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    • 2. 发明授权
    • Devices, systems, and methods for determining isometric and isotonic activity of luminal organs
    • 用于确定腔内器官的等长和等渗活性的装置,系统和方法
    • US08992444B2
    • 2015-03-31
    • US12727909
    • 2010-03-19
    • Ghassan S. KassabXiao Lu
    • Ghassan S. KassabXiao Lu
    • A61B5/103A61B5/0488A61B5/02A61B5/03A61B5/00
    • G01N33/5088A61B5/02007A61B5/036A61B5/04882A61B5/4047A61B5/4052A61B5/418A61B2503/40G01N3/12G01N33/4833
    • Devices, systems, and methods for determining isometric and isotonic activity of luminal organs. In an exemplary method for detecting a luminal organ response to mechanical stimulation of the present disclosure, the method comprises the steps of maintaining a luminal organ at a first internal pressure, increasing the first internal pressure of the luminal organ, and measuring a first organ parameter change in response to the increase in internal pressure. In an exemplary system for detecting a luminal organ response to mechanical stimulation of the present disclosure, the system comprises a first conduit having a proximal end, a distal end, and a lumen therethrough, the distal end sized and shaped to fit within a luminal organ, a pressure transducer, and at least one pressurized vessel capable of introducing a fluid into the lumen of the first conduit, wherein the first conduit, the pressure transducer, and the at least one pressurized vessel are either directly or indirectly coupled to one another so that a pressure of a fluid present within the first conduit can be measured using the pressure transducer.
    • 用于确定腔内器官的等长和等渗活性的装置,系统和方法。 在用于检测对本公开的机械刺激的管腔器官反应的示例性方法中,所述方法包括以下步骤:将腔内器官保持在第一内部压力,增加腔内器官的第一内部压力,以及测量第一器官参数 随着内部压力的增加而改变。 在用于检测对本公开的机械刺激的管腔器官反应的示例性系统中,该系统包括具有近端,远端和穿过其中的腔的第一导管,该远端尺寸和形状适合于内腔器官 压力传感器和能够将流体引入第一导管的内腔中的至少一个加压容器,其中第一导管,压力换能器和至少一个加压容器彼此直接或间接耦合,因此 可以使用压力传感器测量存在于第一导管内的流体的压力。
    • 3. 发明授权
    • Circuit arrangements for generating currents and the application thereof
    • 用于产生电流的电路布置及其应用
    • US08755904B2
    • 2014-06-17
    • US13934418
    • 2013-07-03
    • inomed Medizintechnik GmbH
    • Matthias Baag
    • A61N1/00
    • A61B5/04001A61B5/04004A61B5/0492A61B5/4047A61B5/4052A61N1/36125A61N1/3912H02J4/00Y10T307/50
    • Electronic circuit arrangements for generating at least two different constant currents at a load resistor, including a bridge circuit (especially an H bridge=H bridge circuit) having at least (in the case of an H bridge, precisely) four legs, and switching elements and a bridge branch between the legs, in which the load resistor is inserted, and at least two current sources which are connected to the legs of the bridge circuit in such a manner that it provides for current via one of the legs through the bridge branch and through a leg, connected to the other end of the bridge branch, with a corresponding switch position, the at least two current sources being adjustable if desired. The use of the circuit arrangement for generating such stimulation currents and corresponding procedures currents and methods.
    • 用于在负载电阻器处产生至少两个不同恒定电流的电子电路装置,包括具有至少(在H桥的情况下,精确地)四个支腿的桥接电路(尤其是H桥= H桥电路)和开关元件 以及插入负载电阻器的支腿之间的桥接支路以及连接到桥接电路的支腿的至少两个电流源,使得其经由一个支腿通过桥接支路提供电流 并且通过连接到所述桥接支路的另一端的支腿具有相应的开关位置,如果需要,所述至少两个电流源是可调节的。 使用电路装置产生这种刺激电流和相应的程序电流和方法。
    • 5. 发明申请
    • NERVE MONITORING SYSTEM
    • 神经监测系统
    • US20140058284A1
    • 2014-02-27
    • US13591280
    • 2012-08-22
    • Stephen BartolChristopher Wybo
    • Stephen BartolChristopher Wybo
    • A61B5/11
    • A61B5/1104A61B5/1107A61B5/205A61B5/4047A61B5/4052A61B5/4222
    • A neural monitoring system includes a stimulator configured to provide an electrical stimulus within an intracorporeal treatment area of a subject, an elongate sphincter contraction sensor, and a receiver in communication with the sphincter contraction sensor. The elongate sphincter contraction sensor includes an elongate device body configured to be inserted within a sphincter of the subject and a force sensor in mechanical communication with the elongate device body. The force sensor is configured to provide a mechanomyography output signal in response to a contact force applied against the elongate device body by the sphincter. The receiver is configured to receive the mechanomyography output signal from the elongate sphincter contraction sensor and provide an indicator to a user based on at least a portion of the output of the sphincter contraction sensor.
    • 神经监测系统包括被配置为在受试者的体内治疗区域内提供电刺激的刺激器,细长括约肌收缩传感器和与括约肌收缩传感器连通的接收器。 细长括约肌收缩传感器包括被配置为插入到受检者的括约肌内的细长装置主体和与细长装置主体机械连通的力传感器。 力传感器被配置为响应于由括约肌施加到细长装置主体的接触力而提供机械通道输出信号。 接收器被配置为从细长括约肌收缩传感器接收机械通道输出信号,并且基于括约肌收缩传感器的输出的至少一部分向用户提供指示器。