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    • 63. 发明申请
    • IMPLANTABLE MEDICAL DEVICE COMPRISING A WIRELESS TRANSCUTANEOUS LINK
    • US20210337324A1
    • 2021-10-28
    • US17371802
    • 2021-07-09
    • Oticon Medical A/S
    • Bengt BERN
    • H04R25/00A61N1/05A61B5/00H01Q7/06H01F38/14A61N1/372A61N1/378H04R1/10A44C7/00A61N1/375A61M5/172A61N1/36A61M5/142A61M60/148
    • According to an embodiment, a medical device is disclosed. The medical device includes an external unit and an implantable unit. The external unit includes an electronic unit operationally coupled to a transmitter coil that is configured transmit power and/or data signal over a wireless transcutaneous link, a coil unit comprising a loop structure with the transmitter coil being wound around and along at least a part of length of the loop structure, and a fixation unit configured to attach the loop structure to a user's body i) proximal to an implantable receiver coil that is configured to be implanted within a body part, and ii) around a body part of a user such that a part of the body part is positioned in a hollow section of the loop structure. The implantable unit includes the implantable receiver coil configured to receive the power and/or data signal over the wireless transcutaneous link, a processing unit configured to i) process the received data signal to control functionalities of at least one of the components of the implantable unit, and/or ii) utilize the received power for operation of at least one of the components of the implantable unit. The wireless transcutaneous link includes a coupling between the transmitter coil and the receiver coil, and when the loop structure is attached using the fixation unit, at least a substantial number of magnetic field lines generated in response to excitation of the transmitter coil passes through the implantable receiver coil.
    • 66. 发明申请
    • TRANSCUTANEOUS BONE-ANCHORED HEARING AID WITH IMPROVED PACKAGING
    • US20210051425A1
    • 2021-02-18
    • 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.
    • 70. 发明申请
    • COCHLEAR STIMULATION SYSTEM WITH AN IMPROVED METHOD FOR DETERMINING A TEMPORAL FINE STRUCTURE PARAMETER
    • US20200045480A1
    • 2020-02-06
    • US16525799
    • 2019-07-30
    • Oticon Medical A/S
    • Manuel SEGOVIA MARTINEZJulian SKOVGAARDPierre STAHLKai DANGAswin WIJETILLAKE
    • H04R25/00
    • The invention relates to a cochlear stimulation system for determining a Temporal Fine Structure (TFS) parameter of a spectral component of an incoming acoustic signal. The system comprising; a transducer configured for receiving the incoming acoustic signal, and wherein a sampled audio signal of length N samples is provided based on the incoming acoustic signal, a storing unit including a plurality of window frequency differences and/or a plurality of window energy level differences generated from a window spectrum of a window function of length N, a window analyzer for providing a plurality of spectrum samples by performing a time to frequency transformation and a multiplication of the sampled audio signal with the window function in a time domain, or a convolution of the window spectrum in frequency domain and the sampled audio signal in frequency domain. The system further comprises a signal processor for estimating the Temporal Fine Structure parameter of the full frequency range of the sampled audio signal, and wherein the Temporal Fine Structure parameter is estimated by locating a main spectrum sample of the plurality of spectrum samples having a maximum energy level, estimating for a group of spectrum samples of the plurality of spectrum samples an energy level difference for one or more of the spectrum samples of the group of spectrum samples, within a range of frequencies centered around the main spectrum sample, and determining the Temporal Fine Structure parameter based on the energy level difference for one or more of the spectrum samples of the group of spectrum samples and the window function.