IP Library › Granted Patent US 11,235,150
Granted Patent B2
US 11,235,150 · App. 16/294,790 · Granted Feb 1, 2022

Cochlear implant leads and methods of making the same

Inventors: Martin Grossoehmichen (Nienhagen, DE); Konstantin Silberzahn (Zürich, CH); Tim Nauwelaers (Hannover, DE); Volkmar Hamacher (Hannover, DE)
Assignee: Advanced Bionics AG
A61N1/36039A61B1/00126A61B1/07A61B1/227A61N1/0541A61N1/36038A61N1/375A61B1/00167
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Quick Facts
Patent No.
US 11,235,150
App. No.
16/294,790
Granted
Feb 1, 2022
Kind
B2
Abstract

A cochlear implant, for use with a micro camera, including a stimulation assembly, a cochlear lead with an electrode array, a lens associated with the distal region of the electrode array, an optical fiber bundle that extends proximally from the lens and outwardly from the proximal region of the cochlear lead, a camera interface in which the proximal end of the optical fiber bundle is located and that is configured to receive the micro camera, and at least one illumination guide that extends from the camera interface to the cochlear lead.

Claims (64)

1. A cochlear implant for use with a micro camera including a housing, a light source and a light sensor, the cochlear implant comprising:

a stimulation assembly including a housing, an antenna within the housing, and a stimulation processor within the housing operably connected to the antenna;

a cochlear lead, operably connected to the stimulation processor, defining a proximal region and a distal region and including an electrode array with a flexible body and a plurality of electrically conductive contacts on the flexible body;

a lens associated with the distal region of the electrode array;

an optical fiber bundle, including a distal end adjacent to the lens and a proximal end, that extends from the lens, through the flexible body, and outwardly from the proximal region of the electrode array;

a camera interface, in which the proximal end of the optical fiber bundle is located, configured to receive the micro camera in such a manner that the proximal end of the optical fiber bundle is adjacent to the light sensor and including an interface connector, through which the optical fiber bundle passes, that is configured to mate with an aperture on the micro camera housing; and

at least one illumination guide that extends from the camera interface to the cochlear lead.

2. A cochlear implant as claimed in claim 1 , wherein

the lens is secured to the optical fiber bundle and projects outwardly from the flexible body.

3. A cochlear implant as claimed in claim 1 , wherein

the lens is embedded within the flexible body.

4. A cochlear implant as claimed in claim 1 , wherein

the lens is a molded portion of the flexible body.

5. A cochlear implant as claimed in claim 1 , wherein

the at least one illumination guide extends to distal region of the cochlear lead.

6. A cochlear implant as claimed in claim 1 , wherein

the flexible body is formed from transparent material; and

the at least one illumination guide does not extend to distal region of the cochlear lead.

7. A cochlear implant as claimed in claim 1 , wherein

the interface connector comprises a rigid interface connector.

8. A cochlear implant as claimed in claim 1 , wherein

the camera interface includes a lens that focuses light from the optical fiber bundle onto a predetermined location within the camera interface.

9. A cochlear implant for use with a micro camera including a housing, a light source and a light sensor, the cochlear implant comprising:

a stimulation assembly including a housing, an antenna within the housing, and a stimulation processor within the housing operably connected to the antenna;

a cochlear lead, operably connected to the stimulation processor, defining a proximal region and a distal region and including an electrode array with a flexible body and a plurality of electrically conductive contacts on the flexible body;

a lens associated with the distal region of the electrode array;

an optical fiber bundle, including a distal end adjacent to the lens and a proximal end, that extends from the lens, through the flexible body, and outwardly from the proximal region of the electrode array;

a camera interface, in which the proximal end of the optical fiber bundle is located, including a transparent housing with a camera receptacle that is configured to receive the micro camera in such a manner that the proximal end of the optical fiber bundle is adjacent to the light sensor; and

at least one illumination guide that extends from the camera interface to the cochlear lead.

10. A cochlear implant as claimed in claim 9 , wherein

the transparent housing comprises a resilient transparent housing.

11. A cochlear implant as claimed in claim 9 , wherein

the respective configurations of the camera and the camera interface are such that the proximal end of the optical fiber bundle is no more 0.1 mm from the optical sensor when the camera is mounted to the camera interface.

12. A cochlear implant as claimed in claim 9 , wherein

the lens is

secured to the optical fiber bundle and projects outwardly from the flexible body,

embedded within the flexible body, or

a molded portion of the flexible body.

13. A cochlear implant as claimed in claim 9 , wherein

the at least one illumination guide extends to distal region of the cochlear lead.

14. A cochlear implant as claimed in claim 9 , wherein

the flexible body is formed from transparent material; and

the at least one illumination guide does not extend to distal region of the cochlear lead.

15. A system, comprising:

a micro camera, including a housing defining an outer diameter, a light source and a light sensor; and

a cochlear implant including

a stimulation assembly including a housing, an antenna within the housing, and a stimulation processor within the housing operably connected to the antenna,

a cochlear lead, operably connected to the stimulation processor, defining a proximal region and a distal region and including an electrode array with a flexible body and a plurality of electrically conductive contacts on the flexible body,

a lens associated with the distal region of the electrode array,

an optical fiber bundle, including a distal end adjacent to the lens and a proximal end, that extends from the lens, through the flexible body, and outwardly from the proximal region of the electrode array,

a camera interface, in which the proximal end of the optical fiber bundle is located, including a resilient housing with a camera receptacle defining an inner diameter that is less than the outer diameter of the camera housing and that is configured to receive the micro camera in such a manner that the proximal end of the optical fiber bundle is adjacent to the light sensor, and

at least one illumination guide that extends from the camera interface to the cochlear lead.

16. A system as claimed in claim 15 , wherein

the respective configurations of the camera and the camera interface are such that the proximal end of the optical fiber bundle is no more 0.1 mm from the optical sensor when the camera is mounted to the camera interface.

17. A system as claimed in claim 15 , wherein

the lens is

secured to the optical fiber bundle and projects outwardly from the flexible body,

embedded within the flexible body, or

a molded portion of the flexible body.

18. A system as claimed in claim 15 , wherein

the at least one illumination guide extends to distal region of the cochlear lead.

19. A system as claimed in claim 15 , wherein

the flexible body is formed from transparent material; and

the at least one illumination guide does not extend to distal region of the cochlear lead.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 25, 2021
From: GROSSOEHMICHEN, MARTIN; SILBERZAHN, KONSTANTIN; NAUWELAERS, TIM; HAMACHER, VOLKMAR
To: ADVANCED BIONICS AG
Reel/Frame 058211/0279 →
Continuity (2)
Provisional Application 62780778 · Dec 17, 2018
Related Publication 20200188668A1 · Jun 18, 2020