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    • 6. 发明申请
    • NERVE CUFF ELECTRODES FABRICATED USING OVER-MOLDED LCP SUBSTRATES
    • 使用过模LCP基片制造的神经袖电极
    • WO2018080600A1
    • 2018-05-03
    • PCT/US2017/039424
    • 2017-06-27
    • THE ALFRED E. MANN FOUNDATION FOR SCIENTIFIC RESEARCH
    • SCHMIDT, SiegmarNG, Boon KhaiDEARDEN, Brian R.HANSEN, Morten
    • A61N1/05A61N1/36A61N1/375A61B5/0488
    • An electrode lead may comprise a flexible circuit that includes a planar dielectric substrate including an elongated lead substrate portion having opposing ends, an electrode carrying substrate portion disposed on one end of the lead substrate portion, and a connector substrate portion disposed on the other end of the lead substrate portion, wherein the lead substrate portion is pre-shaped into a three-dimensional structure. The flexible circuit may further include an electrically conductive trace extending from the connector substrate portion to the electrode carrying substrate portion, a first window formed in the connector substrate portion to expose the electrically conductive trace to form a connector pad, and a second window formed in the electrode carrying substrate portion to expose the electrically conductive trace to form an electrode pad. The electrode lead may further comprise a lead connector that incorporates the connector substrate portion.
    • 电极引线可以包括柔性电路,柔性电路包括平面电介质基板,电介质基板包括具有相对端部的细长引线基板部分,设置在引线基板部分的一端上的电极承载基板部分,以及连接器 衬底部分,布置在所述引线衬底部分的另一端上,其中所述引线衬底部分被预成形为三维结构。 柔性电路还可以包括从连接器基体部向电极承载基底部分延伸的导电迹线,形成在连接器基底部分的第一窗口,以露出导电迹线,以形成一个连接器焊盘,和第二窗口形成在 电极承载衬底部分以暴露导电迹线以形成电极焊盘。 电极引线可以进一步包括结合连接器基底部分的引线连接器。
    • 7. 发明申请
    • SYSTEM AND METHOD FOR LOCATING OBJECTS AND COMMUNICATING WITH THE SAME
    • 用于定位对象并与之通信的系统和方法
    • WO2006098791A2
    • 2006-09-21
    • PCT/US2005/046333
    • 2005-12-20
    • THE ALFRED E. MANN FOUNDATION FOR SCIENTIFIC RESEARCHKARR, Lawrence, J.
    • KARR, Lawrence, J.
    • H01Q11/02
    • G01S13/765G01S13/878
    • Communication between a remote locator and a transponder is used to determine the relative position of the transponder. The transponder and locator each include a transmitter and a receiver. The locator transmits an inquiry in the form of a relatively powerful cyclically encoded signal with repetitive elements, uniquely associated with a target transponder. Periodically, each transponder correlates its coded ID against a possible inquiry signal, determining frequency, phase and framing in the process. Upon a match, the transponder transmits a synthesized response coherent with the received signal. The locator integrates multiple cyclical response elements, allowing low-power transmissions from the transponder. The locator correlates the integrated response, determines round-trip Doppler shift, time-of-flight, and then computes the distance and angle to the transponder. The transponder can be wearable, bionically implanted, or attached to, or embedded in, some object.
    • 远程定位器和应答器之间的通信用于确定应答器的相对位置。 应答器和定位器各自包括发射机和接收机。 定位器以具有与目标应答器唯一相关联的重复元素的相对强大的周期性编码信号的形式发送查询。 定期地,每个应答器将其编码的ID与可能的查询信号相关联,从而确定该过程中的频率,相位和帧。 在匹配时,应答器发送与接收信号相干的合成响应。 定位器集成了多个循环响应元件,允许来自应答器的低功率传输。 定位器将综合响应相关联,确定往返多普勒频移,飞行时间,然后计算与应答器的距离和角度。 应答器可以是穿戴式的,仿生植入的,或附着到或嵌入到某物中。
    • 10. 发明申请
    • DIAPHRAGMATIC PACING WITH PHYSIOLOGICAL NEED ADJUSTMENT
    • 具有生理需要调整的膜片
    • WO2006062710A1
    • 2006-06-15
    • PCT/US2005/041485
    • 2005-11-16
    • THE ALFRED E. MANN FOUNDATION FOR SCIENTIFIC RESEARCH
    • MANDELL, Lee, J.
    • A61N1/05
    • A61N1/37288A61N1/36003A61N1/3601A61N1/36139A61N1/37205A61N1/3787
    • A system and method that provides adjustable diaphragmatic pacing to a patient having an associated neurological deficit with adjustments occurring automatically in response to the patient’s physiological need. In a first implementation, physiological need is determined according to the patient’s activity level, e.g., as determined by the patient’s motion as detected by one or more accelerometers. In a second implementation, physiological need is determined by an oximeter measuring the current oxygen level of the patient’s blood. In a third implementation, physiological need is determined by a combination of the first and second implementation according to sensed motion and sensed oxygen level. Preferably, systems of the present invention are implantable and powered by rechargeable batteries and may be integrated with a system of implantable devices that restores motor functions to an injured patient and this restoration then requires an adjustable respiration rate in response to the patient’s restored movements.
    • 一种系统和方法,其向具有相关神经功能缺损的患者提供可调节的膈肌起搏,其响应于患者的生理需要自动进行调整。 在第一实施方案中,根据患者的活动水平来确定生理需要,例如,由患者的运动确定,如由一个或多个加速度计所检测的。 在第二实施方案中,生理需求由测量患者血液的当前氧气水平的血氧计来确定。 在第三实施方式中,根据感测到的运动和感测的氧水平,通过第一和第二实施方式的组合来确定生理需要。 优选地,本发明的系统是可植入的并且由可再充电电池供电并且可以与将可运动功能恢复到受伤患者的可植入装置的系统集成,并且该恢复然后响应于患者恢复的运动需要可调节的呼吸速率。