A binaural hearing system includes two hearing devices (e.g., hearing aids), one for each ear. Binaural hearing systems often provide users with improved sound quality, perception, and localization compared to monaural hearing device configurations.
The hearing devices such as those used in binaural hearing systems are typically symmetrically formed such that a hearing device can be used interchangeably behind either the left ear or the right ear of a user. Such a configuration is beneficial in that it results in operational efficiencies due to scaling effects and lower initial costs. However, hearing devices configured in such a manner may easily fall off the ear, may be too short for proper retention behind the ear, may be uncomfortable to wear with other accessories (e.g., glasses, helmets, etc.), and/or may be uncomfortable to wear while the user sleeps.
The accompanying drawings illustrate various embodiments and are a part of the specification. The illustrated embodiments are merely examples and do not limit the scope of the disclosure. Throughout the drawings, identical or similar reference numbers designate identical or similar elements.
A side specific BTE hearing device and binaural hearing system including the same are described herein. As will be described in more detail below, an exemplary BTE hearing device that has a side specific structure includes a housing comprising: a proximal portion configured to be positioned towards an upper part of an ear of a recipient, the proximal portion having a curved shape configured to curve within a first reference plane such that the proximal portion is configured to follow a median shape of the ear when the BTE hearing device is worn by the recipient; and a distal portion configured to extend behind the ear when the BTE hearing device is worn by the recipient, the distal portion configured to extend within a second reference plane that intersects the first reference plane at an angle such that the distal portion is bent with respect to the proximal portion and is configured to extend toward a skull of the recipient when the BTE hearing device is worn by the recipient.
By configuring a BTE hearing device to have a side specific structure, it is possible to improve how comfortable the BTE hearing device is to wear. For, example, BTE hearing devices such as those described herein improve comfortability while worn with other accessories (e.g., glasses) and/or improve comfortability while worn when the recipient's head is laying against another object (e.g., while sleeping). In addition, BTE hearing devices such as those described herein are configured to facilitate retention behind the ear of the recipient such that the BTE hearing devices are less likely to fall off. Moreover, because BTE hearing devices such as those described herein have a side specific structure, they are configured to fit the skull of the recipient better than conventional BTE hearing devices. As such, BTE hearing devices such as those described herein may be more aesthetically appealing than conventional BTE hearing devices. Other benefits of the BTE hearing devices and systems described herein will be made apparent herein.
In certain examples, BTE hearing devices such as those described herein may be implemented as part of a binaural hearing system. As such,
BTE hearing devices 102 may each be implemented by any type of hearing device configured to provide or enhance hearing to a recipient of binaural hearing system 100. For example, BTE hearing devices 102 may be implemented by a hearing aid configured to amplify audio content to a recipient, a sound processor included in a cochlear implant system configured to apply electrical stimulation representative of audio content to a recipient, a sound processor included in a stimulation system configured to apply electrical and acoustic stimulation to a recipient, or any other suitable hearing prosthesis. In some examples, BTE hearing device 102-1 may be of the same type as BTE hearing device 102-2. For example, BTE hearing devices 102 may each be hearing aid devices. In certain alternative examples, BTE hearing device 102-1 may be of a different type than BTE hearing device 102-2. For example, BTE hearing device 102-1 may be a hearing aid and BTE hearing device 102-2 may be a sound processor included in a cochlear implant system. Exemplary side specific BTE hearing devices are described herein.
As shown, each BTE hearing device 102 includes a processor, memory, and a battery (among other components). For example, BTE hearing device 102-1 includes processor 104-1, memory 106-1, and battery 108-1. Likewise, BTE hearing device 102-2 includes processor 104-2, memory 106-2, and battery 108-2.
Processors 104 are configured to perform any suitable processing operation that may be associated with BTE hearing devices 102. For example, when one of BTE hearing devices corresponds to a hearing aid device, such processing operations may include monitoring ambient sound, connecting to an external device (e.g., a smartphone, a television, etc.), and/or representing sound to a recipient via an in-ear microphone. In examples where one or more of BTE hearing devices 102 are included as part of a cochlear implant system, such processing operations may include directing a cochlear implant to generate and apply electrical stimulation representative of one or more audio signals (e.g., one or more audio signals detected by a microphone, input by way of an auxiliary audio input port, etc.) to one or more stimulation sites associated with an auditory pathway (e.g., the auditory nerve) of a recipient. Processors 104 may each be implemented by any suitable combination of hardware and software.
Memory 106 may be implemented by any suitable type of storage medium and may maintain (e.g., store) data utilized by processors 106. For example, memory 106 may store data representative of an operation program that specifies how each processor 104 processes and delivers audio content to a recipient. To illustrate, memory 106-1 may maintain data representative of a first program that causes processor 104-1 to operate in a wireless audio rendering mode and a second program that causes processor 104-2 to operate in a normal mode in which processor 104-2 amplifies ambient sound detected by a microphone that is a part of BTE hearing device 102-1. Memory 106-2 may maintain data representative of similar programs.
Battery 108-1 is configured to provide operating power for processor 104-1, memory 106-1, and/or other components included in BTE hearing device 102-1. Likewise, battery 108-2 is configured to provide operating power for processor 104-2, memory 106-2, and/or other components included in BTE hearing device 102-2. In some examples, batteries 108 are rechargeable. Alternatively, batteries 108 are non-rechargeable. Batteries 108 may have any suitable capacity, discharge profile, and/or other characteristic as may serve a particular implementation.
BTE hearing devices 102 may communicate with each other (e.g., by transmitting data) by way of a binaural communication link 110 that interconnects hearing devices 104. Binaural communication link 110 may include any suitable wireless or wired communication link as may serve a particular implementation.
As mentioned, BTE hearing devices 102 are configured to have a side specific structure, which is different from conventional hearing devices that are not side specific. To illustrate,
In contrast to conventional hearing devices such those shown in
BTE hearing devices such as those described herein are configured to have a curvature that follows the median shape (e.g., median shape 304) of a particular ear of a user. To illustrate,
As shown in
Proximal portion 406 of housing 404 is configured to be positioned towards an upper part of an ear of a recipient when worn by the recipient. For example, proximal portion 406 is configured to be positioned adjacent to the uppermost portion where the pinna of the ear attaches to the head of the recipient. As shown in
In certain examples, the curved shape of a proximal portion of a BTE hearing device may be configured to match the median shape of a particular ear of the recipient. For example, the proximal portion may have a curved shape that matches median shape 304 shown in
Distal portion 408 of housing 404 is configured to extend behind the ear when BTE hearing device 402 is worn by the recipient. Distal portion 408 is further configured to extend within a second reference plane that intersects the first reference plane at an angle. To illustrate,
Angle 506 may have any suitable value as may serve a particular implementation. In certain examples, angle 506 may be greater than 0° and less than 20°. In certain other examples, angle 506 may be greater than 0° and less than 10°. In certain other examples, angle 506 may be greater than or equal to 3° and less than or equal to 9°.
In certain examples, BTE hearing device 402 may be sized such that the entire BTE hearing device 402 fits behind the left ear of the recipient. As such, when the recipient is viewed from the left side, the BTE hearing device 402 is not visible to another individual.
In certain examples, an angle at which a distal portion of a housing is bent with respect to a proximal portion may be repeatably adjustable. To that end, in certain examples, a housing of a BTE hearing device may include a bendable portion where the distal portion of the housing is configured to bend with respect to the proximal portion. For example, such a bendable portion may be bent to a first position where the distal portion is provided at a first angle with respect to the proximal portion. Afterwards, the bendable portion may be bent again such that the distal portion is provided at a second angle with respect to the proximal portion. The second angle may be less than or greater than the first angle. Such a bendable portion may be bent any suitable number of times to facilitate customizing the angle at which the distal portion of a housing is bent with respect to the proximal portion. In the exemplary BTE hearing device 402 shown in
To facilitate a distal portion of a housing bending with respect to a proximal portion, at least a part of the housing may be formed of a deformable material configured to bend and remain in position. Any suitable material may be used for a bendable portion as may serve a particular implementation. For example, at least a portion of the housing may be formed of a thermoplastic that is configured to become bendable at a certain temperature and solidify upon cooling.
In certain examples, a housing (e.g., housing 404) of a BTE hearing device may have a first side that has a flat surface that is configured to face the skull of the recipient when the BTE hearing device is worn by the recipient and a second side that is configured to face the upper part of the ear of the recipient when the BTE hearing device is worn by the recipient. In certain examples, the second side of the housing may have a curved surface. To illustrate,
In the example shown in
In certain alternative examples, the surface of a BTE hearing device that faces the skull of the recipient and the surface of the BTE hearing device that faces an upper portion of the ear of the recipient may both be flat surfaces.
In certain examples, the side specific structure of a BTE hearing device may further include an asymmetrically positioned control interface (e.g., a push button) that is configured to control operation of the BTE hearing device. To illustrate,
Although
In the preceding description, various exemplary embodiments have been described with reference to the accompanying drawings. It will, however, be evident that various modifications and changes may be made thereto, and additional embodiments may be implemented, without departing from the scope of the invention as set forth in the claims that follow. For example, certain features of one embodiment described herein may be combined with or substituted for features of another embodiment described herein. The description and drawings are accordingly to be regarded in an illustrative rather than a restrictive sense.
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