Method for processing a surface of a metal implant and the metal implant produced by the method
    1.
    发明授权
    Method for processing a surface of a metal implant and the metal implant produced by the method 有权
    用于处理金属植入物的表面和通过该方法制备的金属植入物的方法

    公开(公告)号:US09062381B2

    公开(公告)日:2015-06-23

    申请号:US13339630

    申请日:2011-12-29

    Abstract: A method for treating a surface of a metal implant includes a polishing step, a grafting step and a surface modifying step. The polishing step includes polishing a surface of a metal implant to remove an uneven, natural oxide layer on the surface of the metal implant and to generate an even oxide layer on the surface of the metal implant. The grafting step includes grafting an anti-adhesion macromolecule on an outer face of the even oxide layer. A covalent bond between the anti-adhesion macromolecule and oxygen atoms on the outer face of the even oxide layer is formed. Thus, a macromolecular anti-adhesion layer on the outer face of the even oxide layer can be created. The surface modifying step includes changing a property of the surface of the metal implant with the macromolecular anti-adhesion layer by high temperature and high pressure, providing the metal implant with high hydrophilicity.

    Abstract translation: 用于处理金属植入物的表面的方法包括抛光步骤,接枝步骤和表面改性步骤。 抛光步骤包括抛光金属植入物的表面以去除金属植入物表面上的不均匀的天然氧化物层,并在金属植入物的表面上产生均匀的氧化物层。 接枝步骤包括在均匀氧化物层的外表面上接枝防粘连大分子。 形成了偶联氧化物层外表面上的抗粘连大分子与氧原子之间的共价键。 因此,可以产生在均匀氧化物层的外表面上的大分子抗粘附层。 表面改性步骤包括用高温高压改变金属植入物表面的特性,提供高亲水性的金属植入物。

    Automatic calibration procedure of temperature compensation for digital pressure gauges
    2.
    发明授权
    Automatic calibration procedure of temperature compensation for digital pressure gauges 有权
    数字压力表的温度补偿自动校准程序

    公开(公告)号:US08689635B2

    公开(公告)日:2014-04-08

    申请号:US13310946

    申请日:2011-12-05

    Applicant: Li-Jen Shih

    Inventor: Li-Jen Shih

    CPC classification number: G01L27/005 G01D3/022

    Abstract: An automatic operation method for setting temperature compensation coefficients of a digital pressure gauge is revealed. Primarily, a microcontroller unit (MCU) in the pressure gauge is equipped with built-in calibration procedures. The gauge is placed into a temperature-controlled chamber in order to obtain the temperature coefficient of offset (Tco) and temperature coefficient of span (Tcs). This method is the automatic measuring outputs of zero pressure/full scale at two temperatures to calculate the temperature coefficients Tco/Tcs. The two temperature compensation coefficients are stored in the MCU inside the pressure gauge. As the pressure gauge operates in any working temperature environments, the gauge based on a certain algorithm formula with the two stored temperature coefficients shows an accurate pressure reading.

    Abstract translation: 揭示了一种用于设置数字压力表的温度补偿系数的自动操作方法。 主要是压力表中的微控制器单元(MCU)内置校准程序。 将量规放置在温度控制室中,以获得偏移温度系数(Tco)和温度系数(Tcs)。 这种方法是在两个温度下自动测量零压力/满量程的输出,以计算温度系数Tco / Tcs。 两个温度补偿系数存储在压力表内的MCU中。 由于压力计在任何工作温度环境下工作,所以基于具有两个存储温度系数的特定算法公式的量表显示出精确的压力读数。

    Method for Processing a Surface of a Metal Implant and the Metal Implant Produced by the Method
    5.
    发明申请
    Method for Processing a Surface of a Metal Implant and the Metal Implant Produced by the Method 有权
    金属植入物表面处理方法及由该方法生产的金属植入物

    公开(公告)号:US20130087460A1

    公开(公告)日:2013-04-11

    申请号:US13339630

    申请日:2011-12-29

    Abstract: A method for treating a surface of a metal implant includes a polishing step, a grafting step. The polishing step includes polishing a surface of a metal implant to remove an uneven, natural oxide layer on the surface of the metal implant and to generate an even oxide layer on the surface of the metal implant. The grafting step includes grafting an anti-adhesion macromolecule on an outer face of the even oxide layer. A covalent bond between the anti-adhesion macromolecule and oxygen atoms on the outer face of the even oxide layer is formed, thus that a macromolecular anti-adhesion layer on the outer face of the even oxide layer can be created. The surface modifying step includes changing a property of the surface of the metal implant with the macromolecular anti-adhesion layer by high temperature and high pressure, providing the metal implant with high hydrophilicity.

    Abstract translation: 用于处理金属植入物的表面的方法包括抛光步骤,接枝步骤。 抛光步骤包括抛光金属植入物的表面以去除金属植入物表面上的不均匀的天然氧化物层,并在金属植入物的表面上产生均匀的氧化物层。 接枝步骤包括在均匀氧化物层的外表面上接枝防粘连大分子。 形成了均匀氧化物层外表面上的抗粘附性高分子与氧原子之间的共价键,从而可以产生在均匀氧化物层的外表面上的大分子抗粘附层。 表面改性步骤包括用高温高压改变金属植入物表面的特性,提供高亲水性的金属植入物。

    PROCESS FOR PRODUCING AN IMAGE FROM POROUS MARKING PARTICLES
    6.
    发明申请
    PROCESS FOR PRODUCING AN IMAGE FROM POROUS MARKING PARTICLES 审中-公开
    从多孔标记颗粒生产图像的方法

    公开(公告)号:US20120077000A1

    公开(公告)日:2012-03-29

    申请号:US12889716

    申请日:2010-09-24

    CPC classification number: G03G13/20 Y10T428/24901

    Abstract: A process of producing an image including transferring porous polymeric marking particles to a receiver, and fixing the marking particles to the receiver by applying heat and pressure by contacting the marking particles with a heated fuser member including a topcoat layer having a storage modulus of at least 10 MPa at 175° C. In particular embodiments, the invention is specifically directed towards fusing porous toner materials, and enables reducing the image relief, toner spread, and differential gloss of resulting fused toner images. Higher gloss and reduced differential gloss is obtained at similar or reduced toner spread, measured by toner particle area gain, allowing the use of reduced fusing conditions compared to solid toners.

    Abstract translation: 一种制造图像的方法,包括将多孔聚合物标记颗粒转移到接收器,并且通过施加热和压力将标记颗粒固定到接收器,通过使标记颗粒与包含至少具有至少的储能模量的顶涂层的加热定影器部件接触 在特定实施例中,本发明特别针对熔化多孔调色剂材料,并且能够减少图像浮雕,调色剂扩散以及所得到的熔融调色剂图像的差别光泽。 通过调色剂颗粒面积增益测量,在类似或减少的调色剂涂布量下获得更高的光泽度和降低的差别光泽度,与固体调色剂相比允许使用降低的熔合条件。

    COMBINATION MOUSE AND TOUCH INPUT DEVICE
    7.
    发明申请
    COMBINATION MOUSE AND TOUCH INPUT DEVICE 有权
    组合鼠标和触摸输入设备

    公开(公告)号:US20120050163A1

    公开(公告)日:2012-03-01

    申请号:US12871319

    申请日:2010-08-30

    CPC classification number: G06F3/0383 G06F3/03543 G06F3/03547

    Abstract: A computer input device, capable of operating in a mouse mode and in a touch mode, includes a body, a control unit and a switch. The body includes a first housing, a second housing and a hinge interconnecting the first and second housings. The body is movable between a flat position where the first and second housings are positioned side by side in a line, and an inverted-V position where the first and second housings co-define an included angle. The control unit provides a first input function which enables the input device to operate in the mouse mode and a second input function which enables the input device to operate in the touch mode. The switch is configured to have the control unit perform the first input function when the body is in the flat position and perform the second input function when the body is in the inverted-V position.

    Abstract translation: 能够以鼠标模式和触摸模式操作的计算机输入装置包括主体,控制单元和开关。 主体包括第一壳体,第二壳体和互连第一和第二壳体的铰链。 主体可以在第一和第二壳体以一条直线并排定位的平坦位置和第一和第二壳体共同限定夹角的倒V形位置之间移动。 控制单元提供第一输入功能,其使得输入设备能够以鼠标模式操作,以及使得输入设备能够在触摸模式下操作的第二输入功能。 该开关被配置为当身体处于平坦位置时使控制单元执行第一输入功能,并且当身体处于倒V位置时执行第二输入功能。

    COMPRESSION VEST FOR PATIENTS UNDERGOING HEMODIALYSIS AND IN CRITICAL CARE
    8.
    发明申请
    COMPRESSION VEST FOR PATIENTS UNDERGOING HEMODIALYSIS AND IN CRITICAL CARE 有权
    压迫性住院患者接受化疗和关键护理

    公开(公告)号:US20110093003A1

    公开(公告)日:2011-04-21

    申请号:US12977574

    申请日:2010-12-23

    Applicant: Jen-Shih Lee

    Inventor: Jen-Shih Lee

    Abstract: A method of inhibiting hypotensive symptoms in a patient undergoing treatment or a procedure involves elastically constraining the internal organs within the abdomen of the patient while applying non-pulsating, compressive pressure to the internal organs within the abdomen of the patient. The method may also involve one or more of infusing fluid, applying the compressive pressure using compression device, or applying the compressive pressure based upon bio-indicator measurement parameters.

    Abstract translation: 在经历治疗或手术的患者中抑制低血压症状的方法包括弹性约束患者腹部内脏,同时向患者腹部内脏施加非脉动的压缩压力。 该方法还可以包括一个或多个输注流体,使用压缩装置施加压缩压力,或者基于生物指示器测量参数施加压缩压力。

    SELF-ALIGNED STYLUS WITH HIGH-SPHERICITY AND METHOD OF MANUFACTURING THE SAME
    9.
    发明申请
    SELF-ALIGNED STYLUS WITH HIGH-SPHERICITY AND METHOD OF MANUFACTURING THE SAME 有权
    具有高亲和力的自对准STYLUS及其制造方法

    公开(公告)号:US20090109196A1

    公开(公告)日:2009-04-30

    申请号:US12107495

    申请日:2008-04-22

    CPC classification number: G01B1/00 G01B5/012

    Abstract: A method of manufacturing a self-aligned stylus with high sphericity includes the steps of: forming a polymeric layer on a substrate; placing a sphere on the polymeric layer; softening the polymeric layer to make a portion of the sphere sink into the polymeric layer; forming a specific light absorbing layer on the polymeric layer; illuminating the sphere and the specific light absorbing layer with specific light such that the specific light is focused by the sphere to expose the polymeric layer to form an exposed portion and an unexposed portion; removing the specific light absorbing layer; and baking the polymeric layer and then removing the unexposed portion. A self-aligned stylus with high sphericity is also disclosed.

    Abstract translation: 制造具有高球形度的自对准触控笔的方法包括以下步骤:在基底上形成聚合物层; 将球体放置在聚合物层上; 软化聚合物层以使球体的一部分沉入聚合物层中; 在聚合物层上形成特定的光吸收层; 用特定光照射球体和特定光吸收层,使得特定的光被球体聚焦以暴露聚合物层以形成暴露部分和未曝光部分; 去除特定光吸收层; 并烘烤聚合物层,然后除去未曝光部分。 还公开了具有高球形度的自对准手写笔。

    Optical glass suitable for mold forming at low temperature
    10.
    发明授权
    Optical glass suitable for mold forming at low temperature 失效
    适用于低温成型的光学玻璃

    公开(公告)号:US07482293B2

    公开(公告)日:2009-01-27

    申请号:US11756441

    申请日:2007-05-31

    CPC classification number: C03C3/253

    Abstract: An optical glass suitable for mold forming at a low temperature including, in percent by weight, 9-25 percent of P2O5, 1-20 percent of GeO2, 12-28 percent of Nb2O5, 1-7 percent of TiO2, 0-55 percent of Bi2O3, 0-38 percent of WO3, 0-3 percent of SiO2, 0-5 percent of B2O3, 0-2 percent of Al2O3, 0-5 percent of Li2O, 0-11 percent of Na2O, 0-5 percent of K2O, 0-3 percent of Ta2O5, 0-1 percent of Sb2O3, at most 13 percent of at least one R2O selected from the group consisting of Li2O, Na2O and K2O, and at most 15 percent of at least one XO selected from the group consisting of CaO, SrO, BaO and ZnO. The optical glass essentially contains no environmental and human harmful components, facilitates mass production and is stable against devitrification near its softening temperature.

    Abstract translation: 适用于低温成型的光学玻璃,包括重量百分比为9-25%的P 2 O 5,1〜20%的GeO 2,12〜28%的Nb 2 O 5,1〜7%的TiO 2,0〜55% 的Bi2O3,0-38%的WO3,0-3%的SiO2,0-5%的B2O3,0-2%的Al2O3,0-5%的Li2O,0-11%的Na2O,0-5%的 K2O,Ta2O5的0-3%,Sb2O3的0-1%,至少一种选自Li2O,Na2O和K2O的R2O的13%,以及至少一种选自 由CaO,SrO,BaO和ZnO组成的组。 光学玻璃基本上不含有环境和人体有害成分,有利于批量生产,并且在其软化温度附近具有稳定的抗失透性。

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