WO2015061925A1 - 基于无线移动通讯平台的互动式听力诊疗系统 - Google Patents

基于无线移动通讯平台的互动式听力诊疗系统 Download PDF

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Publication number
WO2015061925A1
WO2015061925A1 PCT/CN2013/001364 CN2013001364W WO2015061925A1 WO 2015061925 A1 WO2015061925 A1 WO 2015061925A1 CN 2013001364 W CN2013001364 W CN 2013001364W WO 2015061925 A1 WO2015061925 A1 WO 2015061925A1
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Prior art keywords
module
treatment
unit
hearing
tinnitus
Prior art date
Application number
PCT/CN2013/001364
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English (en)
French (fr)
Inventor
赵勇
赵金萍
赵兵兵
徐红卫
Original Assignee
江苏贝泰福医疗科技有限公司
赵勇
赵金萍
赵兵兵
徐红卫
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Application filed by 江苏贝泰福医疗科技有限公司, 赵勇, 赵金萍, 赵兵兵, 徐红卫 filed Critical 江苏贝泰福医疗科技有限公司
Priority to JP2016526071A priority Critical patent/JP6329627B2/ja
Priority to KR1020167007383A priority patent/KR101755569B1/ko
Priority to US15/028,946 priority patent/US20160249835A1/en
Priority to EP13896491.1A priority patent/EP3064135A4/en
Publication of WO2015061925A1 publication Critical patent/WO2015061925A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/0002Remote monitoring of patients using telemetry, e.g. transmission of vital signals via a communication network
    • A61B5/0015Remote monitoring of patients using telemetry, e.g. transmission of vital signals via a communication network characterised by features of the telemetry system
    • A61B5/0022Monitoring a patient using a global network, e.g. telephone networks, internet
    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H40/00ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices
    • G16H40/60ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices
    • G16H40/67ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for remote operation
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/12Audiometering
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/12Audiometering
    • A61B5/121Audiometering evaluating hearing capacity
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/12Audiometering
    • A61B5/128Audiometering evaluating tinnitus
    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H10/00ICT specially adapted for the handling or processing of patient-related medical or healthcare data
    • G16H10/60ICT specially adapted for the handling or processing of patient-related medical or healthcare data for patient-specific data, e.g. for electronic patient records
    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H40/00ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices
    • G16H40/40ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices for the management of medical equipment or devices, e.g. scheduling maintenance or upgrades
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04RLOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; DEAF-AID SETS; PUBLIC ADDRESS SYSTEMS
    • H04R25/00Deaf-aid sets, i.e. electro-acoustic or electro-mechanical hearing aids; Electric tinnitus maskers providing an auditory perception
    • H04R25/55Deaf-aid sets, i.e. electro-acoustic or electro-mechanical hearing aids; Electric tinnitus maskers providing an auditory perception using an external connection, either wireless or wired
    • H04R25/558Remote control, e.g. of amplification, frequency
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04RLOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; DEAF-AID SETS; PUBLIC ADDRESS SYSTEMS
    • H04R25/00Deaf-aid sets, i.e. electro-acoustic or electro-mechanical hearing aids; Electric tinnitus maskers providing an auditory perception
    • H04R25/70Adaptation of deaf aid to hearing loss, e.g. initial electronic fitting
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04RLOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; DEAF-AID SETS; PUBLIC ADDRESS SYSTEMS
    • H04R25/00Deaf-aid sets, i.e. electro-acoustic or electro-mechanical hearing aids; Electric tinnitus maskers providing an auditory perception
    • H04R25/75Electric tinnitus maskers providing an auditory perception
    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H50/00ICT specially adapted for medical diagnosis, medical simulation or medical data mining; ICT specially adapted for detecting, monitoring or modelling epidemics or pandemics
    • G16H50/20ICT specially adapted for medical diagnosis, medical simulation or medical data mining; ICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for computer-aided diagnosis, e.g. based on medical expert systems
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04RLOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; DEAF-AID SETS; PUBLIC ADDRESS SYSTEMS
    • H04R2225/00Details of deaf aids covered by H04R25/00, not provided for in any of its subgroups
    • H04R2225/55Communication between hearing aids and external devices via a network for data exchange

Definitions

  • the invention relates to the field of hearing diagnosis and treatment systems, in particular to an interactive hearing diagnosis and treatment system based on a wireless mobile communication platform. Background technique
  • tinnitus or cranial sound in the American Hearing Society refers to the auditory perception of non-external sounds, the medical terminology of the sound in the ear (one or two) or in the brain when there is no external sound. Expressions such as snoring, roaring, whistling, squeaking or clicking sounds, intermittent, continuous, single-tone, multi-tone, constant or variable intensity. Digital hearing aids and digital tinnitus therapy devices need to be in the professional service center, professional technicians to personalize the hearing test, tinnitus diagnosis, and then fitting programming and debugging, in order to wear, this is the traditional method, has the following shortcomings Or weakness:
  • the technical problem to be solved by the present invention is to provide an interactive hearing diagnosis and treatment system based on a wireless mobile communication platform, which can be assisted by one or more experts for remote hearing diagnosis and treatment, or by a person. Or a number of patients self-perceived for hearing diagnosis and treatment, transmitting the results of the diagnosis and treatment data to the cloud data center to provide expert analysis and remote use, or remotely requesting experts to help with hearing diagnosis and treatment, saving a lot of time, enabling the need to go out without leaving the door Experts help patients with diagnosis and treatment, especially for patients who are inconvenient to seek medical treatment in remote areas.
  • a technical solution adopted by the present invention is: providing an interactive hearing diagnosis and treatment system based on a wireless mobile communication platform, including a smart hearing diagnosis instrument for patients, an intelligent hearing diagnosis and treatment instrument for experts, and a cloud data center, One or more experts operating one or more experts to connect to the cloud data center through a wireless mobile communication platform using a smart hearing medical instrument, and the cloud data center is connected to one or more persons through a wireless mobile communication platform
  • One or more patients used by the patient use a smart hearing diagnosis instrument, and the internal structure of the patient intelligent hearing diagnosis and treatment instrument includes a sound player module, a first hearing test diagnosis module, a hearing aid fitting prescription module, and a first tinnitus test.
  • the diagnosis module, the tinnitus treatment prescription module, the first wireless communication module and the first operating system module, the first wireless communication module respectively communicates with the hearing aid fitting prescription module, the tinnitus treatment prescription module and the first operating system module,
  • the first operating system module and the first The first test module and the first tinnitus test diagnostic module are respectively connected to the sound player module, wherein the first wireless communication is performed.
  • the module is also in communication with the cloud data center;
  • the internal structure of the expert intelligent hearing and diagnosing device includes a composite sound generator module, a second hearing test diagnostic module, a hearing aid fitting module, a second tinnitus test diagnostic module, and tinnitus treatment.
  • the second wireless communication module is in communication with the second operating system module, and the second operating system module and the composite sound generator module respectively Second hearing test diagnostic module, hearing aid fitting
  • the module, the second tinnitus test diagnostic module, and the deafness treatment programming module perform a communication connection, wherein the second wireless communication module further communicates with the cloud data center;
  • the internal structure of the cloud data center includes a data processing module
  • the data storage module, the expert library module, the communication center module and the wireless control module, the wireless control module is respectively connected with the data processing module, the data storage module, the expert library module, and the communication center module.
  • one or more patients obtain self-perceived hearing diagnosis and treatment data from the one or more patients using the intelligent hearing diagnosis and treatment device, and the diagnosis and treatment result data.
  • the wireless data communication platform is transmitted to the cloud data center, and the cloud data center is transmitted to the expert through the wireless mobile communication platform to enable the expert to remotely analyze or use the remote diagnosis and treatment.
  • the wireless mobile communication platform is a GPRS and/or Android system.
  • the wireless control module includes a video and audio control system that communicates with each other.
  • the patient uses a smart hearing medical device as a mobile service platform, including a display screen, and the main interface of the display screen includes a tinnitus treatment unit, a treatment plan unit, a treatment record unit, and Tinnitus reporting unit,
  • Tinnitus treatment unit Plays and outputs the left ear volume, right ear volume, and overall volume to the headset;
  • the treatment plan unit the duration or treatment of setting the treatment, the selection and mixing mode of the tinnitus treatment plan, and the order and duration of the treatment of the audio tone, and the above-mentioned settings are performed independently of the binaural or the left and right ears;
  • Treatment Recording Unit Record the treatment plan used, the date, time and duration of treatment, or record the removal treatment;
  • Tinnitus reporting unit Converts the test report and treatment report, displays the order, and extracts the current report to the root directory of the memory card for saving or printing.
  • the patient intelligent hearing and treating apparatus is further externally provided with one or more of a headphone, a printer, a hearing aid, and a tinnitus therapeutic apparatus.
  • the earphone is a full frequency earphone, and the frequency range of the earphone is 0-20 kHz.
  • the expert intelligent hearing diagnosis and treatment instrument is a mobile service platform device, including a display and a pillow body, and the main interface of the display includes a test and test module and a system operation module.
  • the test test module is located at the right end of the main interface, and the system operation module is located at the left end of the main interface.
  • the test and test module includes a hearing test unit, a tinnitus test unit, a tinnitus treatment unit, an ear canal inspection unit, and a hearing aid fitting unit.
  • Hearing test unit Output audiograms using air conduction or bone conduction, and save audiograms; Tinnitus test unit: Use multi-channel sonar synthesis, pitch curve fitting and background audio tone database to retrieve one of these three methods
  • pitch curve fitting including wavenumber and waveform setting for a given time period
  • background audio tone database It is the data stored or downloaded from the cloud data center.
  • the parameters such as adjustment frequency, loudness, component removal or addition are adjusted.
  • Tinnitus treatment unit Generate patient diagnosed cases and mask treatment for patients
  • Ear canal inspection unit The ear canal digital image is used to check the appearance of the ear canal and the tympanic membrane; the hearing aid fitting unit: according to the patient's audiometry corresponding patient derived fitting information, and then select the appropriate hearing aid product for the patient, and according to the diagnosis of tinnitus The data is accurately adjusted for positioning or programming of the tinnitus hearing aid or tinnitus therapy device.
  • the system operation module includes a new unit, a file unit, a test report unit, a treatment report unit, a client unit, a deletion unit, and an exit unit, and a new unit: for adding a patient File information and record the degree of tinnitus;
  • File unit View or modify the patient's file information
  • Test Reporting Unit The test report generates a variety of test report templates as required;
  • Treatment reporting unit Produce a corresponding treatment report based on the test report
  • Delete unit delete multiple data information
  • the beneficial effects of the present invention are:
  • the interactive hearing diagnosis and treatment system based on the wireless mobile communication platform of the present invention may be assisted by one or more experts for remote hearing diagnosis and treatment, or by one or more Many patients self-perceived for hearing diagnosis and treatment, transmitted the diagnosis and treatment results data to the cloud data center to provide expert analysis and remote use, or remotely request experts to help with hearing diagnosis and treatment.
  • the effectiveness of diagnosis and treatment of tinnitus indications is about 80%, saving a lot of Time, which enables experts to help patients with diagnosis and treatment without going out, especially for patients who are inconvenient to seek medical treatment in remote areas.
  • FIG. 1 is an interactive hearing diagnosis based on the wireless mobile communication platform of the present invention.
  • Figure 2 is a block diagram of the internal structure of the intelligent hearing diagnosis instrument for patients in Figure 1;
  • Figure 3 is a block diagram of the internal structure of the intelligent hearing diagnosis and treatment instrument for the expert in Figure 1;
  • Figure 4 is a block diagram of Figure 1;
  • a block diagram inside the cloud data center. 5 is a schematic diagram of the main interface of the intelligent hearing diagnosis and treatment instrument for patients in FIG. 1;
  • FIG. 6 is a schematic diagram of the main interface of the intelligent hearing diagnosis and treatment instrument for the expert in FIG. detailed description
  • an embodiment of the present invention includes: an interactive hearing diagnosis and treatment system based on a wireless mobile communication platform, including a smart hearing diagnosis instrument for patients, a smart hearing diagnosis instrument for experts, and a cloud data center, one or more experts
  • the one or more experts operating the smart diagnostic communication device are connected to the cloud data center through a wireless mobile communication platform, and the cloud data center is connected to one of the one or more patients through the wireless mobile communication platform.
  • the wireless mobile communication platform is a GPRS and/or Android system. Can be used by one The home is connected with a number of patients, and through the wireless mobile communication platform, through the cloud data center, the expert at one end is connected with the hearing diagnosis device at the other end by using a hearing diagnosis instrument to realize remotely controlled hearing diagnosis and treatment.
  • the internal structure of the intelligent hearing and diagnosing apparatus for the patient includes a sound player module, a first hearing test diagnostic module, a hearing aid fitting prescription module, a first tinnitus test diagnostic module, and a tinnitus treatment prescription.
  • the module, the first wireless communication module, and the first operating system module respectively communicates with the hearing aid fitting prescription module, the tinnitus treatment prescription module, and the first operating system module, and the first operation
  • the system module is respectively connected to the first hearing test diagnostic module and the first tinnitus test diagnostic module, and the first hearing test diagnostic module and the first tinnitus test diagnostic module respectively communicate with the sound player module, wherein
  • the first wireless communication module is also in communication with the cloud data center.
  • the patient's smart hearing medical device is also externally connected to one or more of a headphone, a printer, a hearing aid, and a tinnitus therapy device.
  • the earphone is a full frequency earphone, and the frequency range of the earphone is 0-2 kHz.
  • the patient uses the intelligent hearing diagnosis and treatment instrument as a portable, miniaturized and intelligent mobile service platform, and the display screen adopts a touch screen.
  • the main interface of the display screen includes a tinnitus treatment unit, a treatment plan unit, a treatment recording unit, and a tinnitus report unit.
  • Tinnitus treatment unit settings for the left ear volume, right ear volume, and overall volume and output to the headset for playback;
  • the treatment plan unit the duration or treatment of setting the treatment, the selection and mixing mode of the tinnitus treatment plan, and the order and duration of the treatment of the audio tone, and the above-mentioned settings are performed independently of the binaural or the left and right ears;
  • Treatment Recording Unit Record the treatment plan used, the date, time and duration of treatment, or record the removal treatment;
  • Tinnitus reporting unit Converts the test report and treatment report, displays the order, and extracts the current report to the root directory of the memory card for saving or printing.
  • the internal structure of the expert intelligent hearing diagnosis and treatment instrument includes a composite sound generator module, a second hearing test diagnosis module, a hearing aid fitting module, a second tinnitus test diagnosis module, a tinnitus treatment programming module, and a a second wireless communication module and a second operating system module, wherein the second wireless communication module is in communication with the second operating system module, and the second operating system module is respectively combined with the composite sound generator module and the second hearing test
  • the module, the hearing aid fitting module, the second tinnitus test diagnostic module, and the tinnitus treatment programming module perform a communication connection, wherein the second wireless communication module is further connected to the cloud data center.
  • the expert intelligent hearing diagnosis and treatment instrument is a mobile service platform device, including a display and a pillow body, and the main interface of the display includes a test and test module and a system operation module, and the test test The distribution module is located at the right end of the main interface, and the system operation module is located at the left end of the main interface.
  • the interface design of the test test module and the system operation module module can also be adjusted or adjusted to adopt the upper and lower position setting.
  • the test and test module includes a hearing test unit, a tinnitus test unit, a deafness treatment unit, an ear canal inspection unit, and a hearing aid fitting unit.
  • Hearing test unit Output audiograms using air conduction or bone conduction, and save audiograms;
  • Tinnitus test unit Use multi-channel sonar synthesis, pitch curve fitting and background audio tone database to retrieve one of these three methods
  • pitch curve fitting including wavenumber and waveform setting for a given time period
  • background audio tone database It is the data stored or downloaded from the cloud data center.
  • the parameters such as adjustment frequency, loudness, component removal or addition are adjusted. Otherwise, the audio tone data generated by the tinnitus test unit is uploaded to the cloud data center for others. Reference use, forming interactions between patients, patients and experts;
  • Tinnitus treatment unit Generate patient diagnosed cases and mask treatment for patients
  • Ear canal inspection unit The ear canal digital image is used to check the appearance of the ear canal and the tympanic membrane; the hearing aid fitting unit: according to the patient's audiometry corresponding patient derived fitting information, and then select the appropriate hearing aid product for the patient, and according to the diagnosis of tinnitus The data is accurately adjusted for positioning or programming of the tinnitus hearing aid or tinnitus therapy device.
  • the system operation module includes a new unit, a file unit, a test report unit, a treatment report unit, a client unit, a deletion unit, and an exit unit.
  • New unit Used to increase the patient's file information and record the degree of tinnitus
  • File unit View or modify the patient's file information
  • Test Reporting Unit The test report generates a variety of test report templates as required;
  • Treatment reporting unit Produce a corresponding treatment report based on the test report
  • Delete unit delete multiple data information
  • Exit unit Save and exit.
  • the cloud data center includes a data processing module, a data storage module, an expert library module, an exchange center module, and a wireless control module, where the wireless control module is respectively associated with a data processing module, a data storage module, and an expert.
  • the library module and the communication center module are connected by communication.
  • the wireless control module includes a video and audio control system that communicates with each other.
  • the cloud data center administrator is responsible for maintaining the cloud data center operation, technical support, and data classification storage including the data storage module.
  • the typical data is copied into the expert library module, and the typical customer data expansion expert library module is accumulated for public use:
  • Data processing module real-time data exchange, conversion, transmission;
  • Data storage module a database of patients and experts, stored in separate categories;
  • Expert Library Module Collecting stored hearing compensation prescriptions for a typical case, various tinnitus modal data, and corresponding tinnitus masking and sounding suit treatment prescriptions, stored in separate categories;
  • Communication Center Module For experts and patients to communicate technology, data, experience, or friends, especially to establish a patient's own group, patients with similar hearing loss or tinnitus communicate and help each other, which is beneficial to improve the results of hearing diagnosis. Patients can self-perceive to manage or modulate multiple treatment options, or manage or adjust these treatments under the guidance of an expert remote control. One or more patients obtain self-perceived hearing diagnosis and treatment data through one or more of the patients using the intelligent hearing diagnosis and treatment instrument, and the diagnosis result data is transmitted to the cloud data through the wireless mobile communication platform. The center is transmitted by the cloud data center to the expert through the wireless mobile communication platform to enable the expert to remotely analyze the use or remotely. Diagnostic treatment.
  • the patient can activate the calibrated audiometer embedded in the hearing test diagnostic module, directly perceive the heard audio signal through the sound player module and the earphone, through the operating system module Record the hearing threshold at different frequencies, automatically generate an audiogram that characterizes its hearing impairment, wirelessly transmit the audiogram to the cloud data center, and after the expert remotely receives the audiogram, perform hearing aid programming on the expert's intelligent hearing medical device.
  • the fitting is passed back to the patient's intelligent hearing diagnosis device and the connected hearing aid.
  • the patient can also connect the audiogram with the hearing aid fitting prescription module, and automatically adjust and adjust the hearing aid worn by the patient; It can also be wirelessly connected by experts and patients.
  • Experts can control their own experts to use the hearing test diagnostic module in the intelligent hearing and treatment instrument to transmit audio signals to the patient's intelligent hearing diagnosis device and earphones, so that the patient perceives the sound, and the two interact, ie Personalized audiograms can be generated.
  • the patient starts the tinnitus test diagnostic module embedded in the calibration of the multi-modal tinnitus diagnostic device, through the sound player module and the earphone, directly perceive the heard audio tone signal, confirm with its ear sound mode
  • the state is similar or consistent, and the audio tone signal is directly sensed through the sound player module and the earphone, the earphone mode selected by the operating system module is most suitable for the tinnitus state, and the tinnitus treatment prescription module automatically generates the earphones.
  • Another method is to directly connect the cloud data center and the expert to the cloud, and the expert controls the expert to use the tinnitus test diagnostic module in the intelligent hearing diagnosis system to remotely transmit the selected tinnitus modality to the patient.
  • the ear the patient perceives and feeds back to the expert, so that the patient interacts with the expert several times to confirm one or several suitable tinnitus modalities, enter the patient's prescription for tinnitus treatment in the intelligent hearing diagnosis device, and automatically generate one or several tinnitus sounds.
  • Masking or vocal treatment of prescriptions Enter the tinnitus therapy device worn by the patient.
  • the above two steps can be combined to input the tinnitus prescription into the hearing aid. Due to changes in hearing loss or tinnitus, experts or patients can design a number of courses of listening treatment prescriptions or tinnitus treatment prescriptions based on personalized conditions, allowing patients to perceive their choices and to mix and debug multiple prescriptions. Generate a new treatment prescription.
  • One or more experts may assist one or more patients in remote hearing diagnosis and treatment.
  • One or more patients may be self-perceived for hearing diagnosis and treatment, and the diagnosis result data may be transmitted to the cloud data center for remote expert analysis. Or remotely request experts to help with hearing diagnosis and treatment.
  • the wireless mobile communication platform By using the wireless mobile communication platform to seamlessly connect various medical treatment links, automatic medical information management can be realized, saving a lot of time, enabling experts to help patients diagnose without going out. And treatment, especially suitable for patients who are inconvenient to seek medical treatment in remote areas.

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Abstract

一种基于无线移动通讯平台的互动式听力诊疗系统,包括患者用智能听力诊疗仪、专家用智能听力诊疗仪以及云端数据中心。一台或多台所述专家用智能听力诊疗仪由一名或多名专家操控通过无线移动通讯平台连接到云端数据中心,由所述云端数据中心通过无线移动通讯平台连接到一名或多名患者使用的一台或多台患者用智能听力诊疗仪。该系统可以由一名或多名专家帮助一名或多名患者进行远程听力诊断和治疗,也可以由一名或多名患者将诊疗结果数据传输到云端数据中心远程提供给专家分析使用,或远程请求专家帮助做听力诊断治疗。该系统具有节省时间、患者不用出门即可由专家进行诊断和治疗的优点,尤其适合偏远地区不便就医的患者。

Description

基于无线移动通讯平台的互动式听力诊疗系统 技术领域
本发明涉及听力诊疗系统的领域, 特别是涉及一种基于无线移动通讯平台 的互动式听力诊疗系统。 背景技术
美国听力学会对耳鸣或颅鸣的定义是指非外部声音产生的听觉感知, 在无 外来声音时, 耳内 (一只或者两只)或者颅内感觉到声音的医学术语。 嘶嘶声、 怒吼声、 呼嘯声、 鸣叫声或点击声等表现形式, 间歇性, 持续性, 单音调, 多 音调, 强度恒定或变化。 数字式助听器和数字式耳鸣治疗仪需要在专业服务中心, 由专业技术人员 给患者做个性化听力测试、 耳鸣诊断, 再做验配编程和调试, 才能佩戴, 这是 传统的方法, 有以下缺点或弱点:
1、 通常涉及到两套以上的贵重测试设备仪器和两名技术人员;
2、 要求患者必须到医院或专业服务中心进行诊断、 治疗;
3、 不便于随患者听力和耳鸣变化而及时调节;
4、 技术服务效率低, 一次只能服务一名患者;
5、 服务费用昂贵;
6、 不便关于推广到偏远地区;
7、 不适合利用现代网络技术。 发明内容 本发明主要解决的技术问题是提供一种基于无线移动通讯平台的互动式听 力诊疗系统, 可以由一名或多名专家帮助一名或多名患者进行远程听力诊断和 治疗, 也可以由一名或多名患者自我感知做听力诊断与治疗, 将诊疗结果数据 传输到云端数据中心远程提供专家分析使用 , 或远程请求专家帮助做听力诊断 治疗, 节省了大量的时间, 实现了不用出门就能让专家帮助患者进行诊断和治 疗, 尤其适合推广应用于偏远地区不便就医的患者。
为解决上述技术问题, 本发明采用的一个技术方案是: 提供一种基于无线 移动通讯平台的互动式听力诊疗系统, 包括患者用智能听力诊疗仪、 专家用智 能听力诊疗仪以及云端数据中心, 一名或多名专家操控所述的一台或多台专家 用智能听力诊疗仪通过无线移动通讯平台连接到云端数据中心, 由所述的云端 数据中心通过无线移动通讯平台连接到一名或多名患者使用的一台或多台患者 用智能听力诊疗仪, 所述的患者用智能听力诊疗仪的内部结构包括声音播放器 模块、 第一听力测试诊断模块、 助听器验配处方模块、 第一耳鸣测试诊断模块、 耳鸣治疗处方模块、 第一无线通讯模块和第一操作系统模块, 所述的第一无线 通讯模块分别与助听器验配处方模块、 耳鸣治疗处方模块以及第一操作系统模 块进行通讯连接, 所述的第一操作系统模块分别与第一听力测试诊断模块和第 一耳鸣测试诊断模块进行通讯连接, 所述的第一听力测试诊断模块和第一耳鸣 测试诊断模块分别与声音播放器模块进行通讯连接, 其中, 所述的第一无线通 讯模块还与云端数据中心进行通讯连接; 所述的专家用智能听力诊疗仪的内部 结构包括复合声发生器模块、 第二听力测试诊断模块、 助听器验配模块、 第二 耳鸣测试诊断模块、 耳鸣治疗编程模块、 第二无线通讯模块和第二操作系统模 块, 所迷的第二无线通讯模块与第二操作系统模块进行通讯连接, 所述的第二 操作系统模块分别与复合声发生器模块、 第二听力测试诊断模块、 助听器验配 模块、 第二耳鸣测试诊断模块、 耳呜治疗编程模块进行通讯连接, 其中, 所述 的第二无线通讯模块还与云端数据中心进行通讯连接; 所述的云端数据中心的 内部结构包括数据处理模块、 数据存储模块、 专家库模块、 交流中心模块和无 线操控模块, 所述的无线操控模块分别与数据处理模块、 数据存储模块、 专家 库模块、 交流中心模块进行通讯连接。
在本发明一个较佳实施例中, 一名或多名患者通过所述的一台或多台患者 用智能听力诊疗仪做自我感知的听力诊断与治疗得到诊疗结果数据, 所述的诊 疗结果数据通过无线移动通讯平台传输到云端数据中心, 由所述的云端数据中 心通过无线移动通讯平台传输到专家用智能听力诊疗仪让专家远程分析使用或 远程诊断治疗。
在本发明一个较佳实施例中, 所述的无线移动通讯平台为 GPRS和 /或安卓 系统。
在本发明一个较佳实施例中, 所述的无线操控模块包括相互通讯的视频和 音频操控系统。
在本发明一个较佳实施例中, 所述的患者用智能听力诊疗仪为移动服务平 台, 包括显示屏, 所述的显示屏的主界面上包括耳鸣治疗单元、 治疗方案单元、 治疗记录单元以及耳鸣报告单元,
耳鸣治疗单元: 对左耳音量、右耳音量以及总体音量的设置和输出到耳机进 行播放;
治疗方案单元: 进行设置治疗的时长或疗程、耳鸣治疗方案的选择和混合方 式以及治疗音频音调播放的的顺序和时长, 双耳一体或者左右耳相互独立进行 上述设置; 治疗记录单元:记录采用的治疗方案、 治疗的日期、 时间以及时长, 或者进 行删除治疗的记录;
耳鸣报告单元: : 将测试报告和治疗报告进行转换, 显示医嘱, 同时将当前 报告提取到存储卡根目录, 以备保存或打印。
在本发明一个较佳实施例中, 所述的患者用智能听力诊疗仪还外接有包括 耳机、 打印机、 助听器以及耳鸣治疗仪中的一个或多个。
在本发明一个较佳实施例中, 所述的耳机为全频率耳机, 耳机的频率范围 为 0-20kHz。
在本发明一个较佳实施例中, 所述的专家用智能听力诊疗仪为移动服务平 台设备, 包括显示器以及枕体, 所述的显示器的主界面上包括测试验配模块和 系统操作模块, 所述的测试验配模块位于主界面的右端, 所述的系统操作模块 位于主界面的左端。
在本发明一个较佳实施例中, 所述的测试验配模块包括听力测试单元、 耳 鸣测试单元、 耳鸣治疗单元、 耳道检查单元以及助听器验配单元,
听力测试单元: 使用气导或骨导输出听力图, 并进行保存听力图; 耳鸣测试单元: 采用多通道声合成、 音调曲线拟合以及背景音频音调资料 库, 调取这三种方法中的一种或多种方法, 合成或复合出多模态耳鸣音频音调 信号, 多通道声合成包括多个, 比如八个频率通道, 分别设置右耳和左耳的频 率以及频率通道, 频率范围从 0-20kHz, 步进为≥1Ηζ, 不超过 10Hz, 响度范围 0-120分贝, 步进≥1分贝, 不超过 10分贝; 音调曲线拟合包括给定时间段的波 数和波形设置; 背景音频音调资料库是存储或从云端数据中心下载的资料, 背 景音频音调资料调出后进行调节频率、 响度、 组成成分去除或添加等参数调节, 反之, 向云端数据中心上传耳鸣测试单元生成的音频音调资料供他人参考使用, 形成患者之间、 患者与专家之间的互动;
耳鸣治疗单元: 生成患者诊断病例, 为患者进行掩蔽治疗;
耳道检查单元: 采用耳道数字影像进行检查耳道内和鼓膜的外表情况; 助听器验配单元: 根据患者测听对应的导出患者验配信息, 然后针对患者 选择合适的助听器产品, 同时根据耳鸣诊断数据对耳鸣助听器或耳鸣治疗仪进 行准确调节定位或编程调试。
在本发明一个较佳实施例中, 所述的系统操作模块包括新增单元、 档案单 元、 测试报告单元、 治疗报告单元、 客户机单元、 删除单元以及退出单元, 新增单元: 用于增加患者的档案信息以及记录耳鸣程度;
档案单元: 查看或者修改患者的档案信息;
测试报告单元: 测试报告根据要求生成多种测试报告模板;
治疗报告单元: 根据测试报告生产相应的治疗报告;
删除单元: 对多种数据信息进行删除;
退出单元: 保存后进行退出。
本发明的有益效果是: 本发明的基于无线移动通讯平台的互动式听力诊疗 系统, 可以由一名或多名专家帮助一名或多名患者进行远程听力诊断和治疗, 也可以由一名或多名患者自我感知做听力诊断与治疗, 将诊疗结果数据传输到 云端数据中心远程提供专家分析使用, 或远程请求专家帮助做听力诊断治疗, 耳鸣适应症诊治有效率 80%左右, 节省了大量的时间, 实现了不用出门就能让 专家帮助患者进行诊断和治疗, 尤其适合推广应用于偏远地区不便就医的患者。 为了更清楚地说明本发明实施例中的抆术方衆, 下面将对实施例描述中所 需要使用的附图作简单地介绍, 显而易见地, 下面描述中的附图仅仅是本发明 的一些实施例, 对于本领域普通技术人员来讲, 在不付出创造性劳动的前提下, 还可以根据这些附图获得其它的附图, 其中: 图 1 是本发明的基于无线移动通讯平台的互动式听力诊疗系统一较佳实施 例的结构框图; 图 2是图 1中患者用智能听力诊疗仪内部的结构框图; 图 3是图 1中专家用智能听力诊疗仪内部的结构框图; 图 4是图 1中云端数据中心内部的结构框图。 图 5是图 1中患者用智能听力诊疗仪的主界面示意图; 图 6是图 1中专家用智能听力诊疗仪的主界面示意图。 具体实施方式
下面将对本发明实施例中的技术方案进行清楚、 完整地描述, 显然, 所描 述的实施例仅是本发明的一部分实施例, 而不是全部的实施例。 基于本发明中 的实施例, 本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其 它实施例, 都属于本发明保护的范围。 请参阅图 1, 本发明实施例包括: 一种基于无线移动通讯平台的互动式听力诊疗系统, 包括患者用智能听力 诊疗仪、 专家用智能听力诊疗仪以及云端数据中心, 一名或多名专家操控所述 的一台或多台专家用智能听力诊疗仪通过无线移动通讯平台连接到云端数据中 心, 由所述的云端数据中心通过无线移动通讯平台连接到一名或多名患者使用 的一台或多台患者用智能听力诊疗仪。 上述中, 所述的无线移动通讯平台为 GPRS和 /或安卓系统。 可以由一名专 家与多名患者连线, 借助无线移动通讯平台, 通过云端数据中心, 将一端的专 家用听力诊疗仪与另一端的患者用听力诊疗仪连接起来, 实现远程操控听力诊 疗。
进一步的, 如图 2所示, 所述的患者用智能听力诊疗仪的内部结构包括声 音播放器模块、 第一听力测试诊断模块、 助听器验配处方模块、 第一耳鸣测试 诊断模块、 耳鸣治疗处方模块、 第一无线通讯模块和第一操作系统模块, 所述 的第一无线通讯模块分别与助听器验配处方模块、 耳鸣治疗处方模块以及第一 操作系统模块进行通讯连接, 所述的第一操作系统模块分别与第一听力测试诊 断模块和第一耳鸣测试诊断模块进行通讯连接, 所述的第一听力测试诊断模块 和第一耳鸣测试诊断模块分别与声音播放器模块进行通讯连接, 其中, 所述的 第一无线通讯模块还与云端数据中心进行通讯连接。
所述的患者用智能听力诊疗仪还外接有包括耳机、 打印机、 助听器以及耳 鸣治疗仪中的一个或多个。 其中, 所述的耳机为全频率耳机, 耳机的频率范围 为 0-2 kHz。
上述中, 所述的患者用智能听力诊疗仪为一种便携式、 微型化以及智能化 的移动服务平台, 其显示屏采用触摸屏。 如图 5 所示, 所述的显示屏的主界面 上包括耳鸣治疗单元、 治疗方案单元、 治疗记录单元以及耳鸣报告单元。
耳鸣治疗单元:对左耳音量、右耳音量以及总体音量的设置和输出到耳机进 行播放;
治疗方案单元: 进行设置治疗的时长或疗程、耳鸣治疗方案的选择和混合方 式以及治疗音频音调播放的的顺序和时长, 双耳一体或者左右耳相互独立进行 上述设置; 治疗记录单元:记录采用的治疗方案、 治疗的日期、 时间以及时长, 或者进 行删除治疗的记录;
耳鸣报告单元: : 将测试报告和治疗报告进行转换, 显示医嘱, 同时将当前 报告提取到存储卡根目录, 以备保存或打印。
用户点击患者用智能听力诊疗仪的主界面中的耳鸣治疗单元进入, 如果未 定义治疗方案时, 用户需在列表中选择某治疗音频, 如果已定义治疗方案, 用 户无需选择。 如用户在 1 分钟之内无触屏操作, 系统将自动进入节电模式, 屏 幕变暗, 此时只需再触摸一下屏幕即可激活。
如图 3 所示, 所述的专家用智能听力诊疗仪的内部结构包括复合声发生器 模块、 第二听力测试诊断模块、 助听器验配模块、 第二耳鸣测试诊断模块、 耳 鸣治疗编程模块、 第二无线通讯模块和第二操作系统模块, 所述的第二无线通 讯模块与第二操作系统模块进行通讯连接, 所述的第二操作系统模块分别与复 合声发生器模块、 第二听力测试诊断模块、 助听器验配模块、 第二耳鸣测试诊 断模块、 耳鸣治疗编程模块进行通讯连接, 其中, 所述的第二无线通讯模块还 与云端数据中心进行通讯连接。
如图 6所示, 所述的专家用智能听力诊疗仪为移动服务平台设备, 包括显 示器以及枕体 , 所述的显示器的主界面上包括测试验配模块和系统操作模块, 所述的测试验配模块位于主界面的右端, 所述的系统操作模块位于主界面的左 端。 同时, 所述的测试验配模块和系统操作模块模块的界面设计也可以对调或 以采用上下位置设置。
其中, 所述的测试验配模块包括听力测试单元、 耳鸣测试单元、 耳呜治疗 单元、 耳道检查单元以及助听器验配单元。 听力测试单元: 使用气导或骨导输出听力图, 并进行保存听力图; 耳鸣测试单元: 采用多通道声合成、 音调曲线拟合以及背景音频音调资料 库, 调取这三种方法中的一种或多种方法, 合成或复合出多模态耳鸣音频音调 信号, 多通道声合成包括多个, 比如八个频率通道, 分别设置右耳和左耳的频 率以及频率通道, 频率范围从 0-20kHz, 步进为≥1Ηζ, 不超过 10Hz, 响度范围 0-120分贝, 步进≥1分贝, 不超过 10分贝; 音调曲线拟合包括给定时间段的波 数和波形设置; 背景音频音调资料库是存储或从云端数据中心下载的资料, 背 景音频音调资料调出后进行调节频率、 响度、 组成成分去除或添加等参数调节, 反之, 向云端数据中心上传耳鸣测试单元生成的音频音调资料供他人参考使用, 形成患者之间、 患者与专家之间的互动;
耳鸣治疗单元: 生成患者诊断病例, 为患者进行掩蔽治疗;
耳道检查单元: 采用耳道数字影像进行检查耳道内和鼓膜的外表情况; 助听器验配单元: 根据患者测听对应的导出患者验配信息, 然后针对患者 选择合适的助听器产品, 同时根据耳鸣诊断数据对耳鸣助听器或耳鸣治疗仪进 行准确调节定位或编程调试。
其中, 所述的系统操作模块包括新增单元、 档案单元、 测试报告单元、 治 疗报告单元、 客户机单元、 删除单元以及退出单元。
新增单元: 用于增加患者的档案信息以及记录耳鸣程度;
档案单元: 查看或者修改患者的档案信息;
测试报告单元: 测试报告根据要求生成多种测试报告模板;
治疗报告单元: 根据测试报告生产相应的治疗报告;
删除单元: 对多种数据信息进行删除; 退出单元: 保存后进行退出。
如图 4所示, 所述的云端数据中心包括数据处理模块、 数据存储模块、 专 家库模块、 交流中心模块和无线操控模块, 所述的无线操控模块分别与数据处 理模块、 数据存储模块、 专家库模块、 交流中心模块进行通讯连接。 其中, 所 述的无线操控模块包括相互通讯的视频和音频操控系统。
多名专家和多名患者都可以独立与云端数据中心连接 , 通过无线操控模块 互动远程操控听力诊疗; 云端数据中心管理员负责维护云端数据中心运行、 技 术支持、 数据分类存储包括将数据存储模块中的典型数据拷贝到专家库模块中 去, 积累典型客户数据扩容专家库模块, 供公众使用:
数据处理模块: 实时数据交换、 转换、 传输;
数据存储模块: 患者和专家的资料库, 分门别类存储;
专家库模块: 收集存储的典型病例的听力补偿处方、 各种各样的耳鸣模态 数据、 以及相应的耳鸣声掩蔽和声习服治疗处方, 分门别类存储;
交流中心模块: 供专家和患者多向交流技术、 数据、 经验、 或交友聊天, 特别是建立患者自己的群体, 患有类似听力损失或耳鸣的患者互相交流和帮助, 有益于提高听力诊疗效果。 患者可以自我感知管理或调节多种治疗方案, 或在专家远程操控指导下完成这 些治疗方案的管理或调节。 由一名或多名患者通过所述的一台或多台患者用智 能听力诊疗仪做自我感知的听力诊断与治疗得到诊疗结果数据, 所述的诊疗结 果数据通过无线移动通讯平台传输到云端数据中心, 由所述的云端数据中心通 过无线移动通讯平台传输到专家用智能听力诊疗仪让专家远程分析使用或远程 诊断治疗。
自我感知调试或远程操控听力诊断与助听器验配调试: 患者可以启动听力 测试诊断模块中嵌入的标定好的听力计, 通过声音播放器模块和耳机, 直接感 知听到的音频信号, 通过操作系统模块记录其在不同频率下的听力阈值, 自动 生成表征其听力受损的听力图, 将听力图无线传输到云端数据中心, 专家远程 接收到听力图后, 在专家用智能听力诊疗仪上进行助听器编程验配, 将验配结 果或处方传回患者用智能听力诊疗仪及连接的助听器上, 患者也可以自己将听 力图与助听器验配处方模块连接, 自动验配调试其佩戴的助听; 听力诊断也可 以由专家与患者无线连接, 专家操控自己的专家用智能听力诊疗仪中的听力测 试诊断模块, 将音频信号传入患者用智能听力诊疗仪和耳机, 让患者感知声音, 二者互动, 即可生成个性化听力图。
自我感知调试或远程操控耳鸣诊断治疗: 患者启动耳鸣测试诊断模块中嵌 入的标定好的多模态耳鸣诊断仪, 通过声音播放器模块和耳机, 直接感知听到 的音频音调信号, 确认与其耳鸣模态相似或一致, 并通过声音播放器模块和耳 机, 直接感知听到的音频音调信号, 通过操作系统模块记录其选择的最适合自 己耳鸣状态的耳鸣模式, 再有耳鸣治疗处方模块自动生成耳呜声掩蔽或声习服 治疗处方, 另一方法是患者直接无线连接云端数据中心和专家, 专家操控其专 家用智能听力诊疗系统中的耳鸣测试诊断模块, 将选择的耳鸣模态远程传输到 患者的耳朵, 患者感知并反馈给专家, 如此患者与专家互动几次即可确诊一个 或几个合适的耳鸣模态, 输入患者用智能听力诊疗仪中的耳鸣治疗处方, 自动 生成一个或数个耳鸣声掩蔽或声习服治疗处方, 输入患者佩戴的耳鸣治疗仪。
对于既有听力受损又有耳呜的患者, 可以将上述两个步骤相结合, 将耳鸣 处方输入助听器。 由于听力受损或耳鸣的病情变化, 专家或患者都可以根据个性化病情, 设 计数个疗程的听力治疗处方或耳鸣治疗处方, 让患者自己感知选择, 并可以进 行多个处方的混合和调试, 生成新的治疗处方。
或多名专家帮助一名或多名患者进行远程听力诊断和治疗, 也可以由一名或多 名患者自我感知做听力诊断与治疗, 将诊疗结果数据传输到云端数据中心远程 提供专家分析使用, 或远程请求专家帮助做听力诊断治疗, 通过用无线移动通 讯平台将各个诊疗环节无缝连接, 实现全自动医疗信息化管理, 节省了大量的 时间, 实现了不用出门就能让专家帮助患者进行诊断和治疗, 尤其适合推广应 用于偏远地区不便就医的患者。
以上所迷仅为本发明的实施例, 并非因此限制本发明的专利范围, 凡是利 用本发明说明书内容所作的等效结构或等效流程变换, 或直接或间接运用在其 它相关的技术领域, 均同理包括在本发明的专利保护范围内。

Claims

权 利 要 求 书
1、 一种基于无线移动通讯平台的互动式听力诊疗系统, 其特征在于, 包括 患者用智能听力诊疗仪、 专家用智能听力诊疗仪以及云端数据中心, 一名或多 名专家操控所述的一台或多台专家用智能听力诊疗仪通过无线移动通讯平台连 接到云端数据中心, 由所述的云端数据中心通过无线移动通讯平台连接到一名 或多名患者使用的一台或多台患者用智能听力诊疗仪, 所述的患者用智能听力 诊疗仪的内部结构包括声音播放器模块、 第一听力测试诊断模块、 助听器验配 处方模块、 第一耳鸣测试诊断模块、 耳鸣治疗处方模块、 第一无线通讯模块和 第一操作系统模块, 所述的第一无线通讯模块分别与助听器验配处方模块、 耳 鸣治疗处方模块以及第一操作系统模块进行通讯连接, 所述的第一操作系统模 块分别与第一听力测试诊断模块和第一耳鸣测试诊断模块进行通讯连接, 所述 的第一听力测试诊断模块和第一耳鸣测试诊断模块分别与声音播放器模块进行 通讯连接, 其中, 所述的第一无线通讯模块还与云端数据中心进行通讯连接; 所述的专家用智能听力诊疗仪的内部结构包括复合声发生器模块、 第二听力测 试诊断模块、 助听器验配模块、 第二耳鸣测试诊断模块、 耳鸣治疗编程模块、 第二无线通讯模块和第二操作系统模块, 所述的第二无线通讯模块与第二操作 系统模块进行通讯连接, 所述的第二操作系统模块分别与复合声发生器模块、 第二听力测试诊断模块、 助听器验配模块、 第二耳鸣测试诊断模块、 耳鸣治疗 编程模块进行通讯连接, 其中, 所述的第二无线通讯模块还与云端数据中心进 行通讯连接; 所述的云端数据中心的内部结构包括数据处理模块、 数据存储模 块、 专家库模块、 交流中心模块和无线操控模块, 所述的无线操控模块分别与 数据处理模块、 数据存储模块、 专家库模块、 交流中心模块进行通讯连接。
2、 根据权利要求 1所述的基于无线移动通讯平台的互动式听力诊疗系统, 其特征在于, 一名或多名患者通过所述的一台或多台患者用智能听力诊疗仪做 自我感知的听力诊断与治疗得到诊疗结果数据, 所述的诊疗结果数据通过无线 移动通讯平台传输到云端数据中心, 由所述的云端数据中心通过无线移动通讯 平台传输到专家用智能听力诊疗仪让专家远程分析使用或远程诊断治疗。
3、 根据权利要求 1或 2所述的基于无线移动通讯平台的互动式听力诊疗系 统, 其特征在于, 所述的无线移动通讯平台为 GPRS和 /或安卓系统。
4、 根据权利要求 1所述的基于无线移动通讯平台的互动式听力诊疗系统, 其特征在于, 所述的无线操控模块包括相互通讯的视频和音频操控系统。
5、 才艮据权利要求 1所述的基于无线移动通讯平台的互动式听力诊疗系统, 其特征在于, 所述的患者用智能听力诊疗仪为移动服务平台, 包括显示屏, 所 述的显示屏的主界面上包括耳鸣治疗单元、 治疗方案单元、 治疗记录单元以及 耳鸣报告单元,
耳鸣治疗单元: 对左耳音量、右耳音量以及总体音量的设置和输出到耳机进 行播放;
治疗方案单元: 进行设置治疗的时长或疗程、耳鸣治疗方案的选择和混合方 式以及治疗音频音调播放的的顺序和时长, 双耳一体或者左右耳相互独立进行 上述设置;
治疗记录单元:记录釆用的治疗方案、 治疗的日期、 时间以及时长, 或者进 行删除治疗的记录;
耳鸣报告单元: : 将测试报告和治疗报告进行转换, 显示医嘱, 同时将当前 报告提取到存储卡才艮目录, 以备保存或打印。
6、 根据权利要求 1所述的基于无线移动通讯平台的互动式听力诊疗系统, 其特征在于, 所述的患者用智能听力诊疗仪还外接有包括耳机、 打印机、 助听 器以及耳鸣治疗仪中的一个或多个。 其特征在于, 所述的耳机为全频率耳机, 耳机的频率范围为 0-20kHz。
8、 根据权利要求 1所述的基于无线移动通讯平台的互动式听力诊疗系统, 其特征在于, 所述的专家用智能听力诊疗仪为移动服务平台设备, 包括显示器 以及枕体, 所述的显示器的主界面上包括测试验配模块和系统操作模块, 所述 的测试验配模块位于主界面的右端, 所述的系统操作模块位于主界面的左端。
9、 根据权利要求 8所述的基于无线移动通讯平台的互动式听力诊疗系统, 其特征在于, 所述的测试验配模块包括听力测试单元、 耳鸣测试单元、 耳鸣治 疗单元、 耳道检查单元以及助听器验配单元,
听力测试单元: 使用气导或骨导输出听力图, 并进行保存听力图; 耳鸣测试单元: 采用多通道声合成、 音调曲线拟合以及背景音频音调资料 库, 调取这三种方法中的一种或多种方法, 合成或复合出多模态耳鸣音频音调 信号, 多通道声合成包括多个, 比如八个频率通道, 分别设置右耳和左耳的频 率以及频率通道, 频率范围从 0-20kHz, 步进为≥1Ηζ, 不超过 10Hz, 响度范围 0-120分贝, 步进≥1分贝, 不超过 10分贝; 音调曲线拟合包括给定时间段的波 数和波形设置; 背景音频音调资料库是存储或从云端数据中心下载的资料, 背 景音频音调资料调出后进行调节频率、 响度、 组成成分去除或添加等参数调节, 反之, 向云端数据中心上传耳鸣测试单元生成的音频音调资料供他人参考使用, 形成患者之间、 患者与专家之间的互动;
耳鸣治疗单元: 生成患者诊断病例, 为患者进行掩蔽治疗; 耳道检查单元: 采用耳道数字影像进行检查耳道内和鼓膜的外表情况; 助听器验配单元: 根据患者测听对应的导出患者验配信息, 然后针对患者 选择合适的助听器产品, 同时根据耳鸣诊断数据对耳鸣助听器或耳鸣治疗仪进 行准确调节定位或编程调试。 其特征在于, 所述的系统操作模块包括新增单元、 档案单元、 测试报告单元、 治疗报告单元、 客户机单元、 删除单元以及退出单元,
新增单元: 用于增加患者的档案信息以及记录耳鸣程度;
档案单元: 查看或者修改患者的档案信息;
测试报告单元: 测试报告根据要求生成多种测试报告模板;
治疗报告单元: 根据测试报告生产相应的治疗报告;
删除单元: 对多种数据信息进行删除;
退出单元: 保存后进行退出。
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