WO2009148091A1 - 眼内レンズ挿入器具及びカートリッジ - Google Patents
眼内レンズ挿入器具及びカートリッジ Download PDFInfo
- Publication number
- WO2009148091A1 WO2009148091A1 PCT/JP2009/060184 JP2009060184W WO2009148091A1 WO 2009148091 A1 WO2009148091 A1 WO 2009148091A1 JP 2009060184 W JP2009060184 W JP 2009060184W WO 2009148091 A1 WO2009148091 A1 WO 2009148091A1
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- WO
- WIPO (PCT)
- Prior art keywords
- intraocular lens
- lens
- protrusion
- cartridge
- case
- Prior art date
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Classifications
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61F—FILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
- A61F2/00—Filters implantable into blood vessels; Prostheses, i.e. artificial substitutes or replacements for parts of the body; Appliances for connecting them with the body; Devices providing patency to, or preventing collapsing of, tubular structures of the body, e.g. stents
- A61F2/02—Prostheses implantable into the body
- A61F2/14—Eye parts, e.g. lenses, corneal implants; Implanting instruments specially adapted therefor; Artificial eyes
- A61F2/16—Intraocular lenses
- A61F2/1662—Instruments for inserting intraocular lenses into the eye
- A61F2/1678—Instruments for inserting intraocular lenses into the eye with a separate cartridge or other lens setting part for storage of a lens, e.g. preloadable for shipping
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61F—FILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
- A61F2/00—Filters implantable into blood vessels; Prostheses, i.e. artificial substitutes or replacements for parts of the body; Appliances for connecting them with the body; Devices providing patency to, or preventing collapsing of, tubular structures of the body, e.g. stents
- A61F2/02—Prostheses implantable into the body
- A61F2/14—Eye parts, e.g. lenses, corneal implants; Implanting instruments specially adapted therefor; Artificial eyes
- A61F2/16—Intraocular lenses
- A61F2/1662—Instruments for inserting intraocular lenses into the eye
- A61F2/1664—Instruments for inserting intraocular lenses into the eye for manual insertion during surgery, e.g. forceps-like instruments
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61F—FILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
- A61F2/00—Filters implantable into blood vessels; Prostheses, i.e. artificial substitutes or replacements for parts of the body; Appliances for connecting them with the body; Devices providing patency to, or preventing collapsing of, tubular structures of the body, e.g. stents
- A61F2/02—Prostheses implantable into the body
- A61F2/14—Eye parts, e.g. lenses, corneal implants; Implanting instruments specially adapted therefor; Artificial eyes
- A61F2/16—Intraocular lenses
- A61F2/1662—Instruments for inserting intraocular lenses into the eye
- A61F2/167—Instruments for inserting intraocular lenses into the eye with pushable plungers
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61F—FILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
- A61F2/00—Filters implantable into blood vessels; Prostheses, i.e. artificial substitutes or replacements for parts of the body; Appliances for connecting them with the body; Devices providing patency to, or preventing collapsing of, tubular structures of the body, e.g. stents
- A61F2/02—Prostheses implantable into the body
- A61F2/14—Eye parts, e.g. lenses, corneal implants; Implanting instruments specially adapted therefor; Artificial eyes
- A61F2/16—Intraocular lenses
- A61F2/1691—Packages or dispensers for intraocular lenses
Definitions
- the present invention relates to an intraocular lens insertion device and a cartridge, and is suitable for application to an intraocular lens insertion device used when an intraocular lens is implanted into an aphakic eye after cataract surgery.
- the intraocular lens includes a hard intraocular lens whose optical part is made of a hard material such as PMMA, and a soft intraocular lens made of a soft material such as silicone elastomer, soft acrylic, or hydrogel.
- FIG. 12 shows such a soft intraocular lens
- FIG. 12 (A) is a front view
- FIG. 12 (B) is a side view.
- an intraocular lens 100 is formed into a flat circular shape, and includes an optical unit 101 that functions as a crystalline lens in the eyeball, and two support units 102 and 102 formed in a linear shape. Yes.
- the two support portions 102 and 102 are provided at two symmetrical portions on the circumference of the optical unit 101, and are gradually separated from the outer periphery of the optical unit 101 with a curvature slightly larger than the curvature of the outer periphery of the optical unit 101. However, it extends in an arc shape.
- Such a soft intraocular lens 100 is small because the optical unit 101 is double-folded by an intraocular lens insertion device as shown in WO 2006/090531 International Publication Pamphlet or Japanese Patent Application Laid-Open No. 2004-351196. It can be inserted into the eye through the incision.
- an object of the present invention is to provide an intraocular lens insertion device and a cartridge that can be inserted into the eye more stably than in the prior art.
- the invention according to claim 1 includes an insertion tube portion in which an intraocular lens having one or more support portions at the outer edge of the optical portion is installed,
- the support portion disposed on the lens traveling direction side of the insertion tube portion includes a bending means. It is characterized by being bent in the rearward direction.
- the invention according to claim 2 is characterized in that the bending means is a protrusion, and the support part is pressed against the protrusion and bent.
- the invention according to claim 3 is characterized in that the protruding portion is detachably provided on the insertion tube portion.
- the invention according to claim 4 is characterized in that the protrusion is provided in a separate case, and the case is detachably attached to the insertion tube portion.
- the plunger is provided in the insertion instrument body, the insertion cylinder part is a cartridge attached to the insertion instrument body, and the cartridge is installed in the lens installation part.
- the support part of the intraocular lens is bent by the protrusion, and then detached from the case and attached to the insertion instrument body.
- the invention according to claim 6 is a preset type in which the intraocular lens is preset.
- the intraocular lens is inserted into the lens.
- a lens installation portion installed from a mouth portion; and a nozzle portion communicating with the lens installation portion and emitting the intraocular lens to the outside, wherein the support disposed on the lens traveling direction side is provided in the lens installation portion
- the portion is bent backward by the bending means.
- the invention according to claim 8 is characterized in that the bending means is a protrusion, and the support portion is pressed against the protrusion and bent.
- the invention according to claim 9 is characterized in that the projection is detachably provided on the lens installation portion.
- the invention according to claim 10 is characterized in that the protrusion is provided in a separate case, and the case is detachably attached to the lens installation portion.
- the support portion of the intraocular lens is detached from the case and attached to the insertion instrument body.
- the support portion of the intraocular lens arranged on the lens traveling direction side is bent backward by the bending means.
- the support portion can be bent so as not to move freely, and thus the intraocular lens can be inserted into the eye more stably than in the prior art.
- the intraocular lens insertion device according to claim 3 and the cartridge according to claim 9, it is possible to prevent the protrusion from being obstructed when the intraocular lens is inserted into the eye.
- the protrusion is provided on the case, it is possible to obtain a thin and short protrusion by simply attaching and detaching the case to the cartridge. Also, it can be easily attached and detached through the case.
- the intraocular lens insertion device of claim 6 in the preset type in which the intraocular lens is set in advance, when the intraocular lens is released from the nozzle part, the support part is bent to make it difficult to move.
- the intraocular lens can be inserted into the eye easily and more stably than in the prior art.
- reference numeral 1 denotes an intraocular lens insertion instrument as a whole, and this intraocular lens insertion instrument 1 is an insertion instrument body 3 having a cartridge 2 and a plunger 4.
- the cartridge 2 is attached to the attachment portion 3a of the insertion instrument main body 3.
- the intraocular lens insertion device 1 has an intraocular lens 100 installed in the cartridge 2, and the intraocular lens 100 toward the lens traveling direction x (in the direction of the arrow x, the forward direction of the lens traveling axis A). Is pushed by the plunger 4 so that the intraocular lens 100 can be released from the tip of the cartridge 2 into the eye.
- the cartridge 2 as an insertion cylinder part is a cartridge main body comprising a lens insertion port part 10, a lens installation part 11, a transition part 12 and a nozzle part 13 in this order along the lens advancing axis A. 14 and wings 15 and 15 extending from both side surfaces of the cartridge body 14 along a side surface direction y orthogonal to the lens traveling direction x.
- the lens insertion opening 10 is provided with insertion grooves 16 formed on the upper and lower surfaces thereof by cutting out in the lens traveling direction x.
- a lens installation portion 11 is provided in front of the lens travel axis A of the lens insertion opening 10
- a transition portion 12 is provided in front of the lens travel axis A of the lens installation portion 11.
- the inner wall of the transition portion 12 is formed in a mortar shape that tapers toward the tip, and the tip communicates with the nozzle portion 13.
- the cartridge main body 14 is moved from the lens installation section 11 to the transition section 12 by the intraocular lens 100 installed in the lens installation section 11 from the lens insertion port section 10 being pushed by the plunger 4 in the lens traveling direction x.
- the transfer portion 12 is formed to be movable in order from the nozzle portion 13.
- the cartridge body 14 is formed so that the intraocular lens 100 pushed by the plunger 4 can be discharged into the eye from the discharge port 13a of the nozzle portion 13.
- the nozzle portion 13 has an outer diameter that can be inserted into an incisional wound (not shown).
- the card ridge 2 has a lens installation portion in the vertical direction z orthogonal to the lens traveling direction x and the side surface direction y, as shown in FIGS. 2 (A) and 2 (B).
- a protrusion insertion hole 20 is formed so as to penetrate through the thickness near 11.
- the protrusion insertion hole 20 is arranged to be biased to one side (in this case, the lower side) with respect to the lens advancing axis A. This hole region is formed so as to intersect only a part of the moving space in which 100 moves.
- the cartridge 2 is detachably formed on a case 22 in which a protrusion 21 is erected.
- the protrusion 21 is inserted into the protrusion. It can be inserted into the hole 20.
- the protrusion 21 passes through a partial area of the moving space inside the cartridge 2 and the tip of the protrusion 21 is exposed to the outside. It is designed to be exposed.
- the case 22 includes a case main body 23 to which the cartridge 2 is mounted. Fixing claws 24 and 24 for locking and mounting on the case main body 23, and a protrusion 21 inserted into the protrusion insertion hole 20 when the cartridge 2 is mounted are provided.
- the case body 23 is integrally formed of, for example, a synthetic resin material such as a plastic member, and includes a distal end side holding portion 25 that holds the transition portion 12 and the nozzle portion 13 of the cartridge 2, and a lens insertion port portion 10 of the cartridge 2. It is composed of a lens installation part 11 and an insertion side holding part 26 that holds the wing parts 15 and 15.
- the front end side holding portion 25 has a bottom plate portion 27 having a substantially bell-like shape and a shape in which the both side surfaces of the center are slightly curved inwardly toward the inside, and this bottom plate portion 27 A wall portion 28 is erected along the outer shell.
- the front end side holding portion 25 is configured such that the wall portion 28 has a shape in which the both side surfaces of the center are slightly curved inwardly in accordance with the shape of the bottom plate portion 27, so that the user can remove the wall portion 28. It is formed in a shape that can be easily held between the thumb and forefinger.
- the distal end side holding portion 25 is provided with a notched portion 30 that is cut out in a curved shape in accordance with the outer shape of the transition portion 12 of the cartridge 2 on the wall portion 29 of the root portion adjacent to the insertion side holding portion 26.
- the transition portion 12 can be placed on the cutout portion 30.
- the front end side holding portion 25 is provided with an inner wall portion 31 extending in the side surface direction y with a predetermined distance from the wall portion 29 of the root portion, and according to the outer shape of the transition portion 12 of the cartridge 2.
- the inner wall portion 31 is cut out in a curved shape, and the transition portion 12 of the cartridge 2 can be placed in the cutout portion 32 that is cut out.
- the front end holding portion 25 is provided at a predetermined position between the wall portion 29 and the inner wall portion 31 of the base portion of the bottom plate portion 27 so that the two fixing claws 24 and 24 face each other.
- the two fixing claws 24, 24 have a holding property by elastic force by selecting a synthetic resin material as a material, and the fixing claws 24, 24 are applied by an external force applied when the cartridge 2 is mounted on the case 22. When 24 is spread in the lateral direction y and the external force disappears, it returns to its original state by its elastic force.
- engaging claws 24a that are folded back to the upper surface side of the cartridge 2 are provided at the tip portions of the fixing claws 24, 24, respectively. Accordingly, the cartridge 2 can be held by being fitted to the case 22 via the two fixing claws 24, 24 of the front end side holding portion 25.
- the insertion-side holding portion 26 has a rectangular bottom plate portion 35 cut out in a U shape, and wall portions 36 are erected on both side surfaces of the bottom plate portion 35.
- the insertion side holding portion 26 comes into contact with the wing portions 15, 15 of the cartridge 2 on the upper surface portion of the wall portion 36. Can be held (FIG. 4).
- a protruding portion 21 is erected on the bottom plate portion 35 of the insertion side holding portion 26, and the protruding portion 21 is fixed to the fixing claws 24, 24 of the distal end side holding portion 25.
- the cartridge 2 is attached to the case 22 via the, the cartridge 2 is formed so that it can be inserted into the protrusion insertion hole 20.
- the protrusion 21 as the bending means is formed in a belt-like shape having a predetermined thickness in accordance with the opening shape of the protrusion insertion hole 20 of the cartridge 2 and extends in the vertical direction z. It is erected on the bottom plate portion 35 of the. Then, the cartridge 2 is attached to such a case 22, and the intraocular lens 100 can be inserted from the lens insertion opening 10 of the cartridge 2 in this state.
- the optical unit 101 is double-folded with the support units 102 and 102 extended outward, and an insulator (not shown) is left in this state. 6), the support portion 102 can be inserted into the lens insertion port 10 of the cartridge 2 so that the tip of one support portion 102 abuts against the projection 21 as shown in FIG. 6B.
- FIG. 6 does not show the case main body 23 but only the protrusion 21.
- the cartridge 2 is configured such that the tip of the support portion 102 of the intraocular lens 100 can be brought into contact with the protrusion 21 exposed in the moving space 39, and the intraocular lens 100 is placed in the lens by the lever in this state. Part 11 is inserted. As a result, as shown in FIG. 6C, the cartridge 2 can be folded back in the direction opposite to the lens traveling direction x (hereinafter simply referred to as the rear direction) by the protrusion 21. Has been made.
- the cartridge 2 is configured such that the intraocular lens 100 can be installed on the lens installation unit 11 while the support unit 102 is bent in a substantially U shape by the projection 21.
- the cartridge 2 is formed such that the optical part 101 of the intraocular lens 100 abuts on the protrusion 21 that is inserted into the protrusion insertion hole 20 and exposed to the moving space 39, and the protrusion 21 receives the optical part 101.
- the intraocular lens 100 can be accurately positioned on the lens installation portion 11.
- the cartridge 2 is removed from the case 22 and the projection 21 is detached from the projection insertion hole 20, but the support 102 of the intraocular lens 100 that has been in contact with the projection 21 is moved to the inner wall 40 of the moving space 39. It is possible to maintain the state where the tip of the support portion 102 is folded back to the optical portion 101 side. In this state, the cartridge 2 can be attached to the attachment portion 3a of the insertion instrument main body 3.
- the intraocular lens insertion device 1 pushes the intraocular lens 100 with the plunger 4 in the lens advancing direction x while the support portion 102 is folded back, and the intraocular lens 100 is pushed to the nozzle at the tip of the cartridge 2. Part 13 may be released into the eye.
- the intraocular lens insertion device 1 of the present invention exposes the curved portion of the support portion 102 that is U-shaped and difficult to move from the discharge port 13a of the nozzle portion 13, and the intraocular lens 100 further plans. Since the optical unit 101 can be released from the discharge port 13a by being pushed out by the jar 4, only the tip of the support unit 102 is released and idled while the intraocular lens 100 is released from the tip of the cartridge 2 into the eye. Can be prevented.
- the user inserts the intraocular lens 100 from the lens insertion port 10 while the cartridge 2 is attached to the case 22, and installs the intraocular lens 100 in the lens installation unit 11. At this time, the user can easily hold the cartridge 2 because the wall portion 28 of the case 22 having a much larger area than the wing portions 15 and 15 can be held without directly holding the wing portions 15 and 15 of the cartridge 2. Thus, the intraocular lens 100 can be more easily installed in the lens installation unit 11 than in the prior art.
- the user can stably hold the cartridge 2 by holding the wall portion 28 of the case 22, the user can easily fill the inside of the cartridge 2 with a viscoelastic substance such as an ophthalmic hyaluronic acid preparation. Can be made.
- the tip of the support unit 102 of the intraocular lens 100 protrudes.
- the tip of the support part 102 on the lens traveling direction x side can be folded back in contact with the part 21.
- the protruding portion 21 is not exposed to the entire moving space 39 and is exposed only to one region of the lens traveling axis A, only the tip of the support portion 102 is exposed to the protruding portion 21.
- the intermediate portion between the tip of the support portion 102 and the root of the support portion 102 can be reliably bent into a U shape.
- the support part 102 of the intraocular lens 100 arranged on the lens traveling direction x side is pressed against the protrusion 21 and bent backward, so that the intraocular lens 100 is obtained.
- the protrusion 21 prevents the movement of the intraocular lens 100 when the intraocular lens 100 is inserted into the eye. Can be prevented.
- the protrusion insertion hole 20 of the cartridge 2 is also formed in the upper surface of the lens installation portion 11 so that the tip of the protrusion 21 of the case 22 is exposed from the upper surface of the lens installation portion 11.
- the user can instantly visually confirm the position of the projection 21, and thus, when the intraocular lens 100 is installed on the lens installation unit 11, the support unit 102 abuts on the projection 21 and bends.
- the tip of the support portion 102 can be reliably disposed on the protruding portion 21 side.
- the protrusion 21 is provided on the case 22, the protrusion insertion hole 20 of the cartridge 2 can be obtained even if the protrusion 22 is thin and short by simply attaching / detaching the case 22 to / from the cartridge 2. Can be easily attached and detached.
- the nozzle portion 13 and the transition portion 12 can be protected from external force by being attached to the case 22. Further, since the cartridge 2 can be placed on the mounting table while being attached to the case 22, it is possible to prevent the nozzle portion 13, the transition portion 12 and the like from coming into direct contact with the mounting table, and the cartridge 2 is always hygienic. Can be kept in.
- FIG. 7 shows the cartridge according to the second embodiment with the same reference numerals corresponding to those in FIG. 6, and this cartridge 50 inserts the lens without double folding the optical part 101 of the intraocular lens 100. This is different from the first embodiment described above in that it is inserted into the mouth 51.
- the cartridge 50 is formed so that a case (not shown) can be attached, and the protrusion 52 provided on the case is provided by attaching the cartridge 50 to the case. It can be inserted into the protrusion insertion hole 53.
- FIG. 7 does not show the case but only the protrusion 52.
- the protrusion insertion hole 53 is formed so that the protrusion insertion hole 20 penetrates the thickness in the vicinity of the lens installation portion 54 in the vertical direction (front side of the drawing) perpendicular to the lens traveling direction x and the side surface direction y. ing.
- the protrusion insertion hole 20 is formed at substantially the center position of the lens installation portion 54 so as to intersect the lens travel axis A, and the center position of the moving space 39 in which the intraocular lens 100 moves.
- a hole region is formed in the surface.
- the protrusion 52 can pass through the central position of the moving space 39 so that the tip of the protrusion 52 can be exposed to the outside. Has been made.
- the intraocular lens 100 is sandwiched by an insulator (not shown) without folding the optical part 101 with the support parts 102 and 102 extended outward, as shown in FIG.
- it can be inserted into the lens insertion opening 51 of the cartridge 50 from the tip of one support portion 102.
- the cartridge 50 is configured such that the tip of the support portion 102 of the intraocular lens 100 can be brought into contact with the protruding portion 52 exposed in the moving space 39.
- the tip of the support portion 102 is folded back in the direction opposite to the lens traveling direction x along the curved surface of the protrusion 52, as shown in FIG. Has been made.
- the cartridge 50 is configured such that the intraocular lens 100 can be installed on the lens installation unit 54 in a state where the support unit 102 is bent in a substantially U shape by the projection 52.
- the protrusion 52 is configured such that the surface with which the support portion 102 of the intraocular lens 100 abuts is curved in a predetermined direction, so that the support portion 102 of the intraocular lens 100 is curved. It can be surely bent in a desired direction along the curved surface.
- the cartridge 50 is removed from the case and the projection 52 is detached from the projection insertion hole 53 as in the first embodiment, but the cartridge 50 is in contact with the projection 52.
- the support portion 102 abuts against the inner wall 40 of the moving space 39, and the support portion 102 can be maintained in a bent state. In this state, the cartridge 50 can be attached to the attachment portion of the insertion instrument main body (not shown).
- the intraocular lens insertion device the intraocular lens 100 is pushed out by the plunger in the lens traveling direction x while the support portion 102 is folded back, and the intraocular lens 100 is pushed into the nozzle portion 13 at the tip of the cartridge 50. To the eye.
- 60 shows the intraocular lens insertion instrument with a case according to the third embodiment.
- the intraocular lens insertion instrument 60 with the case has an intraocular lens insertion instrument 61 and an intraocular lens insertion instrument 61 attached and detached.
- the case 62 includes a case 62 that can be freely attached, and a cover body 63 that is detachably attached to the case 62 to which the intraocular lens insertion device 61 is attached and covers the intraocular lens insertion device 61.
- the intraocular lens insertion instrument 61 is different from the first and second embodiments described above and shows a preset type in which the intraocular lens 100 is set in advance.
- the intraocular lens insertion device 61 includes a main body 66, a slider 67, a plunger 68, and a lock mechanism 69.
- the main body 66 has a cylindrical proximal end member 70, a tapered shape, and the like. And a tip member 71.
- a lens installation portion (not shown) made of a plate-like member is provided at the distal end of the base end member 70 in the lens traveling direction x side, and the intraocular lens 100 is installed in the lens installation portion.
- the proximal end member 70 is integrally connected to the distal end member 71, and the intraocular lens 100 installed in the lens installation portion of the proximal end member 70 can be arranged inside.
- the slider 67 and the plunger 68 are provided so as to be movable forward and backward in the main body 66.
- the lock mechanism 69 can regulate the forward movement of the plunger 68.
- the lock mechanism 69 is released by moving the slider 67 forward, whereby the plunger 68 can be moved forward.
- the intraocular lens insertion device 61 configured in this way first pushes the intraocular lens 100 with the slider 67 and securely folds it into a predetermined shape, and then pushes the intraocular lens 100 with the plunger 68 and folds it small.
- the intraocular lens 100 is configured to be inserted into the eye. Accordingly, the intraocular lens insertion device 61 reliably prevents the intraocular lens 100 from being pushed out by the plunger 68 before the intraocular lens 100 is pushed out by the slider 67 by the lock mechanism 69.
- the installed intraocular lens 100 is configured to be folded while moving forward in two stages in the order of the slider 67 and the plunger 68.
- the insertion tube portion of claim 1 is constituted by the lens installation portion and the tip member 71, and the tip member 71 penetrates the thickness in the vertical direction z orthogonal to the lens traveling direction x and the side surface direction y.
- a protrusion insertion hole 73 is formed.
- the protrusion insertion hole 73 is formed at a central position intersecting the lens traveling axis A, and a hole area is disposed at the central position of the moving space in which the intraocular lens 100 moves.
- the intraocular lens insertion instrument 61 is a separate body from the intraocular lens insertion instrument 61, and can be detachably attached to a case 62 integrally formed of, for example, a synthetic resin material. As shown in FIG. 10, a U-shaped wall portion 76 is erected on the bottom plate portion 75 so as to surround the intraocular lens insertion instrument 61 in the case 63, and a protrusion 80 is formed at a predetermined position of the bottom plate portion 75. Is erected.
- the protrusion 80 has the same configuration as that of the second embodiment described above, and as shown in FIG. 11, the protrusion of the intraocular lens insertion device 61 is achieved by attaching the intraocular lens insertion device 61 to the case 62. It is configured so that it can be inserted into the insertion hole 73. As a result, the protrusion 80 of the case 62 can be arranged in the central region of the movement space of the tip member 71 in the intraocular lens insertion device 61.
- the case 62 is formed with a stepped portion 81 having a low height from the bottom plate portion 75 on the wall portions 76 on both side surfaces, and as shown in FIG.
- the slider 67 of the intraocular lens insertion instrument 61 can be positioned on the stepped portion 81. At this time, a predetermined distance can be provided between the contact surface 82 of the wall 76 and the slider 67 of the intraocular lens insertion device 61.
- the intraocular lens insertion device 61 is slid in the lens advancing direction x until the slider 67 abuts against the abutment surface 82 of the wall 76 of the case 62, so that the intraocular lens installed inside the distal end member 71 is obtained. 100 can be moved to a predetermined position in the lens traveling direction x.
- the support portion 102 comes into contact with the protrusion 80, and the tip of the support portion 102 advances along the curved surface of the protrusion 80. It is designed to be folded backward in the direction opposite to the direction x.
- the intraocular lens insertion instrument 61 can install the intraocular lens 100 in a lens installation portion (not shown) in a state where the support portion 102 is bent in a substantially U shape by the protrusion 80.
- the intraocular lens insertion device 61 is detached from the case 62 in this state, and the intraocular lens 100 is pushed out by the plunger 4 in the lens traveling direction x while the support portion 102 is folded back.
- the intraocular lens 100 can be released into the eye from the nozzle portion 85 of the tip member 71.
- a fitting hole 86 is formed on the upper surface of the wall 76, and a fitting projection 87 provided on the lower surface of the cover body 63 is fitted into the fitting hole 86.
- the cover body 63 can be attached.
- the cover body 63 is formed with a lower outer shell in accordance with the upper surface shape of the wall portion 76 in the case 62, and a step contact portion formed in accordance with the shape of the step portion 81 of the wall portion 76. Equipped with 88.
- the cover body 63 has, for example, two positioning projections 90 and 91 on the lower surface, and positioning holes 92 and 93 formed in the distal end member 71 of the intraocular lens insertion device 61. (FIG. 9), the positioning projections 90 and 91 can be inserted.
- the positioning projections 90, 91 of the cover body 63 are inserted into the positioning holes 92, 93, and the two support portions 102, 102 of the intraocular lens 100 are positioned by the positioning projections. It can be positioned by abutting 90 and 91.
- a viscoelastic substance such as an ophthalmic hyaluronic acid preparation can be filled into the inside by an injector (not shown) through one positioning hole 91.
- the support part 102 of the intraocular lens 100 disposed on the lens traveling direction x side is bent backward by the protrusion 80, so that the intraocular lens 100 is obtained.
- the present invention is not limited to the present embodiment, and various modifications are possible within the scope of the gist of the present invention.
- the protrusion may be formed in various other shapes such as a circle.
- an intraocular lens in which only one support portion is provided in the optical portion or a plurality of support portions such as three or four are provided in the optical portion may be applied.
- the support portion 102 is bent in a U shape by the protrusions 21, 52, 80 has been described.
- the present invention is not limited to this, and the protrusions 21, 52, 80 makes the support part 102 V-shaped or C-shaped. It may be bent into various other shapes such as an L-shape.
- the present invention is not limited to this, and the point is that the support portion 102 of the intraocular lens 100 is important.
- the tip member 71 may be provided with a protrusion insertion hole in accordance with the extending direction of the protrusion.
- the present invention is not limited thereto, and only the protrusions may be provided detachably.
- the protrusion insertion hole 20 is arranged in the vicinity of the lens installation portion 11.
- the present invention is not limited to this, and the main point is that when the nozzle portion 13 is discharged, If the tip of the support portion 102 of the lens 100 can be bent in the direction opposite to the lens traveling direction x, the projection may be arranged at various other parts such as the lens insertion port 10 and the transition portion 12. .
- the protrusion insertion hole 20 is formed so as to penetrate between the lower surface and the upper surface of the lens installation portion 11 so that the tip of the protrusion 21 is exposed from the upper surface of the lens installation portion 11.
- the present invention is not limited to this, and the projection insertion hole 20 is formed only in the lower surface of the lens installation portion 11 so that the tip of the projection 21 is not exposed from the upper surface of the lens installation portion 11. It may be.
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- Health & Medical Sciences (AREA)
- Ophthalmology & Optometry (AREA)
- Cardiology (AREA)
- Oral & Maxillofacial Surgery (AREA)
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Abstract
Description
(1)眼内レンズ挿入器具の基本構成
図1において、1は全体として眼内レンズ挿入器具を示し、この眼内レンズ挿入器具1は、カートリッジ2と、プランジャー4を備えた挿入器具本体3とから構成され、カートリッジ2が挿入器具本体3の取付部3aに取り付けられている。また、眼内レンズ挿入器具1は、カートリッジ2に眼内レンズ100が設置されており、レンズ進行方向x(矢印x方向であり、レンズ進行軸Aの前方向)に向けて当該眼内レンズ100をプランジャー4で押し出し、眼内レンズ100をカートリッジ2の先端から眼内へ放出し得るように構成されている。
次に、上述したように挿入器具本体3に取り付けられるカートリッジ2について以下説明する。図2(A)に示すように、挿入筒部としてのカートリッジ2は、レンズ進行軸Aに沿って順に、レンズ挿入口部10、レンズ設置部11、移行部12及びノズル部13からなるカートリッジ本体14と、レンズ進行方向xと直交した側面方向yに沿うように当該カートリッジ本体14の両側面から延出した翼部15,15とから構成されている。
以上の構成において、カートリッジ2では、ケース22に装着させることにより、当該ケース22に設けられた突起部21を突起挿入孔20に挿入させ、当該突起部21を移動空間39に露出させることができる。
図6との対応部分に同一符合を付して示す図7は、第2の実施の形態によるカートリッジを示し、このカートリッジ50は眼内レンズ100の光学部101を2重に折り畳まずにレンズ挿入口部51に挿入される点で上述した第1の実施の形態と相違するものである。
図8において、60は第3の実施の形態によるケース付眼内レンズ挿入器具を示し、このケース付眼内レンズ挿入器具60は、眼内レンズ挿入器具61と、眼内レンズ挿入器具61が着脱自在に取り付けられるケース62と、眼内レンズ挿入器具61が装着されたケース62に着脱自在に取り付けられ眼内レンズ挿入器具61を覆うカバー体63とから構成されている。
本発明は、本実施の形態に限定されるものではなく、本発明の要旨の範囲内で種々の変形実施が可能であり、例えば突起部を円形等この他種々の形状に形成してもよい。また、光学部に1本だけ支持部を設けたり、或いは光学部に3本や4本等の複数本の支持部を設けた眼内レンズを適用するようにしてもよい。
Claims (11)
- 一又は二以上の支持部を光学部の外縁に有する眼内レンズが内部に設置される挿入筒部を備え、前記眼内レンズをプランジャーにより押し出し、前記眼内レンズを前記挿入筒部のノズル部から外部へ放出する眼内レンズ挿入器具において、
前記挿入筒部では、レンズ進行方向側に配置された前記支持部が、折り曲げ手段によって後方向へ曲げられる
ことを特徴とする眼内レンズ挿入器具。 - 前記折り曲げ手段は、突起部であり、
前記支持部が前記突起部に押し当てられて曲げられる
ことを特徴とする請求項1記載の眼内レンズ挿入器具。 - 前記突起部は、前記挿入筒部に着脱自在に設けられている
ことを特徴とする請求項2記載の眼内レンズ挿入器具。 - 前記突起部は別体のケースに設けられており、
前記挿入筒部には前記ケースが着脱自在に取り付けられる
ことを特徴とする請求項3記載の眼内レンズ挿入器具。 - 前記プランジャーは挿入器具本体に設けられ、前記挿入筒部は、前記挿入器具本体に取り付けられるカートリッジであり、
前記カートリッジは、
レンズ設置部に設置された前記眼内レンズの支持部を前記突起部で折り曲げさせた後、前記ケースから離脱されて前記挿入器具本体に取り付けられる
ことを特徴とする請求項4記載の眼内レンズ挿入器具。 - 前記眼内レンズが予めセットされたプリセット型である
ことを特徴とする請求項1~4のうちいずれか1項記載の眼内レンズ挿入器具。 - 一又は二以上の支持部を光学部の外縁に有する眼内レンズを押し出すプランジャーを備えた挿入器具本体に取り付けられるカートリッジにおいて、
前記眼内レンズがレンズ挿入口部から設置されるレンズ設置部と、
前記レンズ設置部と連通し、前記眼内レンズを外部へ放出するノズル部とを備え、
前記レンズ設置部では、レンズ進行方向側に配置された前記支持部が、折り曲げ手段によって後方向へ曲げられる
ことを特徴とするカートリッジ。 - 前記折り曲げ手段は、突起部であり、
前記支持部が前記突起部に押し当てられて曲げられる
ことを特徴とする請求項7記載のカートリッジ。 - 前記レンズ設置部には前記突起部が着脱自在に設けられる
ことを特徴とする請求項8記載のカートリッジ。 - 前記突起部は別体のケースに設けられており、
前記レンズ設置部には前記ケースが着脱自在に取り付けられる
ことを特徴とする請求項9記載のカートリッジ。 - 前記レンズ設置部に設置された前記眼内レンズの支持部を前記突起部で折り曲げさせた後、前記ケースから離脱されて前記挿入器具本体に取り付けられる
ことを特徴とする請求項10記載のカートリッジ。
Priority Applications (5)
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EP20165537.0A EP3708118B1 (en) | 2008-06-05 | 2009-06-03 | Intraocular lens insertion device and cartridge |
EP09758358.7A EP2298242B1 (en) | 2008-06-05 | 2009-06-03 | Assembly for use with a intraocular lens |
US12/995,263 US9554894B2 (en) | 2008-06-05 | 2009-06-03 | Intraocular lens insertion device and cartridge |
CN200980121056.XA CN102056571B (zh) | 2008-06-05 | 2009-06-03 | 眼内透镜插入器具以及针头 |
US15/382,377 US10517717B2 (en) | 2008-06-05 | 2016-12-16 | Intraocular lens insertion device and cartridge |
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US15/382,377 Continuation US10517717B2 (en) | 2008-06-05 | 2016-12-16 | Intraocular lens insertion device and cartridge |
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Also Published As
Publication number | Publication date |
---|---|
EP2298242A1 (en) | 2011-03-23 |
EP2298242A4 (en) | 2017-06-21 |
EP2298242B1 (en) | 2020-04-01 |
US10517717B2 (en) | 2019-12-31 |
US20110082463A1 (en) | 2011-04-07 |
JP5254669B2 (ja) | 2013-08-07 |
CN102056571B (zh) | 2014-03-26 |
EP3708118A1 (en) | 2020-09-16 |
CN102056571A (zh) | 2011-05-11 |
US9554894B2 (en) | 2017-01-31 |
EP3708118B1 (en) | 2024-05-01 |
US20170151056A1 (en) | 2017-06-01 |
JP2009291399A (ja) | 2009-12-17 |
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