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    • 1. 发明授权
    • System and method for urodynamic evaluation utilizing micro electro-mechanical system technology
    • 使用微机电系统技术进行尿动力学评估的系统和方法
    • US08128576B2
    • 2012-03-06
    • US11635403
    • 2006-12-07
    • Michael R. TraceyAnthony DiUbaldiStephen WahlgrenRex O. BareBradley J. Sargent
    • Michael R. TraceyAnthony DiUbaldiStephen WahlgrenRex O. BareBradley J. Sargent
    • A61B5/00A61B1/307
    • A61B5/14507A61B5/0031A61B5/205A61B5/208A61B5/6874A61B2562/028
    • An implantable urodynamic system includes an implantable first device deployable in a patient's bladder, an implantable second device deployable in a patient's vaginal canal, and a data acquisition and analysis module or processing unit external to the body of the patient. The first device includes a magnet and an inductive coil, and the second device includes a magnet, an inductive coil and a battery. When deployed in the patient's body, attraction between the magnets maintains the two devices in close proximity to one another to effect an inductive coupling between the coils so that the first device may be powered by the battery of the second device. The urodynamic system is intended to facilitate measurement, collection, and wireless transmission of real-time, or near real-time, data (bladder pressure, abdominal pressure, and temperature) from an ambulatory patient. This data is of value in diagnosing a number of abnormal bladder conditions, such as infection, overactive bladder, bladder spasms, and the like.
    • 可植入尿动力系统包括可部署在患者膀胱中的可植入第一装置,可植入患者阴道内的可植入第二装置,以及在患者身体外部的数据采集和分析模块或处理单元。 第一装置包括磁体和感应线圈,并且第二装置包括磁体,感应线圈和电池。 当部署在患者体内时,磁体之间的吸引力将两个装置彼此紧密地保持在彼此附近以实现线圈之间的感应耦合,使得第一装置可以由第二装置的电池供电。 尿动力系统旨在便于来自流动患者的实时或近实时数据(膀胱压力,腹压和温度)的测量,收集和无线传输。 该数据在诊断膀胱膀胱状况异常,例如感染,膀胱过度活动症,膀胱痉挛等中是有价值的。
    • 2. 发明申请
    • System and method for urodynamic evaluation utilizing micro electro-mechanical system technology
    • 使用微机电系统技术进行尿动力学评估的系统和方法
    • US20080139875A1
    • 2008-06-12
    • US11635403
    • 2006-12-07
    • Michael R. TraceyAnthony DiUbaldiStephen WahlgrenRex O. BareBradley J. Sargent
    • Michael R. TraceyAnthony DiUbaldiStephen WahlgrenRex O. BareBradley J. Sargent
    • A61B5/00
    • A61B5/14507A61B5/0031A61B5/205A61B5/208A61B5/6874A61B2562/028
    • An implantable urodynamic system includes an implantable first device deployable in a patient's bladder, an implantable second device deployable in a patient's vaginal canal, and a data acquisition and analysis module or processing unit external to the body of the patient. The first device includes a magnet and an inductive coil, and the second device includes a magnet, an inductive coil and a battery. When deployed in the patient's body, attraction between the magnets maintains the two devices in close proximity to one another to effect an inductive coupling between the coils so that the first device may be powered by the battery of the second device. The urodynamic system is intended to facilitate measurement, collection, and wireless transmission of real-time, or near real-time, data (bladder pressure, abdominal pressure, and temperature) from an ambulatory patient. This data is of value in diagnosing a number of abnormal bladder conditions, such as infection, overactive bladder, bladder spasms, and the like.
    • 可植入尿动力系统包括可部署在患者膀胱中的可植入第一装置,可植入患者阴道内的可植入第二装置,以及在患者身体外部的数据采集和分析模块或处理单元。 第一装置包括磁体和感应线圈,并且第二装置包括磁体,感应线圈和电池。 当部署在患者体内时,磁体之间的吸引力将两个装置彼此紧密地保持在彼此附近以实现线圈之间的感应耦合,使得第一装置可以由第二装置的电池供电。 尿动力系统旨在便于来自流动患者的实时或近实时数据(膀胱压力,腹压和温度)的测量,收集和无线传输。 该数据在诊断膀胱膀胱状况异常,例如感染,膀胱过度活动症,膀胱痉挛等中是有价值的。
    • 7. 发明授权
    • Optimizing the stimulus current in a surface based stimulation device
    • 优化基于表面的刺激装置中的刺激电流
    • US08897885B2
    • 2014-11-25
    • US12317193
    • 2008-12-19
    • Anthony DiUbaldiStephen Wahlgren
    • Anthony DiUbaldiStephen Wahlgren
    • A61N1/00A61N1/36
    • A61N1/36014
    • A method and associated stimulation device for ensuring firing of an action potential in an intended physiological target activated by a stimulus pulse generated by an electrode of a non-invasive surface based stimulation device irrespective of skin-to-electrode impedance by: (i) increasing internal impedance of the stimulation device so as to widen a Chronaxie time period thereby ensuring firing of the action potential of the intended physiological target irrespective of the skin-to-electrode impedance; and/or (ii) generating a stimulation waveform that optimizes a non-zero average current (e.g., non-zero slope of the envelope of the stimulation waveform) during preferably substantially the entire current decay of the stimulus pulse.
    • 一种方法和相关联的刺激装置,用于确保由无创表面刺激装置的电极产生的刺激脉冲激活的预期生理目标中的动作电位的点火,而不管皮肤对电极的阻抗如何:(i)增加 刺激装置的内部阻抗,以便扩大Chronaxie时间段,从而确保预期生理目标的动作电位的发射,而不管皮肤对电极的阻抗如何; 和/或(ii)在刺激脉冲的优选基本上整个电流衰减期间产生优化非零平均电流(例如,刺激波形的包络的非零斜率)的刺激波形。
    • 8. 发明申请
    • Optimizing the stimulus current in a surface based stimulation device
    • 优化基于表面的刺激装置中的刺激电流
    • US20100161001A1
    • 2010-06-24
    • US12317193
    • 2008-12-19
    • Anthony DiUbaldiStephen Wahlgren
    • Anthony DiUbaldiStephen Wahlgren
    • A61N1/08
    • A61N1/36014
    • A method and associated stimulation device for ensuring firing of an action potential in an intended physiological target activated by a stimulus pulse generated by an electrode of a non-invasive surface based stimulation device irrespective of skin-to-electrode impedance by: (i) increasing internal impedance of the stimulation device so as to widen a Chronaxie time period thereby ensuring firing of the action potential of the intended physiological target irrespective of the skin-to-electrode impedance; and/or (ii) generating a stimulation waveform that optimizes a non-zero average current (e.g., non-zero slope of the envelope of the stimulation waveform) during preferably substantially the entire current decay of the stimulus pulse.
    • 一种方法和相关联的刺激装置,用于确保由无创表面刺激装置的电极产生的刺激脉冲激活的预期生理目标中的动作电位的点火,而不管皮肤对电极的阻抗如何:(i)增加 刺激装置的内部阻抗,以便扩大Chronaxie时间段,从而确保预期生理目标的动作电位的发射,而不管皮肤对电极的阻抗如何; 和/或(ii)在刺激脉冲的优选基本上整个电流衰减期间产生优化非零平均电流(例如,刺激波形的包络的非零斜率)的刺激波形。