Artificial cochlear debugging programming method and system adopting wireless data transmission

A wireless data transmission, cochlear implant technology, applied in ear therapy, medical science, prosthesis, etc., can solve problems such as hidden safety hazards, limiting the range of activities of cochlear implanters, imperfect programming boot technology, etc., to eliminate potential safety hazards, Guaranteed safe effect

Inactive Publication Date: 2010-06-23
上海冠芯电子科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, for cochlear implants, the technology of programming boots is not perfect. One of its disadvantages is that the existence of programming boots limits the range of activities of cochlear implanters during debugging, especially for children who are only a few years old. more obvious
Secondly

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  • Artificial cochlear debugging programming method and system adopting wireless data transmission
  • Artificial cochlear debugging programming method and system adopting wireless data transmission
  • Artificial cochlear debugging programming method and system adopting wireless data transmission

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Embodiment Construction

[0036] see figure 1 , which is a schematic block diagram of a cochlear implant fitting system using wireless data transmission according to the present invention. As shown in the figure, the cochlear implant debugging system using wireless data transmission according to the present invention includes a sound source 1 ; a cochlear implant speech processor 2 , a cochlear implant stimulus decoder 3 ; and a programming debugger 4 connected in sequence. Among them, the cochlear implant speech processor 2 and the cochlear implant stimulus decoder 3 form a complete cochlear implant system; the programming debugging machine 4 is an auxiliary device, and its function is to set suitable working parameters for the cochlear implant speech processor 2 . The sound source 1 generally refers to any sound field. The cochlear artificial stimulation decoder 3 is also called implant. The cochlear implant speech processor 2 and the programming debugging machine 4 realize data exchange through wi...

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Abstract

The invention provides an artificial cochlear debugging programming method and an artificial cochlear debugging programming system adopting wireless data transmission. The artificial cochlear debugging programming system of the invention comprises an artificial cochlear speech processor, an artificial cochlear stimulation decoder and a programming debugger, wherein the artificial cochlear stimulation decoder and the programming debugger are connected with the artificial cochlear speech processor respectively; the artificial cochlear speech processor is connected with the programming debugger through wireless mode; the artificial cochlear speech processor comprises an internal wireless data transmission module and an internal wireless data encoding/decoding module; the programming debugger comprises an external wireless data transmission module and a programming debugging module; and the external wireless data transmission module is in wireless connection with the internal wireless data transmission module to realize wireless data exchange between the artificial cochlear speech processor and the programming debugger. Consequently, the invention provides the safe artificial cochlear debugging programming system which enables the cochlear implant user to act within a large distance and large range during the debugging.

Description

technical field [0001] The invention relates to a cochlear implant, in particular to a debugging and programming method and system for a cochlear implant. Background technique [0002] A cochlear implant is a bionic electronic device that uses electrical stimulation pulses to directly stimulate the residual spiral ganglion of the cochlea to reconstruct hearing for patients with severe or extremely severe deafness. Similar to the variation in hearing loss in hearing aid users, the residual state of the spiral ganglion in patients suitable for cochlear implants also varies greatly among individuals. In order to make the hearing effect of the cochlear implanter as good as possible, it is necessary to tailor the working parameters of the speech processor according to the residual condition of the spiral ganglion of the cochlear implanter, so as to maximize the use of the residual spiral ganglion The role of this work needs to be completed by a clinical tuner through programming...

Claims

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Application Information

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IPC IPC(8): A61F2/18A61F11/04
Inventor 罗丹沈广波吉为民
Owner 上海冠芯电子科技有限公司
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