Fixation system for an implantable medical device
20220001188 · 2022-01-06
Inventors
Cpc classification
A61F2220/0008
HUMAN NECESSITIES
International classification
Abstract
A medical implant, such as an implantable component (22) of a tissue-stimulating prosthesis. One example of such a prosthesis being a cochlear implant. The component (22) is adapted to be implanted at or adjacent a tissue surface within the recipient, such as a bone surface. The component (22) has a housing and at least one flange (42) extending outwardly therefrom. The flange (42) can be secured to the tissue surface via a tissue fixation device, such as a bone screw (43).
Claims
1-20. (canceled)
21. An implantable component of a hearing prosthesis, comprising: a housing containing electrical components; a communications coil; and an apparatus configured to extend over the housing and secure the housing to bone of a skull via respective bone screws extending through respective holes in the apparatus to secure the implantable component to the bone, the holes and bone screws being located on opposite sides of the housing.
22. The implantable component of claim 21, wherein: the apparatus is not integrally fixed or detachably fixed to the housing.
23. The implantable component of claim 21, wherein: the respective bone screws are screwed the into bone of the skull.
24. The implantable component of claim 21, wherein: the apparatus is a plate.
25. The implantable component of claim 21, wherein: the apparatus is a detachable flange plate.
26. The implantable component of claim 21, wherein: the apparatus extends over and across the housing.
27. The implantable component of claim 21, wherein: the apparatus extends over and across the housing; and respective holes are located in respective opposite ends of the apparatus.
28. The implantable component of claim 21, wherein: the apparatus has a length, a width and a thickness; the length direction extends across the housing from beyond one side of the housing to beyond another side of the housing opposite the one side of the housing; the thickness is the smallest dimension; and the width is less than a width of the housing, wherein the width of the housing is measured parallel to measurement of the width of the apparatus.
29. The implantable component of claim 21, wherein: the apparatus extends across the housing from beyond one side of the housing to beyond another side of the housing opposite the one side of the housing; and the housing extends from beyond one side of the apparatus to beyond another side of the apparatus opposite the one side of the apparatus.
30. The implantable component of claim 21, wherein: the apparatus includes non-metallic material.
31. The implantable component of claim 21, wherein: the apparatus is malleable to conform to a desired shape of the bone of the skull.
32. The implantable component of claim 21, wherein: the apparatus has a shape that can easily be manipulated by a surgeon during surgery associated with the implantable component.
33. The implantable component of claim 21, wherein: the housing is partially fitted into a bed created in the bone of the skull; and the communications coil lies superficially to the bone.
34. The implantable component of claim 21, wherein: the housing is partially fitted into a round bed created in the bone of the skull; and the communications coil lies above a bottom of the bed on a surface of the bone of the skull.
35. The implantable component of claim 21, wherein: the apparatus extends completely across the housing and is in contact with the bone of the skull on opposite sides of the housing.
36. An implantable component of a hearing prosthesis, comprising: an implant package containing electrical components; an antenna coil; and an assembly configured to secure the implant package to bone of a skull, the assembly extending from one side of the package across a top of the package to another side of the package opposite the one side of the package, the top of the package being opposite a skull facing side of the package.
37. The implantable component of claim 36, wherein: the assembly includes a body and at least two bone screws, the body extending from beyond the one side of the package across the top of the package to beyond the another side of the package opposite the one side of the package so that the two bone screws are located away from the implant package, one bone screw of the two bone screws being located away from the one side of the package and one bone screw of the two bone screws being located away from the another side of the package, the bone screws being configured to secure the body to the bone of the skull.
38. The implantable component of claim 37, wherein: the body includes two holes, a first of the two holes being located beyond the one side of the package and a second of the two holes being located beyond the another side of the package, respective bone screws of the two bone screws being located in respective holes of the two holes.
39. The implantable component of claim 38, wherein: washers assist in securing the assembly to the bone of the skull.
40. The implantable component of claim 36, wherein: the assembly includes a flange plate, the flange plate extending from the one side of the package across the top of the package to the another side of the package.
41. The implantable component of claim 36, wherein: the flange plate is a detachable flange plate relative to the package.
42. The implantable component of claim 36, wherein: the assembly and the package are configured so that there is no need to modify the package to accommodate the assembly.
43. The implantable component of claim 36, wherein: the assembly includes a structure extending from beyond the one side of the package across the top of the package to beyond the another side of the package, wherein the structure includes non-metallic material.
44. The implantable component of claim 36, wherein: the assembly includes a structure extending from beyond the one side of the package across the top of the package to beyond the another side of the package, wherein the structure is configured to conform to a surface of the bone of the skull at two end portions thereof.
45. The implantable component of claim 36, wherein: the implant package is partially fitted into a bed created in the bone of the skull; and the communications coil lies superficially to the bone.
46. The implantable component of claim 36, wherein: the implant package is partially fitted into a bed created in the bone of the skull; a bottom of the communications coil lies higher than a bottom of the implant package on a surface of the bone of the skull; and the assembly includes a structure extending from a first location on the surface of the bone of the skull beyond the one side of the package, across the top of the package to a second location on the surface of the bone of the skull beyond the another side of the package.
47. The implantable component of claim 36, wherein: the assembly includes a first portion located away from the one side of the package directly on a first location of the surface of the bone of the skull; and the assembly includes a second portion located away from the another side of the package directly on a second location of the surface of the bone of the skull; and the first portion and the second portion are parts of a structure that extends from beyond the one side of the package, across the package, to beyond the another side of the package.
48. The implantable component of claim 47, wherein: the communication coil lies on a surface of the bone of the skull at a same level, taking into account natural curvature of the bone of the skull, as the first portion and the second portion.
49. The implantable component of claim 47, wherein: the package has a bottom portion that extends into the bone of the skull so that the bottom portion is lower than a level of contact of the first portion and the second portion with the surface of the bone of the skull; and the implantable component is an implantable component of a hearing prosthesis.
50. The implantable component of claim 36, wherein: the implantable component is an implantable component of a cochlear implant.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0040] By way of example only, a preferred embodiment of the invention is now described with reference to the accompanying drawings, in which:
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PREFERRED MODE OF CARRYING OUT THE INVENTION
[0057] Before describing the features of the present invention, it is appropriate to briefly describe the construction of one type of known cochlear implant system with reference to
[0058] Known cochlear implants typically consist of two main components, an external component including a speech processor 29, and an internal component including an implanted receiver and stimulator unit 22. The external component includes a microphone 27. The speech processor 29 is, in this illustration, constructed and arranged so that it can fit behind the outer ear 11 and is held in place behind the outer ear 11 via an ear-hook arrangement. Alternative versions may be worn on the body. Attached to the speech processor 29 via a cable 13 is a transmitter antenna coil 24 that transmits electrical signals to the implanted unit 22 via a radio frequency (RF) link. The implanted component includes a receiver antenna coil 23 for receiving power and data from the transmitter coil 24. A cable 21 extends from the implanted receiver and stimulator unit 22 to the cochlea 12 and terminates in an electrode array 20. The signals thus received are applied by the array 20 to the basilar membrane 8 and the nerve cells within the cochlea 12 thereby stimulating the auditory nerve 9. The operation of such a device is described, for example, in U.S. Pat. No. 4,532,930.
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[0060] As can be appreciated from
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[0062] One embodiment of the fixation system according to the present invention is shown in
[0063] The malleable flanges 42 are preferably made from a titanium material and, in the depicted embodiment, are attached to the titanium implant package 22 by welding. Alternatively, the flanges 42 may be made integral with the implant package 22, and may merely be extension of the package 22. It is envisaged that other metals may be used for the implant package 22 and flanges 42, for example, any biocompatible metal such as stainless steel. It would, however, be preferable that the material used for the implant package 22 and/or flanges 42 be non-magnetic to allow MRI compatibility.
[0064] The skull attachment devices 43 are typically surgical screws and preferably have a low profile so they do not cause tissue erosion in the region of the head surrounding the implant, or produce a noticeable protuberance. Preferably, the flanges 42 and skull attachment devices 43 are coated in a silicone rubber to prevent tissue erosion, with the skull attachment devices 43 being accessed by means of a slit or hole in the silicone rubber above the skull attachment devices 43.
[0065] As shown in
[0066] As can be appreciated in
[0067] As surgical methods and preferences vary from surgeon to surgeon, it is important that the present invention can also be adapted to meet such variations. As can be seen in
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[0072] It should be appreciated that each of the flanges 42 shown in the above mentioned embodiments could be made from a plastic or elastomeric materials bonded to the implant package 22. For example, the silicone rubber coating of the implant package 22 can be extended to create a silicone rubber flange which may be secured to the skull via appropriate means. Further, a plastic material, such as PTFE or polyurethane, can be embedded within the silicone rubber coating of the implant package 22 to form a flange. Such a device may also be attached to the implant package via a mechanical interlock. It may also be possible to make the flange of a composite or combination of materials. For example, a Dacron mesh may be used as a reinforcing structure to strengthen the silicone rubber coating. PTFE, polyurethane or carbon fibre materials may also be used as a reinforcing member.
[0073] By providing the flange made from a plastic or elastomeric material, it then becomes possible for the surgeon to remove or cut-off the flange during the surgical procedure should they not wish to use such a fixation method. This results in the fixation mechanism being an optional feature. Such a flange would also be easier to form and alter the shape thereof to more appropriately conform to the shape of the recipient's skull. Further, a flange made from a plastic or elastomeric material is softer than a metallic flange and will therefore be less prone to causing tissue erosion.
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[0075] As is shown in
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[0078] The embodiment as shown in
[0079] As alluded to above, the plate 55 may be made of a non-metallic material, such as a biocompatible plastic since there is no need for welding of the plate to the implant package 22. Such a plate would overcome the need to provide a coating of silicone rubber to the surface of the plate to soften it and prevent tissue erosion. In this regard, the plate 55 could be made of a polyurethane or PTFE which are strong, relatively inelastic materials suited to this application. However, it should be envisaged that other plastics may also be used which exhibit the desired properties.
[0080] It will be appreciated by persons skilled in the art that numerous variations and/or modifications may be made to the invention as shown in the specific embodiments without departing from the spirit or scope of the invention as broadly described. The present embodiments are, therefore, to be considered in all respects as illustrative and not restrictive.