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    • 44. 发明申请
    • AUTOMATIC SOUND OPTIMIZER
    • 自动声音优化器
    • WO2014020528A3
    • 2014-04-17
    • PCT/IB2013056234
    • 2013-07-29
    • COCHLEAR LTD
    • HILLBRATT MARTIN
    • H04R25/00
    • H04R25/505A61N1/0541A61N1/36036H04R25/43H04R2225/43
    • Disclosed herein are systems and methods that help to optimize the sound quality produced when a sound processing mode is enabled in an audio device, such as a hearing prosthesis. When the sound processing mode is enabled, a sound processor in the audio device will create a candidate transformed signal based on a default set of parameters associated with the sound processing mode (i.e. a candidate signal processing function). Further, the sound processor will create a reference transformed signal based on the same enabled sound processing mode, but with a varied set of parameters (i.e. a modified signal processing function). The sound processor will then compare the candidate transformed signal to the reference transformed signal to determine which signal has a higher quality. The device then creates an output based on the higher quality signal.
    • 这里公开的系统和方法有助于优化在音频设备(例如听觉假体)中启用声音处理模式时产生的声音质量。 当声音处理模式被使能时,音频设备中的声音处理器将基于与声音处理模式(即,候选信号处理功能)相关联的默认参数组来创建候选变换信号。 此外,声音处理器将基于相同的启用声音处理模式,但是具有不同的参数集合(即修改的信号处理功能)来创建参考变换信号。 然后,声音处理器将候选变换信号与参考变换信号进行比较,以确定哪个信号具有更高的质量。 然后,设备基于较高质量的信号创建输出。
    • 46. 发明申请
    • FITTING BILATERAL HEARING PROSTHESES
    • 适合双侧听力假肢
    • WO2014027264A2
    • 2014-02-20
    • PCT/IB2013056007
    • 2013-07-22
    • COCHLEAR LTD
    • SMITH ZACHARY
    • A61N1/36032A61N1/0541A61N1/36036H04R25/552H04R25/606H04R25/70
    • Disclosed herein are methods, systems, and computing devices for fitting bilateral hearing prostheses. An example method includes sending a signal to a first hearing prosthesis and a second hearing prosthesis. The signal causes the first hearing prosthesis to deliver a first stimulus to a body part in a left auditory pathway of a user. The signal also causes the second hearing prosthesis to deliver a second stimulus to a body part in a right auditory pathway of the user. The first stimulus and the second stimulus cause the user to perceive a sound and are delivered approximately simultaneously. The method also includes receiving an indication of a perception of the sound by the user. The method further includes determining an adjustment to at least one of the first stimulus or the second stimulus based on the perception of the sound by the user.
    • 本文公开了用于装配双侧听力假体的方法,系统和计算设备。 示例方法包括向第一听力假体和第二听力假体发送信号。 该信号使得第一听力假体将第一刺激传递到用户的左听觉通路中的身体部分。 该信号还使第二听力假体将第二刺激传递给用户的右听觉通路中的身体部分。 第一个刺激和第二个刺激使用户感知到声音并且几乎同时传送。 该方法还包括接收用户对声音的感知的指示。 该方法还包括基于用户对声音的感知来确定对第一刺激或第二刺激中的至少一个的调整。
    • 49. 发明申请
    • COUPLING SYSTEMS FOR IMPLANTABLE PROSTHESIS COMPONENTS
    • 可植入部件的联接系统
    • WO2013068919A3
    • 2013-07-18
    • PCT/IB2012056185
    • 2012-11-06
    • COCHLEAR LTDVERMEIREN JANKENNES PATRIKDUMM GERALDEVERAERT KARL
    • VERMEIREN JANKENNES PATRIKDUMM GERALDEVERAERT KARL
    • A61F2/18A61F2/02A61F2/04
    • H04R25/606H04R2201/003H04R2225/67H04R2460/13
    • Disclosed are coupling systems for implantable prosthesis components, including implantable microphones and implantable actuators associated with prostheses including hearing prostheses. Some embodiments includea flexible elongate member having a first end mechanically coupled to a vibrating structure of a prosthesis recipient's body and a second end secured to a diaphragm, where the flexible elongate member is configured to transfer vibrations between the vibrating structure and the diaphragm. Microphone embodiments further include a vibration sensor configured to detect vibrations of the diaphragm and generate electrical signals based at least in part on the detected vibrations. Actuator embodiments include an actuation mechanism configured to apply mechanical vibration signals to a vibrating structure of the recipient's body via the elongate member by causing the first diaphragm to vibrate, where the mechanical vibration signals are based on electrical signals received from a sound processor associated with the prosthesis.
    • 公开了用于可植入假体部件的联接系统,包括可植入麦克风和与包括听觉假体在内的假体相关联的可植入致动器。 一些实施例包括柔性细长构件,其具有机械联接到假体受体的本体的振动结构的第一端和固定到隔膜的第二端,其中柔性细长构件构造成在振动结构和隔膜之间传递振动。 麦克风实施例还包括一个振动传感器,该振动传感器被配置为检测振动膜的振动并且至少部分地基于检测到的振动产生电信号。 致动器实施例包括致动机构,其构造成通过使第一隔膜振动而经由细长构件将机械振动信号施加到接收体的振动结构,其中机械振动信号基于从与声音处理器相关联的声音处理器接收的电信号 假体。