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    • 6. 发明授权
    • Miniaturized pressure sensor
    • 微型压力传感器
    • US5195375A
    • 1993-03-23
    • US721508
    • 1991-07-11
    • Lars TenerzBertil Hok
    • Lars TenerzBertil Hok
    • A61B5/0215G01L9/00
    • G01L9/0077A61B5/02154
    • A miniaturized pressure sensor for physiological in situ measurements has an elastic material shell having an outer surface with an opening extending therethrough. The opening is covered by an elastic diaphragm and a light conductor having an end surface is disposed inside the shell and connected thereto by a glue joint. A body of silicon or gallium is disposed inside the shell and has a thin, cantilevered, short beam portion and a reflecting surface connected to and perpendicularly projecting from a free end of the short beam portion. The reflecting surface is proximate to the end surface of the light conductor so that when the diaphragm is subjected to a pressure differential, it is forced to move thereby causing a corresponding movement of the short beam portion so that the reflecting surface is positioned opposite to the end surface of the light conductor.
    • PCT No.PCT / SE90 / 00027 Sec。 371日期1991年7月11日 102(e)日期1991年7月11日PCT 1990年1月12日PCT PCT。 WO90 / 07906 PCT公开号 日本1990年7月26日。用于生理原位测量的小型化压力传感器具有弹性材料壳,其外表面具有延伸穿过其中的开口。 开口由弹性隔膜覆盖,具有端表面的光导体设置在壳体内部并通过胶接头连接在壳体上。 一个硅或镓体被设置在壳体的内部,并且具有薄的,悬臂的短梁部分和与短波束部分的自由端连接并垂直地突出的反射表面。 反射表面靠近光导体的端面,使得当隔膜受到压差时,其被迫移动,从而引起短波束部分的相应移动,使得反射表面与 光导体的端面。
    • 7. 发明授权
    • Powering a guide wire mounted sensor for intra-vascular measurements of physiological variables by means of inductive coupling
    • 为引导线安装的传感器供电,通过电感耦合进行生理变量的血管内测量
    • US07645233B2
    • 2010-01-12
    • US11570096
    • 2005-06-07
    • Sauli TulkkiLars Tenerz
    • Sauli TulkkiLars Tenerz
    • A61B5/00
    • A61B5/6851A61B5/0008A61B5/0031A61B5/0215A61B5/076A61B2560/0219A61M25/09A61M2025/0002
    • The present invention relates to a sensor assembly arranged to be disposed in a body for measuring a physiological variable. A basic idea of the present invention is to provide a sensor and guide wire assembly which communicates with an external unit by an inductive coupling between a first coil provided in the sensor assembly and a second, external coil which is disposed in or connected to the external unit. The external unit is preferably the same unit that is used to numerically or graphically display the physiological variables that are measured with the sensor and guide wire assembly. With the terminology introduced above, it should here be clear that both the signal transfer from the sensor as well as the energy feeding from the external unit to the sensor may be accomplished through the inductive coupling between the first and second coils.
    • 本发明涉及一种传感器组件,其被布置成设置在用于测量生理变量的身体中。 本发明的基本思想是提供一种传感器和导丝组件,其通过设置在传感器组件中的第一线圈与设置在外部或外部的第二外部线圈之间的感应耦合与外部单元连通 单元。 外部单元优选地是用于以数字或图形方式显示用传感器和导丝组件测量的生理变量的相同单元。 利用上面介绍的术语,应该清楚的是,传感器的信号传输以及从外部单元传递到传感器的能量可以通过第一和第二线圈之间的感应耦合来实现。
    • 9. 发明授权
    • Femoral compression device
    • 股骨压缩装置
    • US07329270B2
    • 2008-02-12
    • US10322809
    • 2002-12-19
    • Dan ÅkerfeldtLars TenerzPer Egnelöv
    • Dan ÅkerfeldtLars TenerzPer Egnelöv
    • A61B17/00
    • A61B17/1325A61B17/135
    • The invention provides a femoral compression device (11; 21) for compressing a femoral artery of a patient. The femoral compression device (11; 21) comprises a pressurizing means (12; 22), a compression plate (13; 23) for compressive bearing against a puncture site, a base portion (14; 24) provided with two opposing extensions (15, 16; 25, 26), to the ends of which a belt, which is adapted to be arranged around the patient's body, can be fixed. According to the invention, the pressurizing means is in the form of a spring (12; 22), such as a coil spring (12; 22), the first end of which is connected to the compression plate (13; 23) and the second end of which is operatively connected to a handle (19; 29), which can be operated to adjusting the compression of the spring (12; 22).
    • 本发明提供一种用于压缩患者的股动脉的股骨压缩装置(11; 21)。 股骨压缩装置(11; 21)包括加压装置(12; 22),用于抵抗穿刺部位的压缩轴承的压板(13; 23),设置有两个相对的延伸部(15; 24)的基部 ,16; 25,26),其一端可以被固定在适于安置在患者身体周围的皮带。 根据本发明,加压装置是弹簧(12; 22)的形式,例如螺旋弹簧(12; 22),其第一端连接到压缩板(13; 23),并且 其第二端可操作地连接到手柄(19; 29),该手柄可操作以调节弹簧(12; 22)的压缩。