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Cochlea nerve phonoreceptor

A technology of sound sensors and cochlea, applied in ear therapy, ear implants, medical science, etc., can solve problems such as unsatisfactory effects, inaccurate pronunciation, and blurred listening, and achieve the goal of promoting speech recognition and learning to speak effect of ability

Pending Publication Date: 2019-09-24
蒋明兴
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Cochlear implant commissioning weeks after installation, patients experience discomfort and discomfort
According to patients who have had cochlear implants installed for more than one year, postlinguistic deafness reported that obedience is blurred, pronunciation is inaccurate, and the phenomenon of wrong answers to questions is not uncommon, and the effect is not very satisfactory.

Method used

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  • Cochlea nerve phonoreceptor
  • Cochlea nerve phonoreceptor

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Experimental program
Comparison scheme
Effect test

Embodiment Construction

[0015] The cochlear nerve sensor of the invention is convenient to use. Wear the behind-the-ear external device behind the ear, figure 1 There is a voice collector (1) formed by an electret microphone in the behind-the-ear shell of the outer part of the middle body. Gain control, frequency band compensation circuit, high efficiency and low distortion, wide audio frequency IC chip power amplifier circuit (2). Small, safe, environmentally friendly polymer, rechargeable lithium battery power supply(3). Acoustic→electrical→electromagnetic wave conversion, electromagnetic wave transducing transmitter (4). figure 2 Under the monitoring of medical instruments, the doctor injects it into the designated part of the cochlea, which has the function of absorbing and converting electromagnetic waves→mechanical energy, passive, flexible, multi-component nano-magnetic crystal composite receiving film (5). The installation of all cochlear nerve sensors is completed.

[0016] Turn on the ...

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PUM

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Abstract

The invention relates to a cochlea nerve phonoreceptor. The cochlea nerve phonoreceptor adopts the principle that the electricity and the magnetism coexist and are alternated, and an electromagnetic wave is an energy composite wave in which an electric field and a magnetic field are in the same phase and are also perpendicular. Through the adoption of the cochlea nerve phonoreceptor disclosed by the invention, a conventional mechanism, a conventional architecture and a conventional mode of an artificial cochlea (also called an electrical cochlea ) are overturned by one action. The cochlea nerve phonoreceptor comprises an in vitro part and an in vivo part, wherein the in vitro part comprises an IC chip power amplification circuit (2) having a function of transforming the voice to the electricity and to the electromagnetic wave and an electromagnetic wave energy exchanging emitter (4), and the in vivo part comprises a passive and flexible polynary nanometer magnetocrystalline composite receiving membrane (5) having a function of transforming the absorbed electromagnetic wave to mechanical energy; and the in vitro part and the in vivo part are in wireless coupling; when the polynary nanometer magnetocrystalline composite receiving membrane (5) receives an electromagnetic voice frequency signal of the energy exchanging emitter (4), the electromagnetic energy can be transformed into mechanical energy; synchronous voice frequency resonance can be generated in cochlear endolymph fluid and fibers on the periphery of a basilar membrane; and bioelectricity is generated through the vibration of the fibers on the periphery of the basilar membrane, and is conducted to acoustic nerve cells to enable the acoustic nerve cells to be excited, and the brain stem subcortical center is subjected to decoding and spectrum recognizing, so that a user can percept the voice and obtain hearing. According to the cochlea nerve phonoreceptor disclosed by the invention, an invasive surgery is not needed, so that pain caused by embedding a coil, a magnetism block, an electrode and a receiving decoder is not generated, and operative complications and sequela are not generated; and a patient can quickly obtain the voice sense and the hearing, so that the speech recognition capacity and the language learning capacity of the patient are effectively promoted.

Description

technical field [0001] The cochlear nerve sensor of the present invention has an external part with the function of converting sound→electricity→electromagnetic wave, an IC chip power amplifier circuit (2), and an electromagnetic wave transducing transmitter (4). The body part has a passive, electromagnetic wave→mechanical energy conversion and absorption function, and a multi-component nano-magnetic crystal composite receiving film (5), and the two parts are wirelessly connected. The multi-component nano-magnetic crystal composite receiving membrane (5) absorbs sound→electricity→electromagnetic waves outside the body, and after the audio signal of the electromagnetic wave transducing transmitter (4), it will perform electromagnetic wave→mechanical energy transduction to drive the lymph fluid in the cochlea and the periphery of the basilar membrane The fibers produce audio resonance, and the bioelectricity generated by the vibration is transmitted to the auditory nerve cells t...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61F11/04A61F2/18
CPCA61F2/18A61F11/045A61F2002/183
Inventor 蒋明兴
Owner 蒋明兴