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    • 1. 发明申请
    • REAL TIME CSF FLOW MEASUREMENT SYSTEM & METHOD
    • 实时CSF流量测量系统与方法
    • WO2011150323A3
    • 2012-05-18
    • PCT/US2011038317
    • 2011-05-27
    • NEURODX DEV LLCSWOBODA MAREKHOCHMAN MATIAS GABRIELMATTIUCCI MARK EVANFRITZ FREDERICK J
    • SWOBODA MAREKHOCHMAN MATIAS GABRIELMATTIUCCI MARK EVANFRITZ FREDERICK J
    • A61M5/168A61B5/01A61F2/02
    • A61M27/006A61B5/01A61B5/031A61B5/032A61M5/168A61M5/16836G01F1/684
    • A system for measuring quantitative CSF flow in shunt tubing implanted under the skin. The system includes an array of thermo-sensors clustered in three sections, cooling device, placed on the skin surface and an associated data acquisition and analysis device. Two sensor sections are placed over the shunt on the skin and measure real time temperature responses related to CSF movement. One array placed adjacent the cooling device collects data on thermal properties of skin including skin thermal conductivity, specific heat, diffusivity, perfusion, and thermal inertia. The method involves assessing thermal properties of skin and measuring CSF flow in shunt tubing. The method is useful for shunt patency assessment, CSF valve adjustment procedures and CSF flow measurements related to CSF over drainage. Alternatively, only one section of sensors need be used when determining relative CSF flow, without the need to determine thermal skin properties and by applying the cooling device continuously.
    • 用于测量植入皮下的分流管中定量CSF流量的系统。 该系统包括聚集在三个部分的热传感器阵列,放置在皮肤表面上的冷却装置和相关的数据采集和分析装置。 将两个传感器部分放置在皮肤上的分流器上,并测量与CSF运动相关的实时温度响应。 靠近冷却装置放置的一个阵列收集关于皮肤热性质的数据,包括皮肤热导率,比热,扩散性,灌注和热惯性。 该方法包括评估皮肤的热性质并测量分流管中的CSF流量。 该方法对于分流通气评估,脑脊液阀调节程序和与流量相关的CSF流量测量有用。 或者,当确定相对CSF流量时,仅需要使用一个传感器部分,而不需要确定热皮肤性质并且连续地施加冷却装置。
    • 2. 发明申请
    • CEREBROSPINAL FLUID EVALUATION SYSTEMS
    • 脑脊液检测系统
    • WO2008127867A3
    • 2009-02-26
    • PCT/US2008058882
    • 2008-03-31
    • NEURO DIAGNOSTIC DEVICES INCFRITZ FREDERICK JSWOBODA MAREK
    • FRITZ FREDERICK JSWOBODA MAREK
    • A61B5/00A61B5/03
    • A61B5/01A61B5/031A61M27/006A61M2205/3379
    • Methods and devices for testing for the presence, absence or flow rate in a subcutaneous shunt tubing using a measurement pad having a plurality of temperature sensor configurations which are positioned over, or in the vicinity of, the CSF shunt in substantially an upstream/downstream orientation. A temperature source is then applied at a predetermined location with respect to the measurement pad that is insulated from the temperature sensors. This temperature "pulse" movement is detected by the temperature sensors via the shunt tubing as the CSF carries the temperature pulse while a control sensor detects the pulse via skin convection. Temperature sensor data are provided to a CSF analyzer that subtracts control sensor data from the other sensors for determining a CSF shunt flow status/rate. A reader is used to optically or electrically detect the changes in a temperature sensitive material for determining a CSF shunt flow status or flow rate.
    • 使用具有多个温度传感器配置的测量垫来测试皮下分流管中存在,不存在或流速的方法和装置,所述测量垫位于基本上游/下游取向的CSF旁路或CSF附近 。 然后将温度源相对于与温度传感器绝缘的测量焊盘在预定位置施加。 温度“脉冲”运动由温度传感器通过分流管检测,因为当携带温度脉冲时,控制传感器通过皮肤对流检测脉冲。 将温度传感器数据提供给CSF分析仪,其从其他传感器中减去控制传感器数据,以确定CSF分流流量状态/速率。 读取器用于光学或电检测温度敏感材料的变化,以确定CSF分流流状态或流速。
    • 4. 发明申请
    • CEREBROSPINAL FLUID EVALUATION SYSTEM HAVING THERMAL FLOW AND FLOW RATE MEASUREMENT PAD USING A PLURALITY OF CONTROL SENSORS
    • 具有多个控制传感器的热流量和流速测量垫的脑脊液评估系统
    • WO2009146075A1
    • 2009-12-03
    • PCT/US2009/039146
    • 2009-04-01
    • NEURO DIAGNOSTIC DEVICES, INC.FRITZ, Frederick, J.SWOBODA, Marek
    • FRITZ, Frederick, J.SWOBODA, Marek
    • A61B5/03
    • A61M27/006A61B5/028
    • A method and device for testing for the presence, absence and/or rate of flow in a shunt tubing implanted under the skin by using a measurement pad having a plurality of temperature sensors, one of which is aligned with the shunt and the other sensors being symmetrically displaced on either side of the first temperature sensor in a direction transverse to the shunt tubing. These "outer" temperature sensors act as control temperature sensors. A temperature source, e.g., a cooling agent, positioned within an insulated enclosure, is then applied at a predetermined location on the measurement pad that is insulated from the temperature sensors. The movement of this temperature "pulse" is detected by the shunt-aligned temperature sensor via the shunt tubing as the CSF carries the temperature pulse while the control sensors detect the pulse via convection through the skin. The temperature data from these sensors are provided to a CSF analyzer that determines a CSF shunt flow status or flow rate.
    • 一种用于通过使用具有多个温度传感器的测量垫来测试在皮肤下植入的分流管中的存在,不存在和/或流速的方法和装置,其中一个温度传感器与分流器对准,其它传感器是 在横向于分流管的方向上对称地位于第一温度传感器的两侧。 这些“外部”温度传感器用作控制温度传感器。 然后将位于绝缘外壳内的温度源(例如,冷却剂)施加在与温度传感器绝缘的测量垫上的预定位置处。 该温度“脉冲”的运动由分流对准的温度传感器通过分流管检测,因为CSF携带温度脉冲,而控制传感器通过皮肤对流来检测脉冲。 来自这些传感器的温度数据被提供给CSF分析器,其确定CSF分流流状态或流速。
    • 6. 发明申请
    • CEREBROSPINAL FLUID EVALUATION SYSTEMS
    • 胚胎液体评估系统(CEREBROSPINAL FLUID EVALUATION SYSTEMS)
    • WO2008127867A2
    • 2008-10-23
    • PCT/US2008/058882
    • 2008-03-31
    • NEURO DIAGNOSTIC DEVICES, INC.FRITZ, Frederick, J.SWOBODA, Marek
    • FRITZ, Frederick, J.SWOBODA, Marek
    • A61B5/00A61B5/03
    • A61B5/01A61B5/031A61M27/006A61M2205/3379
    • Methods and devices for testing for the presence, absence or flow rate in a subcutaneous shunt tubing using a measurement pad having a plurality of temperature sensor configurations which are positioned over, or in the vicinity of, the CSF shunt in substantially an upstream/downstream orientation. A temperature source is then applied at a predetermined location with respect to the measurement pad that is insulated from the temperature sensors. This temperature "pulse" movement is detected by the temperature sensors via the shunt tubing as the CSF carries the temperature pulse while a control sensor detects the pulse via skin convection. Temperature sensor data are provided to a CSF analyzer that subtracts control sensor data from the other sensors for determining a CSF shunt flow status/rate. A reader is used to optically or electrically detect the changes in a temperature sensitive material for determining a CSF shunt flow status or flow rate.
    • 使用具有多个温度传感器配置的测量垫来测试皮下分流管中存在,不存在或流速的方法和装置,所述测量垫位于基本上游/下游取向的CSF旁路或CSF附近 。 然后将温度源相对于与温度传感器绝缘的测量焊盘在预定位置施加。 温度“脉冲”运动由温度传感器通过分流管检测,因为当携带温度脉冲时,控制传感器通过皮肤对流检测脉冲。 将温度传感器数据提供给CSF分析仪,其从其他传感器中减去控制传感器数据,以确定CSF分流流量状态/速率。 读取器用于光学或电检测温度敏感材料的变化,以确定CSF分流流状态或流速。
    • 7. 发明申请
    • REAL TIME CSF FLOW MEASUREMENT SYSTEM & METHOD
    • 实时CSF流量测量系统与方法
    • WO2011150323A2
    • 2011-12-01
    • PCT/US2011/038317
    • 2011-05-27
    • NEURODX DEVELOPMENT, LLCSWOBODA, MarekHOCHMAN, Matias GabrielMATTIUCCI, Mark EvanFRITZ, Frederick J.
    • SWOBODA, MarekHOCHMAN, Matias GabrielMATTIUCCI, Mark EvanFRITZ, Frederick J.
    • A61M5/168A61F2/02A61B5/01
    • A61M27/006A61B5/01A61B5/031A61B5/032A61M5/168A61M5/16836G01F1/684
    • A system for measuring quantitative CSF flow in shunt tubing implanted under the skin. The system includes an array of thermo-sensors clustered in three sections, cooling device, placed on the skin surface and an associated data acquisition and analysis device. Two sensor sections are placed over the shunt on the skin and measure real time temperature responses related to CSF movement. One array placed adjacent the cooling device collects data on thermal properties of skin including skin thermal conductivity, specific heat, diffusivity, perfusion, and thermal inertia. The method involves assessing thermal properties of skin and measuring CSF flow in shunt tubing. The method is useful for shunt patency assessment, CSF valve adjustment procedures and CSF flow measurements related to CSF over drainage. Alternatively, only one section of sensors need be used when determining relative CSF flow, without the need to determine thermal skin properties and by applying the cooling device continuously.
    • 用于测量植入皮下的分流管中定量CSF流量的系统。 该系统包括聚集在三个部分的热传感器阵列,放置在皮肤表面上的冷却装置和相关的数据采集和分析装置。 将两个传感器部分放置在皮肤上的分流器上,并测量与CSF运动相关的实时温度响应。 靠近冷却装置放置的一个阵列收集关于皮肤热性质的数据,包括皮肤热导率,比热,扩散性,灌注和热惯性。 该方法包括评估皮肤的热性质并测量分流管中的CSF流量。 该方法对于分流通气评估,脑脊液阀调节程序和与流量相关的CSF流量测量有用。 或者,当确定相对CSF流量时,仅需要使用一个传感器部分,而不需要确定热皮肤特性并且连续地施加冷却装置。