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Devices and methods for treating tinnitus using electrical stimulation

a technology of electrical stimulation and devices, applied in the field of devices for treating tinnitus, can solve the problems of no fda approved pharmacological therapies or surgical devices for the treatment of tinnitus, poor attention, and increased distraction,

Pending Publication Date: 2020-10-29
MAYO FOUND FOR MEDICAL EDUCATION & RES
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

[0023]Particular embodiments of the subject matter described in this document can be implemented to realize one or more of the following advantages. Cochlear surface electrode(s), intraosseous electrode(s), endosteal electrode(s), subendosteal electrode(s) or short intracochlear electrode(s) (or a combination thereof), connected to a receiver / stimulator electronics package, can provide an effectual long-term treatment of tinnitus in many patients. Some embodiments described herein include a grid array, linear array, paired array or single stimulation electrode(s). A multi-electrode array can advantageously provide broad spatial coverage of the cochlear region. Additionally, various electrode pairs or groupings within the multi-electrode array can be activated (while others are deactivated) to provide a customized stimulation treatment that is effective for a particular patient's needs. In some embodiments, one or more electrodes can be placed intraosseously (e.g., in the cochlear bone). Such intraosseous placement can provide the advantage of delivering electrical stimulation in closer proximity to the cochlea (as compared to promontory surface placement). Other devices provided herein can advantageously deliver electrical stimulation to the vestibulocochlear nerve to treat tinnitus.

Problems solved by technology

For some, tinnitus is merely a fleeting annoyance; however for many individuals, tinnitus may cause audiological, neurological or cognitive impairment resulting in poor attention, increased distractibility, anxiety, depression, and even suicide.
Currently, there are no FDA approved pharmacological therapies or surgical devices available for the treatment of tinnitus.

Method used

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  • Devices and methods for treating tinnitus using electrical stimulation
  • Devices and methods for treating tinnitus using electrical stimulation
  • Devices and methods for treating tinnitus using electrical stimulation

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Embodiment Construction

[0040]This document provides devices for treating tinnitus and methods of using the devices to treat tinnitus. For example, this document provides implantable electrodes and stimulation devices for delivering electrical stimulation to the cochlear region to treat tinnitus. Cochlear surface electrode(s), endosteal electrode(s), subendosteal electrode(s), intraosseous electrode(s), or short intracochlear electrode(s) (or a combination thereof), connected to existing but modified cochlear implant receiver / stimulator technology, can provide a successful model for long-term treatment of tinnitus in a large number of patients. In some cases, patients can simply turn on the tinnitus implant when experiencing troublesome tinnitus and gain instant relief. With increasing use, it is likely many patients will enjoy lasting tinnitus suppression, hours and even days after the device is turned off (i.e., residual inhibition).

[0041]Using surface, endosteal, subendosteal, intraosseous, or short int...

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Abstract

Electrical stimulation devices can be used to treat tinnitus. For example, tinnitus can be treated using implantable electrodes and stimulation devices for delivering electrical stimulation to a patient's cochlear region. Cochlear surface electrode(s), endosteal electrode(s), subendosteal electrode(s), intraosseous electrode(s), or short intracochlear electrode(s) (or a combination thereof), connected to existing or modified cochlear implant receiver / stimulator technology, can provide a successful model for long-term treatment of tinnitus in a large number of patients. In some cases, patients can simply turn on the tinnitus implant when experiencing troublesome tinnitus and gain instant relief

Description

CROSS-REFERENCE TO RELATED APPLICATIONS[0001]This application is a continuation of U.S. application Ser. No. 16 / 307,700, filed Dec. 6, 2018, which is a National Stage application under 35 U.S.C. § 371 of International Application No. PCT / US2017 / 035617, having an International Filing Date of Jun. 2, 2017, which claims the benefit of U.S. Provisional Ser. No. 62 / 346,306 filed Jun. 6, 2016. The disclosures of the prior applications are considered part of (and are incorporated by reference in) the disclosure of this application.BACKGROUND1. Technical Field[0002]This document relates to devices for treating tinnitus and methods of treating tinnitus using the devices. For example, this document relates to implantable electrodes and stimulation devices for delivering electrical stimulation to the otic capsule, cochlear region, vestibular region (e.g., vestibule or semicircular canals), the vestibulocochlear nerve, or the brainstem to treat tinnitus. In some cases, an electrode for deliveri...

Claims

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Application Information

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Patent Type & Authority Applications(United States)
IPC IPC(8): A61N1/36A61N1/05A61N1/375H04R25/00
CPCA61N1/37518H04R2225/67A61N1/361H04R25/75A61N1/36038A61N1/0541
Inventor CARLSON, MATTHEW L.
Owner MAYO FOUND FOR MEDICAL EDUCATION & RES
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