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    • 1. 发明授权
    • Transcutaneous bone-anchored hearing aid with improved packaging
    • US11611836B2
    • 2023-03-21
    • US16994239
    • 2020-08-14
    • Oticon Medical A/S
    • Erik HolgerssonTomas Johansson
    • H04R25/00H04R9/02
    • A transcutaneous bone-anchored hearing aid device for a recipient patient is described. The transcutaneous bone-anchored hearing aid device for a recipient patient comprising; a receiver coil for transcutaneous receiving of an externally generated communication signal; a signal processor configured for converting the externally generated communication signal into an electrical stimulation signal; an electromagnetic vibrator configured for receiving the electrical stimulation signal, and wherein the electromagnetic vibrator including; a coil unit configured to generate a dynamic magnetic flux based on the electrical stimulation signal; a permanent magnet configured to generate a static magnetic flux; a mass unit connected to the permanent magnet; a bobbin unit configured to engage with the coil unit, the permanent magnet, and the mass unit; a spring unit configured for maintaining an air gap below a moving mass, wherein the moving mass includes the coil unit, the permanent magnet, the mass unit and the bobbin unit, and where the moving mass and the spring unit is configured to generate an acoustical vibration; a vibrator plate configured to receive the acoustical vibration, and where the air gap is between the vibrator plate and a part of the moving mass, and wherein the mass unit has at least one insert configured to receive at least one of a group that includes at least a part of the permanent magnet, the coil unit, the vibrator plate and/or the spring unit.
    • 8. 发明申请
    • MULTIDIMENSIONAL CODING OF STIMULATION PULSES
    • US20220080198A1
    • 2022-03-17
    • US17473165
    • 2021-09-13
    • Oticon Medical A/S
    • Aswin Adris WijetillakeKai DangManuel Segovia Martinez
    • A61N1/36A61N1/05H04R25/00G10L19/02
    • An aspect of the disclosure is to provide a cochlear implant system comprising; a microphone unit configured to receive an acoustical input and provide an audio signal based on the acoustical input, and where the audio signal comprises multiple acoustic parameters, an electrode array including a plurality of electrodes configured to apply a plurality of stimulation pulses to auditory nerve fibers of a recipient of the cochlear implant system based on the audio signal, a memory unit including a plurality of multidimensional perceptual models where each multidimensional perceptual model includes perceptual information as a function of coding parameter groups, a perceptual modelling unit configured to retrieve at least one multidimensional perceptual model of the plurality of multidimensional perceptual models where the perceptual information of the at least one multidimensional perceptual model relates to a perceptual information of interest, an optimization unit configured to select a sequence of coding parameter groups by performing an optimization analysis of the retrieved multidimensional perceptual model and which fulfils at least one objective criterion while adhering to at least one constraint criterion; a signal processor unit including; a filter bank unit configured to process the audio signal into a plurality of band limited audio signals, a mapping unit configured to map each of coding parameter group of the sequence of coding parameter groups to each of the plurality of band limited audio signals based on an acoustic parameter of the multiple acoustic parameters, and a coding unit configured to code each of the plurality of band limited audio signals into a plurality of stimulation pulses based on the mapped coding parameter group and transfer the coded stimulation pulses to the plurality of electrodes.