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    • 1. 发明专利
    • Implantable acoustic biosensing system and method
    • 可植入式生物传感系统及方法
    • JP2011101821A
    • 2011-05-26
    • JP2011017259
    • 2011-01-28
    • Remon Medical Technologies Ltdレモン メディカル テクノロジーズ リミテッド
    • PORAT YARIVPENNER AVIDORON EYAL
    • A61B5/00A61B5/01A61B5/0215A61B5/026A61B5/03A61B5/07G01F1/36G01F1/72H01L41/113H04R3/00H04R17/00
    • A61B5/02158A61B5/0031A61B5/026A61B5/031A61B5/413A61B2562/028A61M2205/3523G01F1/36G01F1/72H01L41/1138H04R17/00
    • PROBLEM TO BE SOLVED: To provide a biosensing system and method for monitoring a physiological condition in a patient's body. SOLUTION: The implantable biosensing system for monitoring and optionally alleviating a physiological condition in a patient includes (a) at least one sensor for sensing at least one parameter of the physiological condition and for generating electric sensor signals representative of the physiological condition, and (b) a first acoustic activatable transducer being directly or indirectly coupled with the at least one sensor. The first acoustic activatable transducer converts an acoustic interrogation signal received from outside of the patient's body into an electric power for supplying energy to a processor. The first acoustic activatable transducer further converts the electric sensor signals of the at least one sensor into acoustic signals receivable out of the patient's body. By this, the information pertaining to the at least one parameter of the physiological condition is relayed outside the patient's body upon generation of the acoustic interrogation signal. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种用于监测患者体内的生理状况的生物传感系统和方法。 解决方案:用于监测和任选地减轻患者生理状况的可植入生物传感系统包括:(a)至少一个传感器,用于感测生理状态的至少一个参数并产生代表生理状态的电传感器信号, 和(b)与所述至少一个传感器直接或间接耦合的第一声学可激活换能器。 第一声​​学可激活换能器将从患者身体外部接收的声学询问信号转换成用于向处理器提供能量的电力。 第一声​​学可激活换能器进一步将至少一个传感器的电传感器信号转换成从患者体内可接收的声信号。 由此,在生成声讯讯信号时,将与生理条件的至少一个参数有关的信息中继到患者身体外部。 版权所有(C)2011,JPO&INPIT
    • 4. 发明申请
    • MONITORING A HEART PERFORMANCE PARAMETER
    • 监测心脏性能参数
    • WO0136014A3
    • 2002-05-02
    • PCT/IL0000743
    • 2000-11-13
    • REMON MEDICAL TECHNOLOGIES LTDPORAT YARIVROZENMAN JOSEPHPENNER AVRAHAM
    • PORAT YARIVROZENMAN JOSEPHPENNER AVRAHAM
    • A61B5/00A61B5/0215A61B5/026A61B5/029
    • A61B5/6876A61B5/0031A61B5/0215A61B5/026A61B5/029A61B5/6862
    • An intrabody implantable system (100) for long-term, real-time monitoring of at least one parameter associated with heart performance. The system (100) includes: (a) a first sensor (102) being implantable within a heart and being for collecting information pertaining to a pressure in a first cavity of the heart; (b) at least one additional sensor (106) being implantable in a blood vessel supporting blood flow into or out of a second cavity of the heart, the at least one additional sensor (106) being for collecting information pertaining to a pressure and a flow within the blood vessel; and (c) at least one device (110) implantable in the body and being in data communication with the first sensor (102) and the at least one additional sensor (106), the at least one device (110) being for receiving the information pertaining to the pressure in the first cavity of the heart and the information pertaining to the pressure and the flow within the blood vessel and for relaying the information outside of the body.
    • 一种用于长期,实时监测与心脏性能相关联的至少一个参数的体内可植入系统(100)。 系统(100)包括:(a)第一传感器(102),其可植入心脏内并且用于收集与心脏的第一腔中的压力有关的信息; (b)至少一个额外的传感器(106)可植入在支持血液流入或流出心脏的第二腔的血管中,所述至少一个附加传感器(106)用于收集关于压力和 在血管内流动; 和(c)至少一个装置(110),其可植入身体并与第一传感器(102)和至少一个附加传感器(106)进行数据通信,所述至少一个装置(110)用于接收 关于心脏的第一腔中的压力的​​信息和与血管内的压力和流动有关的信息以及用于将信息传递到身体外部的信息。
    • 7. 发明专利
    • AT469441T
    • 2010-06-15
    • AT98966753
    • 1998-12-28
    • REMON MEDICAL TECHNOLOGIES LTD
    • DORON EYALPORAT YARIVTSALIAH YOSEPH
    • H01L41/08A61B5/00A61B5/053G01F1/36G01F1/72H01L41/09H01L41/113H03H9/17H04R17/00
    • A miniature piezoelectric transducer element is provided, comprising; (a) a cell element having a cavity; (b) a flexible piezoelectric layer attached to the cell member, the piezoelectric layer having an external surface and an internal surface, the piezoelectric layer featuring such dimensions so as to enable fluctuations thereof at its resonance frequency upon impinging of an external acoustic wave; and (c) a first electrode attached to the external surface and a second electrode attached to the internal surface of the piezoelectric layer. At least one of the electrodes may be specifically shaped so as to provide a maximal electrical output, wherein the electrical output may be current, voltage or power. A preferred shape of the electrodes includes two cores interconnected by a connecting member. The transducer element may function as a transmitter. When used as a transmitter, the electrodes are electrically connected to an electrical circuit including a switching element for modulating the reflected acoustic wave by controllably changing the mechanical impedance of the piezoelectric layer according to the frequency of an electrical message signal arriving from an electronic member, such as a sensor. Third and fourth electrodes may be attached to the piezoelectric layer and the electrical circuit, such that the switching element alternately connects the electrodes in parallel and anti-parallel electrical connections so as to controllably change the mechanical impedance of the piezoelectric layer.