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    • 6. 发明授权
    • Mechanical fixation system for a prosthetic device
    • 用于假肢装置的机械固定系统
    • US08852251B2
    • 2014-10-07
    • US12167871
    • 2008-07-03
    • John Parker
    • John Parker
    • A61B17/84H04R25/00A61M5/142
    • H04R25/00A61M5/14276A61M2205/05A61M2210/0662H04R25/606H04R25/70H04R2460/13Y10T29/49572
    • A fixation system for a bone conduction device is disclosed. An abutment is coupled to a bone anchor such that vibrations applied to the abutment pass into the bone anchor. The abutment defines a conduction path to the bone anchor such that vibrations applied to the abutment are transferred to the bone anchor. The abutment comprises a plurality of interlocking stacked plates disposed adjacent the bone anchor, wherein the plates form part of the conduction path. The fixation system also comprises a vibratory coupler extending from the bone conduction device, comprising a second conduction surface and a magnet, wherein the magnet attracts to the abutment so as to couple the second conduction surface to the abutment, thereby enabling vibrations to pass through the conduction path. The plates are configured to slide laterally in response to tangential forces incident upon the abutment.
    • 公开了一种用于骨传导装置的固定系统。 邻接件联接到骨锚,使得施加到邻接处的振动进入骨锚。 邻接件限定到骨锚的传导路径,使得施加到邻接处的振动被转移到骨锚。 邻接部包括邻近骨锚固设置的多个互锁叠层板,其中板形成导电路径的一部分。 固定系统还包括从骨传导装置延伸的振动联接器,包括第二传导表面和磁体,其中磁体吸引到邻接部,以将第二传导表面耦合到邻接部,从而使振动能够通过 传导路径。 板被构造成响应于入射到邻接处的切向力而横向滑动。
    • 7. 发明授权
    • Suspension for a hearing device receiver, and a method of producing a hearing device, and a hearing device
    • 用于听力装置接收器的悬架,以及产生听力装置的方法和听力装置
    • US08737657B2
    • 2014-05-27
    • US12944520
    • 2010-11-11
    • Morten Birkmose SøndergaardJan Johansen
    • Morten Birkmose SøndergaardJan Johansen
    • H04R25/00
    • F16F13/00H04R25/00H04R25/604H04R31/00Y10T29/49572
    • A suspension for a hearing device having a receiver includes a first part, a second part, and a vibration isolator positioned between the first and the second parts, and mechanically coupled to the first and second parts, wherein the first part is configured to at least partly enclose the receiver, wherein the second part is configured to at least partly enclose a sound outlet of the hearing device, wherein the vibration isolator comprises an acoustic passage part and a damping part enclosing the acoustic passage, wherein the acoustic passage part provides an acoustic passage between the first and second parts, wherein the damping part of the vibration isolator is asymmetrical along a longitudinal, a transverse axis, or both the longitudinal axis and the transverse axis, of the vibration isolator, and wherein the vibration isolator is freely suspended between the first and second parts.
    • 用于具有接收器的听力装置的悬架包括位于第一和第二部分之间的第一部分,第二部分和隔振器,并且机械地联接到第一和第二部分,其中第一部分被配置为至少 部分地包围接收器,其中第二部分被配置为至少部分地包围听力设备的声音出口,其中隔振器包括声通道部分和封闭声通道的阻尼部分,其中声通道部分提供声学 第一部分和第二部分之间的通道,其中隔振器的阻尼部分沿着纵向轴线,横向轴线或隔振器的纵向轴线和横向轴线两者不对称,并且其中隔振器自由地悬挂在 第一部分和第二部分。
    • 8. 发明授权
    • Bone conduction device fitting
    • 骨传导装置配件
    • US08731205B2
    • 2014-05-20
    • US12935905
    • 2009-03-31
    • John Parker
    • John Parker
    • H04R29/00
    • H04R25/00A61M5/14276A61M2205/05A61M2210/0662H04R25/606H04R25/70H04R2460/13Y10T29/49572
    • Methods and systems for fitting a bone conduction device are provided herein. These methods and systems comprise determining a gain to be used by the bone conduction device in providing signals at a particular frequency. In determining the gain, a fitting system may provide a test sound that is modulated between a first signal provided to a speaker and a second audible signal provided to a bone conduction device. The first and second audible signal may comprise properties such that when the two signals are added together they produce a constant amplitude output. In an embodiment, each of the first and second audible signals may comprise substantially identical frequency characteristics and signal amplitudes, such as, for example, equal amplitude sinusoids centered on the particular frequency for the measurement. When each of these two audible signals are provided to a recipient of the bone conduction device, the recipient may perceive a variance in the intensity of the sounds when the intensity of the two sounds generated by the two audible signals do not give rise to the same psychophysical loudness. If the recipient perceives this variance, the gain of the bone conduction device may be adjusted to increase or decrease the loudness of the sound provided via the bone conduction device to reduce or eliminate the variance.
    • 本文提供了用于装配骨传导装置的方法和系统。 这些方法和系统包括确定骨传导装置在提供特定频率的信号时使用的增益。 在确定增益时,装配系统可以提供在提供给扬声器的第一信号和提供给骨传导装置的第二可听信号之间调制的测试声音。 第一和第二可听信号可以包括这样的属性,使得当两个信号相加在一起时,它们产生恒定幅度输出。 在一个实施例中,第一和第二可听信号中的每一个可以包括基本相同的频率特性和信号幅度,例如以测量的特定频率为中心的等幅度正弦。 当这两个听觉信号中的每一个被提供给骨传导装置的接收者时,当由两个听觉信号产生的两个声音的强度不产生相同时,接收者可以察觉声音强度的变化 心理物理响度 如果接收者感知到这种变化,则可以调节骨传导装置的增益以增加或减少经由骨传导装置提供的声音的响度以减少或消除方差。