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    • 3. 发明授权
    • Catheter system
    • US06730077B2
    • 2004-05-04
    • US10237376
    • 2002-09-09
    • Sean CarrollGeorge KleinMarwan AbboudSteven G. ArlessFredric L. MilderDan Wittenberger
    • Sean CarrollGeorge KleinMarwan AbboudSteven G. ArlessFredric L. MilderDan Wittenberger
    • A61B1802
    • A61B18/02A61B18/1492A61B2017/00026A61B2017/00084A61B2018/0212A61B2018/0262A61B2090/065
    • A cryocatheter for treatment of tissue has a tip adapted to provide a signal indicative of the quality and/or orientation of the tip contact with surrounding tissue. In one embodiment, a signal conductor extends through the catheter to the tip and connects to a thermally and electrically conductive shell or cap that applies an RF current to the region of tissue contacted by the tip. The tissue impedance path between the signal lead and a surface electrode mounted on the patient's skin is monitored to develop a quantitative measure of tissue contact at the distal tip, which is preferably displayed on the screen of a catheter monitoring console. In yet a further embodiment, the catheter is provided with a split tip having temperature monitoring sensors, such as thermistors, mounted on opposed halves of the tip so as to sense temperature on two sides of the catheter axis. The thermistor signals are processed to determine and display differential temperature between the two sides of the tip, thus revealing which side lies in contact. In yet a further aspect of the first embodiment, two separate and distinct high frequency electrical signals are applied to the two halves of a split metal shell or cap at the tip. Signals received at the surface electrode are filtered into first and second frequency components, and these are processed to determine the relative magnitude of the signal or the impedance of the path for each of the injected signals to determine and display the tissue contact orientation of the catheter. The catheter preferably has two separate cooling chambers within the cooling tip, positioned with one chamber on each side of the axis, and a separate cooling inlet to each chamber is switched on by a valve which directs the flow of coolant to the contact side during active cryotreatment. In another embodiment, the cap provides an RF electrode that may be opposed to the cooling side so that either the cryogenic or the RF ablation side may be rotated into contact to selectively heat or cool, or in representative protocol treat, then thaw, the same tissue site.
    • 4. 发明授权
    • Wide area ablation of myocardial tissue
    • 广泛消融心肌组织
    • US08475440B2
    • 2013-07-02
    • US11953189
    • 2007-12-10
    • Marwan AbboudFredric L. MilderGeorge Klein
    • Marwan AbboudFredric L. MilderGeorge Klein
    • A61B18/02
    • A61B18/02A61B2017/22051A61B2018/0022A61B2018/0212A61B2018/0262
    • The present invention advantageously provides a method and system for cryogenically ablating large areas of tissue within the left atrium. In an exemplary embodiment a cryotherapy device includes a catheter body having a substantially fixed diameter, a proximal end and a distal end; a first lumen for permitting passage of a cooling fluid from the proximal end to the distal end; a second lumen permitting return of the cooling fluid from the distal end to the proximal end; and an ablation element expandable from a first diameter that is substantially the same as the diameter of the catheter body to a second diameter that is at least twice the diameter of the catheter body, the ablation element having a surface portion that conforms to the uneven surface topography of the cardiac tissue. The ablation element can include one or more balloon and/or a flexible element that is deformed by moving the distal end of the catheter toward the proximal end of the catheter. The surface of the balloon can further be shaped by regulation of pressure within the one or more balloons. In an exemplary method a tissue ablation device is provided and tissue in the antrum of the left atrium is ablated with the device. In an exemplary method, only tissue in the antrum is ablated, and the ablation is created by freezing tissue.
    • 本发明有利地提供了用于低温切除左心房内的大面积组织的方法和系统。 在示例性实施例中,冷冻治疗装置包括具有基本上固定的直径,近端和远端的导管主体; 用于允许冷却流体从近端通向远端的第一腔; 允许冷却流体从远端返回到近端的第二管腔; 以及可从第一直径扩张的消融元件,所述第一直径基本上与所述导管主体的直径相同至所述导管主体直径的至少两倍的第二直径,所述消融元件具有与所述不平坦表面一致的表面部分 心脏组织的形貌。 消融元件可以包括通过将导管的远端朝向导管的近端移动而变形的一个或多个气囊和/或柔性元件。 球囊的表面可以通过调节一个或多个气囊内的压力而进一步成形。 在一种示例性方法中,提供组织消融装置,并且使用装置消融左心房窦内的组织。 在示例性方法中,只有窦中的组织被消融,并且通过冷冻组织产生消融。
    • 7. 发明授权
    • External atrial defibrillator and method for personal termination of atrial fibrillation
    • 外用心房除颤器和个人终止房颤的方法
    • US07085601B1
    • 2006-08-01
    • US09441936
    • 1999-11-17
    • Gust H. BardyGeorge Klein
    • Gust H. BardyGeorge Klein
    • A61N1/39
    • A61N1/39A61N1/395A61N1/3956A61N1/3987
    • An atrial defibrillator includes a portable, non-implantable housing, a pair of defibrillator pads, a shock generator, and an analyzer. The pads are applied to the outside of a patient's body, and the shock generator delivers a shock to the patient via the pads. The analyzer receives a cardiac signal from the patient, determines from the signal whether the patient is experiencing atrial fibrillation, and enables the shock generator if the patient is experiencing atrial fibrillation. Unlike conventional external atrial defibrillators, such an atrial defibrillator can be used by a layperson in the comfort of a patient's own home. Furthermore, such a defibrillator does not cause the surgery-related problems associated with implantable atrial defibrillators. Moreover, because the patient can choose when to receive a shock, such a defibrillator is less likely to surprise and embarrass the patient than automatic implantable defibrillators are.
    • 心房除颤器包括便携式非植入式外壳,一对除颤器垫,冲击发生器和分析器。 垫被施加到患者身体的外部,并且冲击发生器通过垫片向患者传递冲击。 分析仪从患者接收心脏信号,根据信号确定患者是否正在经历心房颤动,并且如果患者正在经历心房纤维性颤动,则能够进行休克发生器。 与传统的外部心房除颤器不同,这种心房除颤器可以由外行人在患者自己的家中舒适地使用。 此外,这种除颤器不会引起与可植入心房除颤器相关的手术相关问题。 此外,由于患者可以选择何时接受休克,因此与自动植入性除颤器相比,这种除颤器不太可能令人惊奇,并且使患者感到尴尬。
    • 8. 发明授权
    • Catheter and system for monitoring tissue contact
    • US06471693B1
    • 2002-10-29
    • US09393461
    • 1999-09-10
    • Sean CarrollGeorge Klein
    • Sean CarrollGeorge Klein
    • A61B1802
    • A61B18/02A61B18/1492A61B2017/00026A61B2017/00084A61B2018/0212A61B2018/0262A61B2090/065
    • A cryocatheter for treatment of tissue has a tip adapted to provide a signal indicative of the quality and/or orientation of the tip contact with surrounding tissue. In one embodiment, a signal conductor extends through the catheter to the tip and connects to a thermally and electrically conductive shell or cap that applies an RF current to the region of tissue contacted by the tip. The tissue impedance path between the signal lead and a surface electrode mounted on the patient's skin is monitored to develop a quantitative measure of tissue contact at the distal tip, which is preferably displayed on the screen of a catheter monitoring console. In yet a further embodiment, the catheter is provided with a split tip having temperature monitoring sensors, such as thermistors, mounted on opposed halves of the tip so as to sense temperature on two sides of the catheter axis. The thermistor signals are processed to determine and display differential temperature between the two sides of the tip, thus revealing which side lies in contact. In yet a further aspect of the first embodiment, two separate and distinct high frequency electrical signals are applied to the two halves of a split metal shell or cap at the tip. Signals received at the surface electrode are filtered into first and second frequency components, and these are processed to determine the relative magnitude of the signal or the impedance of the path for each of the injected signals to determine and display the tissue contact orientation of the catheter. The catheter preferably has two separate cooling chambers within the cooling tip, positioned with one chamber on each side of the axis, and a separate cooling inlet to each chamber is switched on by a valve which directs the flow of coolant to the contact side during active cryotreatment. In another embodiment, the cap provides an RF electrode that may be opposed to the cooling side so that either the cryogenic or the RF ablation side may be rotated into contact to selectively heat or cool, or in representative protocol treat, then thaw, the same tissue site.
    • 9. 发明授权
    • Cryoablation structure
    • 冷冻消融结构
    • US06270493B1
    • 2001-08-07
    • US09356433
    • 1999-07-19
    • Jean-Pierre LalondeCristian PetreRobert MartinClaudia LueckgeSean CarrollDan WittenbergerGeorge Klein
    • Jean-Pierre LalondeCristian PetreRobert MartinClaudia LueckgeSean CarrollDan WittenbergerGeorge Klein
    • A61B1818
    • A61B18/02A61B2017/00026A61B2017/00084A61B2018/00041A61B2018/0022A61B2018/0212A61B2018/0268
    • A cryocatheter for treatment of tissue includes a coolant line communicating with a cryochamber having a coolant receiving interior and a thermally conductive wall for contacting and conductively treating tissue. A return line returns spent coolant, and an insert or partition in the cryochamber conditions flow or channels fluid from the coolant line to the return line to enhance the rate or uniformity of cooling. The partition may extend axially to define an elongated sub-chamber which is preferentially cooled, or it may isolate one side to define an uncooled side of the cryochamber. The partition may extend axially to define a sub-chamber extending along a segmented length around a partial circumference of the catheter tip, or may channel the coolant from a central region outwardly against the peripheral wall of the cryochamber. The return line may be a vacuum return line. The catheter may include a means for warming the catheter tip to warm up or accelerate thawing of treated tissue, and the heating may be implemented by a heater in thermal contact with a fluid supply line, which may, moreover, be the coolant supply line. Alternatively, the warming fluid supply line may be distinct from the coolant line. In one embodiment, the device may connect the warming line as an additional coolant return line during cryotreatment, and switch its connection to supply warming fluid after the tissue has been cooled. The catheter may further include sensors such as thermal or impedance sensors for sensing contact orientation of the catheter against adjacent tissue. Electrodes may apply signals of two different frequencies to the two sides, and a processor may determine frequency, impedance or a differential temperature to indicate the tip contact orientation.
    • 用于治疗组织的低温灭菌器包括与具有冷却剂接收内部的冷冻箱和用于接触和导电地处理组织的导热壁连通的冷却剂管线。 返回管路返回耗尽的冷却剂,冷冻箱条件中的插入物或分隔件将流体从冷却剂管路流向或返回管路,以提高冷却速度或均匀性。 分隔件可以轴向延伸以限定优选冷却的细长子室,或者可以隔离一侧以限定冷冻箱的未冷却侧。 分隔件可以轴向延伸以限定围绕导管尖端的部分圆周的分段长度延伸的子室,或者可以将冷却剂从中心区域向外引导抵靠冷冻箱的周壁。 返回管线可以是真空回流管线。 导管可以包括用于加温导管尖端以加热或加速经处理的组织的解冻的装置,并且加热可以通过与流体供应管线热接触的加热器来实现,流体供应管线还可以是冷却剂供应管线。 或者,加温流体供应管线可以不同于冷却剂管线。 在一个实施例中,该装置可以在冷冻处理期间将加热管线作为另外的冷却剂返回管线连接,并且在组织冷却之后将其连接切换到供应加热流体。 导管还可以包括传感器,例如用于感测导管相对于相邻组织的接触取向的热传感器或阻抗传感器。 电极可以将两个不同频率的信号施加到两侧,并且处理器可以确定频率,阻抗或差分温度以指示尖端接触取向。
    • 10. 发明授权
    • Bulkhead and rail transport system
    • 隔板和铁路运输系统
    • US5076745A
    • 1991-12-31
    • US589254
    • 1990-09-28
    • George Klein
    • George Klein
    • B60P7/08B61D45/00
    • B61D45/003B60P7/08
    • An improved bulkhead assembly intended for use in connection with the transportation of materials on a flat rack container, and an improved material transport system employing such bulkhead assembly is shown. The improved material transport system is of the type which includes a flat rack container having at least one open ended rail mounted on the flat rack which includes at least a pair of opposed flat bars mounted in spaced apart relation extending along the length of the rack container. The improved bulkhead assembly is formed by a base including an upper plate which rides along the upper support surface of the rail, and a lower locking plate adapted for riding along the lower surface of the rail. Devices are interposed between the upper plate and the lower locking plate for lockingly engaging the base onto the rail at any fixed position along the length thereof. The upper plate of the bulkhead includes a bulkhead support member which is mounted thereon and extends upwardly therefrom and positioned to be in support relationship with respect to a material load carried on the flat rack container. One or more of the bulkheads may be slidingly positioned along the rails on the flat rack in order to hold a material load thereon. The system is further improved by providing a material support arm device adapted for overlying the material load and interposed between a pair of opposed bulkheads which are lockingly engaged on either side of the material load and which may be secured to each of the two bulkheads in order to tie down the material load during transport.
    • 示出了用于结合在平架式货架上运输材料的改进的隔板组件以及采用这种隔板组件的改进的材料运输系统。 改进的材料输送系统的类型包括具有安装在扁平架上的至少一个开放式导轨的扁平架容器,该至少一个开放式导轨包括至少一对相对的扁平杆,所述至少一对相对的扁平杆沿着所述齿条容器的长度延伸 。 改进的隔板组件由包括沿着轨道的上支撑表面骑行的上板的基座和适于沿着轨道的下表面骑行的下锁定板形成。 装置设置在上板和下锁定板之间,用于将基座沿着其长度在任何固定位置处将基座锁定在轨道上。 隔板的上板包括安装在其上并从其向上延伸的隔板支撑构件,并且定位成相对于承载在扁平货架容器上的材料负载处于支撑关系。 一个或多个隔板可以沿着扁平架上的轨道滑动定位,以便在其上保持材料载荷。 通过提供一种材料支撑臂装置来进一步改进系统,该材料支撑臂装置适于覆盖材料载荷并且插入在一对相对的隔壁之间,这对隔板被锁定地接合在材料负载的任一侧上,并可按顺序固定到两个隔板中的每一个上 在运输过程中捆绑物料负载。