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    • 1. 发明授权
    • Shock-absorbing coupler head for a coupling arrangement
    • 用于耦合装置的减震耦合器头
    • US08915385B2
    • 2014-12-23
    • US13805537
    • 2011-06-08
    • Johan HanssonMattias HjortFredrik HiswålsDaniel LarssonAnders SvedboAnders Westman
    • Johan HanssonMattias HjortFredrik HiswålsDaniel LarssonAnders SvedboAnders Westman
    • B61G7/14B61G3/16B61G11/16
    • B61G7/14B61G3/16B61G11/16
    • A coupler head for a coupling arrangement is shown, which coupler head includes a coupler head housing (6) extending in a longitudinal direction from a first end (6a), attachable to a drawbar, to a second end (6b), which is arranged to carry a coupling interface between coupled rail vehicles, which coupler head housing houses mechanical coupling components (8,9) effective for automatic coupling to the corresponding components of a connecting coupling arrangement. The coupler head is characterized in that the coupler head housing has at least one notch (11, 11′) for a predetermined and primarily axial compression thereof with absorption of energy from a deforming compressive force that is applied to the coupler head in the longitudinal direction thereof. The coupler head has preferably at least one notch (11, 11′) for a predetermined folding of the coupler head housing.
    • 示出了用于联接装置的联接器头,该联接器头部包括从可连接到牵引杆的第一端(6a)沿纵向方向延伸到第二端(6b)的联接头壳体(6),该第二端部布置 以在耦合的轨道车辆之间承载耦合接口,所述耦合器头壳体容纳有效地自动耦合到连接耦合装置的相应部件的机械耦合部件(8,9)。 耦合器头的特征在于,耦合器头壳体具有至少一个用于预定和主要轴向压缩的凹口(11,11'),其具有沿着纵向方向施加到耦合器头部的变形压缩力的能量吸收 其中。 联接头优选地具有至少一个用于联接器头壳体的预定折叠的凹口(11,11')。
    • 3. 发明申请
    • SENSOR ARRANGEMENT
    • 传感器布置
    • US20090261819A1
    • 2009-10-22
    • US12420893
    • 2009-04-09
    • Johan HanssonUlf Nyberg
    • Johan HanssonUlf Nyberg
    • G01B7/14
    • G01D5/14
    • A sensor arrangement is arranged to detect at least one position of a displaceable component in a fluid device, which fluid device comprises a wall enclosing a cavity, in which cavity the component is displaced by pressurized fluid selectively applied to the component. The sensor arrangement includes a magnetic sensor mounted outside the wall and a first sensor element that is connected to the magnetic sensor and extends through the wall and a predetermined distance into the cavity. The magnetic sensor is arranged to detect the position of at least one predetermined second sensor element located on the displaceable component by sensing a change in magnetic flux induced in the first sensor element by the second sensor element.
    • 传感器布置被布置成检测流体装置中的可移动部件的至少一个位置,该流体装置包括封闭空腔的壁,在该空腔中该部件被选择性地施加到部件上的加压流体移位。 传感器装置包括安装在壁外的磁传感器和连接到磁传感器并延伸穿过壁并且预定距离进入空腔的第一传感器元件。 磁传感器被布置成通过感测第二传感器元件在第一传感器元件中感应的磁通量的变化来检测位于可位移部件上的至少一个预定的第二传感器元件的位置。
    • 4. 发明申请
    • SHOCK-ABSORBING COUPLER HEAD FOR A COUPLING ARRANGEMENT
    • 用于联轴器安装的防震联轴器头
    • US20130105431A1
    • 2013-05-02
    • US13805537
    • 2011-06-08
    • Johan HanssonMattias HjortFredrik HiswålsDaniel LarssonAnders SvedboAnders Westman
    • Johan HanssonMattias HjortFredrik HiswålsDaniel LarssonAnders SvedboAnders Westman
    • B61G7/14B61G3/16
    • B61G7/14B61G3/16B61G11/16
    • A coupler head for a coupling arrangement is shown, which coupler head includes a coupler head housing (6) extending in a longitudinal direction from a first end (6a), attachable to a drawbar, to a second end (6b), which is arranged to carry a coupling interface between coupled rail vehicles, which coupler head housing houses mechanical coupling components (8,9) effective for automatic coupling to the corresponding components of a connecting coupling arrangement. The coupler head is characterized in that the coupler head housing has at least one notch (11, 11′) for a predetermined and primarily axial compression thereof with absorption of energy from a deforming compressive force that is applied to the coupler head in the longitudinal direction thereof. The coupler head has preferably at least one notch (11, 11′) for a predetermined folding of the coupler head housing.
    • 示出了用于联接装置的联接器头,该联接器头部包括从可连接到牵引杆的第一端(6a)沿纵向方向延伸到第二端(6b)的联接头壳体(6),该第二端部布置 以在耦合的轨道车辆之间承载耦合接口,所述耦合器头壳体容纳有效地自动耦合到连接耦合装置的相应部件的机械耦合部件(8,9)。 耦合器头的特征在于,耦合器头壳体具有至少一个用于预定和主要轴向压缩的凹口(11,11'),其具有沿着纵向方向施加到耦合器头部的变形压缩力的能量吸收 其中。 联接头优选地具有至少一个用于联接器头壳体的预定折叠的凹口(11,11')。
    • 6. 发明授权
    • Guide instrument
    • 导向仪器
    • US5836950A
    • 1998-11-17
    • US836356
    • 1997-05-13
    • Henrik Lars Johan Hansson
    • Henrik Lars Johan Hansson
    • A61B17/16A61B17/00A61B17/17A61B17/58A61B17/76A61B17/88A61B17/90
    • A61B17/1721A61B17/1735A61B17/8875A61B2017/0046
    • The present invention relates to a guide instrument which is adapted for use at operations for fixation of bone fragments at bone fractures, preferably femoral neck fractures, whereby the bone fragments are intended to be fixed relative to each other by means of at least two bone screws, whereby the guide instrument (1) is adapted for guiding a first and a second drill steel which are adapted for drilling passages in the bone fragments for the bone screws. The guide instrument (1) is designed to permit guiding of the drill steels, driving through of threaded front portions of the bone screws and guiding of uptapped or unthreaded rear portions of said bone screws.
    • PCT No.PCT / SE95 / 01379 Sec。 371日期1997年5月13日 102(e)日期1997年5月13日PCT提交1995年11月21日PCT公布。 公开号WO96 / 15727 日期:1996年5月30日本发明涉及一种导向仪器,其适用于在骨折固定的手术中使用,优选为股骨颈骨折,由此骨片段旨在相对于彼此固定在一起 至少两个骨螺钉,由此导向仪器(1)适于引导适于在用于骨螺钉的骨碎片中钻孔通道的第一和第二钻钢。 引导仪器(1)被设计成允许引导钻钢杆,通过骨螺钉的螺纹前部部分驱动并引导所述骨螺钉的上覆或无螺纹的后部。
    • 7. 发明授权
    • Sensor arrangement
    • 传感器布置
    • US07788983B2
    • 2010-09-07
    • US12420893
    • 2009-04-09
    • Johan HanssonUlf Nyberg
    • Johan HanssonUlf Nyberg
    • G01F1/56
    • G01D5/14
    • A sensor arrangement is arranged to detect at least one position of a displaceable component in a fluid device, which fluid device comprises a wall enclosing a cavity, in which cavity the component is displaced by pressurized fluid selectively applied to the component. The sensor arrangement includes a magnetic sensor mounted outside the wall and a first sensor element that is connected to the magnetic sensor and extends through the wall and a predetermined distance into the cavity. The magnetic sensor is arranged to detect the position of at least one predetermined second sensor element located on the displaceable component by sensing a change in magnetic flux induced in the first sensor element by the second sensor element.
    • 传感器布置被布置成检测流体装置中的可移动部件的至少一个位置,该流体装置包括封闭空腔的壁,在该空腔中该部件被选择性地施加到部件上的加压流体移位。 传感器装置包括安装在壁外的磁传感器和连接到磁传感器并延伸穿过壁并且预定距离进入空腔的第一传感器元件。 磁传感器被布置成通过感测第二传感器元件在第一传感器元件中感应的磁通量的变化来检测位于可位移部件上的至少一个预定的第二传感器元件的位置。
    • 10. 发明授权
    • Modified Chimeric superantigens and their use
    • 改性嵌合超级抗原及其用途
    • US07226595B2
    • 2007-06-05
    • US10283838
    • 2002-10-30
    • Per AntonssonPer BjorkMikael DohlstenTerje KallandLars AbrahmsenJohan HanssonGöran Forsberg
    • Per AntonssonPer BjorkMikael DohlstenTerje KallandLars AbrahmsenJohan HanssonGöran Forsberg
    • A61K39/00
    • C07K16/3023A61K38/00A61K47/68C07K14/31C07K16/3046C07K19/00C07K2317/732C07K2319/00
    • A conjugate between a target-seeking moiety and a modified superantigen, characterized in that the superantigen is a wild-type superantigen (SA I) in which an amino acid residue in a superantigen region (region I) determining binding to TCR, preferably TCRVβ, and T cell activation have been replaced by another amino acid residue while retaining the ability to activate a subset of T cells.In preferred embodiment the modified superantigen is a chimer between at least two wild-type superantigens (SA I, SA II etc) characterized in that one or more amino acid residues in a region determining binding to TCR and T cell activation have been interchanged between various wild-type superantigens.A therapeutic method making use of modified/chimeric superantigens as defined in the preceding paragraphs.An antibody preparation in which the cysteine residues that provide for interchain disulfide bonds have been mutated so as to forbid interchain disulfide bridges, preferably to serine residues, for use as pharmaceutical.
    • 目标寻找部分和修饰的超抗原之间的缀合物,其特征在于超抗原是野生型超抗原(SAI),其中超抗原区(区域I)中的氨基酸残基确定结合TCR,优选TCRVβ, 并且T细胞激活已被另一个氨基酸残基替代,同时保留激活T细胞亚群的能力。 在优选实施方案中,修饰的超抗原是至少两种野生型超级抗原(SA I,SA II等)之间的嵌合体,其特征在于确定结合TCR和T细胞活化的区域中的一个或多个氨基酸残基已经在各种 野生型超抗原。 使用前面段落中定义的修饰/嵌合超级抗原的治疗方法。 其中提供链间二硫键的半胱氨酸残基已被突变以防止链间二硫键,优选丝氨酸残基用作药物的抗体制剂。