WO2019233602A1 - Procédé de transmission d'un état de traitement dans une application d'adaptation audiologique pour un appareil auditif - Google Patents

Procédé de transmission d'un état de traitement dans une application d'adaptation audiologique pour un appareil auditif Download PDF

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Publication number
WO2019233602A1
WO2019233602A1 PCT/EP2018/065190 EP2018065190W WO2019233602A1 WO 2019233602 A1 WO2019233602 A1 WO 2019233602A1 EP 2018065190 W EP2018065190 W EP 2018065190W WO 2019233602 A1 WO2019233602 A1 WO 2019233602A1
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WO
WIPO (PCT)
Prior art keywords
processing
information
adaptation application
time
audiological
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/EP2018/065190
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German (de)
English (en)
Inventor
Stefan Aschoff
Balakrishnan Athmanathan
Sanjay Kumar RUDRAWAL
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Sivantos Pte Ltd
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Sivantos Pte Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Sivantos Pte Ltd filed Critical Sivantos Pte Ltd
Priority to DK18730741.8T priority Critical patent/DK3649792T3/da
Priority to PCT/EP2018/065190 priority patent/WO2019233602A1/fr
Priority to CN201880081448.7A priority patent/CN111492673B/zh
Priority to EP18730741.8A priority patent/EP3649792B1/fr
Publication of WO2019233602A1 publication Critical patent/WO2019233602A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04RLOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; ELECTRIC HEARING AIDS; PUBLIC ADDRESS SYSTEMS
    • H04R25/00Electric hearing aids
    • H04R25/70Adaptation of deaf aid to hearing loss, e.g. initial electronic fitting
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04RLOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; ELECTRIC HEARING AIDS; PUBLIC ADDRESS SYSTEMS
    • H04R2225/00Details of deaf aids covered by H04R25/00, not provided for in any of its subgroups
    • H04R2225/55Communication between hearing aids and external devices via a network for data exchange

Definitions

  • the invention relates to a method for transmitting a processing state in an audiological adaptation application for a hearing device, wherein biological and / or audiometric data of a user of the hearing device as input values of the audiological adaptation application in a plurality typified by processing groups, wherein a first processing mode corresponds to an active processing of the data of the first processing group by the audiological adaptation application at a given time, and wherein the present state of processing of the audiological adaptation application is established with respect to the hearing aid is provided by providing the biological and / or audiometric data of the user from the first processing group in the first editing mode.
  • Hearing aids are usually used to compensate for or correct a hearing loss or generally a hearing loss.
  • hearing loss is an individual phenomenon, so that a hearing aid can be used to correct or compensate for hearing loss according to its specific, individual appearance it is necessary to adjust how this is present for the user of the hearing aid.
  • a change in the hearing ability of the user for example, if the hearing in certain frequency bands continues to decrease over a certain period of time, may necessitate renewed adaptation of the hearing aid, that is to say in particular its settings for signal processing.
  • Such an adaptation is often done using an audio- logical adaptation application, which is usually provided by the manufacturer of a hearing aid or on his behalf, and by means of which an access and in particular a determination of individual parameters for the signal processing of the hearing aid is possible.
  • audiometric data are provided which provide information about the specific, individual hearing loss of the user, so that the adjustment of the parameters of the hearing device in the audiological adaptation application can take place taking into account these audiometric data.
  • the adaptation of the hearing aid by means of the audiological adaptation application by an appropriately trained audiologist or hearing aid acoustician.
  • the ratio between users of hearing aids and hearing aid acousticians or audiologists is so high that a user of a hearing aid frequently visits a medical nursing station or the like there whose personnel have medical and technical knowledge, but did not enjoy any special audiological training.
  • the medical-technical staff in such a nursing station therefore carries out the adaptation in most cases as far as its own level of knowledge permits. Even though this can generally lead to somewhat useful results for the user of the hearing device with regard to a basic usability of the hearing aid, situations often arise in which the medical-technical personnel are instructed to receive information or assistance from a trained audiologist is.
  • the adaptation is also carried out by specially trained audio loggers who visit specially equipped departments in hospitals or medical care centers, for example, always on a given day of the week.
  • specially trained audio loggers who visit specially equipped departments in hospitals or medical care centers, for example, always on a given day of the week.
  • the invention is therefore based on the object of specifying a method by which a processing state in an audiological adaptation application for a hearing aid can be transmitted by linking the data used here the user of the hearing aid to another location, and / or to continue the adjustment can be preserved in the same state of processing at a later time.
  • said object is achieved by a method for transmitting a processing state in an audiological adaptation application for a hearing device, wherein data of a user of the hearing device, in particular biological and / or audiometric data and / or data for hearing aid setting, are obtained from an intermediate process an adaptation, as input values of the audiological adaptation application to a central memory and stored there typified in a plurality of processing groups, wherein at a first time in a first user area a first information about the identity of the user together with a second information on at least one first processing mode is coded, wherein the first processing mode corresponds to an active at a given time processing the data of the first processing group by the audiological adaptation application, wherein the first time coded first and second information is decoded at a second time, the data of the at least from the first processing group are loaded from the central memory into the audiological adaptation application, and based on the decoded first and second information, the first state processing state of the audiological adaptation application with respect to the hearing aid is established by the user's
  • An audiological adaptation application for a hearing device includes, in particular, a computer-aided application which is set up, based on suitable audiometric data of a user of the hearing device, the hearing device with regard to its signal processing settings, and in particular with regard to a frequency-dependent amplification and / or dynamic compression from input signals of the hearing aid to the audiological requirements of the user, as they emerge in particular from the audiometric data.
  • the fitting application processes data which, in addition to the identity of the hearing device user, can also include his biological data, his audiometric data and data of the current setting of his hearing aids. In this way, the fitting application captures and processes data as they occur during possibly many months lasting hearing aid fitting process. This process ends with the final adjustment of his hearing aids.
  • Values for a tone audiogram that is to say the frequency-band-resolved hearing of a corresponding test signal with respect to given norm values, are hereby values for an audiometric data, which are transmitted in particular as input values of the audiological adaptation application to the central memory and stored there spatial hearing with respect to a binaural test signal, values for a frequency-dependent discomfort threshold, data for speech intelligibility or data of a "real-ear-unaided gain” measurement.
  • Biological data include, in particular, the age and sex of the user as well as organic-medical diagnostics. noses, such as, for example, an organic damage to a drumhead, but also those medical diagnoses which have no relation to the ear.
  • the audiological adaptation application can be designed in such a way that an independent computer unit is tuned to it, and in particular is specially developed for it, so that the computer unit is not intended for any other use, or else be used on a general computer unit. on which even more applications, which are fundamentally separate from the audiological adaptation application, can run.
  • a central memory includes such a memory which stores the biological and / or audiometric data of a plurality of users of hearing aids and, for this purpose, can also be connected to a plurality of computer units, at least for the respective transmission and storage process on which the audiological adaptation application is executed.
  • the central memory is spatially separated from the computer unit performing the audiological adaptation application.
  • the central memory is a cloud-based memory, that is to say a memory in a data center, which can be reached decentrally via an internet connection by users, preferably with a corresponding authorization.
  • the typification of the biological and / or audiometric data into a plurality of processing groups is carried out in this case, in particular, on the basis of their sequence in a comprehensive sequence of a supply of hearing aids, at which they are recorded for the first time.
  • hearing loss can be measured. which results in a sound audiogram whose data can also be captured in the format of a corresponding type and, in particular, stored and transmitted to the central memory at the appropriate time.
  • Tonaudiogrammes which is made with a specially prepared and calibrated instrument, an audiometer
  • the measurement of hearing loss can also be made with hearing aids, which are, however, usually different from the final hearing for the user.
  • the hearing aid acoustician can select a suitable hearing aid and attach to this a number of acoustic coupling pieces, which ensure the retention of the sound leakage in the ear canal of the user.
  • a type designation of the selected hearing aid as well as of an attached coupling piece can also be included in a data structure of appropriate type.
  • a division into processing groups according to common and audiologists commonly used terms is used, such as the following groups: gain and compression settings, frequency compression settings, adjustments of the directivity of the microphones, settings of noise reduction, settings of the classification-based sound optimization and Settings of a sound therapy, as used in tinnitus.
  • the typing preferably takes place in the audiological adaptation application before the transmission to the central memory.
  • a first user area encompasses, in particular, the computer unit on which the audiological adaptation application is carried out as well as its immediate spatial environment; in the latter case, the coding Ren of the first information and the second information in particular also be done by photographing the screen of said computer unit.
  • the audiological adaptation application is operated in such a way that the biological and / or audiometric data of the first processing group are entered, changed or if necessary directly for further processing, in particular for appropriate settings of the hearing aid, can be used, preferably not in a background process.
  • an exact assignment of individual processing groups of the biological and / or audiometric data of the user to different processing modes of the audiological adaptation application is possible, in which a concrete adaptation of one or more functions and / or signal processing settings of the hearing aid based on the corresponding biological and / or or audiometric data of the relevant processing group.
  • Coding of the first and the second information includes, in particular, a conversion of the corresponding information into a correspondingly standardized format which, when decoded, makes the first information and the second information completely accessible again.
  • compression and / or encryption can also take place during the coding.
  • the loading of the biological and / or audiometric data of the user at least from the first processing group from the central memory into the audiological adaptation application can take place on the one hand after the decoding of the first and the second information on the basis of the assignment of the first processing mode to the first processing group Computing unit, which executes the audiological adaptation application at and / or after decoding, the particular data of the first processing group can in particular purposefully request as a result of the knowledge of the first processing mode of the central memory cher.
  • a global download of data from a plurality of processing groups can also be carried out in advance and in particular without knowledge of the processing modes active at the first time, and the speaking assignment to the first processing mode until the first information and the second information is encoded.
  • said data can also be made available at a later time and in particular also at a location other than that at which the storage operation takes place.
  • a corresponding storage in the central memory can take place, for example by linking the command for encoding the said information with a corresponding memory command.
  • the correct information of the relevant user of the hearing aid can be accessed on the basis of the first information, and on the one hand the correct processing group can be selected on the basis of the second information with the correctly provided biological and / or audiological ones Data of the first group concerned also the first editing mode of the audiological adaptations. application as it was at the time when the coding of the first and second
  • the processing state of the audiological adaptation application present at the first time with respect to the hearing device is produced at the second time or after the second time in the first user area.
  • This makes it possible to perform an adaptation of hearing aids of other users between the first time and the second time by means of the audiological adaptation application on the said computer unit.
  • the processing state of the audiological adaptation application present at the first time with respect to the hearing device is established at the second time or after the second time in a second user area.
  • the first user area is transferred from the first user area to the second user area.
  • the coding of the first information and the second information takes place in such a way that only a single data packet, which can be regarded as coherent within the scope of the transmission protocol, must be transmitted.
  • a representation of a graphical user interface of the audiological adaptation application is advantageously optically recorded on a computer unit performing the audiological adaptation application, the at least first processing mode of the audiological adaptation application being recognized on the basis of the optically detected representation of the graphical user interface becomes.
  • the transmission of the processing state of the audiological adaptation application present at the first time can be decoupled from the computer unit performing this and in particular from the connection between the computer unit and the central memory.
  • the processing state can be transmitted even if the connection between the computer unit performing the audiological adaptation application and the central memory does not have the required stability at a time desired for the transmission.
  • the complexity of the audiological adaptation application can be reduced by recognizing the at least first processing mode by means of an optical detection and the concomitant, already mentioned decoupling of the transmission of the processing state from the computer unit.
  • the position of a number of elements of an application window of the graphical user interface is preferably detected.
  • the elements whose position is to be detected here are.
  • Due to the usual informatics structure of an audiological adaptation application such elements often have a standardized representation, so that distinguishing features occur between 2 different application modes of the respective application window at predictable positions, so that the optical detection can concentrate on said positions.
  • the optical detection is carried out by means of a mobile phone or a tablet PC.
  • a camera installed in the mobile telephone or in the tablet PC is used in this case, wherein the optical detection can take place such that a photograph of the graphical user interface is first taken with the camera, and then the encoding of the second information and preferred also the first information based on this photograph - via an appropriate pattern recognition.
  • a separate mobile application can be installed on the mobile phone or the tablet PC, which has direct access to the camera, and which specifically for the detection of the second information and for and in particular the first information and for appropriate coding is set up.
  • the first information and the second information is an encryption.
  • the first information and / or the second information can be encrypted in such a way that decryption in cryptographic sense is possible without major additional effort, but that the coded first and second information are not sent as plain text as a basic security level.
  • This can be given, for example, in the coding in an XMPP message and / or in a QR code.
  • the invention further mentions an audiological adaptation application which is set up for the transmission of its processing state by the prescribed method.
  • the audiological adjustment ap-
  • the audiological adaptation application is also set up to decode the encoded first information and second information.
  • FIG. 1 shows schematically in a block diagram a method for transmitting a processing state of an audiological adaptation application from a first user area to a second area
  • FIG. 2 shows schematically in a block diagram an alternative embodiment of the method according to FIG. 1, FIG.
  • Fig. 3 shows schematically a graphical user interface of an audiological
  • FIG. 4 is a block diagram of a memory operation of audiometric data in a central memory by means of the audiological adaptation application, as well as a renewed provision of this data.
  • FIG. 1 schematically shows a block diagram of a method which transmits a processing state 1 of an audiological adaptation application 2 for a hearing device 4 from a first user area 6 to a second user area 8.
  • the audiological adaptation application 2 is performed on a first computer unit 10, which has a first screen 12, in order to adapt the hearing device 4 of a specific user 14.
  • the person 16, which carries out the adaptation of the hearing aid 4 in the first user area, is given here by medical-technical personnel without specific audiological training.
  • the audiological adaptation application 2 can then cause the test unit to emit a series of test tones via a wireless or wired signal connection 18 between the first computer unit 10 and the hearing device 4, wherein the user 14's hearing for said test tones in FIG the audiological adaptation application 2 is registered.
  • the audiometric values 20 determined in this way are transmitted by the person 16 to the first computer unit 10 from the latter via a signal connection 22 to a central memory 24 and stored there in the case of a corresponding memory command.
  • the central memory 24 is presently given by a cloud.
  • the settings for signal processing in the hearing device 4 are now transmitted to the au- dio via the signal connection 18 by the person 16 by means of corresponding inputs via the first computer unit 10 and their conversion by the audiological adaptation application 2. adapted to the diological requirements of the user 14.
  • the person 16 performing the adaptation of the hearing aid 4 now requires support from a specifically trained audiologist, for example when adapting a specific parameter of the signal processing settings, the person performing the adaptation 16 can take a photograph of the first screen 12 of the first computer unit 10 by means of a mobile phone 26.
  • the processing state 1 present at a first time t1 which corresponds to the time of the photograph, is present on the first Computing unit detected on the basis of the graphical user interface shown on the first screen 12 by means of optical detection.
  • information about the identity of the user 14 is transmitted by the mobile telephone 26 to the mobile telephone 26. This can be done, on the one hand, by providing corresponding information about the identity of the user 14 displayed on the first screen 12 and thus directly detected by the photograph in the mobile phone 26, wherein the display may optionally be in the form of a patient code.
  • the additional application on the mobile telephone 26, which is set up to recognize the processing state of the audiological adaptation application 2 from the photograph can also make a corresponding request to the first computer unit 10, so that the corresponding information about the user 14 for example via Bluetooth sends in response.
  • the determined information about the processing state 1 of the audiological adaptation application 2 and the identity of the user 14 are encoded and transmitted to a mobile phone 28 of an audiologist 30.
  • the coding can take place, for example, in the form of a QR code 32.
  • the audio log 30 is located in the second user area 8, which is spatially separated from the first area 6, and which has a second computer unit 34.
  • the audiological adaptation application 2 is now also executed on the second computer unit 34.
  • the second computer unit 34 is set up to trigger the QR code 32 on the mobile telephone 28 of the audiologist 30, for example by means of a corresponding reading device which is connected to the second computer unit 34, or also by a corresponding wireless signal transmission between the mobile phone 28, and the second computing unit 34, for example via Bluetooth.
  • a second time t2 is simultaneously defined. Based on the information contained in the QR code 32 about the processing status 1 of the audiological adaptation application in the first user area 6 as well as about the identity of the user 14 can now targeted by a corresponding signal connection 36 between the central memory 24 and the second computer unit 34th precisely those audiometric values 20 are downloaded from the central memory 24, which were in operation at the first time t1.
  • the exact processing mode of the audiological adaptation application 2 can be restored on the second computer unit 34, and in particular the graphical user interface of the audiological adaptation application 2 on the second Screen 38 of the second computer 34 thus replicate the graphical user interface on the first screen 12 of the first computer unit 10 at the time of photography by the mobile phone.
  • FIG. 2 schematically shows a block diagram of an alternative embodiment of the method according to FIG.
  • the audiologist 30 performs a processing operation of the audiological adaptation application 2 on the first computer unit 10.
  • This processing operation may consist, for example, in the acquisition of audiometric values 20 by means of the hearing aid 4.
  • the audiologist 30 has not yet completely completed the processing operation or the adaptation of the hearing device 4, but has to leave the first user area 6, for example in order to adapt hearing aids elsewhere as well, he can use his mobile phone 28 in the graphical user interface
  • the second user area 8 consists in the fact that the audiologist 30 himself continues the processing while on the move, wherein the second computer unit is present in a laptop.
  • the audiologist 30 can thus, for example, based on the corresponding from the central memory 24 to the second computer unit 34 downloaded audiometric values 20 individual settings for the hearing aid 4 adapt. These adjusted settings can now be stored in the central memory 24 so that, if appropriate, a person 16, who in the absence of the audiologist 30 continues to adapt the hearing aid 4, only needs to transfer the settings thus processed to the hearing aid 4 ,
  • FIG. 3 schematically shows a graphical user interface 40 of the audiological adaptation application 2 according to FIGS. 1 and 2, which has a plurality of application windows 42.
  • the application windows 42 are distributed over the entire image area 44 according to a predefined geometric pattern, wherein a plurality of the application windows 42 are arranged "one behind the other" in individual subregions 46, and therefore for a corresponding selection with one
  • these tabs 48 it is now possible, upon visual detection of the graphical user interface 40, to recognize which application window 42 is currently in the front-most front of graphical user interface 40, ie, in which of application window 42 specifically a processing In this way - that is, by the correspondence of the rider 48 with an active processing of the values in the relevant application window 42 - a first processing mode 50 is given, which in the case of the transmission shown with reference to FIG of the processing status on the second applier In FIG.
  • a central memory 24 is shown schematically in a block diagram, with which via a signal connection 22 and a first interface 52 a first computer unit 10 and via a second interface 54 and a signal connection 36 a second memory Computing unit 34 are connected.
  • an audiologist 30 carries out an audiological adaptation application 2, which is set up in particular for the acquisition of audiometric data 20 of a hearing device user (not shown) and for the adaptation of a hearing device 4.
  • a person 16 executes another audiological adaptation application 2 ', which although also for the described applications of the audiological adaptation application 2 is set up, but in its informal structure is different from this and in its individual functions may not be compatible with this.
  • the person 16 may either be an audiologist or given medical-technical personnel without specific audiological training.
  • the audiometric data 20 of a user of the hearing device 4 detected with the help of the audiological adaptation application 2, but also further adjustments resulting from the adaptation of the hearing device 4, can be adjusted via the signal connection 22 with respect to signal processing 55, e.g. Gain and compression settings, frequency compression settings, micro-directionality settings, noise suppression settings, or classification-based sound optimization settings, sound therapy 56, such as those used with Tinnitus, a smoothing function 58, details on Measuring conditions 59 an audiometric measurement, or details of Klabeninhüllenden 60 are passed through the first interface 52 to the central memory 24.
  • signal processing 55 e.g. Gain and compression settings, frequency compression settings, micro-directionality settings, noise suppression settings, or classification-based sound optimization settings
  • sound therapy 56 such as those used with Tinnitus
  • a smoothing function 58 e.g., details on Measuring conditions 59 an audiometric measurement, or details of Klabeninhüllenden 60 are passed through the first interface 52 to the central memory 24.
  • processing modes 50 are stored in accordance with FIG. 3, and patient information 65 is added to the identity of the user of the hearing device 4 and to the hearing aid type and model, as well as additional identification information 66 for the processing of the data - in this case the audiologist - e.g. Name and address and, if necessary, organization.
  • data 62 to be recorded in terms of the user optional data 64, which may relate in particular to specific functions of the signal processing settings of the hearing device 4, and identification information 66 of the audiologist 30 are available in a standardized form in the central memory 24.
  • format template 68 is now created by a report generator 70 in the central memory 24, a report 72 on the adjustment of the hearing aid 4 and the data of the user, and the first interface 52 in one for the audiological adaptation application - 2 readable and processable format output to the first computer unit 10, where the audiologist 30 receives the report 72 and can control.
  • the person 16 first downloads the report 72 to the second computer unit 34 through the second interface 54, the second interface 54 confirming the compatibility of the data in the report 72 with the audiological adaptation application 2 used on the second computer unit for example, by adapting the standardized format components of the report 72 generated in the report generator 70 to the requirements of the audiological adaptation application 2 with regard to a presentation.
  • the first interface 52 and the second interface 54 are respectively tuned to the respective audiological adaptation application 2 or 2.
  • the person 16 can also record further data, for example with regard to a program control 74 in the hearing device 4, with regard to frequency shaping 76 or further data, which may also relate to a new evaluation of data which has already been stored by the audiologist 30 in the central memory 24. These data are then transferred via the signal connection 36 to the second interface 54 and via this to the central memory 24, where they are stored according to the category "necessarily optional" and preferably depending on the processing group iSd processing modes 50 according to FIG.
  • an updated report 78 can be created by the report generator 70 using the format template 68, which reports on the second interface 54 is output to the second computer unit 34 in a for the audiological adaptation application 2 'readable and processable format.
  • the audiologist 30 can also receive this updated report 78 if necessary, download to the first computer unit 10 via the first interface 52 in a format that can be read and processed for the audiological adaptation application 2.

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  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Neurosurgery (AREA)
  • Otolaryngology (AREA)
  • Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Acoustics & Sound (AREA)
  • Signal Processing (AREA)
  • Circuit For Audible Band Transducer (AREA)
  • Measurement Of The Respiration, Hearing Ability, Form, And Blood Characteristics Of Living Organisms (AREA)
  • Telephonic Communication Services (AREA)

Abstract

L'invention concerne un procédé de transmission d'un état de traitement (1) dans une application d'adaptation audiologique (2) pour un appareil auditif (4). Des données biologiques et/ou audiométriques (20) d'un utilisateur (14) de l'appareil auditif (4) sont transmises en tant que valeurs d'entrée de l'application d'adaptation audiologique (2) à une mémoire centrale (24) dans laquelle elles sont mémorisées par type en une pluralité de groupes de traitement, une première information sur l'identité de l'utilisateur (14) assortie d'une seconde information sur au moins un premier mode de traitement (50) est codée à un premier instant (t1) dans une première zone d'utilisation (6), le premier mode de traitement (50) correspondant à un traitement actif des données du premier groupe de traitement par l'application d'adaptation audiologique (2) à un instant donné, la première et la seconde information codées au premier instant (t1) sont décodées à un second instant (t2), les données biologiques et/ou audiométriques (20) de l'utilisateur (14) provenant au moins du premier groupe de traitement sont chargées de la mémoire centrale (24) vers l'application d'adaptation audiologique (2), et l'état de traitement (1) de l'application d'adaptation audiologique (2) concernant l'appareil auditif (4) existant au premier instant (t1) est établi sur la base de la première et de la seconde information décodée, les données biologiques et/ou audiométriques (20) de l'utilisateur (14) étant acquises à partir du premier groupe de traitement au moins dans le premier mode de traitement (50).
PCT/EP2018/065190 2018-06-08 2018-06-08 Procédé de transmission d'un état de traitement dans une application d'adaptation audiologique pour un appareil auditif Ceased WO2019233602A1 (fr)

Priority Applications (4)

Application Number Priority Date Filing Date Title
DK18730741.8T DK3649792T3 (da) 2018-06-08 2018-06-08 Fremgangsmåde til overførsel af en bearbejdningstilstand i en audiologisk tilpasningsapplikation til et høreapparat
PCT/EP2018/065190 WO2019233602A1 (fr) 2018-06-08 2018-06-08 Procédé de transmission d'un état de traitement dans une application d'adaptation audiologique pour un appareil auditif
CN201880081448.7A CN111492673B (zh) 2018-06-08 2018-06-08 用于传输处理状态的方法和听力匹配应用系统
EP18730741.8A EP3649792B1 (fr) 2018-06-08 2018-06-08 Procédé de transmission d'un état de traitement dans une application d'adaptation audiologique pour un appareil auditif

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PCT/EP2018/065190 WO2019233602A1 (fr) 2018-06-08 2018-06-08 Procédé de transmission d'un état de traitement dans une application d'adaptation audiologique pour un appareil auditif

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WO2019233602A1 true WO2019233602A1 (fr) 2019-12-12

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP4017029A1 (fr) * 2020-12-16 2022-06-22 Sivantos Pte. Ltd. Système, procédé et programme informatique pour aider interactivement un utilisateur à évaluer une perte auditive
WO2024235478A1 (fr) * 2023-05-15 2024-11-21 Sivantos Pte. Ltd. Procédé de fonctionnement d'un système d'aide auditive

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