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    • 3. 发明授权
    • System and method for remotely administered, interactive hearing tests
    • 用于远程管理,互动听力测试的系统和方法
    • US06840908B2
    • 2005-01-11
    • US09977019
    • 2001-10-12
    • Brent W. EdwardsChristoph MenzelSunil Puria
    • Brent W. EdwardsChristoph MenzelSunil Puria
    • A61B5/12A61B5/00
    • A61B5/121A61B5/7465H04R25/70
    • A technique allows a web site visitor, or other user of a consumer electronics device that is remote from a hearing test server, to measure their hearing loss in an efficient and consistent way which is self-administered, and to store the measurements as a hearing profile which can be used for customizing audio products. The technique includes a method for conducting a hearing test using a computer program. The method includes establishing a communication channel between a remote device and server in a communication network. A first component of the computer program is executed on the server, and a second component of the computer program is executed at the remote device. The computer program according to the invention comprises a routine to manage interaction via an interface on the remote device, and adaptively select stimuli based upon the interaction to be produced at the remote device according to a convergent process to determine a hearing characteristic. The interaction comprises an N-alternative forced choice interaction in one embodiment. The convergent process comprises a staircase function or a maximum likelihood function in alternative embodiments of the invention.
    • 技术允许远程听力测试服务器的消费电子设备的网站访问者或其他用户以自我管理的有效且一致的方式测量其听力损失,并将测量值存储为听觉 可用于定制音频产品的配置文件。 该技术包括使用计算机程序进行听力测试的方法。 该方法包括在通信网络中的远程设备和服务器之间建立通信信道。 计算机程序的第一个组件在服务器上执行,计算机程序的第二个组件在远程设备上执行。 根据本发明的计算机程序包括经由远程设备上的接口来管理交互的例程,并且根据收敛过程自动选择基于要在远程设备产生的交互的刺激来确定听觉特性。 在一个实施例中,交互包括N替代强制选择交互。 收敛过程包括在本发明的替代实施例中的阶梯函数或最大似然函数。
    • 6. 发明授权
    • Optically coupled active ossicular replacement prosthesis
    • 光学耦合活体视网膜替代假体
    • US09544700B2
    • 2017-01-10
    • US12814998
    • 2010-06-14
    • Sunil PuriaRodney C. Perkins
    • Sunil PuriaRodney C. Perkins
    • H04R25/00A61F2/18
    • H04R25/606A61F2002/183
    • An active ossicular replacement device is configured to couple the malleus to the stapes, and conduct sound through the vibratory structures of the ear in response to the transmitted electromagnetic energy. The electromagnetic energy may comprise light so as to decrease interference from sources of noise external to the user. The prosthetic device may comprise an assembly that can be implanted in the middle ear in a manner that simplifies surgery. The assembly may comprise a narrow cross-sectional profile such that the assembly can be positioned in the middle ear through an incision in the eardrum, for example without cutting bone that defines the shape of the ear canal or the shape of the middle ear. The prosthetic device can be sized to the user based on a measurement of the ear.
    • 活动性视网膜替换装置被配置为将槌连接到镫骨,并且响应于所传送的电磁能量,通过耳朵的振动结构传导声音。 电磁能可以包括光,以便减少用户外部的噪声源的干扰。 假体装置可以包括可以简化手术的方式植入中耳的组件。 组件可以包括窄的横截面轮廓,使得组件可以通过鼓膜中的切口定位在中耳中,例如不切割限定耳道形状的骨头或中耳的形状。 基于耳朵的测量,修复装置可以根据使用者的尺寸来确定。