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    • 5. 发明申请
    • Method and Apparatus for Measuring Pressure Inside a Fluid System
    • 用于测量流体系统内压力的方法和装置
    • US20080092663A1
    • 2008-04-24
    • US11876252
    • 2007-10-22
    • Kevin CorcoranFlorent CrosMiguel Berr
    • Kevin CorcoranFlorent CrosMiguel Berr
    • G01L7/00
    • A61B5/076A61B5/0031A61B5/0215
    • A disclosed method determines fluid pressure inside a vessel without compromising the integrity of the vessel. A sensor is positioned in operative communication with the external wall of the vessel such that expansion of the external wall of the vessel exerts a force against the sensor that is directed substantially radially outward with respect to the vessel. A substantially radially inward force is caused to be directed against the sensor in response to the substantially radially outward force exerted by the external vessel wall. The sensor can thus be used to detect the magnitude of the substantially radially outward force. A disclosed apparatus determines fluid pressure inside a vessel without compromising the integrity of the vessel. The apparatus includes a sensor and a band operatively associated with the sensor and configured to at least partially encircle the vessel so as to retain the sensor in operative communication against the external wall of the vessel.
    • 所公开的方法确定容器内的流体压力而不损害容器的完整性。 传感器被定位成与容器的外壁可操作地连通,使得容器的外壁的膨胀对传感器施加相对于容器大致径向向外的力。 响应于由外部血管壁施加的基本径向向外的力,基本上径向向内的力被引导抵靠传感器。 因此,传感器可用于检测基本径向向外的力的大小。 所公开的装置确定容器内的流体压力而不损害容器的完整性。 该装置包括传感器和与传感器可操作地相关联的带,其被构造成至少部分地环绕容器,以便将传感器保持在与血管的外壁有效连通。
    • 10. 发明申请
    • SELECTIVELY ACTUATING WIRELESS, PASSIVE IMPLANTABLE SENSOR
    • 选择无线,无源可插入传感器
    • US20110115497A1
    • 2011-05-19
    • US12946407
    • 2010-11-15
    • FLORENT CROS
    • FLORENT CROS
    • G01R35/00G01R27/04G06F19/00
    • A61B5/0031A61B2560/0219
    • A wireless sensor having a primary passive electrical resonant circuit that has an intrinsic electrical property that is variable in response to a characteristic of a patient and a secondary passive electrical resonant circuit. In one aspect, the primary passive resonant circuit can be positioned into a tuned position in response to the actuation of the secondary passive electrical resonant circuit. In a further aspect, in the tuned position, the primary passive electrical resonant circuit, in response to an energizing signal produced by an ex-vivo source of RF energy, is configured to generate a sensor signal characterized by a resonant frequency that is indicative of the characteristic.
    • 一种无线传感器,其具有主无源电谐振电路,其具有响应于患者的特性和次级无源电谐振电路而变化的本征电特性。 在一个方面,主无源谐振电路可以响应于辅助无源电谐振电路的致动而被定位到调谐位置。 在另一方面,在调谐位置中,主无源电谐振电路响应于由RF能量的离体源产生的激励信号,被配置为产生以共振频率为特征的传感器信号,该谐振频率指示 的特点。