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    • 103. 发明授权
    • Apparatus and method for removing carrier liquid from an intermediate transfer member surface or from a toned image on an intermediate transfer member
    • 从中间转印部件表面或中间转印部件上的调色图像中除去载液的设备和方法
    • US06785495B2
    • 2004-08-31
    • US10428496
    • 2003-05-02
    • James A. BakerGay L. HermanCharles W. Simpson
    • James A. BakerGay L. HermanCharles W. Simpson
    • G03G1510
    • G03G21/0088G03G15/11
    • A liquid electrophotographic imaging apparatus contains at least one drying element for removing excess carrier liquid in a liquid toner toned latent image on an intermediate transfer member surface or from the intermediate transfer member surface itself. The drying sheet includes a flexible substrate having a first surface and second surface; at least one oleophilic carrier liquid absorptive layer on the first surface of the flexible substrate; and the first surface of the flexible substrate facing the intermediate transfer member surface, latent image or liquid toned latent image. A method of using this apparatus includes providing at least one absorbent drying sheet; providing an electrophotographic apparatus including at least an intermediate transfer member; at least one supply container and at least one discard container for the at least one absorbent drying sheet; providing a toned image on the intermediate transfer member with a liquid toner; contacting an absorbent drying sheet from the supply container to the toned image on the intermediate transfer member or to the intermediate transfer member itself after the image is transferred away; absorbing liquid carrier with the drying sheet, the drying sheet then becoming a used drying sheet; determining whether the used drying sheet is suitable for reuse as an absorbent drying sheet; and placing the used drying sheet in a container.
    • 液体电子摄影成像装置包含至少一个干燥元件,用于在中间转印部件表面或中间转印部件表面本身上去除液体调色剂调色潜像中的过量载液。 干燥片包括具有第一表面和第二表面的柔性基底; 在柔性基底的第一表面上的至少一个亲油载体液体吸收层; 并且柔性基板的面向中间转印部件表面的第一表面,潜像或液体调色潜影。 使用该装置的方法包括提供至少一种吸收性干燥片; 提供包括至少中间转印部件的电子照相设备; 至少一个供应容器和用于所述至少一个吸收性干燥片材的至少一个丢弃容器; 用液体调色剂在中间转印部件上提供调色图像; 使吸收性干燥片材从供应容器接触到中间转印部件上的调色图像,或者在图像被转移之后将其吸收到中间转印部件本身; 用干燥片吸收液体载体,然后将干燥片变成使用过的干燥片; 确定所使用的干燥片材是否适合作为吸收性干燥片材的再利用; 并将所使用的干燥片放置在容器中。
    • 104. 发明授权
    • Electrosurgical jaw structure for controlled energy delivery
    • 用于受控能量输送的电外科钳口结构
    • US06770072B1
    • 2004-08-03
    • US10308362
    • 2002-12-03
    • Csaba TruckaiJames A. BakerJohn H. Shadduck
    • Csaba TruckaiJames A. BakerJohn H. Shadduck
    • A61B1814
    • A61B18/1445A61B2018/00077A61B2018/00083A61B2018/00148A61B2018/0063A61B2018/1455
    • A working end of a surgical instrument that carries first and second jaws for delivering energy to tissue. In a preferred embodiment, at least one jaw of the working end defines a tissue-engagement plane that contacts the targeted tissue. The cross-section of the engagement plane reveals that it defines a surface conductive portion and an elastomeric body portion. The elastomeric body portion is adapted to flex, deflect and extend laterally when engaging tissue to atraumatically engage tissue at the edges of the working end to create a smooth transition between welded tissue and undamaged tissue. The jaws can further carry a variably resistive matrix of a temperature-sensitive resistive material or a pressure-sensitive resistive material. An interior of the jaw carries a conductive material or electrode that is coupled to an Rf source and controller. In an exemplary embodiment, the variably resistive matrix can comprise a positive temperature coefficient (PTC) material, such as a ceramic, that is engineered to exhibit a dramatically increasing resistance (i.e., several orders of magnitude) above a specific temperature of the material. In use, the engagement plane will apply active Rf energy to captured tissue until the point in time that the variably resistive matrix is heated to its selected switching range. Thereafter, current flow from the conductive electrode through the engagement surface will be terminated due to the exponential increase in the resistance of variably resistive matrix to provide instant and automatic reduction of Rf energy application. Thus, the jaw structure can automatically modulate the application of energy to tissue between active Rf heating and passive conductive heating of captured tissue to maintain a target temperature level.
    • 手术器械的工作端,其携带用于将能量递送至组织的第一和第二钳口。 在优选实施例中,工作端的至少一个钳口限定了接触目标组织的组织接合平面。 接合平面的横截面显示其限定表面导电部分和弹性体主体部分。 弹性体主体部分适于在接合组织时在横向上弯曲,偏转和延伸,以在工作端的边缘处不可靠地接合组织,以在焊接的组织和未损坏的组织之间形成平滑过渡。 钳口可以进一步携带温度敏感的电阻材料或压敏电阻材料的可变电阻矩阵。 钳口的内部承载耦合到Rf源和控制器的导电材料或电极。 在示例性实施例中,可变电阻矩阵可以包括正温度系数(PTC)材料,例如陶瓷,其被工程化以显示高于材料的特定温度的显着增加的电阻(即几个数量级)。 在使用中,接合平面将对被捕获的组织施加活性的Rf能量,直到可变电阻矩阵被加热到其选择的开关范围的时间点为止。 此后,由于可变电阻矩阵的电阻的指数增加,导电电极通过接合表面的电流将终止,以提供即时和自动降低Rf能量应用。 因此,钳口结构可以自动调节被捕获组织的活性Rf加热和被动导电加热之间的能量对组织的应用以保持目标温度水平。
    • 105. 发明授权
    • Instruments and techniques for inducing neocollagenesis in skin treatments
    • 用于诱导皮肤治疗中的新胶原的仪器和技术
    • US06299620B1
    • 2001-10-09
    • US09475480
    • 1999-12-30
    • John H. ShadduckJames A. Baker
    • John H. ShadduckJames A. Baker
    • A61M100
    • A61B17/54A61B2017/320004
    • A system for atraumatic removal of skin surface layers in a treatment to induce neocollagenesis in the dermis to reduce wrinkles and alter the architecture of the dermal layers. A preferred embodiment of the inventive system comprises (i) a hand-held instrument with a resilient working skin interface that carries microscopic diamond fragments for abrading the skin surface in a controlled manner; (ii) a fluid source for supplying sterile fluids to the skin interface for cleaning skin debris from the skin interface; and (iii) a negative pressure source for pulling fluid to the skin interface and thereafter aspirating fluid and skin debris from a treatment site. The skin interface is formed of a resilient material such as silicone to allow the working end to flex and atraumatically engage the skin surface as it is translated across a treatment site. The system also carries a disposable cartridge filled with fluid in the hand-held instrument. The method of the invention includes: (i) actuating a negative pressurization source communicating with the skin interface via a plurality of apertures therein to draw the skin into the concave abrasive architecture of the working end; (ii) translating the abrasive architecture across the treatment site to cut or abrade a skin surface layer; and (iii) contemporaneous with the cutting step, flowing a fluid (e.g., sterile water) generally about and across the abrasive architecture between an arrangement of inflow and outflow apertures to remove skin debris and hydrate the skin.
    • 用于在治疗中无创去除皮肤表面层的系统以在真皮中诱导新胶原形成以减少皱纹并改变真皮层的结构。 本发明系统的优选实施例包括(i)具有弹性工作皮肤界面的手持式仪器,其携带用于以受控方式研磨皮肤表面的微观金刚石碎片; (ii)用于向皮肤界面供应无菌流体以从皮肤界面清洁皮肤碎屑的流体源; 和(iii)用于将流体牵引到皮肤界面并且然后从治疗部位抽吸流体和皮肤碎屑的负压源。 皮肤界面由诸如硅树脂的弹性材料形成,以允许工作端在穿过治疗部位翻译并弯曲并且不伤皮肤地接合皮肤表面。 该系统还携带在手持式仪器中充满流体的一次性盒。 本发明的方法包括:(i)通过其中的多个孔致动与皮肤界面连通的负压源,以将皮肤吸入工作端的凹形研磨结构; (ii)将磨料结构平移整个处理部位以切割或研磨皮肤表面层; 和(iii)同时具有切割步骤,使流体(例如,无菌水)在流体和流出孔的布置之间大体上和跨越磨料结构流动,以去除皮肤碎片并水合皮肤。