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Low-cost, four-channel cochlear implant

  • US 5,749,912 A
  • Filed: 08/26/1996
  • Issued: 05/12/1998
  • Est. Priority Date: 10/24/1994
  • Status: Expired due to Fees
First Claim
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1. A low-cost, multi-channel cochlear stimulation system comprising:

  • a passive, implantable receiver/electrode array comprising;

    an elongate silicone rubber carrier in which is embedded a plurality of coil assemblies at a proximal end of the carrier and a corresponding plurality of electrodes at a distal end of the carrier,the distal end of the carrier being adapted for insertion into a human cochlea, with the plurality of electrodes being spaced apart along the distal end,the proximal end of the carrier holding the plurality of coil assemblies in a predetermined pattern,the coil assemblies each comprising a prescribed number of turns of a first wire wound to form a coil,a first end of the first wire of each coil assembly being bonded to a second wire that extends the length of the elongate carrier inside of the carrier to a respective electrode at the distal end of the carrier,second end of the first wire of each coil assembly being bonded to a third wire that extends less than the length of the elongate carrier to a common electrode exposed at the surface of the carrier,each electrode at the distal end of the carrier comprising a ball formed by flaming a distal end of the second wire, a portion of which ball is exposed through the surface of the carrier,implantable alignment means for aligning the plurality of coil assemblies with corresponding external coils, andan hermetically sealed case made from a biocompatible material that houses said coil assemblies; and

    an external wearable processor comprising;

    microphone means for generating an electrical signal representative of sensed audible sounds,filter means for dividing the electrical signal into a plurality of frequency bands, thereby creating a corresponding plurality of frequency band signals, the number of frequency bands being the same as the number of implanted coil assemblies and electrodes, whereby there is an implanted coil assembly and corresponding electrode for each filter means,speech processing means for processing each of the plurality of frequency band signals in accordance with a prescribed speech processing strategy to produce respective biphasic stimulation signals, andan external headpiece having a plurality of external coils, each connected to receive one of the respective biphasic stimulation signals,external alignment means for positioning the external headpiece in alignment with the implantable alignment means to align each of the external coils of the external headpiece with respective ones of the plurality of coil assemblies of the implantable receiver/electrode array;

    whereby the biphasic stimulation signals received by each of the plurality of external coils are inductively coupled to respective ones of the plurality of implantable coil assemblies, thereby causing a biphasic stimulation current to flow between respective ones of the implantable electrodes and the common electrode.

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