WO2017117822A1 - 一种采用位置定位技术评估耳鸣治疗效果的装置及方法 - Google Patents

一种采用位置定位技术评估耳鸣治疗效果的装置及方法 Download PDF

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WO2017117822A1
WO2017117822A1 PCT/CN2016/070755 CN2016070755W WO2017117822A1 WO 2017117822 A1 WO2017117822 A1 WO 2017117822A1 CN 2016070755 W CN2016070755 W CN 2016070755W WO 2017117822 A1 WO2017117822 A1 WO 2017117822A1
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unit
data
tinnitus
treatment
signal processor
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PCT/CN2016/070755
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English (en)
French (fr)
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彭剑
蒋涛
蒋一宁
王铁志
龚树生
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四川微迪数字技术有限公司
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Publication of WO2017117822A1 publication Critical patent/WO2017117822A1/zh

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/48Other medical applications
    • A61B5/4848Monitoring or testing the effects of treatment, e.g. of medication
    • 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
    • A61B5/0004Remote monitoring of patients using telemetry, e.g. transmission of vital signals via a communication network characterised by the type of physiological signal transmitted
    • 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
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/68Arrangements of detecting, measuring or recording means, e.g. sensors, in relation to patient

Definitions

  • the invention belongs to the field of medical technology, and in particular relates to a device and a method for evaluating the effect of tinnitus treatment by using position location technology.
  • Tinnitus refers to the patient's conscious sound in the ear, such as the sound of snoring, or the sound of the tide. There are large differences in the incidence of tinnitus, and different research methods may lead to different conclusions. Some authors analyzed the incidence of tinnitus after 1453 patients with tinnitus. According to follow-up data, the prevalence of tinnitus was 17.8%, of which 49.1% had occasional tinnitus. At least 70% of patients with reported hearing loss are reported to have tinnitus symptoms. If the tinnitus is less than 5 minutes, about 60% of the people have had tinnitus symptoms in their lifetime.
  • tinnitus has become an urgent problem in clinical practice.
  • Current methods for treating tinnitus such as: Steping, Sound Therapy, Hearing Aids, Psychological Therapies, Medications, and Tinnitus retraining therapy. ), Tinnitus Activities Treatment, Tinnitus Self-treatment, Electrical stimulation to reduce tinnitus, and the like.
  • Tinnitus Activities Treatment Tinnitus Self-treatment
  • Electrical stimulation to reduce tinnitus, and the like.
  • the current method of assessing tinnitus is to use the form of the tinnitus assessment scale, and the assessment scale is different in major hospitals and scientific research institutions, and its main forms are
  • the doctor asks the patient questions, and the doctor evaluates the patient's questions to evaluate the patient's tinnitus treatment.
  • This way the subjective factors are relatively large, the doctors ask more questions, some patients are unclear, doctors
  • the difficulty of the questions raised by the patient will cause considerable interference to the evaluation score, and there is no real, effective and objective response to the patient's tinnitus treatment effect.
  • the doctor's operation is complicated.
  • a device for evaluating the effect of tinnitus treatment by using a position locating technique comprising: a housing and a sensor unit located in the housing, a data acquisition unit, a digital signal processor unit, a data evaluation unit, a data storage unit, a data transmission unit, and a power supply a management unit, a display unit; the sensor unit is connected to the data acquisition unit signal, the data acquisition unit is connected to the digital signal processor unit signal, and the data signal processor is connected to the data evaluation unit signal, and the data evaluation unit is The display unit signals are connected, and the digital signal processor is also in bidirectional signal communication with the data storage unit and the data transmission unit, respectively, and the power management unit supplies power to the remaining units.
  • buttons unit that is coupled to a digital signal processor unit signal that provides human-computer interaction functionality.
  • the sensor unit is a GPS signal receiving device for sensing tinnitus patient position information.
  • the data acquisition unit collects data output by the sensor unit, and collects the data and sends it to the digital signal processor unit.
  • the digital signal processor unit processes the data output by the data acquisition unit, analyzes the data, and analyzes the data according to the data output by the acquisition unit to calculate the latitude and longitude, obtains the position coordinate information of the location ball, and then analyzes the position coordinate information according to the position coordinate information.
  • the location of the patient including the store, home, entertainment venue or gymnasium, etc., specifically determine whether the patient is in the store, home or entertainment venue is the existing technology, the main technical means is to query the electronic map with the latitude and longitude coordinate information
  • the obtained patient is in a store, a home, an entertainment place, or a gymnasium, and the analyzed data is sent to a data evaluation unit, a data storage unit, and a data transmission unit, respectively.
  • the evaluation unit evaluates the data analyzed by the processor unit to evaluate the therapeutic effect of the tinnitus patient.
  • the data storage unit stores the data calculated and analyzed by the digital signal processor unit. Query historical data.
  • the data transmission unit is a Bluetooth transmission device or a wireless network transmission device, and transmits the data calculated and calculated by the digital signal processor unit to a mobile phone or a computer.
  • the power management unit supplies power to each unit separately.
  • the display unit is a display evaluation unit evaluation result for observing the evaluation result.
  • the housing is provided with a button switch, a power switch, a display screen and a charging interface.
  • the sensor unit senses the activity range data of the tinnitus patient before treatment, the data is transmitted to the digital signal processor unit through the data acquisition unit, and then the digital signal processor unit records the pre-treatment data in the data storage unit, and then the sensor unit senses the tinnitus again.
  • the patient's range of activity data after treatment the data is transmitted to the digital signal processor unit through the data acquisition unit, and then the digital signal processor unit records the processed data in the data storage unit, while the data evaluation unit will be treated before After the activity range data is compared, the contrasted result is sent to the display unit.
  • the activity range data includes multiple location information of the tinnitus patient, compares multiple location information before and after treatment, and uses statistical analysis algorithms or tools to quantify the results and corresponding mathematical models to determine changes in different locations, thereby defining before and after treatment.
  • the behavioral improvement reflects the therapeutic effect and thus the effect.
  • Known statistical analysis algorithms or tools can be used in this application to quantify the results. For example, in medical research, hypothesis testing is generally used to determine whether the two sets of data before and after treatment are statistically different. See People's Health Publishing The seventh chapter of the 6th edition of the "Health Statistics" of the Society reflects the effect. If the difference is effective, the same has no effect.
  • the present invention is specifically manifested in the range of activities of the tinnitus patients going to the leisure activities several times a week, going shopping several times a week, and if the tinnitus patients have different range of activities before and after treatment, indicating that the tinnitus treatment has an effect, the greater the difference, the better the effect.
  • tinnitus often causes anxiety, pain, anger, irritability and other emotional disorders
  • the range of motion of tinnitus patients is very small. Therefore, by collecting the location information of the range of motion of tinnitus patients, the therapeutic effect of tinnitus patients can be evaluated to achieve scientific, real and objective. Conveniently and effectively evaluate and record the effects of tinnitus treatment and improve the quality of life.
  • the invention receives GPS signal, collects GPS signal, calculates patient position information through digital signal processor, analyzes and processes data, sends it to storage unit for storage, evaluates evaluation level, etc., Bluetooth data transmission unit and mobile phone or computer Data exchange, comparing the number of activities before and after treatment of tinnitus patients According to this, the evaluation of the effect of the treatment of tinnitus is effectively evaluated in the actual life effect. Because tinnitus patients are more autistic, the ears are constantly ringing every day, and the patient's range of activities is limited. By comparing the patient's range of activities, for example, his activity range is 10 square kilometers before tinnitus treatment, and patients often move at home.
  • the range of activity is 1 square kilometer.
  • the patient is in his own room, indicating that the effect of tinnitus on the patient is getting worse and worse, and the treatment effect is poor.
  • the activity range after tinnitus treatment is 20 square kilometers, and the patient goes to the workplace.
  • the contrast indicates that tinnitus has a certain effect on the patient, and the therapeutic effect is in the middle; the activity range after tinnitus treatment is 100 square kilometers, and the patient often goes to entertainment places, gymnasiums, cafes, etc., which indicates that tinnitus has an increasing influence on patients.
  • the effect is good; the range of activity after tinnitus treatment is more than 1000 square kilometers, and the patient has gone to many places as before, and even went to a place that had not been visited before, which means The effect of tinnitus on the patient is gone, indicating that the effect is very good, which is objective. Thereby the object of the invention is achieved. There is no real, effective and objective response to the traditional method of patient tinnitus treatment. And the doctor's operation is complex and so on.
  • the invention can evaluate and record the effect of tinnitus treatment in real time, scientifically, objectively, conveniently and effectively. Ensure the reliability, scientificity, simple structure, easy evaluation and recordability of the evaluation results.
  • Figure 1 is a schematic view showing the structure of each unit of the present invention.
  • Figure 2 is a schematic view of the appearance of the present invention.
  • a device for evaluating the effect of tinnitus treatment by using position locating technology comprises a housing and a sensor unit located in the housing, a data acquisition unit, a digital signal processor unit, a data evaluation unit, a data storage unit, a data transmission unit, a power management unit, and a display unit
  • the sensor unit is coupled to the data acquisition unit signal
  • the data acquisition unit is coupled to the digital signal processor unit signal
  • the data signal processor is coupled to the data evaluation unit signal
  • the data evaluation unit is coupled to the display unit signal.
  • the digital signal processor is also in bidirectional signal communication with a data storage unit and a data transmission unit, respectively, and the power management unit supplies power to the remaining units.
  • the invention is specifically manifested in the range of activity of the tinnitus patients going to the leisure activities several times a week, going shopping several times a week, and if the tinnitus patients have different range of activities before and after treatment, the tinnitus treatment has an effect, the greater the difference, the better the effect, because the tinnitus Often causing anxiety, pain, and The range of activities of patients with tinnitus caused by anger, irritability and other emotional disorders is very small. Therefore, by collecting the location information of the range of activities of tinnitus patients, the therapeutic effect of tinnitus patients can be evaluated, thereby achieving scientific, true, objective, convenient, effective evaluation and recording of tinnitus treatment effects. To improve the quality of life.
  • a device for evaluating the effect of tinnitus treatment by using position locating technology comprises a housing and a sensor unit located in the housing, a data acquisition unit, a digital signal processor unit, a data evaluation unit, a data storage unit, a data transmission unit, a power management unit, and a display unit
  • the sensor unit is coupled to the data acquisition unit signal
  • the data acquisition unit is coupled to the digital signal processor unit signal
  • the data signal processor is coupled to the data evaluation unit signal
  • the data evaluation unit is coupled to the display unit signal.
  • the digital signal processor is also in bidirectional signal communication with a data storage unit and a data transmission unit, respectively, and the power management unit supplies power to the remaining units.
  • the button unit is coupled to a digital signal processor unit signal that provides human-computer interaction functionality.
  • the sensor unit is a GPS signal receiving device for sensing tinnitus patient position information.
  • the data acquisition unit collects data output by the sensor unit, and collects the data and sends it to the digital signal processor unit.
  • the digital signal processor unit processes the data output by the data acquisition unit, analyzes the data, and analyzes the data according to the data output by the acquisition unit to calculate the latitude and longitude, obtains the position coordinate information of the location ball, and then analyzes the position coordinate information according to the position coordinate information.
  • the location of the patient including the store, home, entertainment venue or gymnasium, etc., specifically determine whether the patient is in the store, home or entertainment venue is the existing technology
  • the main technical means is to query the electronic map with the latitude and longitude coordinate information
  • the obtained patient is in a store, a home, an entertainment place, or a gymnasium
  • the analyzed data is sent to a data evaluation unit, a data storage unit, and a data transmission unit, respectively.
  • the evaluation unit evaluates the data analyzed by the processor unit to evaluate the therapeutic effect of the tinnitus patient.
  • the data storage unit stores the data calculated and analyzed by the digital signal processor unit for historical data query.
  • the data transmission unit is a Bluetooth transmission device or a wireless network transmission device, and transmits the data calculated and calculated by the digital signal processor unit to a mobile phone or a computer.
  • the power management unit supplies power to each unit separately.
  • the display unit is a display evaluation unit evaluation result for observing the evaluation result.
  • the housing is provided with a button switch, a power switch, a display screen and a charging interface.
  • the invention is specifically manifested in the range of activity of the tinnitus patients going to the leisure activities several times a week, going shopping several times a week, and if the tinnitus patients have different range of activities before and after treatment, indicating that the tinnitus treatment has effect, the difference
  • the invention collects GPS signal through GPS signal, calculates patient position information through digital signal processor, analyzes and processes data, sends it to storage unit for storage, evaluates evaluation level of evaluation unit, etc., and data exchange between Bluetooth data transmission unit and mobile phone or computer
  • the range of activity is 1 square kilometer.
  • the patient is in his own room, indicating that the effect of tinnitus on the patient is getting worse and worse, and the treatment effect is poor.
  • the activity range after tinnitus treatment is 20 square kilometers, and the patient goes to the workplace.
  • the contrast indicates that tinnitus has a certain effect on the patient, and the therapeutic effect is in the middle; the activity range after tinnitus treatment is 100 square kilometers, and the patient often goes to entertainment places, gymnasiums, cafes, etc., which indicates that tinnitus has an increasing influence on patients.
  • the effect is good; the range of activity after tinnitus treatment is more than 1000 square kilometers, and the patient has gone to many places as before, and even went to a place that had not been visited before, which means The effect of tinnitus on the patient is gone, indicating that the effect is very good, which is objective. Thereby the object of the invention is achieved. There is no real, effective and objective response to the traditional method of patient tinnitus treatment. And the doctor's operation is complex and so on.
  • the invention can evaluate and record the effect of tinnitus treatment in real time, scientifically, objectively, conveniently and effectively. Ensure the reliability, scientificity, simple structure, easy evaluation and recordability of the evaluation results.
  • the sensor unit senses the activity range data of the tinnitus patient before treatment, the data is transmitted to the digital signal processor unit through the data acquisition unit, and then the digital signal processor unit records the pre-treatment data in the data storage unit, and then the sensor unit senses the tinnitus again.
  • the patient's range of activity data after treatment the data is transmitted to the digital signal processor unit through the data acquisition unit, and then the digital signal processor unit records the processed data in the data storage unit, while the data evaluation unit will be treated before After the activity range data is compared, the contrasted result is sent to the display unit.
  • the activity range data includes multiple location information of the tinnitus patient, compares multiple location information before and after treatment, and uses statistical analysis algorithms or tools to quantify the results and corresponding mathematical models to determine changes in different locations, thereby defining before and after treatment.
  • the behavioral improvement reflects the therapeutic effect and thus the effect.
  • Known statistical analysis algorithms or tools can be used in this application to quantify the results. For example, in medical research, hypothesis testing is generally used to determine whether the two sets of data before and after treatment are statistically different. See People's Health Publishing The seventh chapter of the 6th edition of the "Health Statistics" of the Society reflects the effect. If the difference is effective, the same has no effect.
  • the invention is specifically manifested in the range of activity of the tinnitus patients going to the leisure activities several times a week, going shopping several times a week, and if the tinnitus patients have different range of activities before and after treatment, the tinnitus treatment has an effect, the greater the difference, the better the effect, because the tinnitus It often causes anxiety, pain, anger, irritability and other emotional disorders, and the range of activities of tinnitus patients is very small. Therefore, by collecting the location information of the range of motion of tinnitus patients, the therapeutic effect of tinnitus patients can be evaluated, thereby achieving scientific, real, objective and convenient. Effectively evaluate and record the effects of tinnitus treatment and improve the quality of life.
  • a device for evaluating the effect of tinnitus treatment by using position locating technology comprises a housing and a sensor unit located in the housing, a data acquisition unit, a digital signal processor unit, a data evaluation unit, a data storage unit, a data transmission unit, a power management unit, and a display unit
  • the sensor unit is coupled to the data acquisition unit signal
  • the data acquisition unit is coupled to the digital signal processor unit signal
  • the data signal processor is coupled to the data evaluation unit signal
  • the data evaluation unit is coupled to the display unit signal.
  • the digital signal processor is also in bidirectional signal communication with a data storage unit and a data transmission unit, respectively, and the power management unit supplies power to the remaining units.
  • the button unit is coupled to a digital signal processor unit signal that provides human-computer interaction functionality.
  • the sensor unit is a GPS signal receiving device for sensing tinnitus patient position information.
  • the data acquisition unit collects data output by the sensor unit, and collects the data and sends it to the digital signal processor unit.
  • the digital signal processor unit processes the data output by the data acquisition unit, analyzes the data, and analyzes the data according to the data output by the acquisition unit to calculate the latitude and longitude, obtains the position coordinate information of the location ball, and then analyzes the position coordinate information according to the position coordinate information.
  • the location of the patient including the store, home, entertainment venue or gymnasium, etc., specifically determine whether the patient is in the store, home or entertainment venue is the existing technology
  • the main technical means is to query the self-borne electronic through the latitude and longitude coordinate information
  • the map is obtained whether the patient is in a store, a home, an entertainment place, or a gymnasium, and the analyzed data is sent to a data evaluation unit, a data storage unit, and a data transmission unit, respectively.
  • the evaluation unit evaluates the data analyzed by the processor unit to evaluate the therapeutic effect of the tinnitus patient.
  • the data storage unit stores the data calculated and analyzed by the digital signal processor unit for historical data query.
  • the data transmission unit is a Bluetooth transmission device or a wireless network transmission device, and transmits the data calculated and calculated by the digital signal processor unit to a mobile phone or a computer.
  • the power management unit supplies power to each unit separately.
  • the display unit is a display evaluation unit evaluation result for observing the evaluation result.
  • the housing is provided with a button switch, a power switch, a display screen and a charging interface.
  • the sensor unit senses the activity range data of the tinnitus patient before treatment, the data is transmitted to the digital signal processor unit through the data acquisition unit, and then the digital signal processor unit records the pre-treatment data in the data storage unit, and then the sensor unit senses the tinnitus again.
  • the patient's range of activity data after treatment the data is transmitted to the digital signal processor unit through the data acquisition unit, and then the digital signal processor unit records the processed data in the data storage unit, while the data evaluation unit will be treated before After the activity range data is compared, the contrasted result is sent to the display unit.
  • the activity range data includes multiple location information of the tinnitus patient, compares multiple location information before and after treatment, and uses statistical analysis algorithms or tools to quantify the results and corresponding mathematical models to determine changes in different locations, thereby defining before and after treatment.
  • the behavioral improvement reflects the therapeutic effect and thus the effect.
  • Known statistical analysis algorithms or tools can be used in this application to quantify the results. For example, in medical research, hypothesis testing is generally used to determine whether the two sets of data before and after treatment are statistically different. See People's Health Publishing The seventh chapter of the 6th edition of the "Health Statistics" of the Society reflects the effect. If the difference is effective, the same has no effect.
  • the invention is specifically manifested in the range of activity of the tinnitus patients going to the leisure activities several times a week, going shopping several times a week, and if the tinnitus patients have different range of activities before and after treatment, the tinnitus treatment has an effect, the greater the difference, the better the effect, because the tinnitus It often causes anxiety, pain, anger, irritability and other emotional disorders, and the range of activities of tinnitus patients is very small. Therefore, by collecting the location information of the range of motion of tinnitus patients, the therapeutic effect of tinnitus patients can be evaluated, thereby achieving scientific, real, objective and convenient. Effectively evaluate and record the effects of tinnitus treatment and improve the quality of life.
  • the invention receives the GPS signal through the GPS signal, calculates the patient position information through the digital signal processor, analyzes the processed data, sends it to the storage unit for storage, evaluates the evaluation level of the evaluation unit, etc., blue
  • the tooth data transmission unit exchanges data with the mobile phone or the computer, and compares the activity range data before and after the treatment of the tinnitus patient, thereby effectively evaluating the effect of the evaluation recording device of the tinnitus treatment effect in real life. Because tinnitus patients are more autistic, the ears are constantly ringing every day, and the patient's range of activities is limited. By comparing the patient's range of activities, for example, his activity range is 10 square kilometers before tinnitus treatment, and patients often move at home.
  • the range of activity is 1 square kilometer.
  • the patient is in his own room, indicating that the effect of tinnitus on the patient is getting worse and worse, and the treatment effect is poor.
  • the activity range after tinnitus treatment is 20 square kilometers, and the patient goes to the workplace.
  • the contrast indicates that tinnitus has a certain effect on the patient, and the therapeutic effect is in the middle; the activity range after tinnitus treatment is 100 square kilometers, and the patient often goes to entertainment places, gymnasiums, cafes, etc., which indicates that tinnitus has an increasing influence on patients.
  • the effect is good; the range of activity after tinnitus treatment is more than 1000 square kilometers, and the patient has gone to many places as before, and even went to a place that had not been visited before, which means The effect of tinnitus on the patient is gone, indicating that the effect is very good, which is objective. Thereby the object of the invention is achieved. There is no real, effective and objective response to the traditional method of patient tinnitus treatment. And the doctor's operation is complex and so on.
  • the invention can evaluate and record the effect of tinnitus treatment in real time, scientifically, objectively, conveniently and effectively. Ensure the reliability, scientificity, simple structure, easy evaluation and recordability of the evaluation results.
  • the invention provides an evaluation and recording device for the treatment effect of tinnitus, which has two embodiments, one is to put a tinnitus treatment (such as tinnitus treatment therapy) into the evaluation recording device for the treatment effect of tinnitus to form a unified tinnitus treatment.
  • the evaluation recording device of the effect can facilitate the patient to evaluate the effect before and after the use of the tinnitus treatment device; the other is an evaluation recording device that only has the effect of the tinnitus treatment, because there are many methods for treating tinnitus, such as: drug treatment, etc., the difference is that Whether to add a tinnitus treatment device.
  • Other units included are the same.
  • the housing is provided with a button for human-computer interaction; a power switch is arranged on the housing; a charging interface is arranged on the housing, which is composed of a USB2.0 MINIUSB interface; a display screen is arranged on the housing.
  • the GPS receiving unit, the data collecting unit, the digital signal processor unit, the data storage unit, the data evaluation unit, the Bluetooth data transmission unit, and the power management unit are all placed in the casing.
  • Digital signal processor unit and data acquisition unit, data storage unit, data evaluation unit, Bluetooth data transmission The units are connected in parallel.
  • the GPS receiving unit is connected to the data collecting unit; the display unit is connected to the data evaluation unit; the power management unit manages charging and discharging of the battery and respectively supplying power to each unit.
  • the digital signal processor unit includes a communication interface with the data acquisition unit for inputting data and communicating with the evaluation unit data for evaluating data transmission; and a communication interface with the storage unit for storing data, and The interface of the Bluetooth data transmission unit is used for recording data and evaluating data export, and the evaluation recording device for implementing the effect of the tinnitus is communicated with the computer or the mobile phone to achieve the purpose of remote data exchange.
  • a digital signal processor (DSP) is used to analyze data, process, and convert the latitude and longitude of the position signal of the tinnitus patient.
  • the GPS receiving unit receives the received satellite data to determine the location information of the tinnitus patient. It has high sensitivity and low power consumption.
  • the data acquisition unit is to collect satellite data received by the GPS receiving unit.
  • the data storage unit is for tinnitus patient data storage. It is mainly made up of a large-capacity SPI interface with ferroelectric memory. Convenient for historical data queries.
  • the data evaluation unit is to evaluate the therapeutic effect of the tinnitus patient.
  • the treatment effect is poor, general, very good, excellent, quite good and so on.
  • the Bluetooth data transmission unit realizes communication between the mobile phone and the computer, thereby finally realizing remote data exchange. It consists mainly of a Bluetooth module with a serial interface. It has the characteristics of fast data transmission and low power consumption.
  • the display unit is convenient for the tinnitus patient and the doctor to view the tinnitus treatment effect. It consists mainly of an OLED color display with an SPI interface. It mainly has the characteristics of wide viewing angle, low power consumption and long service life.
  • the power management unit supplies power to each unit and manages the battery. It mainly consists of a plurality of voltage stabilizing circuits to stabilize the voltage required by each unit, and supplies them; manages the battery, realizes battery charging and discharging, temperature monitoring, and the like.
  • the battery uses a lithium battery. The battery has the characteristics of large capacity and environmental protection.
  • the button unit is a human-machine interface of an evaluation recording device for operating a tinnitus treatment effect of a tinnitus patient, and is mainly used for operation of tinnitus patient information viewing, patient signal input, and the like.
  • the device receives the GPS signal, collects the GPS signal, calculates the patient position information through the digital signal processor, analyzes the processed data, sends it to the storage unit for storage, evaluates the evaluation level, etc., and the Bluetooth data transmission unit exchanges data with the mobile phone or the computer. , compare the number of activities before and after treatment in patients with tinnitus According to this, the evaluation of the effect of the treatment of tinnitus is effectively evaluated in the actual life effect. Thereby the object of the invention is achieved. There is no real, effective and objective response to the traditional method of patient tinnitus treatment. And the doctor's operation is complex and so on.

Abstract

一种采用位置定位技术评估耳鸣治疗效果的装置及方法,传感器单元与数据采集单元信号相连,数据采集单元与数字信号处理器单元信号相连,数字信号处理器单元与数据评估单元信号相连,数据评估单元与显示单元信号相连,数字信号处理器单元还分别与数据存储单元和数据传输单元双向信号连通,电源管理单元向其余各个单元供电。耳鸣患者在治疗前后活动范围有差别,说明耳鸣治疗有效果,差别越大效果越好,通过采集耳鸣患者活动范围的位置信息就可以评估耳鸣患者治疗效果,从而达到科学、真实、客观、方便、有效评估、记录耳鸣治疗效果,提高生活质量的目的。

Description

一种采用位置定位技术评估耳鸣治疗效果的装置及方法 技术领域
本发明属于医疗技术领域,具体的说是一种采用位置定位技术评估耳鸣治疗效果的装置及方法。
背景技术
耳鸣是指病人自觉耳内鸣响,如闻蝉声,或如潮声。耳鸣的发病率统计存在较大差异,不同的研究方法可能得出不同的结论。有作者分析了1453例耳鸣患者后提出了有关耳鸣的发病率,根据随访资料发现耳鸣患病率为17.8%,其中49.1%的患者偶有耳鸣。据报道听力下降的患者中至少有70%伴有耳鸣症状。如将耳鸣不足5分钟者也计算在内,则大约60%的人在一生中曾经有过耳鸣的症状。以耳鸣为主诉的病人约占耳鼻喉科门诊的10-20%。美国和欧洲有17%的人体验过5分钟以上的耳鸣,其中7%耳鸣者经常寻医问药,患者的耳鸣严重影响生活、睡眠、精力集中、工作能力和社交活动,因耳鸣而犹如残疾,65岁以上33%的人有过耳鸣。据此保守估计,中国分别有10%的人体验过耳鸣,5%耳鸣者寻求医药治疗,2%患者的耳鸣严重影响生活、睡眠、精力集中、工作能力和社交活动。随着饮食习惯的变化等因素引起心血管系统疾病的增加、人口老龄化以及工业、环境噪声的增加,耳鸣的发病率逐年升高,严重影响人们的生存质量。因此,耳鸣已经成为临床迫切需要解决的难题。当前治疗耳鸣的方法比较多,如:耳鸣咨询(Counseling),声音治疗(Sound Therapy)、助听器(Hearing Aids)、心理治疗(Psychological Therapies)、药物治疗(Medications)、耳鸣习服治疗(Tinnitus retraining therapy)、耳鸣活动治疗(Tinnitus Activities Treatment)、耳鸣的自助治疗(Tinnitus Self~treatment)、电刺激治疗耳鸣(Electrical stimulation to reduce tinnitus)等等。虽然现在有很多方式可以治疗耳鸣,但是对耳鸣客观评估是治疗耳鸣的前提条件。在临床中,需要一种客观、真实有效的评估方法,当前评估耳鸣的主要方法是采用耳鸣评估量表的形式,而且评估量表在各大医院和科研机构是不一样的,其主要形式都是通过医生对患者进行询问问题,医生对患者所答的问题进行评分,从而评估患者耳鸣治疗效果。这种方式主观因素比较大,医生提的问题多、有些患者表述不清,医生 所提问题对患者的难易度等情况都会对评估评分带来相当大的干扰,没有真实、有效、客观的反应患者耳鸣治疗效果。且医生操作复杂。这些都是主观评价的方法,因此我们需要一种客观评价耳鸣的方法。
发明内容
本发明的目的在于提供一种能客观对耳鸣治疗前后效果在实际生活质量进行量化分析评估耳鸣治疗效果的装置方法。
为达到本发明的目的,本发明的技术方案如下:
一种采用位置定位技术评估耳鸣治疗效果的装置,其特征在于:包括外壳和位于外壳内的传感器单元、数据采集单元、数字信号处理器单元、数据评估单元、数据存储单元、数据传输单元、电源管理单元、显示单元;所述传感器单元与数据采集单元信号相连,所述数据采集单元与数字信号处理器单元信号相连,所述数据信号处理器与数据评估单元信号相连,所述数据评估单元与显示单元信号相连,所述数字信号处理器还分别与数据存储单元和数据传输单元双向信号连通,所述电源管理单元向其余各个单元供电。
还包括有按键单元,所述按键单元与数字信号处理器单元信号相连,所述按键单元提供人机交互的功能。
所述传感器单元为GPS信号接收装置,用于感应耳鸣患者位置信息。
所述数据采集单元是采集传感器单元输出的数据,将数据采集后送到数字信号处理器单元。
所述数字信号处理器单元是将数据采集单元输出的数据进行处理,分析数据,分析数据具体为根据采集单元输出的数据进行经纬度计算,得出所在地球的位置坐标信息,再根据位置坐标信息分析出患者所在位置,所在位置包括商店、家、娱乐场所或体育馆等,具体判断患者是在商店、家还是娱乐场所则为现有技术,主要的技术手段是通过经纬度坐标信息查询自带的电子地图得到患者是在商店、家、娱乐场所、还是在体育馆,并将分析计算后的数据分别送到数据评估单元、数据存储单元、数据传输单元。
所述评估单元是将处理器单元分析后的数据进行评估,评估耳鸣患者治疗效果。
所述数据存储单元是将数字信号处理器单元分析计算后的数据进行存储,用 于历史数据查询。
所述数据传输单元为蓝牙传输装置或者无线网络传输装置,是将数字信号处理器单元分析计算后的数据传输给手机或电脑。
所述电源管理单元是分别给各个单元供电。
所述显示单元是显示评估单元评估结果,用于观察评估结果。
所述外壳上设置有按键开关、电源开关、显示屏和充电接口。
传感器单元感应耳鸣患者在治疗前的活动范围数据,数据通过数据采集单元传送至数字信号处理器单元,然后数字信号处理器单元将治疗前的数据记录在数据存储单元中,然后传感器单元再感应耳鸣患者在治疗后的活动范围数据,数据通过数据采集单元传送至数字信号处理器单元,然后数字信号处理器单元将治疗后的数据记录在数据存储单元中,与此同时,数据评估单元将治疗前、后的活动范围数据进行对比,将对比后的结果输送至显示单元。
活动范围数据包括耳鸣患者的多个位置信息,将治疗前、后的多个位置信息进行对比,使用统计分析算法或工具来量化结果和相应的数学模型来判断不同位置的变化,从而界定治疗前后的行为改善,体现治疗效果,从而体现效果。本申请中可使用公知的统计分析算法或工具来量化结果,如在医疗卫生研究中,一般使用假设检验,可得出治疗前后这两组数据是否具有统计学意义上的不同,参见人民卫生出版社的《卫生统计学》第6版第七章,从而体现效果,如不同是有效果,相同没有效果。
本发明的优点在于:
1、本发明具体表现在耳鸣患者一周去休闲活动几次、一周去购物几次等活动范围大小,如果耳鸣患者在治疗前后活动范围有差别,说明耳鸣治疗有效果,差别越大效果越好,因为耳鸣常常使患者产生焦虑、痛苦、愤怒、烦躁等情绪障碍而产生耳鸣患者活动范围很小,所以通过采集耳鸣患者活动范围的位置信息就可以评估耳鸣患者治疗效果,从而达到科学、真实、客观、方便、有效评估、记录耳鸣治疗效果,提高生活质量的目的。
2、本发明是通过GPS信号接收,采集GPS信号,通过数字信号处理器计算患者位置信息,分析处理数据等,送到存储单元存储,评估单元评估效果等级等,蓝牙数据传输单元与手机或电脑数据交换,对比耳鸣患者治疗前后的活动范围数 据,从而有效的评估出耳鸣治疗效果的评估记录装置在实际生活中的效果。因为耳鸣患者比较自闭,每天都是耳朵不停的响,患者的活动范围就有限,通过比较患者的活动范围,例如在耳鸣治疗前他的活动范围是10平方公里,患者经常在家活动。耳鸣治疗后的活动范围是1平方公里,患者就在自己的房间,说明耳鸣对患者影响越来越严重了,治疗效果就差;耳鸣治疗后的活动范围是20平方公里,患者去工作场所了,对比说明耳鸣对患者有一定疗效,治疗效果就中;耳鸣治疗后的活动范围是100平方公里,而且患者经常去娱乐场所、体育馆、咖啡馆等,这就说明耳鸣对患者的影响越来越小,说明是效果好;耳鸣治疗后的活动范围是大于1000平方公里,而且患者是和没有患病以前一样去过很多地方,甚至去了很多以前患病前没有去过的地方,这就说明耳鸣对患者的影响没有了,说明是效果很好,这是客观的。从而达到本发明的目的。改变了传统方式的没有真实、有效、客观的反应患者耳鸣治疗效果。且医生操作复杂等特点。
3、本发明与传统耳鸣评估量表相比,能实时、科学、客观、方便、有效评估、记录耳鸣治疗效果。保证评估结果的可靠性,科学性,且结构简单、评估和记录方便等。
附图说明
图1为本发明各单元结构示意图。
图2为本发明外观示意图。
具体实施方式
实施例1
一种采用位置定位技术评估耳鸣治疗效果的装置包括外壳和位于外壳内的传感器单元、数据采集单元、数字信号处理器单元、数据评估单元、数据存储单元、数据传输单元、电源管理单元、显示单元;所述传感器单元与数据采集单元信号相连,所述数据采集单元与数字信号处理器单元信号相连,所述数据信号处理器与数据评估单元信号相连,所述数据评估单元与显示单元信号相连,所述数字信号处理器还分别与数据存储单元和数据传输单元双向信号连通,所述电源管理单元向其余各个单元供电。本发明具体表现在耳鸣患者一周去休闲活动几次、一周去购物几次等活动范围大小,如果耳鸣患者在治疗前后活动范围有差别,说明耳鸣治疗有效果,差别越大效果越好,因为耳鸣常常使患者产生焦虑、痛苦、 愤怒、烦躁等情绪障碍而产生耳鸣患者活动范围很小,所以通过采集耳鸣患者活动范围的位置信息就可以评估耳鸣患者治疗效果,从而达到科学、真实、客观、方便、有效评估、记录耳鸣治疗效果,提高生活质量的目的。
实施例2
一种采用位置定位技术评估耳鸣治疗效果的装置包括外壳和位于外壳内的传感器单元、数据采集单元、数字信号处理器单元、数据评估单元、数据存储单元、数据传输单元、电源管理单元、显示单元;所述传感器单元与数据采集单元信号相连,所述数据采集单元与数字信号处理器单元信号相连,所述数据信号处理器与数据评估单元信号相连,所述数据评估单元与显示单元信号相连,所述数字信号处理器还分别与数据存储单元和数据传输单元双向信号连通,所述电源管理单元向其余各个单元供电。
还包括有按键单元,所述按键单元与数字信号处理器单元信号相连,所述按键单元提供人机交互的功能。所述传感器单元为GPS信号接收装置,用于感应耳鸣患者位置信息。所述数据采集单元是采集传感器单元输出的数据,将数据采集后送到数字信号处理器单元。所述数字信号处理器单元是将数据采集单元输出的数据进行处理,分析数据,分析数据具体为根据采集单元输出的数据进行经纬度计算,得出所在地球的位置坐标信息,再根据位置坐标信息分析出患者所在位置,所在位置包括商店、家、娱乐场所或体育馆等,具体判断患者是在商店、家还是娱乐场所则为现有技术,主要的技术手段是通过经纬度坐标信息查询自带的电子地图得到患者是在商店、家、娱乐场所、还是在体育馆,并将分析计算后的数据分别送到数据评估单元、数据存储单元、数据传输单元。所述评估单元是将处理器单元分析后的数据进行评估,评估耳鸣患者治疗效果。所述数据存储单元是将数字信号处理器单元分析计算后的数据进行存储,用于历史数据查询。所述数据传输单元为蓝牙传输装置或者无线网络传输装置,是将数字信号处理器单元分析计算后的数据传输给手机或电脑。所述电源管理单元是分别给各个单元供电。所述显示单元是显示评估单元评估结果,用于观察评估结果。所述外壳上设置有按键开关、电源开关、显示屏和充电接口。
本发明具体表现在耳鸣患者一周去休闲活动几次、一周去购物几次等活动范围大小,如果耳鸣患者在治疗前后活动范围有差别,说明耳鸣治疗有效果,差别 越大效果越好,因为耳鸣常常使患者产生焦虑、痛苦、愤怒、烦躁等情绪障碍而产生耳鸣患者活动范围很小,所以通过采集耳鸣患者活动范围的位置信息就可以评估耳鸣患者治疗效果,从而达到科学、真实、客观、方便、有效评估、记录耳鸣治疗效果,提高生活质量的目的。
本发明是通过GPS信号接收,采集GPS信号,通过数字信号处理器计算患者位置信息,分析处理数据等,送到存储单元存储,评估单元评估效果等级等,蓝牙数据传输单元与手机或电脑数据交换,对比耳鸣患者治疗前后的活动范围数据,从而有效的评估出耳鸣治疗效果的评估记录装置在实际生活中的效果。因为耳鸣患者比较自闭,每天都是耳朵不停的响,患者的活动范围就有限,通过比较患者的活动范围,例如在耳鸣治疗前他的活动范围是10平方公里,患者经常在家活动。耳鸣治疗后的活动范围是1平方公里,患者就在自己的房间,说明耳鸣对患者影响越来越严重了,治疗效果就差;耳鸣治疗后的活动范围是20平方公里,患者去工作场所了,对比说明耳鸣对患者有一定疗效,治疗效果就中;耳鸣治疗后的活动范围是100平方公里,而且患者经常去娱乐场所、体育馆、咖啡馆等,这就说明耳鸣对患者的影响越来越小,说明是效果好;耳鸣治疗后的活动范围是大于1000平方公里,而且患者是和没有患病以前一样去过很多地方,甚至去了很多以前患病前没有去过的地方,这就说明耳鸣对患者的影响没有了,说明是效果很好,这是客观的。从而达到本发明的目的。改变了传统方式的没有真实、有效、客观的反应患者耳鸣治疗效果。且医生操作复杂等特点。
本发明与传统耳鸣评估量表相比,能实时、科学、客观、方便、有效评估、记录耳鸣治疗效果。保证评估结果的可靠性,科学性,且结构简单、评估和记录方便等。
实施例3
传感器单元感应耳鸣患者在治疗前的活动范围数据,数据通过数据采集单元传送至数字信号处理器单元,然后数字信号处理器单元将治疗前的数据记录在数据存储单元中,然后传感器单元再感应耳鸣患者在治疗后的活动范围数据,数据通过数据采集单元传送至数字信号处理器单元,然后数字信号处理器单元将治疗后的数据记录在数据存储单元中,与此同时,数据评估单元将治疗前、后的活动范围数据进行对比,将对比后的结果输送至显示单元。
活动范围数据包括耳鸣患者的多个位置信息,将治疗前、后的多个位置信息进行对比,使用统计分析算法或工具来量化结果和相应的数学模型来判断不同位置的变化,从而界定治疗前后的行为改善,体现治疗效果,从而体现效果。本申请中可使用公知的统计分析算法或工具来量化结果,如在医疗卫生研究中,一般使用假设检验,可得出治疗前后这两组数据是否具有统计学意义上的不同,参见人民卫生出版社的《卫生统计学》第6版第七章,从而体现效果,如不同是有效果,相同没有效果。
本发明具体表现在耳鸣患者一周去休闲活动几次、一周去购物几次等活动范围大小,如果耳鸣患者在治疗前后活动范围有差别,说明耳鸣治疗有效果,差别越大效果越好,因为耳鸣常常使患者产生焦虑、痛苦、愤怒、烦躁等情绪障碍而产生耳鸣患者活动范围很小,所以通过采集耳鸣患者活动范围的位置信息就可以评估耳鸣患者治疗效果,从而达到科学、真实、客观、方便、有效评估、记录耳鸣治疗效果,提高生活质量的目的。
实施例4
一种采用位置定位技术评估耳鸣治疗效果的装置包括外壳和位于外壳内的传感器单元、数据采集单元、数字信号处理器单元、数据评估单元、数据存储单元、数据传输单元、电源管理单元、显示单元;所述传感器单元与数据采集单元信号相连,所述数据采集单元与数字信号处理器单元信号相连,所述数据信号处理器与数据评估单元信号相连,所述数据评估单元与显示单元信号相连,所述数字信号处理器还分别与数据存储单元和数据传输单元双向信号连通,所述电源管理单元向其余各个单元供电。
还包括有按键单元,所述按键单元与数字信号处理器单元信号相连,所述按键单元提供人机交互的功能。所述传感器单元为GPS信号接收装置,用于感应耳鸣患者位置信息。所述数据采集单元是采集传感器单元输出的数据,将数据采集后送到数字信号处理器单元。所述数字信号处理器单元是将数据采集单元输出的数据进行处理,分析数据,分析数据具体为根据采集单元输出的数据进行经纬度计算,得出所在地球的位置坐标信息,再根据位置坐标信息分析出患者所在位置,所在位置包括商店、家、娱乐场所或体育馆等,具体判断患者是在商店、家还是娱乐场所则为现有技术,主要的技术手段是通过经纬度坐标信息查询自带的电子 地图得到患者是在商店、家、娱乐场所、还是在体育馆,并将分析计算后的数据分别送到数据评估单元、数据存储单元、数据传输单元。所述评估单元是将处理器单元分析后的数据进行评估,评估耳鸣患者治疗效果。所述数据存储单元是将数字信号处理器单元分析计算后的数据进行存储,用于历史数据查询。所述数据传输单元为蓝牙传输装置或者无线网络传输装置,是将数字信号处理器单元分析计算后的数据传输给手机或电脑。所述电源管理单元是分别给各个单元供电。所述显示单元是显示评估单元评估结果,用于观察评估结果。所述外壳上设置有按键开关、电源开关、显示屏和充电接口。
传感器单元感应耳鸣患者在治疗前的活动范围数据,数据通过数据采集单元传送至数字信号处理器单元,然后数字信号处理器单元将治疗前的数据记录在数据存储单元中,然后传感器单元再感应耳鸣患者在治疗后的活动范围数据,数据通过数据采集单元传送至数字信号处理器单元,然后数字信号处理器单元将治疗后的数据记录在数据存储单元中,与此同时,数据评估单元将治疗前、后的活动范围数据进行对比,将对比后的结果输送至显示单元。
活动范围数据包括耳鸣患者的多个位置信息,将治疗前、后的多个位置信息进行对比,使用统计分析算法或工具来量化结果和相应的数学模型来判断不同位置的变化,从而界定治疗前后的行为改善,体现治疗效果,从而体现效果。本申请中可使用公知的统计分析算法或工具来量化结果,如在医疗卫生研究中,一般使用假设检验,可得出治疗前后这两组数据是否具有统计学意义上的不同,参见人民卫生出版社的《卫生统计学》第6版第七章,从而体现效果,如不同是有效果,相同没有效果。
本发明具体表现在耳鸣患者一周去休闲活动几次、一周去购物几次等活动范围大小,如果耳鸣患者在治疗前后活动范围有差别,说明耳鸣治疗有效果,差别越大效果越好,因为耳鸣常常使患者产生焦虑、痛苦、愤怒、烦躁等情绪障碍而产生耳鸣患者活动范围很小,所以通过采集耳鸣患者活动范围的位置信息就可以评估耳鸣患者治疗效果,从而达到科学、真实、客观、方便、有效评估、记录耳鸣治疗效果,提高生活质量的目的。
本发明是通过GPS信号接收,采集GPS信号,通过数字信号处理器计算患者位置信息,分析处理数据等,送到存储单元存储,评估单元评估效果等级等,蓝 牙数据传输单元与手机或电脑数据交换,对比耳鸣患者治疗前后的活动范围数据,从而有效的评估出耳鸣治疗效果的评估记录装置在实际生活中的效果。因为耳鸣患者比较自闭,每天都是耳朵不停的响,患者的活动范围就有限,通过比较患者的活动范围,例如在耳鸣治疗前他的活动范围是10平方公里,患者经常在家活动。耳鸣治疗后的活动范围是1平方公里,患者就在自己的房间,说明耳鸣对患者影响越来越严重了,治疗效果就差;耳鸣治疗后的活动范围是20平方公里,患者去工作场所了,对比说明耳鸣对患者有一定疗效,治疗效果就中;耳鸣治疗后的活动范围是100平方公里,而且患者经常去娱乐场所、体育馆、咖啡馆等,这就说明耳鸣对患者的影响越来越小,说明是效果好;耳鸣治疗后的活动范围是大于1000平方公里,而且患者是和没有患病以前一样去过很多地方,甚至去了很多以前患病前没有去过的地方,这就说明耳鸣对患者的影响没有了,说明是效果很好,这是客观的。从而达到本发明的目的。改变了传统方式的没有真实、有效、客观的反应患者耳鸣治疗效果。且医生操作复杂等特点。
本发明与传统耳鸣评估量表相比,能实时、科学、客观、方便、有效评估、记录耳鸣治疗效果。保证评估结果的可靠性,科学性,且结构简单、评估和记录方便等。
实施例6
本发明提供了一种耳鸣治疗效果的评估记录装置,它有两种实施方式,一种是把耳鸣治疗(如耳鸣习服疗法类治疗)放入耳鸣治疗效果的评估记录装置内构成统一耳鸣治疗效果的评估记录装置,可以方便患者在使用耳鸣治疗装置前后效果评估记录;另外一种是只有耳鸣治疗效果的评估记录装置,因为治疗耳鸣有很多种方法,如:药物治疗等),它们区别在于是否加入耳鸣治疗装置。其它包括的单元是一样。它们都包括GPS接收单元、数据采集单元、数字信号处理器单元、数据存储单元、数据评估单元、蓝牙数据传输单元、电源管理单元、显示单元、人机接口的按键单元等。壳体上设置有按键关关用于人机交互;壳体上设置有电源开关;壳体上设置有充电接口,它由一个USB2.0的MINIUSB接口构成;壳体上设置有显示屏等。GPS接收单元、数据采集单元、数字信号处理器单元、数据存储单元、数据评估单元、蓝牙数据传输单元、电源管理单元都置于盒体内。数字信号处理器单元与数据采集单元、数据存储单元、数据评估单元、蓝牙数据传输 单元并联连接。GPS接收单元连接于数据采集单元;显示单元连接于数据评估单元;电源管理单元管理电池充放电和分别向各个单元供电。
所述数字信号处理器单元包括与数据采集单元通迅接口,用于把数据输入、与评估单元数据通迅接口,用于评估数据传输;与存储单元的通迅接口,用于存储数据,与蓝牙数据传输单元的接口,用于记录数据和评估数据导出,实现耳鸣治疗效果的评估记录装置和计算机或手机进行通讯,达到远程数据交换的目的。数字信号处理器(DSP)作为分析数据、处理、转换耳鸣患者位置信号的经纬度等。
所述GPS接收单元是将接收卫星数据接收下来,以确定耳鸣患者位置信息。它具有高灵敏度、低功耗等特点。
所述数据采集单元是采集GPS接收单元接收的卫星数据。
所述数据存储单元是用于耳鸣患者数据存储。它主要由一个大容量SPI接口的铁电存储器够成。方便历史数据查询。
所述数据评估单元是评估耳鸣患者治疗效果。治疗效果差、一般、很好、极好、相当好等评价。
所述蓝牙数据传输单元是实现手机和电脑进行通迅,从而最终实现远程数据交换。它主要由一个串行接口的蓝牙模块构成。它具有数据传输快、功耗低等特点。
所述显示单元是便于耳鸣患者与医生等查看耳鸣治疗效果。它主要由一个SPI接口的OLED彩色显示屏构成。它主要具有视角宽、低功耗、使用寿命长等特点。
所述电源管理单元是给各个单元供电和管理电池。它主要由多个稳压电路稳出各个单元所需的电压,供给它们;管理电池,实现电池的充放电、温度等监测等。电池采用锂电池。电池具有大容量、环保等特点。
所述按键单元是耳鸣患者操作耳鸣治疗效果的评估记录装置的人机接口,它主是用于耳鸣患者信息查看、患者信号输入等操作。
本装置是通过GPS信号接收,采集GPS信号,通过数字信号处理器计算患者位置信息,分析处理数据等,送到存储单元存储,评估单元评估效果等级等,蓝牙数据传输单元与手机或电脑数据交换,对比耳鸣患者治疗前后的活动范围数 据,从而有效的评估出耳鸣治疗效果的评估记录装置在实际生活中的效果。从而达到本发明的目的。改变了传统方式的没有真实、有效、客观的反应患者耳鸣治疗效果。且医生操作复杂等特点。

Claims (9)

  1. 一种采用位置定位技术评估耳鸣治疗效果的装置,其特征在于:包括外壳和位于外壳内的传感器单元、数据采集单元、数字信号处理器单元、数据评估单元、数据存储单元、数据传输单元、电源管理单元、显示单元;所述传感器单元与数据采集单元信号相连,所述数据采集单元与数字信号处理器单元信号相连,所述数据信号处理器与数据评估单元信号相连,所述数据评估单元与显示单元信号相连,所述数字信号处理器还分别与数据存储单元和数据传输单元双向信号连通,所述电源管理单元向其余各个单元供电。
  2. 根据权利要求1所述的一种采用位置定位技术评估耳鸣治疗效果的装置,其特征在于:还包括有按键单元,所述按键单元与数字信号处理器单元信号相连,所述按键单元提供人机交互的功能。
  3. 根据权利要求2所述的一种采用位置定位技术评估耳鸣治疗效果的装置,其特征在于:所述传感器单元为GPS信号接收装置,用于感应耳鸣患者位置信息;所述数据采集单元是采集传感器单元输出的数据,将数据采集后送到数字信号处理器单元。
  4. 根据权利要求3所述的一种采用位置定位技术评估耳鸣治疗效果的装置,其特征在于:所述数字信号处理器单元是将数据采集单元输出的数据进行处理,分析数据,分析数据具体为根据采集单元输出的数据进行经纬度计算,得出所在地球的位置坐标信息,再根据位置坐标信息分析出患者所在位置,并将分析计算后的数据分别送到数据评估单元、数据存储单元、数据传输单元。
  5. 根据权利要求4所述的一种采用位置定位技术评估耳鸣治疗效果的装置,其特征在于:所述评估单元是将处理器单元分析后的数据进行评估,评估耳鸣患者治疗效果;所述数据存储单元是将数字信号处理器单元分析计算后的数据进行存储,用于历史数据查询;所述数据传输单元为蓝牙传输装置或者无线网络传输装置,是将数字信号处理器单元分析计算后的数据传输给手机或电脑。
  6. 根据权利要求5所述的一种采用位置定位技术评估耳鸣治疗效果的装置,其特征在于:所述电源管理单元是分别给各个单元供电;所述显示单元是显示评估单元评估结果,用于观察评估结果。
  7. 根据权利要求6所述的一种采用位置定位技术评估耳鸣治疗效果的装置, 其特征在于:所述外壳上设置有按键开关、电源开关、显示屏和充电接口。
  8. 一种采用位置定位技术评估耳鸣治疗效果的方法,其特征在于:传感器单元感应耳鸣患者在治疗前的活动范围数据,数据通过数据采集单元传送至数字信号处理器单元,然后数字信号处理器单元将治疗前的数据记录在数据存储单元中,然后传感器单元再感应耳鸣患者在治疗后的活动范围数据,数据通过数据采集单元传送至数字信号处理器单元,然后数字信号处理器单元将治疗后的数据记录在数据存储单元中,与此同时,数据评估单元将治疗前、后的活动范围数据进行对比,将对比后的结果输送至显示单元。
  9. 根据权利要求8所述的一种采用位置定位技术评估耳鸣治疗效果的方法,其特征在于:活动范围数据包括耳鸣患者的多个位置信息,将治疗前、后的多个位置信息进行对比,使用统计分析算法或工具来量化结果。
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