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    • 3. 发明申请
    • Apparatus and method for tissue resection
    • 组织切除术的装置和方法
    • US20060142757A1
    • 2006-06-29
    • US11335092
    • 2006-01-18
    • Steven DanielDavid Morris
    • Steven DanielDavid Morris
    • A61B18/14
    • A61B18/1477A61B90/11A61B2018/0016A61B2018/00577A61B2018/1425A61B2018/143A61B2018/1475
    • A tissue ablation system is described that generates a uniform avascular plane of coagulated tissue to aid in the bloodless or near-bloodless resection of various biological tissues from a variety of organs. The tissue ablation system includes an energy director guide and two or more sets of bipolar energy directors. The energy director guide includes a series of channels that configure the energy directors to provide approximately uniform power distribution or current density through a target tissue volume or plane. The spacing among the channels of the energy director guide varies according to the total number of energy directors received in the energy director guide so that relative spacing among the center-most channels is largest and relative spacing among the end-most channels is smallest. The energy director guide secures a selected position of each of the energy directors in the target tissue volume.
    • 描述了组织消融系统,其产生凝固组织的均匀的无血管平面,以帮助来自各种器官的各种生物组织的无血或近无血的切除。 组织消融系统包括能量导向器引导件和两组或多组双极能量引导器。 能量导向器引导件包括一系列通道,其配置能量引导器以通过目标组织体积或平面提供近似均匀的功率分布或电流密度。 能量导向器引导件的通道之间的间隔根据能量导向器引导器中接收到的能量引导器的总数而变化,使得最中心的通道之间的相对间隔最大,并且最终通道之间的相对间隔最小。 能量导向器引导件将每个能量引导器的选定位置固定在目标组织体积中。
    • 4. 发明申请
    • Tissue surface treatment apparatus and method
    • 组织表面处理装置及方法
    • US20050137662A1
    • 2005-06-23
    • US11034435
    • 2005-01-11
    • David MorrisSteven DanielDaniel Balbierz
    • David MorrisSteven DanielDaniel Balbierz
    • A61B18/14A61F2/00
    • A61M25/1002A61B18/1477A61B2018/00011A61B2018/00017A61B2018/00029A61B2018/00291A61B2018/143A61B2018/1475A61M2025/0085
    • A tissue surface treatment apparatus includes a housing having a proximal end, a distal end including a tissue contacting surface, an interior defined by the housing and a handpiece coupled to the housing. The contactinc surface has a plurality of apertures. An energy delivery device including an electrode is positionable in the housing interior. The electrode includes a tissue penetrating distal end in substantial alignment with an aperture. The electrode is configured to be advanced from the housing interior through the aperture and into a target tissue site to define an ablation volume at least partly bounded by a tissue surface. An advancement device is coupled to the energy delivery device and is at least partly positionable within at least one of the housing or the handpiece. The advancement device is configured to advance the electrode from the housing interior into the target tissue site and withdrawal the electrode into the housing interior. A cable is coupled to the housing or the energy delivery device and is configured to be coupled to an energy source.
    • 组织表面处理设备包括具有近端,远端包括组织接触表面的壳体,由壳体限定的内部和联接到壳体的手持件。 触点表面具有多个孔。 包括电极的能量输送装置可定位在壳体内部。 电极包括与孔基本对准的穿透远端的组织。 电极被配置为从壳体内部通过孔推进到目标组织部位以限定至少部分地由组织表面限定的消融体积。 进给装置联接到能量输送装置,并且至少部分地可定位在壳体或手持件中的至少一个中。 推进装置被配置为将电极从壳体内部推进到目标组织部位并将电极抽出到壳体内部。 电缆耦合到壳体或能量输送装置,并且被配置为耦合到能量源。
    • 8. 发明申请
    • Thermal coagulation of tissue during tissue resection
    • 组织切除期间组织的热凝固
    • US20050004567A1
    • 2005-01-06
    • US10800451
    • 2004-03-15
    • Steven DanielDavid Morris
    • Steven DanielDavid Morris
    • A61B18/14A61B19/00A61M31/00
    • A61B18/1477A61B90/11A61B2018/0016A61B2018/00577A61B2018/1425A61B2018/143A61B2018/1475
    • Methods for performing coagulation necrosis of biological tissue are provided. The methods include configuring electrode arrays to provide balanced energy density in target tissue volumes using two or more pair of electrodes. The electrode array configuration includes at least one of irregular spacing between one or more pairs of electrodes and one or more electrode diameters. The methods further include deploying each electrode of an array at a selected depth in the target tissue volume in accordance with the configuration. Energy is then delivered to the target tissue volume using power sources coupled to the electrodes. The methods control power delivery in response to at least one of elapsed time of delivery, temperatures of the target tissue volume, and impedance levels in the target tissue volume to provide balanced or uniform energy throughout the target tissue volume. The methods generate planes of coagulated tissue.
    • 提供了生物组织凝固坏死的方法。 所述方法包括配置电极阵列以使用两对或更多对电极在目标组织体积中提供平衡的能量密度。 电极阵列配置包括一对或多对电极之间的不规则间隔和一个或多个电极直径中的至少一个。 所述方法还包括根据配置将阵列的每个电极部署在目标组织体积中的选定深度处。 然后使用耦合到电极的电源将能量输送到目标组织体积。 所述方法响应于经过的传递时间,目标组织体积的温度和目标组织体积中的阻抗水平中的至少一个来控​​制功率传递,以在整个目标组织体积中提供平衡或均匀的能量。 该方法产生凝结组织的平面。
    • 10. 发明授权
    • Variable wheelbase motor grader
    • 可变轴距电机分级机
    • US08393429B2
    • 2013-03-12
    • US12938861
    • 2010-11-03
    • Norval ThomsonSteven DanielDaniel Sergison
    • Norval ThomsonSteven DanielDaniel Sergison
    • B62D61/12B62K13/00
    • E02F5/32B62D49/0678E02F3/764E02F3/7659E02F3/7668E02F3/7672E02F3/961E02F9/024E02F9/225
    • A motor grader with an adjustable wheelbase. The motor grader may include front and rear wheels supporting a chassis and a main frame. A working blade may downwardly depend from the main frame between the front wheels and rear wheels to perform work on the ground below. The motor grader may also provide an adjustable wheel base to allow the center of gravity of the motor grader to better match the work load being addressed. The adjustable wheel base may also provide more swing clearance for the blade relative to the rear wheels, allow for an adjustable articulation angle, and minimize structural loads on the motor grader, particularly during ripping operation. The wheel base may be adjustable by providing structure through which the relative positions of the rear wheels can be altered automatically, manually, and dynamically.
    • 具有可调节轴距的自动平地机。 自动平地机可以包括支撑底盘和主框架的前轮和后轮。 工作叶片可以从前轮和后轮之间的主框架向下依次,以在下面的地面上进行作业。 自动平地机还可以提供可调轮盘,以允许分级机的重心更好地匹配要解决的工作负荷。 可调轮底还可以为叶片相对于后轮提供更多的摆动间隙,允许可调节的关节角度,并且最小化马达分级机上的结构负载,特别是在翻转操作期间。 车轮底座可以通过提供可以自动,手动和动态地改变后轮的相对位置的结构来调节。