secure surgical support is provided.
[0035] The preceding description has been presented with reference to presently described embodiments. However, other embodiments and/or features of the embodiments disclosed but not detailed hereinabove may be employed. Furthermore, persons skilled in the art and technology to which these embodiments pertain will appreciate that still other alterations and changes in the described structures and methods of operation may be practiced without meaningfully departing from the principle and scope of these embodiments. Additionally, the foregoing description should not be read as pertaining only to the precise structures described and shown in the accompanying drawings, but rather should be read as consistent with and as support for the following claims, which are to have their fullest and fairest scope.