METHOD OF OPERATING A HEARING INSTRUMENT BASED ON AN ESTIMATION OF PRESENT COGNITIVE LOAD OF A USER AND A HEARING AID SYSTEM
    2.
    发明申请
    METHOD OF OPERATING A HEARING INSTRUMENT BASED ON AN ESTIMATION OF PRESENT COGNITIVE LOAD OF A USER AND A HEARING AID SYSTEM 审中-公开
    基于对用户和听力辅助系统的现有认知负载的估计来操作听觉仪器的方法

    公开(公告)号:US20160080876A1

    公开(公告)日:2016-03-17

    申请号:US14948644

    申请日:2015-11-23

    Applicant: Oticon A/S

    Inventor: Thomas LUNNER

    Abstract: A method of operating a hearing instrument for processing an input sound and to provide an output stimulus according to a user's particular needs, and related system, computer readable medium and data processing system. An object is to provide an improved customization of a hearing instrument. The method includes the steps a) providing an estimate of the present cognitive load of the user; b) providing processing of an input signal originating from the input sound according to a user's particular needs; and c) adapting the processing in dependence of the estimate the present cognitive load of the user. The estimate of the present cognitive load of a user is produced by in-situ direct measures of cognitive load (e.g. based on EEG-measurements, body temperature, etc.) or by an on-line cognitive model in the hearing aid system whose parameters have been preferably adjusted to fit to the individual user.

    Abstract translation: 一种操作听力仪器的方法,用于处理输入声音并根据用户的特定需要提供输出激励,以及相关系统,计算机可读介质和数据处理系统。 目的是提供一种改进的听力仪器定制。 该方法包括以下步骤:a)提供用户当前认知负荷的估计; b)根据用户的特定需要提供源自输入声音的输入信号的处理; 以及c)根据所述估计来适应所述用户的当前认知负荷的处理。 用户的目前认知负荷的估计是通过原位直接测量认知负荷(例如,基于EEG测量,体温等)或在助听器系统中的在线认知模型产生的,其参数 已被优选地调整以适合于个体用户。

    AUTOMATIC REAL-TIME HEARING AID FITTING BASED ON AUDITORY EVOKED POTENTIALS
    3.
    发明申请
    AUTOMATIC REAL-TIME HEARING AID FITTING BASED ON AUDITORY EVOKED POTENTIALS 有权
    基于审计激励潜力的自动实时听力辅助配件

    公开(公告)号:US20130101128A1

    公开(公告)日:2013-04-25

    申请号:US13651032

    申请日:2012-10-12

    Applicant: Oticon A/S

    Abstract: A hearing aid includes at least one electrode located at a surface of a housing of the hearing aid to allow the electrodes to contact the skin of a user during use of the hearing aid, at least one electrode being adapted to pick up a low voltage signal from the user's brain, an amplifier unit operationally connected to the electrode(s) and adapted for amplifying the low voltage signal(s) to provide amplified brain signal(s), and a signal processing unit adapted to process the amplified brain signal(s) to provide a processed brain signal as well as to apply a time and frequency dependent gain to an input audio signal and to provide a processed audio output signal. Also a method of operating a hearing aid and a hearing aid system.

    Abstract translation: 助听器包括位于助听器的壳体的表面处的至少一个电极,以允许电极在助听器的使用期间与使用者的皮肤接触,至少一个电极适于拾取低电压信号 来自用户的大脑的放大器单元,其可操作地连接到所述电极并适于放大所述低电压信号以提供放大的大脑信号;以及信号处理单元,适于处理放大的脑信号 )以提供经处理的大脑信号,以及将时间和频率相关增益应用于输入音频信号并提供经处理的音频输出信号。 还有一种操作助听器和助听器系统的方法。

    METHOD FOR ADJUSTING HEARING AID CONFIGURATION BASED ON PUPILLARY INFORMATION

    公开(公告)号:US20190141458A1

    公开(公告)日:2019-05-09

    申请号:US16180818

    申请日:2018-11-05

    Applicant: Oticon A/S

    Abstract: The disclosure presents a hearing device system and a method for adjusting hearing aid configuration, where a user is wearing a hearing device, the method comprising transmitting a first background sound signal to the hearing device, transmitting a first sound pattern to the hearing device, evaluating, via a camera unit, a first pupillary information of a first eye of the user in response to a first sound scene comprising the first background sound signal and the first sound pattern. The evaluating may be repeated providing at least a second pupillary information of the first eye of the user in response to a second sound scene being different from the first sound scene, and where an averaged pupillary information is provided based on an average between the first pupillary information and at least the second pupillary information, and selecting a pupillary fitting model based on the averaged pupillary information, determining a first parameter and at least a second parameter of the pupillary fitting model based on the averaged pupillary information, classifying the averaged pupillary information into either a first category or at least a second category based on the first parameter and the at least second parameter, and wherein the hearing aid configuration is adjusted if the averaged pupillary information is in the first category, and the hearing aid configuration is not adjusted if the averaged pupillary information is in the second category.

    METHODS AND APPARATUS FOR PROCESSING AUDIO SIGNALS
    9.
    发明申请
    METHODS AND APPARATUS FOR PROCESSING AUDIO SIGNALS 审中-公开
    处理音频信号的方法和设备

    公开(公告)号:US20150333717A1

    公开(公告)日:2015-11-19

    申请号:US14808705

    申请日:2015-07-24

    Applicant: OTICON A/S

    Abstract: A method for processing an audio signal (i(t)), comprises: receiving a first set (x(t)) of time-varying signals representing a first sound comprised in the audio signal (i(t)), the first set (x(t)) of time-varying signals comprising an amplitude modulation signal (a(t)), a carrier frequency signal (fc(t)), a pitch signal (f0(t)) and an FM index signal (h(t)); and modifying the first set (x(t)) of time-varying signals by modifying the amplitude of the FM index signal (h(t)), thereby providing a first modified set (x′(t)) of time-varying signals. The resulting first modified set (x′(t)) of time-varying signals may subsequently be modulated to provide an audio output signal.

    Abstract translation: 一种用于处理音频信号(i(t))的方法,包括:接收表示音频信号(i(t))中包含的第一声音的时变信号的第一组(x(t)),第一组 包括幅度调制信号(a(t)),载波频率信号(fc(t)),音调信号(f0(t))和FM索引信号(h)的时变信号(x(t)) (t)); 以及通过修改FM索引信号(h(t))的幅度来修改时变信号的第一集合(x(t)),从而提供时变信号的第一修改集(x'(t)) 。 可以随后调制所得到的时变信号的第一修改集(x'(t))以提供音频输出信号。

    HEARING DEVICE WITH EXTERNAL ELECTRODE
    10.
    发明申请
    HEARING DEVICE WITH EXTERNAL ELECTRODE 有权
    具有外部电极的听觉装置

    公开(公告)号:US20130315425A1

    公开(公告)日:2013-11-28

    申请号:US13896135

    申请日:2013-05-16

    Applicant: Oticon A/S

    Inventor: Thomas LUNNER

    Abstract: A hearing device has a housing and a first electrode arranged to abut the skin of the individual. The hearing device further comprises at least two different elements selected from the group comprising: a brain-wave measurement circuit receiving measurement signals from the first electrode and from a second electrode arranged to abut the skin of the individual; a communication circuit receiving communication signals from and/or transmitting communication signals to the first electrode; a touch-sensing circuit transmitting sensing signals to the first electrode; a thermoelectric generator thermally connected to the outer surface of the housing mainly through the first electrode; and a charge control circuit sinking a charging current in dependence on a voltage across the first electrode and a third electrode.

    Abstract translation: 听力装置具有壳体和布置成邻接个体皮肤的第一电极。 听力装置还包括从包括以下的组中选择的至少两种不同的元件:脑波测量电路,接收来自第一电极的测量信号和布置成邻接个体皮肤的第二电极; 从第一电极接收和/或发送通信信号的通信信号的通信电路; 触摸感测电路将感测信号发送到第一电极; 热电发生器主要通过第一电极热连接到壳体的外表面; 以及充电控制电路,其根据第一电极和第三电极两端的电压来吸收充电电流。

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