WO2021196063A1 - 一种利用多导监测肺炎患者睡眠的***和方法 - Google Patents

一种利用多导监测肺炎患者睡眠的***和方法 Download PDF

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WO2021196063A1
WO2021196063A1 PCT/CN2020/082665 CN2020082665W WO2021196063A1 WO 2021196063 A1 WO2021196063 A1 WO 2021196063A1 CN 2020082665 W CN2020082665 W CN 2020082665W WO 2021196063 A1 WO2021196063 A1 WO 2021196063A1
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module
unit
sleep
sensing unit
detection
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PCT/CN2020/082665
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French (fr)
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刘浩源
杨姗也
郑玉军
胡万宁
蒋秋英
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唐山哈船科技有限公司
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Priority to PCT/CN2020/082665 priority Critical patent/WO2021196063A1/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
    • A61B5/02Detecting, measuring or recording pulse, heart rate, blood pressure or blood flow; Combined pulse/heart-rate/blood pressure determination; Evaluating a cardiovascular condition not otherwise provided for, e.g. using combinations of techniques provided for in this group with electrocardiography or electroauscultation; Heart catheters for measuring blood pressure
    • A61B5/0205Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/145Measuring characteristics of blood in vivo, e.g. gas concentration, pH value; Measuring characteristics of body fluids or tissues, e.g. interstitial fluid, cerebral tissue

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  • the present invention relates to the technical field of sleep detection devices, and in particular to a system and method for monitoring the sleep of patients with pneumonia by using multi-channels.
  • Polysomnography is the most important examination for diagnosing sleep snoring (sleep apnea hypopnea syndrome, OSAHS). Because of impaired lung function, it is often difficult for patients with pneumonia to ensure good sleep quality. Through the monitoring of continuous breathing, arterial oxygen saturation, electroencephalogram, electrocardiogram, heart rate and other indicators at night, it is possible to know whether the snorer has apneas, the number of pauses, the duration of the pauses, the minimum arterial blood oxygen value when the pause occurs, and The degree of impact on physical health. Polysomnography is the most commonly used method of sleep monitoring, the most important examination for diagnosing snoring, and it is an internationally recognized gold standard for diagnosing sleep apnea hypopnea syndrome.
  • the existing device can measure different data, it needs to manually record the data during the measurement process, which makes the use more cumbersome.
  • the fault detection is also the visual inspection of manual experience, which makes the measurement data inaccurate.
  • the present invention provides a system and method for monitoring the sleep of patients with pneumonia by using multi-channels, which solves the problem of troublesome recording.
  • a system for monitoring the sleep of a patient with pneumonia by using multi-channels includes a central processing module.
  • the central processing module is electrically connected with a display module, a sleep detection module, a breathing detection module, a heart detection module, a body position detection module, a data transmission module, A power supply module and a fault monitoring and warning module, the fault monitoring and warning module is electrically connected to the display module through a wire.
  • the sleep module includes an amplifier, an EEG sensing unit, an ECG sensing unit, an EMG sensing unit, and an EOG sensing unit, and the EEG sensing unit, ECG sensing unit, EMG sensing unit and EOG sensing unit are all electrically connected to the amplifier through a wire .
  • the breathing detection module includes an amplifier, a snoring sound sensing unit, a timing unit, a chest and abdomen motion sensing unit, and a heat-sensitive airflow sensing unit, the snoring sound sensing unit, a timing unit, a chest and abdomen motion sensing unit, and a heat-sensitive airflow sensing unit Both are electrically connected with the amplifier through a wire.
  • the heart detection module includes an amplifier, a blood oxygen detection unit, a pulse detection unit, a blood pressure detection unit, and a timing unit.
  • the blood oxygen detection unit, pulse detection unit, blood pressure detection unit and timing unit are all connected to the amplifier through a wire. connect.
  • the body position detection module includes an amplifier, an angle detection unit, a counter and a displacement detection unit, and the angle detection unit, the counter and the displacement detection unit are all electrically connected to the amplifier through a wire.
  • the fault monitoring and warning module includes an amplifier, an LED lamp, a vibrator and a signal output unit, and the LED lamp, the vibrator and the signal output unit are all electrically connected to the amplifier through a wire.
  • the power supply module includes a battery, a voltage transformation unit and a voltage stabilization unit, and both the battery and the voltage unit are electrically connected to the voltage stabilization unit through wires.
  • a method for monitoring the sleep of patients with pneumonia using multi-channel leads includes the following steps:
  • S1 Install the EEG sensing unit, ECG sensing unit, EMG sensing unit and EOG sensing unit in the sleep detection module to different positions of the body in turn, and install the snoring sensing unit and thermal airflow sensing unit in the breathing detection module to the outside of the nasal cavity. Then install and fit the chest and abdomen motion sensing unit to the outside of the chest cavity.
  • the blood oxygen detection unit, pulse detection unit and blood pressure detection unit in the heart detection module are installed and fixed on the finger, and the angle detection unit and displacement detection unit in the body position detection module Install to arms and legs;
  • step S2 After completing step S1, turn on the power so that the central processing module and the power supply module work, and each detection module performs detection at the same time, the data transmission module transmits the collected data wirelessly, and the fault monitoring and warning module automatically detects each detection module in real time The working status is then output to the display module for display in real time.
  • the determined data is transmitted to the central processing module, and the central processing module transmits the fault information to the background doctor through the data transmission module;
  • step S3 In step S2, during the monitoring process, the data transmission device is used to remotely observe the quality of sleep, and while collecting multiple data, the doctor makes a judgment;
  • each detection module is pulled out from the human body and disinfected at the same time.
  • the doctor uses the data to make the initial and final diagnosis and treatment countermeasures.
  • the sleep detection module, respiration detection module, heart detection module and body position detection module all require professional nurses to locate and install to determine the installation positions of the sleep detection module, respiration detection module, heart detection module and body position detection module.
  • the data transmission device adopts a wireless transmission mode
  • the disinfection mode adopts a combination of chemical disinfection and physical disinfection.
  • the data transmission module Through the wireless transmission of the data transmission module, the data can be transmitted remotely, and the centralized processing and transmission of different data can be carried out at the same time, which is convenient for personnel to record and facilitate diagnosis.
  • the faults in the system can be detected to reduce data measurement errors and ensure the accuracy of the data.
  • Figure 1 is a system diagram of the present invention.
  • Figure 2 is a system diagram of the invented sleep detection module for patients with pneumonia.
  • Figure 3 is a system diagram of the inventive breath detection module.
  • Figure 4 is a system diagram of the invented heart detection module.
  • Figure 5 is a system diagram of the body position detection module of the invention.
  • Figure 6 is a system diagram of the invented fault monitoring and warning module.
  • Fig. 7 is a system diagram of the power supply module of the invention.
  • a system for monitoring the sleep of a patient with pneumonia by using multi-channels including a central processing module.
  • the central processing module is electrically connected with a display module, a sleep detection module, a breathing detection module, a heart detection module, and a body position detection module through wires.
  • the data transmission module, the power supply module, the fault monitoring and warning module, and the fault monitoring and warning module are electrically connected to the display module through a wire.
  • the sleep module includes an amplifier EEG sensing unit, ECG sensing unit, EMG sensing unit and EOG sensing unit.
  • the EEG sensing unit, ECG sensing unit, EMG sensing unit and EOG sensing unit are all electrically connected to the amplifier through wires.
  • the detection of electricity, eye electricity, myoelectricity and brain current can detect part of the sleep data.
  • the breathing detection module includes an amplifier, a snoring sound sensing unit, a timing unit, a chest and abdomen motion sensing unit, and a heat-sensitive airflow sensing unit.
  • the snoring sound sensing unit, timing unit, chest and abdomen motion sensing unit and heat-sensitive airflow sensing unit all pass through the wire and the amplifier through the wire Electrically connected, the respiration detection module can perform respiration detection and measure various data of snoring.
  • the heart detection module includes an amplifier, a blood oxygen detection unit, a pulse detection unit, a blood pressure detection unit, and a timing unit.
  • the blood oxygen detection unit, pulse detection unit, blood pressure detection unit and timing unit are all electrically connected to the amplifier through a wire.
  • the heart detection module performs blood Oxygen, pulse, and blood pressure are detected to obtain static in-vivo data.
  • the body position detection module includes an amplifier, an angle detection unit, a counter and a displacement detection unit.
  • the angle detection unit, counter and displacement detection unit are all electrically connected to the amplifier through a wire.
  • the data of the night body position change can be carried out through the counter, and the displacement and displacement amplitude can be measured at the same time .
  • the fault monitoring and warning module includes an amplifier, LED lights, vibrators and signal output units.
  • the LED lights, vibrators and signal output units are all electrically connected to the amplifier through wires.
  • the fault detection module can detect whether current flows through the interfaces of each detection module. Compare the normal data, detect whether the interface is wrong, and perform real-time detection to ensure the stability of the data.
  • the power supply module includes a battery, a voltage transformation unit, and a voltage stabilization unit. Both the battery and the voltage unit are electrically connected to the voltage stabilization unit through wires, and power is supplied in two different ways, while ensuring the stability of the voltage and the use of the device.
  • a method for monitoring the sleep of patients with pneumonia using multi-channel leads includes the following steps:
  • S1 Install the EEG sensing unit, ECG sensing unit, EMG sensing unit and EOG sensing unit in the sleep detection module to different positions of the body in turn, and install the snoring sensing unit and thermal airflow sensing unit in the breathing detection module to the outside of the nasal cavity. Then install and fit the chest and abdomen motion sensing unit to the outside of the chest cavity.
  • the blood oxygen detection unit, pulse detection unit and blood pressure detection unit in the heart detection module are installed and fixed on the finger, and the angle detection unit and displacement detection unit in the body position detection module Installed to the arms and legs; each unit can be accurately fixed to the exact position, while ensuring the stability of various data.
  • step S2 After completing step S1, turn on the power so that the central processing module and the power supply module work, and each detection module performs detection at the same time, the data transmission module transmits the collected data wirelessly, and the fault monitoring and warning module automatically detects each detection module in real time The working status is then output to the display module for display in real time. At the same time, the determined data is transmitted to the central processing module. The central processing module transmits the fault information to the background doctor through the data transmission module.
  • Step S3 Step S2: During the monitoring process, the data transmission device is used to remotely observe the quality of sleep. While collecting multiple data, the doctor makes a judgment that the data at different moments have different characteristics, and real-time observation can ensure all items The value of data to ensure the accuracy of conclusions,
  • each detection module is removed from the human body and disinfected at the same time.
  • the doctor uses the data to make the initial and final diagnosis and treatment countermeasures.
  • Sleep detection module, breathing detection module, heart detection module and body position detection module all need professional nurses to locate and install, determine the installation position of sleep detection module, breathing detection module, heart detection module and body position detection module. Professional installation guarantees the installation Accurate,
  • the data transmission device adopts a wireless transmission method, and the disinfection method adopts a combination of chemical disinfection and physical disinfection.
  • the disinfection setting allows repeated use.
  • first and second are only used for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features. Thus, the features defined with “first” and “second” may explicitly or implicitly include one or more of these features. In the description of the present invention, “plurality” means two or more than two, unless otherwise specifically defined.

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Abstract

一种利用多导监测肺炎患者睡眠的***和方法,该***包括中央处理模块,所述中央处理模块通过导线电连接有显示模块、睡眠检测模块、呼吸检测模块、心脏检测模块、***检测模块、数据传输模块、供电模块和故障监测警示模块,所述故障监测警示模块通过导线与显示模块电连接。该***和方法可以远程的对数据进行传输,对不同的数据集中处理传输,方便人员进行记录,方便进行诊断,同时可以对***内的故障进行检测,减少数据测量失误,保证数据的准确性。

Description

一种利用多导监测肺炎患者睡眠的***和方法 技术领域
本发明涉及睡眠检测装置技术领域,尤其涉及一种利用多导监测肺炎患者睡眠的***和方法。
背景技术
多导睡眠监测是诊断睡眠打鼾(睡眠呼吸暂停低通气综合征,OSAHS)最重要的检查。肺炎患者由于肺部功能受损,多难以保证好的睡眠质量。通过夜间连续的呼吸、动脉血氧饱和度、脑电图、心电图、心率等指标的监测,可以了解打鼾者有无呼吸暂停、暂停的次数、暂停的时间、发生暂停时最低动脉血氧值及对身体健康影响的程度。多导睡眠监测仪是最常用的睡眠监测手段,是诊断打鼾最重要的检查,是国际公认的诊断睡眠呼吸暂停低通气综合征的金标准。
现有装置虽然能进行不同数据的测量,但是在测量的过程中,需要人为的进行记录数据,使得使用较为繁琐,同时对故障的检测也是人工经验进行目测,使得测量数据不够准确。
发明内容
本发明提出的一种利用多导监测肺炎患者睡眠的***和方法,解决了记录麻烦的问题。
为了实现上述目的,本发明采用了如下技术方案:
一种利用多导监测肺炎患者睡眠的***,包括中央处理模块,所述中央处理模块通过导线电连接有显示模块、睡眠检测模块、呼吸检测模块、心脏检测模块、***检测模块、数据传输模块、供电模块、故障监测警示模块,所述故障监测警示模块通过导线与显示模块电连接。
优选的,所述睡眠模块包括放大器、EEG感知单元、ECG感知单元、EMG感 知单元和EOG感知单元,所述EEG感知单元、ECG感知单元、EMG感知单元和EOG感知单元均通过导线与放大器电连接。
优选的,所述呼吸检测模块包括放大器、鼾声感知单元、计时单元、胸腹运动感知单元和热敏气流感知单元,所述鼾声感知单元、计时单元、胸腹运动感知单元和热敏气流感知单元均通过导线与放大器通过导线电连接。
优选的,所述心脏检测模块包括放大器、血氧检测单元、脉搏检测单元、血压检测单元和计时单元,所述血氧检测单元、脉搏检测单元、血压检测单元合计时单元均通过导线与放大器电连接。
优选的,所述***检测模块包括放大器、角度检测单元、计数器和位移检测单元,所述角度检测单元、计数器和位移检测单元均通过导线与放大器电连接。
优选的,所述故障监测警示模块包括放大器、LED灯、振动器和信号输出单元,所述LED灯、振动器和信号输出单元均通过导线与放大器电连接。
优选的,所述供电模块包括电池、变压单元和稳压单元,所述电池和压单元均通过电线与稳压单元电连接。
一种利用多导监测肺炎患者睡眠的方法,包括以下步骤:
S1:依次将睡眠检测模块中的EEG感知单元、ECG感知单元、EMG感知单元和EOG感知单元安装到身体的不同位置,呼吸检测模块中的鼾声感知单元和热敏气流感知单元安装到鼻腔外侧,然后将胸腹运动感知单元安装贴合到胸腔的外侧,心脏检测模块中的血氧检测单元、脉搏检测单元和血压检测单元安装固定在手指处,***检测模块中的角度检测单元和位移检测单元安装到手臂和腿部;
S2:在完成步骤S1后,接通电源,使得中央处理模块与供电模块进行工作, 同时各个检测模块进行检测,数据传输模块讲收集的数据进行无线传输,故障监测警示模块实时自动检测各个检测模块的工作状态,然后实时输出给显示模块进行显示,同时将判定后的数据传输给中央处理模块,中央处理模块将故障信息通过数据传输模块传输到后台医生处;
S3:步骤S2在进行监测过程中,通过数据传输装置,远程观测睡眠质量,进行多数据的采集的同时,医生做出判断;
S4:检测完成后,将各个检测模块从人体上拔出,同时进行消毒处理,医生通过数据最初最后的诊断和治疗对策。
优选的,所述睡眠检测模块、呼吸检测模块、心脏检测模块和***检测模块均需要专业护士进行寻位安装,确定眠检测模块、呼吸检测模块、心脏检测模块和***检测模块的安装位置。
优选的,所述数据传输装置采用无线传输方式,所述消毒方式采用化学消毒和物理消毒相结合。
本发明中:
1、通过数据传输模块的无线传输,使得数据可以远程的进行传输,同时可以进行不同的数据的集中处理传输,方便人员的进行记录,方便进行诊断。
2、通过故障检测警示模块,可以对***内的故障进行检测,进减少数据测量失误,保证数据的准确性。
附图说明
图1为本发明的***图。
图2为发明的肺炎患者睡眠检测模块***图。
图3为发明的呼吸检测模块***图。
图4为发明的心脏检测模块***图。
图5为发明的***检测模块***图。
图6为发明的故障监测警示模块***图。
图7为发明的供电模块***图。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。
参见附图1-4,一种利用多导监测肺炎患者睡眠的***,包括中央处理模块,中央处理模块通过导线电连接有显示模块、睡眠检测模块、呼吸检测模块、心脏检测模块、***检测模块、数据传输模块、供电模块、故障监测警示模块,故障监测警示模块通过导线与显示模块电连接。
睡眠模块包括放大器EEG感知单元、ECG感知单元、EMG感知单元和EOG感知单元,EEG感知单元、ECG感知单元、EMG感知单元和EOG感知单元均通过导线与放大器电连接,睡眠监测模块进行睡眠的心电、眼电、肌电和脑电流的检测,可以对睡眠的部分数据进行检测。
呼吸检测模块包括放大器、鼾声感知单元、计时单元、胸腹运动感知单元和热敏气流感知单元,鼾声感知单元、计时单元、胸腹运动感知单元和热敏气流感知单元均通过导线与放大器通过导线电连接,呼吸检测模块可以进行呼吸方面的检测,测量鼾声的各项数据。
心脏检测模块包括放大器、血氧检测单元、脉搏检测单元、血压检测单元和计时单元,血氧检测单元、脉搏检测单元、血压检测单元合计时单元均通过导线与放大器电连接,心脏检测模块进行血氧、脉搏、血压的检测,得到静态下的体内数据。
***检测模块包括放大器、角度检测单元、计数器和位移检测单元,角度检测单元、计数器和位移检测单元均通过导线与放大器电连接,可以经过计数器进行夜间***变化的数据,同时测量位移量和位移幅度。
故障监测警示模块包括放大器、LED灯、振动器和信号输出单元,LED灯、振动器和信号输出单元均通过导线与放大器电连接,故障检测模块可以检测各个检测模块的接口是否有电流流过,对比正常数据,检测是否接口错误,进行实时的检测,保证数据的稳定性。
供电模块包括电池、变压单元和稳压单元,电池和压单元均通过电线与稳压单元电连接,两种不同方式进行供电,同时保证电压的稳定,保证装置的使用。
一种利用多导监测肺炎患者睡眠的方法,包括以下步骤:
S1:依次将睡眠检测模块中的EEG感知单元、ECG感知单元、EMG感知单元和EOG感知单元安装到身体的不同位置,呼吸检测模块中的鼾声感知单元和热敏气流感知单元安装到鼻腔外侧,然后将胸腹运动感知单元安装贴合到胸腔的外侧,心脏检测模块中的血氧检测单元、脉搏检测单元和血压检测单元安装固定在手指处,***检测模块中的角度检测单元和位移检测单元安装到手臂和腿部;可以各个单元可以准确的固定到准确的位置,同时保证各项数据的稳定性。
S2:在完成步骤S1后,接通电源,使得中央处理模块与供电模块进行工作,同时各个检测模块进行检测,数据传输模块讲收集的数据进行无线传输,故障监测警示模块实时自动检测各个检测模块的工作状态,然后实时输出给显示模块进行显示,同时将判定后的数据传输给中央处理模块,中央处理模块将故障信息通过数据传输模块传输到后台医生处,
S3:步骤S2在进行监测过程中,通过数据传输装置,远程观测睡眠质量, 进行多数据的采集的同时,医生做出判断,不同时刻的数据具有不同的特征性,实时的观测可以保证各项数据的价值,保证结论的准确性,
S4:检测完成后,将各个检测模块从人体上拔出,同时进行消毒处理,医生通过数据最初最后的诊断和治疗对策,
睡眠检测模块、呼吸检测模块、心脏检测模块和***检测模块均需要专业护士进行寻位安装,确定眠检测模块、呼吸检测模块、心脏检测模块和***检测模块的安装位置,专业人士的安装保证安装的准确,
数据传输装置采用无线传输方式,消毒方式采用化学消毒和物理消毒相结合,消毒的设置使得可以重复使用。
在本发明的描述中,需要理解的是,术语“中心”、“纵向”、“横向”、“长度”、“宽度”、“厚度”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”、“内”、“外”、“顺时针”、“逆时针”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的设备或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。
此外,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个该特征。在本发明的描述中,“多个”的含义是两个或两个以上,除非另有明确具体的限定。
以上所述,仅为本发明较佳的具体实施方式,但本发明的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本发明揭露的技术范围内,根据本发明的技术方案及其发明构思加以等同替换或改变,都应涵盖在本发明的保护范围之内。

Claims (10)

  1. 一种利用多导监测肺炎患者睡眠的***,包括中央处理模块,其特征在于,所述中央处理模块通过导线电连接有显示模块、睡眠检测模块、呼吸检测模块、心脏检测模块、***检测模块、数据传输模块、供电模块、故障监测警示模块,所述故障监测警示模块通过导线与显示模块电连接。
  2. 根据权利要求1所述的一种利用多导监测肺炎患者睡眠的***,其特征在于,所述睡眠模块包括放大器、EEG感知单元、ECG感知单元、EMG感知单元和EOG感知单元,所述EEG感知单元、ECG感知单元、EMG感知单元和EOG感知单元均通过导线与放大器电连接。
  3. 根据权利要求1所述的一种利用多导监测肺炎患者睡眠的***,其特征在于,所述呼吸检测模块包括放大器、鼾声感知单元、计时单元、胸腹运动感知单元和热敏气流感知单元,所述鼾声感知单元、计时单元、胸腹运动感知单元和热敏气流感知单元均通过导线与放大器通过导线电连接。
  4. 根据权利要求1所述的一种利用多导监测肺炎患者睡眠的***,其特征在于,所述心脏检测模块包括放大器、血氧检测单元、脉搏检测单元、血压检测单元和计时单元,所述血氧检测单元、脉搏检测单元、血压检测单元合计时单元均通过导线与放大器电连接。
  5. 根据权利要求1所述的一种利用多导监测肺炎患者睡眠的***,其特征在于,所述***检测模块包括放大器、角度检测单元、计数器和位移检测单元,所述角度检测单元、计数器和位移检测单元均通过导线与放大器电连接。
  6. 根据权利要求1所述的一种利用多导监测肺炎患者睡眠的***,其特征在于,所述故障监测警示模块包括放大器、LED灯、振动器和信号输出单元,所述LED灯、振动器和信号输出单元均通过导线与放大器电连接。
  7. 根据权利要求1所述的一种利用多导监测肺炎患者睡眠的***,其特征在于,所述供电模块包括电池、变压单元和稳压单元,所述电池和压单元均通过电线与稳压单元电连接。
  8. 一种利用多导监测肺炎患者睡眠的方法,其特征在于,包括以下步骤:
    S1:依次将睡眠检测模块中的EEG感知单元、ECG感知单元、EMG感知单元和EOG感知单元安装到身体的不同位置,呼吸检测模块中的鼾声感知单元和热敏气流感知单元安装到鼻腔外侧,然后将胸腹运动感知单元安装贴合到胸腔的外侧,心脏检测模块中的血氧检测单元、脉搏检测单元和血压检测单元安装固定在手指处,***检测模块中的角度检测单元和位移检测单元安装到手臂和腿部;
    S2:在完成步骤S1后,接通电源,使得中央处理模块与供电模块进行工作,同时各个检测模块进行检测,数据传输模块讲收集的数据进行无线传输,故障监测警示模块实时自动检测各个检测模块的工作状态,然后实时输出给显示模块进行显示,同时将判定后的数据传输给中央处理模块,中央处理模块将故障信息通过数据传输模块传输到后台医生处;
    S3:步骤S2在进行监测过程中,通过数据传输装置,远程观测睡眠质量,进行多数据的采集的同时,医生做出判断;
    S4:检测完成后,将各个检测模块从人体上拔出,同时进行消毒处理,医生通过数据最初最后的诊断和治疗对策。
  9. 根据权利要求8所述的一种利用多导监测肺炎患者睡眠的方法,其特征在于,所述睡眠检测模块、呼吸检测模块、心脏检测模块和***检测模块均需要专业护士进行寻位安装,确定眠检测模块、呼吸检测模块、心脏检测模块和***检测模块的安装位置。
  10. 根据权利要求8所述的一种利用多导监测肺炎患者睡眠的方法,其特征在于,所述数据传输装置采用无线传输方式,所述消毒方式采用化学消毒和物理消毒相结合。
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