The present invention relates to a hearing aid system and in particular to a receiver system used in the hearing aid system.
A wide variety of hearing aid units are known in the art. In some units, the receiver is positioned within the ear canal in such a way that it creates an occlusion effect. Further, the receiver is encased within the body of the hearing aid. In most cases whether the hearing aid is fitted in the ear, as a custom made instrument, or as an instrument which is placed behind the ear, an occlusion problem exists. This often is a cause of rejection of the amplification due to patient's discomfort with their own voice. This occlusion effect is associated with the sensation of feeling that the patient's head is “at the bottom of the barrel” with the patient's own voice becoming intolerably loud. Placing an earmold or a shell of a custom made hearing aid can produce an additional low frequency amplification of the patient's own voice up to 20 to 30 dB. This can, therefore, be responsible for a four times perceived loudness increase in the patient's own voice. In order to eliminate the occlusion effect, an open ear canal amplification is applied. However, the acoustics of an open ear fitting increase the risk of acoustic feedback prohibiting in most instances to achieve a peak gain of more than 30 dB.
Thus, there is a need for an improved hearing aid system which avoids the occlusion effect and which also avoids feedback, especially during high frequency amplification.
Accordingly, it is an object of the present invention to provide a receiver, receiver placement, and a receiver casing which avoids the occlusion effect.
It is a further object of the present invention to provide a receiver system which helps avoid feedback during high frequency amplification.
It is a further object of the present invention to provide a hearing aid system having a receiver, such as the aforementioned receiver, separated from the microphone.
The foregoing objects are attained by the receiver and the hearing aid system of the present invention.
In accordance with the present invention, a receiver and a receiver casing for use in a system for improving a user's hearing, in a hearing aid system is provided. Also, it is the intention to use same receiver system removed from the body of the instrument to be used in a tinnitus device as described in U.S. Pat. No. 6,048,305. It is essential to have an open ear tinnitus instrument in the tinnitus retraining therapy program. Therefore, this present invention will provide such by having the body of the instrumentation placed behind the ear with the receiver placed in the ear canal without obstructing the external auditory means.
In a first embodiment, the receiver comprises a housing to be positioned within an ear canal and a plurality of arms extending from the housing. The tip portion of each arm contacts a surface of a user's ear canal and suspends the receiver within the ear canal.
In a second embodiment, the receiver is housed in a disc. The disc is formed from a frequency specific filtering material. The disc has an adjustable rim which when placed in the ear canal uses spring like motion to maintain receiver position.
Further, in accordance with the present invention, a hearing aid system is provided. The hearing aid system comprises a microphone located externally of a user's ear canal, an amplifier connected to the microphone to amplify sounds received by the microphone, a receiver positioned within the user's ear canal, and means for transmitting the amplified output to the receiver. As before, the receiver preferably has a housing and a plurality of arms extending from the housing for suspending the receiver within the user's ear canal. Alternatively, the receiver may be housed within a disc structure.
Other details of the hearing aid system of the present invention, as well as other objects and advantages attendant thereto, are set forth in the following detailed description and the accompanying drawings wherein like reference numerals depict like elements.
Referring now to the drawings,
The hearing aid system 10 further includes a receiver 18 which is separated from the housing containing the microphone. The receiver is installed and suspended within the ear canal 20 of a user and means 22 for transmitting amplified output from the amplifier 14 to the receiver 18. The sound transmitting means 22, depending upon the particular kind of amplifier 14 being used, may be a wire 24 encased within a plastic coating 26 housing the wire. When used, the wire 24 makes an electrical contact with the amplifier 14 and the receiver 18 over which electrical output can be transmitted. The plastic coating around the wire 24 helps prevent electrical shocks.
An alternative way of connecting the output from the amplifier 14 to the receiver 18 is shown in
The microphone 12, the amplifier 14, and the control means may comprise any suitable microphone, amplifier, and control means known in the art. Similarly, the receiver 18 may comprise any suitable receiver known in the art.
As shown in
The arms 30 are quite advantageous because they allow the receiver 18 to be positioned or suspended in such a way that the receiver 18 does not occlude the ear canal. Further, the arms 30 allow the use of any size of receiver in the hearing aid systems. Still further, the receiver, separated from the microphone, provides a greater flexibility in delivering high frequency amplification without causing or creating feedback. Thus, protection of the ear canal and the separation of the receiver 18 from the microphone 12 allows one to achieve greater high frequency gain without feedback.
Further, a suspended receiver away from the ear canal walls will also provide a better protection from impacting the receiver with cerumen.
While it has been stated that the microphone 12 and the amplifier 14 are in the same housing, it should be noted that they could be in separate housings depending upon the type of hearing aid system 10. For example, if the system 10 is incorporated in an eyeglass frame, the microphone could be in one part of the frame and the amplifier could be in another part of the frame.
While it is preferred to form the arms 30 from a flexible plastic material, each of the arms 30 could also be formed from a bendable wire. When formed from a bendable wire, as shown in
If desired, the length of the insertion of the receiver 18 in the ear canal 20 can be adjusted using a retractable wire 24 from the sound transmitting means 22 or by replacing the ear hook on a behind the ear hearing aid unit.
Referring now to
While the receiver 18 of the present invention has been described in the context of hearing aid systems, the receiver could also be used in tinnitus treatment systems. For example, as shown in
It is apparent that there has been provided in accordance with the present invention a hearing aid system which fully satisfies the objects, means, and advantages set forth hereinbefore. While the present invention has been described in the context of specific embodiments thereof, other alternatives, modifications, and variations will become apparent to those skilled in the art having read the foregoing description. Accordingly, it is intended to embrace those alternatives, modifications, and variations as fall within the broad scope of the appended claims.
Number | Name | Date | Kind |
---|---|---|---|
2363175 | Grossman | Nov 1944 | A |
4539440 | Sciarra | Sep 1985 | A |
5420930 | Shugart, III | May 1995 | A |
5572594 | Devoe et al. | Nov 1996 | A |
5654530 | Sauer et al. | Aug 1997 | A |
5721783 | Anderson | Feb 1998 | A |
5920636 | Oliveira et al. | Jul 1999 | A |
5987146 | Pluvinage et al. | Nov 1999 | A |
6039685 | Bushek | Mar 2000 | A |
6094493 | Borowsky et al. | Jul 2000 | A |
6367578 | Shoemaker | Apr 2002 | B1 |
6748094 | Tziviskos et al. | Jun 2004 | B1 |
20040010181 | Feeley et al. | Jan 2004 | A1 |
Number | Date | Country | |
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20040047481 A1 | Mar 2004 | US |