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    • 1. 发明授权
    • Implantable heart stimulator and stimulation method
    • 植入式心脏刺激器和刺激方法
    • US4407288A
    • 1983-10-04
    • US243801
    • 1981-03-16
    • Alois A. LangerSteve A. KolenikMarlin S. HeilmanMieczyslaw MirowskiMorton M. Mower
    • Alois A. LangerSteve A. KolenikMarlin S. HeilmanMieczyslaw MirowskiMorton M. Mower
    • A61N1/362A61N1/372A61N1/39
    • A61N1/3962A61N1/3622A61N1/3925A61N1/37217
    • An implantable heart stimulator and related method calls for the determination of a given heart condition from among a plurality of conditions, the selection of at least one mode of operation for treating the determined condition, and the execution of the mode of operation selected, so as to treat the determined condition. In one embodiment of the invention, wherein a plurality of modes of operation for treating the various conditions are provided, the implantable heart stimulator includes processors, each processor being designed to efficiently execute a respective group of modes of operation. A further embodiment of the present invention calls for the implantable heart stimulator to be implemented by at least one programmable microprocessor. A still further embodiment calls for the provision of a data input/output channel, by means of which data can be provided to and retrieved from the implantable heart stimulator. Operations carried out by the implantable heart stimulator includes cardiac pacing, cardioversion, and automatic defibrillation. In a further embodiment of the implantable heart stimulator and related method, sensing circuitry is provided to determine the presence or absence of an R-wave of the heart, the absence of which causes a pacing operation to be implemented, further sensing circuitry being provided to determine the presence or absence of a forced R-wave of the heart, the absence of a forced R-wave causing ventricular defibrillation to be implemented.
    • 可植入心脏刺激器和相关方法需要从多个条件中确定给定的心脏状况,选择用于治疗所确定的病症的至少一种手术模式以及选择的手术模式的执行,以便 治疗确定的病情。 在本发明的一个实施例中,其中提供了用于治疗各种条件的多种操作模式,可植入心脏刺激器包括处理器,每个处理器被设计成有效地执行相应的一组操作模式。 本发明的另一实施例要求可植入心脏刺激器由至少一个可编程微处理器实现。 另一实施例要求提供数据输入/输出通道,通过该数据输入/输出通道可以向可植入心脏刺激器提供数据和从可植入心脏刺激器检索数据。 由可植入心脏刺激器进行的手术包括心脏起搏,心脏复律和自动除颤。 在可植入心脏刺激器和相关方法的另一实施例中,提供感测电路以确定心脏的R波的存在或不存在,其中不存在可导致起搏操作被实现,将进一步的感测电路提供给 确定心脏的强制R波的存在或不存在,不执行导致心室除颤的强制R波。
    • 4. 发明授权
    • Implantable electrodes for accomplishing ventricular defibrillation and
pacing and method of electrode implantation and utilization
    • 用于实现心室除颤和起搏的植入式电极和电极植入和利用的方法
    • US4030509A
    • 1977-06-21
    • US620026
    • 1975-09-30
    • Marlin S. HeilmanAlois A. LangerMieczyslaw MirowskiMorton M. MowerDavid M. Reilly
    • Marlin S. HeilmanAlois A. LangerMieczyslaw MirowskiMorton M. MowerDavid M. Reilly
    • A61N1/05A61N1/39A61N1/36
    • A61N1/3918A61N1/0587
    • Disclosed are several embodiments of an electrode system for ventricular defibrillation, and the methods of using and implanting the electrode system. In one embodiment, the electrodes are in a generally base-apex configuration having a split conformal base electrode residing above the base of the ventricles (a transecting plane separating the atria from the ventricles) in the region of the atria and a conformal apex electrode in the form of a rotated conic section residing at the apex of the heart. In another embodiment, defibrillation is accomplished by the apex electrode acting against a catheter electrode situated high in the heart or in the superior vena cava.The electrodes themselves are in the form of planar metallic mesh elements adapted to lie in contact with body tissue on an active surface, insulated on the opposite surface. In another embodiment, the conductive portions of the respective electrodes are developed from metallic plates, exposed on one surface and insulated on the other. The electrodes may be split, or may entirely surround the base and apex of the heart.The disclosed electrode system is well adapted for easy implantation during an open heart surgery, or in a separate operation which can be performed in the mediastinal space without intrusion of the pleural space. The electrode system may be implanted for immediate stand-by defibrillation, or may be implanted during open heart surgery, used for post-operative monitoring, pacing and defibrillation, should the need arise, and then subcutaneously implanted for future association with an automatic defibrillating pulse generator. When employed after open heart surgery, the electrode system is preferably equipped with independent atrial and ventricular pacer electrodes.Also disclosed are techniques for fixing the electrode system to the surrounding body tissue, and electrode leads which may be removed after the implanted electrodes have served their desired function, without disturbing the electrodes themselves.
    • 公开了用于心室除颤的电极系统的几个实施例,以及使用和植入电极系统的方法。 在一个实施例中,电极处于大致基部顶点形状,其具有位于心房的区域中的心室的基部(在心房与心室分开的截面)之上的分裂的适形基底电极,以及保形顶点电极 居住在心脏顶点的旋转锥体部分的形式。 在另一个实施例中,除颤是通过顶点电极来实现的,所述顶点电极作用在位于心脏高处或上腔静脉的导管电极上。
    • 8. 发明授权
    • Method and apparatus for maximizing stroke volume through
atrioventricular pacing using implanted cardioverter/pacer
    • 使用植入式心律转复器/起搏器通过房室起搏使卒中容量最大化的方法和装置
    • US4303075A
    • 1981-12-01
    • US120099
    • 1980-02-11
    • Marlin S. HeilmanAlois A. Langer
    • Marlin S. HeilmanAlois A. Langer
    • A61N1/362A61N1/365A61N1/368A61N1/39A61N1/36
    • A61N1/3962A61N1/3622A61N1/36521A61N1/3682
    • A method and apparatus for maximizing stroke volume through atrioventricular pacing using an implanted cardioverter/pacer accomplishes AV pacing with an AV delay tailored to the particular patient, thereby maximizing accuracy and efficiency. The invention involves the measurement of successive impedance changes, or swings, from one heart cycle to the next, across a pair of electrodes connected in proximity to the heart, the processing of the successive impedance changes to detect variations and directions of variations thereof, the issuance of atrial and ventricular pacing pulses, separated by a time interval therebetween, to the atria and to the ventricles, respectively, and the selective increasing or decreasing of the time interval between the atrial and ventricular pacing pulses in dependence on the directions of variation of the successive impedance changes to maximize impedance swings.
    • 通过使用植入式心律转复器/起搏器通过房室起搏来最大化卒中体积的方法和装置通过针对特定患者定制的AV延迟实现AV起搏,从而最大化精度和效率。 本发明涉及通过连接在心脏附近的一对电极来测量从一个心脏周期到下一个心脏周期到下一个心脏周期的连续阻抗变化或摆动,连续阻抗变化的处理以检测其变化和变化方向, 分别在心房和心室起搏脉冲之间分开的心房和心室起搏脉搏分别到心房和心室,并且根据变化方向选择性地增加或减少心房和心室起搏脉冲之间的时间间隔 连续的阻抗变化以最大化阻抗摆动。
    • 9. 发明授权
    • Wound wire catheter cardioverting electrode
    • 绕线导管心律转复电极
    • US4161952A
    • 1979-07-24
    • US847443
    • 1977-11-01
    • Philip C. KinneyMarlin S. HeilmanAlois A. Langer
    • Philip C. KinneyMarlin S. HeilmanAlois A. Langer
    • A61N1/05A61N1/04
    • A61N1/056A61N1/05A61N2001/0585
    • Disclosed is an implantable catheter-type cardioverting electrode whose conductive discharge surface is comprised of coils of wound spring wire. An electrically conductive lead extends through the wound wire section of the electrode and has its distal end connected to the discharge coil at two locations. The proximal end of the conductive lead is adapted for connection to an implanted pulse generator. A pliable elastomeric material such as a medical-grade adhesive fills the conductive coils in the wound wire section of the spring wire electrode so that only the outer periphery of the wound section is exposed to the body. The catheter electrode is flexible, allowing easy implantation and avoiding trauma after implantation, and provides a large discharge surface for effecting defibrillation. The electrode is designed to reside in or about the heart, as in the superior vena cava or in the coronary sinus, and acts against another implanted electrode such as a conformal electrode residing at the apex of the heart.
    • 公开了一种植入式导管型心律转复电极,其导电放电表面由缠绕弹簧丝线圈组成。 导电引线延伸穿过电极的缠绕线部分,并且其远端在两个位置连接到放电线圈。 导电引线的近端适于连接到植入脉冲发生器。 柔韧的弹性体材料如医用级粘合剂填充弹簧丝电极的缠绕线部分中的导电线圈,使得只有伤口部分的外周暴露于身体。 导管电极是柔性的,允许容易植入和避免植入后的创伤,并且提供用于进行除颤的大放电表面。 电极被设计为驻留在心脏中或周围,如在上腔静脉或冠状窦中,并且作用于另一植入电极,例如驻留在心脏顶点的保形电极。