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    • 61. 发明申请
    • Electrosurgical Pencil with Improved Controls
    • 电子手术铅笔与改进的控制
    • US20090143778A1
    • 2009-06-04
    • US12368389
    • 2009-02-10
    • Joe Don SartorChris J. EhrArlen J. Reschke
    • Joe Don SartorChris J. EhrArlen J. Reschke
    • A61B18/18A61B18/14
    • A61B18/1402A61B2018/00928A61B2018/00946
    • An electrosurgical pencil is provided and includes an elongated housing having an electrocautery blade supported therein and extending distally from the housing. The electrocautery blade is connected to a source of electrosurgical energy. The pencil further includes a plurality of activation switches supported on the housing for activating etectrocautery blade. Each activation switch is configured and adapted to selectively complete a control loop extending from the source of electrosurgical energy upon actuation thereof. In use, actuation of at least one of the plurality of activation switches produces a dividing with hemostatic effect at the electrocautery blade. The electrosurgical pencil further includes at least one voltage divider network supported on the housing. The at least one voltage divider network is electrically connected to the source of electrosurgical energy and controls the intensity of electrosurgical energy being delivered to the electrosurgical pencil.
    • 提供电外科手术铅笔,并且包括细长的外壳,其具有支撑在其中并从壳体向远端延伸的电烙刀。 电烙刀连接到电外科手术能源。 铅笔还包括支撑在壳体上的多个激活开关,用于激活电极切割刀片。 每个激活开关被配置和适于选择性地完成从其电动外科手术能源延伸的控制回路。 在使用中,多个致动开关中的至少一个的致动在电烙刀产生止血效果的分割。 电外科手术笔还包括支撑在壳体上的至少一个分压器网络。 所述至少一个分压器网络电连接到电外科能量源,并且控制被递送到电外科手术铅笔的电外科能量的强度。
    • 62. 发明申请
    • Medical sharps container
    • 医疗锐器容器
    • US20080190924A1
    • 2008-08-14
    • US11706916
    • 2007-02-13
    • Sergey BobrovSteven T. Umlor
    • Sergey BobrovSteven T. Umlor
    • B29C45/16B65D3/22B32B7/00B65D39/00B32B3/26
    • B29C44/0407A61B50/362A61B2017/00526B29C44/348B29K2105/041Y10T428/1376Y10T428/2495Y10T428/249953
    • A medical waste container includes a reduced-weight section having a high density outer skin layer, a high density inner skin layer, and a cellular core layer between the outer skin layer and inner skin layer. A method for manufacturing a medical waste container includes the steps of combining a thermoplastic polymer with a endothermic chemical blowing agent, heating the polymer and blowing agent to form a melted mixture, maintaining the mixture under conditions that prevent or substantially prevent activation of the blowing agent, injecting the mixture into a mold having a mold chamber and chamber walls, the mold being at a pressure that is sufficiently low to activate the blowing agent and initiate cell formation in the mold chamber, and cooling the melted mixture in the mold to form skin layers in the mixture where the mixture contacts the chamber walls.
    • 医疗废物容器包括具有高密度外皮层,高密度内表皮层和外皮层和内表皮层之间的细胞芯层的减重部分。 制造医疗废物容器的方法包括以下步骤:将热塑性聚合物与吸热化学发泡剂混合,加热聚合物和发泡剂以形成熔融混合物,将混合物保持在防止或基本上防止发泡剂活化的条件下 将混合物注入具有模具室和室壁的模具中,模具处于足够低的压力以激活发泡剂并启动模具室中的细胞形成,并且将模具中的熔融混合物冷却以形成皮肤 混合物中的混合物层与混合物接触室壁。
    • 63. 发明授权
    • Switched resonant ultrasonic power amplifier system
    • 开关谐振超声功率放大器系统
    • US07396336B2
    • 2008-07-08
    • US10974332
    • 2004-10-27
    • James H. OrszulakJames W. McPherson
    • James H. OrszulakJames W. McPherson
    • A61F7/00
    • H01L41/042A61N7/00A61N2007/0056B06B1/0253B06B1/0261B06B2201/76
    • A switched resonant power amplifier system for ultrasonic transducers is disclosed. The system includes an amplifier that receives and processes a driver output signal for generating a drive signal that is provided to an ultrasonic device for controlling output of the ultrasonic device. An output control circuit receives and processes a signal related to a feedback signal generated by the ultrasonic device and a divider reference signal, and generates a compensated clock signal that is adjusted for at least one of phase and frequency differences between the received feedback signal and the divider reference signal. A compensated drive circuit receives and processes the compensated clock signal for generating the divider reference signal, and for generating the driver output signal.
    • 公开了一种用于超声换能器的开关谐振功率放大器系统。 该系统包括放大器,其接收和处理驱动器输出信号,以产生提供给超声波装置的用于控制超声波装置的输出的驱动信号。 输出控制电路接收和处理与由超声波装置产生的反馈信号相关的信号和分频器参考信号,并且产生经补偿的时钟信号,所述补偿时钟信号针对接收的反馈信号和接收到的反馈信号之间的相位和频率差中的至少一个被调整 分频器参考信号。 补偿驱动电路接收并处理经补偿的时钟信号以产生除法器参考信号,并用于产生驱动器输出信号。
    • 64. 发明授权
    • Slide-activated cutting assembly
    • 滑动切割组件
    • US07384421B2
    • 2008-06-10
    • US11239767
    • 2005-09-30
    • Dylan Hushka
    • Dylan Hushka
    • A61B18/12
    • A61B18/1445A61B17/320016A61B2018/00601A61B2018/00946A61B2018/1412A61B2018/1455
    • An endoscopic bipolar forceps is provided. The forceps includes a housing, a shaft, a drive assembly, a handle assembly and a slide activated cutting assembly. The shaft is affixed to the housing and comprises an end effector assembly comprising two jaw members at its distal end. The drive assembly is configured to move the end effector assembly. The handle assembly is in mechanical cooperation with the drive assembly. The slide-activated cutting assembly is disposed at least partially within the housing and move a knife rod comprising a knife blade at its distal end to cut tissue along a tissue seal. A source of electrosurgical energy is adapted to connect to each jaw member to enable them to conduct energy through tissue to affect a tissue seal.
    • 提供内窥镜双极镊子。 镊子包括壳体,轴,驱动组件,手柄组件和滑动启动切割组件。 轴固定在壳体上,并包括在其远端包括两个钳口构件的端部执行器组件。 驱动组件构造成移动末端执行器组件。 手柄组件与驱动组件机械配合。 滑动激活的切割组件至少部分地设置在壳体内并且在其远端处移动包括刀片的刀杆,以沿组织密封件切割组织。 电外科能量的来源适于连接到每个钳口构件以使它们能够通过组织传导能量以影响组织密封。
    • 66. 发明申请
    • System and method for measuring initial tissue impedance
    • 用于测量初始组织阻抗的系统和方法
    • US20080039831A1
    • 2008-02-14
    • US11500687
    • 2006-08-08
    • Darren OdomCraig WeinbergAmy Denham
    • Darren OdomCraig WeinbergAmy Denham
    • A61B18/18
    • A61B18/1445A61B2018/0063A61B2018/00702A61B2018/00875
    • An electrosurgical system and method are disclosed. The system includes an electrosurgical generator adapted to supply electrosurgical energy to tissue. The generator is further adapted to supply an electrical signal having at least one substantially constant value to tissue to determine initial tissue impedance response. The generator includes sensor circuitry adapted to continuously monitor initial tissue impedance response, wherein the initial tissue impedance response includes one of an initial impedance, an impedance drop, an impedance minimum and a first impedance rise. The generator also includes a microprocessor adapted to generate at least one tissue parameter based as a function of the initial impedance, the impedance drop, the impedance minimum and the first impedance rise. The system also includes an electrosurgical instrument including at least one active electrode adapted to apply electrosurgical energy to tissue for treatment.
    • 公开了电外科系统和方法。 该系统包括适于向组织提供电外科能量的电外科发生器。 发生器还适于向组织提供具有至少一个基本上恒定的值的电信号以确定初始组织阻抗响应。 发生器包括适于连续监测初始组织阻抗响应的传感器电路,其中初始组织阻抗响应包括初始阻抗,阻抗降低,阻抗最小值和第一阻抗上升之一。 发生器还包括微处理器,其适于基于初始阻抗,阻抗降低,阻抗最小值和第一阻抗上升来产生至少一个组织参数。 该系统还包括电外科器械,其包括适于将电外科能量施加到组织用于治疗的至少一个活性电极。