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    • 1. 发明申请
    • METHOD OF MEASURING A DEVIATION OF AN OPTICAL SURFACE FROM A TARGET SHAPE
    • 测量目标形状的光学表面偏差的方法
    • WO2009007088A1
    • 2009-01-15
    • PCT/EP2008/005548
    • 2008-07-08
    • CARL ZEISS SMT AGARNOLD, RalfSCHULTE, StefanDOERBAND, Bernd
    • ARNOLD, RalfSCHULTE, StefanDOERBAND, Bernd
    • B24B13/06
    • G01B9/021G01B9/02039G01B11/2441G01M11/025G01M11/0271Y10T29/49771
    • A method of aligning at least two wave shaping elements, a method of measuring a deviation of an optical surface from a target shape and a measuring apparatus for interferometrically measuring a deviation of an optical surface from a target shape are provided. The method of aligning at least two wave shaping elements, each of which wave shaping elements comprises a diffractive measurement structure for adapting part of a wave front of incoming light to a respective portion of the target shape, comprises the steps of: providing a first one of the wave shaping elements with a diffractive alignment structure, arranging the wave shaping elements relative to each other such that each of the diffractive measurement structures is traversed by a separate subset of rays of the incoming light during operation of the measuring apparatus, and aligning the first wave shaping element in a second one of the wave shaping elements relative to each other by evaluating alignment light having consecutively interacted with the diffractive alignment structure and with the second wave shaping element.
    • 提供了对准至少两个波形整形元件的方法,测量光学表面与目标形状的偏差的方法以及用于干涉测量光学表面与目标形状的偏差的测量装置。 对准至少两个波形整形元件的方法,其中每个波形整形元件包括用于将入射光的波前部分的一部分适配到目标形状的相应部分的衍射测量结构,包括以下步骤:提供第一个 的具有衍射对准结构的波形成形元件,将波形整形元件相对于彼此布置,使得每个衍射测量结构在测量装置的操作期间被入射光的单独的子集子穿过,并将 通过评估与衍射对准结构和第二波形整形元件连续相互作用的对准光,第二波形成形元件中的第一波形整形元件相对于彼此。
    • 2. 发明申请
    • METHOD OF MEASURING A DEVIATION AN OPTICAL SURFACE FROM A TARGET SHAPE
    • 测量目标形状的光学表面的方法
    • WO2009006919A1
    • 2009-01-15
    • PCT/EP2007/006069
    • 2007-07-09
    • CARL ZEISS SMT AGARNOLD, RalfSCHULTE, StefanDOERBAND, Bernd
    • ARNOLD, RalfSCHULTE, StefanDOERBAND, Bernd
    • G01B9/021G01B11/24
    • G01B9/021G01B9/02039G01B11/2441G01M11/025G01M11/0271Y10T29/49771
    • A method of aligning at least two wave shaping elements, a method of measuring a deviation of an optical surface from a target shape and a measuring apparatus for interferometrically measuring a deviation of an optical surface from a target shape are provided. The method of aligning at least two wave shaping elements, each of which wave shaping elements comprises a diffractive measurement structure for adapting part of a wave front of incoming light to a respective portion of the target shape, comprises the steps of: providing a first one of the wave shaping elements with a diffractive alignment structure, arranging the wave shaping elements relative to each other such that each of the diffractive measurement structures is traversed by a separate subset of rays of the incoming light during operation of the measuring apparatus, and aligning the first wave shaping element in a second one of the wave shaping elements relative to each other by evaluating alignment light having consecutively interacted with the diffractive alignment structure and with the second wave shaping element.
    • 提供了对准至少两个波形整形元件的方法,测量光学表面与目标形状的偏差的方法以及用于干涉测量光学表面与目标形状的偏差的测量装置。 对准至少两个波形整形元件的方法,其中每个波形整形元件包括用于将入射光的波前部分的一部分适配到目标形状的相应部分的衍射测量结构,包括以下步骤:提供第一个 的具有衍射对准结构的波形成形元件,将波形整形元件相对于彼此布置,使得每个衍射测量结构在测量装置的操作期间被入射光的单独的子集子穿过,并将 通过评估与衍射对准结构和第二波形整形元件连续相互作用的对准光,第二波形成形元件中的第一波形整形元件相对于彼此。
    • 7. 发明申请
    • THERAPEUTIC APPLICATION OF KAZAL-TYPE SERINE PROTEASE INHIBITORS
    • 卡氏型丝氨酸蛋白酶抑制剂的治疗应用
    • WO2008098720A1
    • 2008-08-21
    • PCT/EP2008/001009
    • 2008-02-11
    • CSL BEHRING GMBHSCHULTE, StefanKRONTHALER, UlrichSCHMIDBAUER, StefanWEIMER, ThomasHOFMANN, Kay
    • SCHULTE, StefanKRONTHALER, UlrichSCHMIDBAUER, StefanWEIMER, ThomasHOFMANN, Kay
    • A61K38/57A61P7/02C07K14/81
    • C07K14/8135A61K38/00A61K47/64A61K47/643
    • The subject of the present invention is, in the most general aspect, the therapeutic application of the Kazal-type serine protease inhibitor lnfestin or domains thereof or modified Kazal-type serine protease inhibitors based on lnfestin homologs, which prevent the formation and/or stabilization of three-dimensional arterial or venous thrombi by interfering with proteins involved in activation of the so-called intrinsic coagulation pathway. In particular the present invention relates to the use of said Kazal-type serine protease inhibitors or fragments thereof or modified Kazal-type serine protease inhibitors, in the treatment or prophylaxis of a condition or disorder related to arterial thrombus formation, i. e. stroke or myocardial infarction, inflammation, complement activation, fibrinolysis, angiogenesis and/or diseases linked to pathological kinin formation such as hypotonic shock, edema including hereditary angioedema, bacterial infections, arthritis, pancreatitis, or articular gout, Disseminated Intravasal Coagulation (DIC) and sepsis.
    • 本发明的主题在最一般的方面是基于伊斯匹林同系物的Kazal型丝氨酸蛋白酶抑制剂腹膜内酯或其结构域或修饰的Kazal型丝氨酸蛋白酶抑制剂的治疗应用,其阻止形成和/或稳定化 通过干扰参与所谓的内在凝血途径的激活的蛋白质的三维动脉或静脉血栓。 特别地,本发明涉及所述Kazal型丝氨酸蛋白酶抑制剂或其片段或修饰的Kazal型丝氨酸蛋白酶抑制剂在治疗或预防与动脉血栓形成相关的病症或障碍中的用途, 即 中风或心肌梗塞,炎症,补体激活,纤维蛋白溶解,血管生成和/或与病理激肽形成相关的疾病,例如低渗休克,包括遗传性血管性水肿,细菌感染,关节炎,胰腺炎或关节痛风的水肿,弥散性内皮内凝血(DIC)和 败血症。