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    • 1. 发明授权
    • Utilization of a hybrid material in a surface coating of an electrosurgical instrument
    • 在电外科器械的表面涂层中利用混合材料
    • US06951559B1
    • 2005-10-04
    • US10177351
    • 2002-06-21
    • Darcy W. Greep
    • Darcy W. Greep
    • A61B18/12A61B18/14
    • A61B18/14A61B2018/00107A61B2018/0013A61B2018/00136
    • Applying and utilizing a hybrid material in a surface coating to provide or enhance properties, attributes and/or characteristics to the surface, such as at least a portion of an electrosurgical electrode tip. The hybrid material includes a combination of at least one of an organic polymer, an inorganic polymer, or an organic material with at least one of a ceramic or a silicon. The presence of the hybrid material coating layer provides a high temperature stability that withstands the temperatures of electrosurgery and a flexibility to increase the durability of the surface. Other materials may be included in the surface coating, such as a fluoropolymer, a water-soluble polymer, catalytic particles that may be activated or other materials that enhance the properties, characteristics and/or attributes of the coated surface. Optionally, an additional covering layer may be applied over the hybrid material coating layer to enhance the characteristics of the coated surface.
    • 在表面涂层中施加和利用混合材料以提供或增强表面的性质,属性和/或特性,例如电外科电极尖端的至少一部分。 杂化材料包括有机聚合物,无机聚合物或有机材料中的至少一种与陶瓷或硅中的至少一种的组合。 混合材料涂层的存在提供了耐受电外科手术温度和提高表面耐久性的灵活性的高温稳定性。 其它材料可以包括在表面涂层中,例如含氟聚合物,水溶性聚合物,可被活化的催化颗粒或增强涂层表面的性质,特性和/或属性的其它材料。 任选地,可以在混合材料涂层上施加附加的覆盖层以增强涂覆表面的特性。
    • 3. 发明授权
    • Utilization of an active catalyst in a surface coating of an electrosurgical instrument
    • 在电外科器械的表面涂层中利用活性催化剂
    • US06685704B2
    • 2004-02-03
    • US10083431
    • 2002-02-26
    • Darcy W. Greep
    • Darcy W. Greep
    • A61B1814
    • A61B18/14A61B18/1402A61B2018/00125A61B2018/00589A61B2018/00601A61B2018/0097A61B2018/1495
    • Applying and utilizing a catalyst in a coating layer to enhance release of accumulated buildup on a surface. The catalyst is in the form of micro or nano-sized particles that are optionally mixed with a binder material and applied as a coating of at least a portion of a surface, such as an electrosurgical tip. The particles are located on the outer surface of the coating layer to be in direct contact with any buildup, such as eschar, that may have accumulated. An energy source, such as a heat source, a light source, a microwave source, or the like, is used to activate the catalyst in order to aid in the release of the accumulated eschar. The activated catalytic particles interact with the eschar constituents to break bonds that have occurred between the eschar and the surface of the electrode or tip, allowing the eschar to release from the tip.
    • 在涂层中涂覆和利用催化剂以增强表面积累的积聚物的释放。 催化剂是微米或纳米尺寸颗粒的形式,其任选地与粘合剂材料混合并且作为表面的至少一部分涂层施加,例如电外科尖端。 颗粒位于涂层的外表面上,以直接接触可能积聚的任何积聚物,如焦痂。 使用诸如热源,光源,微波源等的能量源来激活催化剂,以帮助释放积累的焦。。 活化的催化剂颗粒与焦痂成分相互作用以破坏在焦痂和电极或尖端表面之间发生的粘合,从而使得焦痂从尖端释放。
    • 5. 发明授权
    • Electrosurgical scissors
    • 电外科剪刀
    • US09084606B2
    • 2015-07-21
    • US13486524
    • 2012-06-01
    • Darcy W. Greep
    • Darcy W. Greep
    • A61B18/14A61B18/00
    • A61B10/02A61B18/085A61B18/1445A61B2018/00589A61B2018/00601A61B2018/0072A61B2018/00875A61B2018/146
    • Embodiments are directed to various monopolar and bipolar electrosurgical scissor instruments. A monopolar electrosurgical scissor instrument includes one scissor blade that has an electrically conductive tapered edge, where the tapered edge is insufficiently sharp to shear or otherwise mechanically cut tissue. The scissors also include another electrically insulated scissor blade movably mounted to the first scissor blade. The second scissor blade includes a flat contact surface that is aligned with the tapered edge of the first scissor blade. The scissors further include a scissor body that includes a conductor that transfers electrical energy from an energy source to the tapered edge of the first electrically conductive scissor blade to electrically cut interlaying tissue located between the first electrically conductive scissor blade and the second electrically insulated scissor blade.
    • 实施例涉及各种单极和双极电刀剪刀仪器。 单极电刀剪刀仪器包括具有导电锥形边缘的一个剪刀,其中锥形边缘不够锋利以剪切或机械地切割组织。 剪刀还包括可移动地安装到第一剪刀片上的另一个电绝缘剪刀片。 第二剪刀包括与第一剪刀的锥形边缘对齐的平坦的接触表面。 剪刀还包括剪刀体,该剪刀体包括将电能从能量传递到第一导电剪刀的锥形边缘的导体,以电切割位于第一导电剪刀叶片和第二电绝缘剪刀片之间的夹层组织 。
    • 6. 发明申请
    • ELECTROSURGICAL INSTRUMENT WITH ADJUSTABLE POWER CABLE
    • 具有可调电源线的电磁力仪表
    • US20100274242A1
    • 2010-10-28
    • US12429867
    • 2009-04-24
    • Darcy W. Greep
    • Darcy W. Greep
    • A61B18/18
    • A61B18/1477A61B18/1402A61B2018/00595A61B2018/00601
    • An electrosurgical instrument that reduces the amount of fatigue experienced by a physician performing electrosurgery includes a hand piece that is connected to an electrosurgical generator by way of an electrical cable. The electrical cable is connected to the hand piece at a central portion of the hand piece, which reduces the resistance to the movement of the electrosurgical instrument created by the weight of the electrical cable. The reduced resistance leads to less fatigue in a physician's hand during electrosurgery. The hand piece can include a channel system that receives a portion of the electrical cable therein and allows a physician to adjust the location on the hand piece at which the electrical cable exits the hand piece. The channel system can include one or more side channels and/or longitudinal channels. The channels can include detents that define multiple exit locations from the channel system for the electrical cable.
    • 减少执行电外科医师经历的疲劳量的电外科器械包括通过电缆连接到电外科发生器的手部件。 电缆在手持件的中心部分处连接到手持件,这降低了由电缆的重量产生的电外科器械的移动阻力。 在电外科手术中,减少的阻力导致医生手中的疲劳较少。 手持件可以包括通道系统,其在其中容纳电缆的一部分,并且允许医师调节电缆离开手持件的手持件上的位置。 信道系统可以包括一个或多个侧信道和/或纵向信道。 通道可以包括限定用于电缆的通道系统的多个出口位置的制动器。
    • 7. 发明授权
    • Application and utilization of a water-soluble polymer on a surface
    • 表面上应用和利用水溶性聚合物
    • US06783525B2
    • 2004-08-31
    • US10021532
    • 2001-12-12
    • Darcy W. GreepWilliam G. Pitt
    • Darcy W. GreepWilliam G. Pitt
    • A61B1818
    • A61B18/14A61B2018/00083A61B2018/00142
    • Methods, systems, and devices for applying and utilizing a water-soluble polymer on a surface to provide desirable properties, attributes and/or characteristics to the surface. In a first embodiment, the water-soluble polymer at least partially fills one or more pores of a fluoropolymer or a porous metal. In a second implementation, the water-soluble polymer is mixed into a base material and the mixture is applied as a coating layer onto the surface. Where the surface is an electrosurgical electrode tip, the desirable properties, attributes and/or characteristics may include the ability to attract water that assists in cooling and/or lubricating the tip, to create a low shear, sacrificial layer that protects and enhances the tip, to supply a radical scavenger or inhibitor that reduces damage at the tip, and/or to deposit factors, such as healing factors, from the tip onto one or more contact surfaces of the patient's body.
    • 用于在表面上施用和利用水溶性聚合物以向表面提供所需性质,属性和/或特性的方法,系统和装置。 在第一个实施方案中,水溶性聚合物至少部分地填充含氟聚合物或多孔金属的一个或多个孔。 在第二个实施方案中,将水溶性聚合物混合到基材中,并将混合物作为涂层施加到表面上。 当表面是电外科电极尖端时,期望的性质,属性和/或特征可以包括吸引有助于冷却和/或润滑尖端的水的能力,以产生保护和增强尖端的低剪切牺牲层 ,以提供一种自由基清除剂或抑制剂,其减少尖端处的损伤和/或将诸如愈合因子的因素从尖端沉积到​​患者身体的一个或多个接触表面上。