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    • 3. 发明授权
    • Cardiac stimulating device
    • 心脏刺激装置
    • US09283395B2
    • 2016-03-15
    • US14190554
    • 2014-02-26
    • ST. JUDE MEDICAL AB
    • Johan Eckerdal
    • A61N1/00A61N1/372A61N1/362A61N1/37A61N1/368
    • A61N1/37276A61N1/3622A61N1/3688A61N1/371
    • An implantable medical device, IMD, comprises atrial and ventricular sensing units for sensing atrial or ventricular electric events. The IMD also comprises atrial and ventricular pulse generators for generating atrial or ventricular pacing pulses. A controller controls the operation of the IMD (100) according to a first mode, in which the ventricular pulse generator is prevented from generating a back-up pulse if an evoked response detector fails to detect evoked response to a delivered ventricular pacing pulse, and a second mode, in which the ventricular pulse generator is controlled to generate a back-up pulse if no evoked response is detected following delivery of a ventricular stimulating pulse. The controller switches operation from the first mode to the second mode based on the evoked response detector failing to detect an evoked response to a delivered ventricular pacing pulse.
    • 可植入医疗装置IMD包括用于感测心室或心室电事件的心房和心室感测单元。 IMD还包括用于产生心房或心室起搏脉冲的心房和心室脉冲发生器。 控制器根据第一模式控制IMD(100)的操作,其中如果诱发的响应检测器不能检测对所传送的心室起搏脉冲的诱发响应,则防止心室脉冲发生器产生备用脉冲,以及 第二模式,其中如果在递送心室刺激脉冲之后没有检测到诱发反应,则控制心室脉冲发生器以产生备用脉冲。 控制器基于诱发响应检测器未能检测到对所输送的心室起搏脉冲的诱发反应,将操作从第一模式切换到第二模式。
    • 8. 发明授权
    • Active fixation implantable medical lead
    • 主动固定植入式医用铅
    • US08972025B2
    • 2015-03-03
    • US13404771
    • 2012-02-24
    • Rolf HillOlof Stegfeldt
    • Rolf HillOlof Stegfeldt
    • A61N1/00A61N1/05
    • A61N1/0558A61N1/0563A61N1/057
    • An implantable medical lead has a distal lead portion with a tubular header and a fixation helix provided in a lumen of the tubular header. The fixation helix is connected to a shaft attached to a conductor coil. A tubular coupling is connected to the tubular header and is coaxially arranged relative the shaft, with the shaft in its lumen. Rotation of the conductor coil causes rotation of the shaft and the fixation helix and longitudinal movement of the fixation helix out of the implantable medical lead by a rotation-to-translation transforming element. A friction device is arranged between the shaft and the tubular coupling or between the tubular header to oppose rotation of the shaft relative the tubular header and the tubular coupling.
    • 可植入医疗引线具有远端引线部分,其具有管状集管和设置在管状集管的内腔中的固定螺旋。 固定螺旋连接到连接到导体线圈的轴上。 管状联接器连接到管状集管并且相对于轴同轴地布置,其中轴在其内腔中。 导体线圈的旋转引起轴的旋转和固定螺旋,并且通过旋转到平移变换元件使固定螺旋线从可植入医疗引线的纵向移动。 摩擦装置设置在轴和管状联接件之间或管状集管之间,以相对于管状集管和管状联接器相对于轴的旋转。
    • 10. 发明申请
    • METHOD AND SYSTEM FOR STIMULATING A HEART
    • 用于刺激心脏的方法和系统
    • US20140257423A1
    • 2014-09-11
    • US13508968
    • 2011-05-31
    • Sven-Erik HedbergNils HolmstromKarin Jarverud
    • Sven-Erik HedbergNils HolmstromKarin Jarverud
    • A61N1/368
    • A61N1/368A61N1/3622A61N1/3682A61N1/3684
    • The present invention relates generally to implantable medical devices and more particularly to systems and methods for stimulating a heart of a patient. A first ventricle is activated by delivering stimulation to at least one stimulation site, a point of time for arrival at the AV node for at least one depolarization wave resulting from the stimulation in the first ventricle is estimated and a first activation time interval substantially corresponding to the time interval required for at least one depolarization wave to travel from the stimulation site in the first ventricle to the AV node using the estimated point of time for arrival of the depolarization wave and a point of time for delivery of stimulation is computed. Thereafter, the other ventricle is stimulated by delivering stimulation to at least one stimulation site. A point of time for arrival at the AV node for at least one depolarization wave resulting from the stimulation in the other ventricle is then estimated and a second activation time interval substantially corresponding to the time required for at least one depolarization wave to travel from the stimulation site in the other ventricle to the AV node using the estimated arrival of the depolarization wave and the point of time for delivery of stimulation is computed. Based on these activation time intervals and a difference between the intervals, a pacing therapy can be determined, wherein the first ventricle is paced prior to activation of the other ventricle if the activation time difference indicates that the first activation time interval is longer than the second activation time interval and the other ventricle is paced prior to activation of the first ventricle if the activation time difference indicates that the second activation time interval is longer than the first activation time interval.
    • 本发明一般涉及可植入医疗装置,更具体地涉及用于刺激患者心脏的系统和方法。 通过向至少一个刺激部位递送刺激来激活第一脑室,估计到达在第一脑室刺激产生的至少一个去极化波的AV节点的时间点,并且基本对应于 计算使用去极化波的到达的估计时间点和用于递送刺激的时间点的至少一个去极化波从第一脑室的刺激部位行进到AV节点所需的时间间隔。 此后,通过将刺激递送至至少一个刺激部位刺激另一个心室。 然后估计到达AV节点对于在另一个心室中的刺激产生的至少一个去极化波的时间点,并且基本对应于至少一个去极化波从刺激行进所需的时间的第二激活时间间隔 计算使用去极化波的估计到达和输送刺激的时间点在AV节点的另一脑室中的位置。 基于这些激活时间间隔和间隔之间的差异,可以确定起搏治疗,其中如果激活时间差指示第一激活时间间隔长于第二心室第二激活时间间隔,则第一心室在另一心室激活之前起搏 如果所述激活时间差指示所述第二激活时间间隔长于所述第一激活时间间隔,则所述激活时间间隔和所述另一个心室在所述第一心室激活之前起步。