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    • 6. 发明申请
    • System apparatus for monitoring heart and lung functions
    • 用于监测心肺功能的系统装置
    • US20090171221A1
    • 2009-07-02
    • US12216636
    • 2008-07-09
    • Shu-Ting LiaoChao-Fa LeeCheng-Hsing KuoShih-Jung Chang
    • Shu-Ting LiaoChao-Fa LeeCheng-Hsing KuoShih-Jung Chang
    • A61B5/0402A61B5/0205A61B7/00
    • A61B5/0803A61B5/0205A61B5/0404A61B7/003A61B2560/0462A61B2560/0468A61B2562/0204
    • A system for monitoring heart and lung functions comprises an audio signal sensing unit, an audio signal processing unit, an electrocardiogram signal sensing unit, an electrocardiogram signal processing unit, and a microprocessor unit. The audio signal sensing unit senses audio signals, including a heart sound and a lung sound. The audio signal processing unit is connected to the audio signal sensing unit and processes the audio signals to obtain the heart sound and the lung sound. The electrocardiogram signal sensing unit senses an electrocardiogram signal. The electrocardiogram signal processing unit is connected to the electrocardiogram signal sensing unit and processes the electrocardiogram signal. The microprocessor unit is connected to the audio signal processing unit, the electrocardiogram signal processing unit and a computer host, and processes the heart sound, the lung sound and the electrocardiogram signal to be data that can be identified by the computer host.
    • 用于监测心脏和肺功能的系统包括音频信号感测单元,音频信号处理单元,心电图信号感测单元,心电图信号处理单元和微处理器单元。 音频信号感测单元感测包括心音和肺声的音频信号。 音频信号处理单元连接到音频信号感测单元,并处理音频信号以获得心音和肺声。 心电图信号感测单元感测心电图信号。 心电图信号处理单元连接到心电图信号感测单元并处理心电图信号。 微处理器单元连接到音频信号处理单元,心电图信号处理单元和计算机主机,并将心音,肺声和心电图信号处理为计算机主机可识别的数据。
    • 7. 发明授权
    • Multi-channel bio-med electric signals capturing device based on a sound signal generation
    • 基于声音信号生成的多通道生物医学电信号捕获装置
    • US07974686B2
    • 2011-07-05
    • US12379476
    • 2009-02-23
    • Chao-Fa LeeShih-Jung ChangCheng-Hsing Kuo
    • Chao-Fa LeeShih-Jung ChangCheng-Hsing Kuo
    • A61B5/04
    • A61B5/0002A61B5/04A61B5/0402A61B5/0476
    • A multi-channel bio-med electric signals capturing device includes: a detection channel unit, a control unit, a voice signal generator and a computer device. The detection channel unit is provided to detect bioelectric signals produced from human body and amplify the same. The control unit is provided to capture the amplified bio-med electric signals based on a frequency conforming to a computer acceptable audient signal. The voice signal generator transmits the captured amplified bio-med electric signals to a microphone of the computer device, whereby a recording program built in the computer device records the input audient signal as a voice file. Accordingly, the user is able to monitor the bio-med electric signals by easily and simply using a computer device.
    • 多通道生物医学电信号捕获装置包括:检测通道单元,控制单元,语音信号发生器和计算机设备。 提供检测通道单元以检测从人体产生的生物电信号并将其放大。 控制单元被提供以基于符合计算机可接受的听觉信号的频率捕获放大的生物医学电信号。 语音信号发生器将捕获的放大的生物医学电信号发送到计算机设备的麦克风,由此内置在计算机设备中的记录程序将输入的听觉信号记录为语音文件。 因此,用户能够通过简单和简单地使用计算机设备来监视生物医学电信号。
    • 8. 发明申请
    • Portable multi-Parameter physiological monitoring and recording device
    • 便携式多参数生理监测记录装置
    • US20110118563A1
    • 2011-05-19
    • US12654915
    • 2010-01-08
    • Chao-Fa LeeShih-Jung ChangCheng-Hsing Kuo
    • Chao-Fa LeeShih-Jung ChangCheng-Hsing Kuo
    • A61B5/00
    • A61B5/0428A61B5/053A61B5/08A61B5/11A61B2560/0242
    • A portable multi-parameter physiological monitoring and recording device includes multiple sensors, multiple detection channel units, a multiplexer, a clock generator, a controller, an analog switch, a recording unit and a storage unit. The sensors are attached on the body of a person for sensing physiological parameter signals. The detection channel units amplify the received physiological parameter signals. The multiplexer captures the amplified physiological parameter signals. The clock generator generates clock signals in the audio-frequency range. The controller controls the multiplexer to capture the amplified physiological parameter signals based on the clock signals generated by the clock generator. The analog switch outputs the amplified physiological parameter signals as an audio signal. The recording unit records the audio signals as an audio file. The storage unit stores the audio file.
    • 便携式多参数生理监测和记录装置包括多个传感器,多个检测通道单元,多路复用器,时钟发生器,控制器,模拟开关,记录单元和存储单元。 传感器附着在人的身体上,用于感测生理参数信号。 检测通道单元放大所接收的生理参数信号。 多路复用器捕获放大的生理参数信号。 时钟发生器在音频范围内产生时钟信号。 控制器控制多路复用器基于由时钟发生器产生的时钟信号来捕获放大的生理参数信号。 模拟开关输出放大的生理参数信号作为音频信号。 记录单元将音频信号记录为音频文件。 存储单元存储音频文件。
    • 10. 发明授权
    • System for measuring resonant frequency and delay time of quartz crystal microbalance
    • 用于测量石英晶体微量天平的谐振频率和延迟时间的系统
    • US07509860B2
    • 2009-03-31
    • US11783943
    • 2007-04-13
    • Chao-Fa LeeTsong-Rong YanCheng-Hsing Kuo
    • Chao-Fa LeeTsong-Rong YanCheng-Hsing Kuo
    • G01H13/00G01N29/02
    • G01H13/00
    • This present invention relates to a system for measuring resonant frequency and delay time of the quartz crystal microbalance. The system includes a transistor oscillating circuit, a switch circuit, a comparator circuit, and a control circuit. The transistor oscillating circuit comprises a quartz oscillator for generating an original oscillating signal. The switch circuit is coupled to the transistor oscillating circuit for outputting a start signal to generate the original oscillating signal. The comparator circuit is coupled to the transistor oscillating circuit for transforming the original oscillating signal to a square wave oscillating signal. The control circuit is coupled to the comparator circuit for receiving the square oscillating signal to estimate the resonant frequency and the delay time of the quartz crystal microbalance.
    • 本发明涉及一种用于测量石英晶体微量天平的谐振频率和延迟时间的系统。 该系统包括晶体管振荡电路,开关电路,比较器电路和控制电路。 晶体管振荡电路包括用于产生原始振荡信号的石英振荡器。 开关电路耦合到晶体管振荡电路,用于输出起始信号以产生原始振荡信号。 比较器电路耦合到晶体管振荡电路,用于将原始振荡信号变换成方波振荡信号。 控制电路耦合到比较器电路,用于接收平方振荡信号以估计石英晶体微量天平的谐振频率和延迟时间。