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    • 81. 发明申请
    • IMPLANTABLE MEDICAL DEVICE WITH LEAD FAILURE DETECTION
    • 具有引线故障检测的可植入医疗器械
    • US20100010558A1
    • 2010-01-14
    • US12439036
    • 2006-08-28
    • Hans SchüllerAnders Lindgren
    • Hans SchüllerAnders Lindgren
    • A61N1/36
    • A61B5/0424A61B5/042A61B5/6885A61N1/365A61N1/37
    • An implantable heart stimulating device has an ECG sensing unit to receive heart potential signals from sensing electrodes at an electrode lead arranged in connection with a patient's heart. The ECG sensing unit is provided with a programmable make-break threshold. The device further has a timer adapted to generate a make-break detection period, and a counter. The counter is adapted to count the number of times that the amplitude of the heart potential signal exceeds the programmable make-break threshold during the make-break detection period. When the number of times is higher than a predetermined value, the ECG obtained during the make-break detection period is stored in an ECG storage unit.
    • 可植入心脏刺激装置具有ECG感测单元,用于在与患者心脏相关联地布置的电极引线处从感测电极接收心脏电位信号。 ECG感测单元具有可编程的创建中断阈值。 该装置还具有适于产生制造中断检测周期的定时器和计数器。 该计数器适用于在制造中断检测周期期间计数心脏电位信号的幅度超过可编程断开阈值的次数。 当次数高于预定值时,在休假检测期间获得的ECG被存储在ECG存储单元中。
    • 85. 发明授权
    • Method of electrical connection through an isolation trench to form
trench-isolated bipolar devices
    • 通过隔离沟槽电连接以形成沟槽隔离双极器件的方法
    • US6121102A
    • 2000-09-19
    • US40384
    • 1998-03-18
    • Hans NorstromOla Knut TylstedtAnders Lindgren
    • Hans NorstromOla Knut TylstedtAnders Lindgren
    • H01L29/73H01L21/331H01L21/76H01L21/762H01L29/417H01L29/423H01L29/732
    • H01L29/66272H01L21/76224H01L29/41708H01L29/42304H01L29/7325
    • In order to produce an electrical connection to an inner layer such as a bottom diffusion (103), which has a good electrical conductivity and is located inside a bipolar semiconductor device isolated by trenches (119) and which for example forms a subcollector of a NPN-transistor, a hole (157) in a trench is used. The hole is filled with electrically conducting material and extends from the surface of the device to the bottom diffusion (103), so that the electrically conducting material in the hole is in contact therewith. The hole (157) is made aligned with a sidewall of the trench (119) by using selective etching. The hole can be made at the same time as contact holes for metallization are made and then also be filled in the metallization step, to contact the bottom diffusion. For a lateral PNP-transistor the hole can be made as a closed groove constituting the outer confinement of the base area, passing all around the transistor. The outer sidewall of such a closed trench can, as seen from above, be bevelled by 45.degree., so that no inner corners having too small angles are found in the trench, what facilitates the filling with oxide.
    • 为了产生与诸如底部扩散(103)的内层的电连接,其具有良好的导电性并且位于由沟槽(119)隔离的双极半导体器件内部,并且例如形成NPN的子集电极 晶体管,使用沟槽中的孔(157)。 孔被导电材料填充并从器件的表面延伸到底部扩散(103),使得孔中的导电材料与其接触。 孔(157)通过选择性蚀刻与沟槽(119)的侧壁对准。 可以在制造用于金属化的接触孔的同时制造孔,然后在金属化步骤中填充孔,以接触底部扩散。 对于横向PNP晶体管,该孔可以形成为构成基极区域的外部限制的闭合槽,通过晶体管周围。 如上所述,这种封闭沟槽的外侧壁可以倾斜45°,使得在沟槽中没有发现角度太小的内角,有助于填充氧化物。
    • 86. 发明授权
    • Implantable medical electrode device including structure for explanting
same
    • 可植入医疗电极装置,包括外植体结构
    • US5423880A
    • 1995-06-13
    • US120808
    • 1993-09-15
    • Per NymanAnders Lindgren
    • Per NymanAnders Lindgren
    • A61B17/00A61N1/05
    • A61N1/057A61N2001/0578
    • A medical electrode device, implantable in a subject for electrically stimulating tissue, includes an electrode cable containing an elongated, flexible conductor having an interior channel and covered with electrical insulation, and terminating in an electrode head for engaging tissue of the subject. A stylet is insertable in the channel. The electrode device incorporates structure for assisting in explanting the device formed by an adhesive substance releasably storable within the cable and releasable by manipulation of the stylet or a stylet-like element. When the adhesive is released, the stylet is adhered to the electrode head and can be manipulated from the proximal end of the electrode device to twist the distal end of the electrode device away from ingrown tissue upon explantation.
    • 可植入受试者中用于电刺激组织的医用电极装置包括电极电缆,其包含具有内部通道并被电绝缘覆盖的细长柔性导体,并终止于用于接合受试者组织的电极头。 探针可插入通道。 电极装置包括用于辅助移除由可释放地存储在电缆内的粘合剂物质形成的装置的结构,并且可通过操纵探针或探针状元件而释放。 当粘合剂被释放时,探针被粘附到电极头,并且可以从电极装置的近端操作,以在外植时将电极装置的远端扭转离开内向组织。
    • 88. 发明授权
    • Atrium-controlled heart pacemaker
    • 心房控制的心脏起搏器
    • US4714079A
    • 1987-12-22
    • US910998
    • 1986-09-24
    • Sven-Erik HedbergAnders LekholmAnders Lindgren
    • Sven-Erik HedbergAnders LekholmAnders Lindgren
    • A61N1/365A61N1/368A61N1/36
    • A61N1/368A61N1/3682
    • An atrium-controlled heart pacemaker operates using set parameters including a smallest synchronous interval (SSI) between two stimulation pulses, a minimum atrial-ventricular delay time (AVmin) and a maximum atrial-ventricular delay time (AVmax). A control unit, dependent upon the appearance of an atrial signal, controls operation of the pacemaker such that the pacemaker operates with a variable pulse rate (DDD mode) when the atrial signal appears after a point in time SSI-AVmin, operates the pacemaker with a highest synchronous pulse rate when the atrial signal is between the points in time SSI-AVmin and SSI-AVmax, and causes no stimulation pulses to be emitted when the atrial signal appears before the point in time SSI-AVmax.
    • 心房控制的心脏起搏器使用设定参数进行操作,包括两个刺激脉冲之间的最小同步间隔(SSI),最小心房延迟时间(AVmin)和最大心房延迟时间(AVmax)。 根据心房信号的出现,控制单元控制起搏器的操作,使得起搏器以可变脉冲速率(DDD模式)操作,当心房信号在时间点SSI-AVmin后出现时,起搏器与 当心房信号在时间点SSI-AVmin和SSI-AVmax之间时最高的同步脉搏率,并且当心房信号在时间点SSI-AVmax之前出现时,不会发出刺激脉冲。