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    • 2. 发明申请
    • Method and System for Assessing Lung Condition and Managing Mechanical Respiratory Ventilation
    • 评估肺病和机械呼吸道通气的方法和系统
    • US20080281219A1
    • 2008-11-13
    • US12035171
    • 2008-02-21
    • Yael GlickmanIgal KushnirSmith JeanPhillip Dellinger
    • Yael GlickmanIgal KushnirSmith JeanPhillip Dellinger
    • A61B5/08
    • A61B7/003A61B5/08A61B7/026A61B2562/0204A61B2562/046A61M16/024A61M2016/0027A61M2016/0036A61M2205/3375A61M2205/502A61M2230/40
    • The present invention discloses a novel non-invasive, bedside system and method to monitor parameters associated lung changes. A novel approach for monitoring the operation of the respiratory system of a subject is provided. There is also provided a method for objectively evaluating the benefit of one mode of ventilation over another, and for assessing the differences in regional lung vibration during different modes of mechanical ventilation. The method comprises recording one or more signals from the subject, the signal varying in time according to operation of the respiratory system; and; processing the recorded signals to obtain a predetermined functional thereof presenting one or more time-varying energy functions of the subject, an abnormality in the one or more energy functions being indicative of a suspected abnormality in the operation of the respiratory system. The signals may be acoustic signals recorded by a plurality of acoustic sensors placed over the subject's thorax or back, and the at least one time-varying energy function is obtained from one or more specific regions of lung or by summing/averaging the time-dependent acoustic signals of the plurality of sensors indicative of the whole lungs.
    • 本发明公开了一种新型非侵入性床旁系统和监测肺部变化参数的方法。 提供了一种用于监测受试者的呼吸系统的操作的新颖方法。 还提供了一种客观评估一种通气方式对另一种通气效益的方法,并用于评估不同机械通气模式下区域肺振动的差异。 该方法包括记录来自对象的一个​​或多个信号,该信号根据呼吸系统的操作在时间上变化; 和; 处理所记录的信号以获得其呈现对象的一个​​或多个时变能量功能的预定功能,所述一个或多个能量功能中的异常指示呼吸系统的操作中的可疑异常。 信号可以是由放置在对象的胸部或背部的多个声学传感器记录的声学信号,并且从肺的一个或多个特定区域获得至少一个时变能量函数,或通过对时间依赖性进行求和/平均 多个传感器的声信号指示整个肺。
    • 7. 发明授权
    • Phased array feeder (PAF) for point to point links
    • 相对阵列馈线(PAF)用于点对点链路
    • US09350085B2
    • 2016-05-24
    • US13435604
    • 2012-03-30
    • Eran RidelIgal Kushnir
    • Eran RidelIgal Kushnir
    • H01Q3/26H01Q19/17H01Q3/00
    • H01Q3/26H01Q3/005H01Q19/17
    • A point-to-point (PtP) communication system includes a near end antenna device configured to transmit a narrow antenna beam over a wireless link, and includes a far end antenna device configured receive the narrow antenna beam over the wireless link. The near end antenna device including a directive element configured to focus an electrical field into the narrow antenna beam, and including a beam steering element (e.g., a phased array feeder (PAF) assembly) configured to generate the electrical field and to track the far end antenna, and further including a communication interface unit (e.g., an outdoor unit) configured to perform operations on a transmitted signal and a received signal.
    • 点对点(PtP)通信系统包括被配置为通过无线链路发送窄天线波束的近端天线装置,并且包括被配置为通过无线链路接收窄天线波束的远端天线装置。 近端天线装置包括配置成将电场聚焦到窄天线波束中的指向元件,并且包括被配置为产生电场并跟踪远场的波束操纵元件(例如,相控阵列馈线(PAF)组件) 并且还包括被配置为对所发送的信号和接收信号执行操作的通信接口单元(例如,室外单元)。
    • 8. 发明申请
    • Communication Pathway Supporting an Advanced Split Microwave Backhaul Architecture
    • 通信路径支持高级拆分微波回程架构
    • US20130136163A1
    • 2013-05-30
    • US13535196
    • 2012-06-27
    • Jonathan FRIEDMANNIgal KushnirAlon ShavitNoam Mizrahi
    • Jonathan FRIEDMANNIgal KushnirAlon ShavitNoam Mizrahi
    • H04B1/38
    • H04W88/085
    • An advanced split ODU architecture is provided. The advanced architecture includes an indoor communication unit including a digital modem assembly configured to modulate and demodulate digital data, and also includes a digital interface module configured to transmit and/or receive the digital data, over a digital communication pathway, between the indoor communication unit and an external outdoor communication unit. The advanced architecture further includes an outdoor communication unit having a digital interface module configured to transmit and/or receive the digital data, over the digital communication pathway, between the outdoor communication unit and an external indoor communication unit, and also includes a digital to analog converter configured to convert the digital data to analog data and an analog to digital converter configured to convert the analog data to the digital data, and further includes an RF module configured to convert the analog data between a baseband and a radio frequency.
    • 提供了高级拆分ODU架构。 高级架构包括室内通信单元,其包括被配置为对数字数据进行调制和解调的数字调制解调器组件,还包括数字接口模块,被配置为通过数字通信路径在室内通信单元之间传送和/或接收数字数据 和外部室外通信单元。 先进的架构还包括室外通信单元,其具有被配置为通过数字通信路径在户外通信单元和外部室内通信单元之间发送和/或接收数字数据的数字接口模块,还包括数字到模拟 转换器,被配置为将数字数据转换为模拟数据;以及模拟数字转换器,被配置为将模拟数据转换为数字数据,并且还包括被配置为在基带和射频之间转换模拟数据的RF模块。
    • 10. 发明授权
    • System and method for heat control of a living body
    • 生物体热控系统及方法
    • US06508831B1
    • 2003-01-21
    • US09623423
    • 2000-10-11
    • Igal Kushnir
    • Igal Kushnir
    • A61F700
    • A61F7/00A61B2017/00199A61F2007/0018A61F2007/0054A61F2007/0095A61F2007/0274
    • A system and method for controlling an individual's body and temperature are provided. The system comprises a heat exchanger for transferring heat to or removing heat from portions of the individual's body surface, at least one BCT-sensing device for measuring the individual's actual BCT (aBCT) and emitting an aBCT data signal, at least one sensing device for measuring a parameter indicative of the heat transfer dynamics (HTD) between the body surface and the body's core, and emitting an HTD data signal, and a control module for receiving data signal from measuring devices, comprising the aBCT data signal and the HTD data signal, and for emitting a control signal for controlling heat exchange properties of the heat exchanger as a function of the data signals and a desired body core temperature (dBCT).
    • 提供了一种用于控制个人身体和温度的系统和方法。 该系统包括用于将热量传递到个体身体表面的部分或从该身体表面的部分移除热量的热交换器,至少一个用于测量个体的实际BCT(aBCT)并发射BCT数据信号的BCT感测装置,至少一个感测装置,用于 测量指示身体表面和身体核心之间的热传递动力学(HTD)的参数,以及发射HTD数据信号的控制模块和用于从测量装置接收数据信号的控制模块,包括aBCT数据信号和HTD数据信号 并且用于根据数据信号和所需体芯温度(dBCT)发射用于控制热交换器的热交换特性的控制信号。