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    • 3. 发明申请
    • METHOD FOR THE CONTROLLED MOVEMENT OF MOTILE CELLS IN LIQUID OR GASEOUS MEDIA
    • 用于液体或气体介质中的细胞控制运动的方法
    • US20150164554A1
    • 2015-06-18
    • US14408126
    • 2013-07-05
    • LEIBNIZ-INSTITUT FUER FESTKOERPER UND WERKSTOFFFORSCHUNG DRESDEN E.V.
    • Veronika MagdanzSamuel SanchezOliver G. Schmidt
    • A61B17/43A61D19/02
    • A61B17/43A61B2017/00876A61D19/02C12N5/0612
    • The invention concerns the domains of materials science and medicine and relates to a method such as can he applied to in vivo or in vitro fertilization, for instance. The problem addressed by the present invention is that of specifying a method with which the activity and controlled mobility of motile cells is improved and the absorption of materials alien to the cell is prevented as far as possible. The problem is solved by a method in which one or more motile cells are introduced into or attached to one or a plurality of magnetic particles, and subsequently the magnetic particles with the motile cells introduced into them or attached to them are moved in a directional trimmer by the application of an external magnetic field. The problem is further solved by the use of the method for the controlled movement of motile cells in liquid or gaseous media in the body of a mammal or human being.
    • 本发明涉及材料科学和医学的领域,并且涉及例如可以应用于体内或体外受精的方法。 本发明提出的问题在于,尽可能地防止移动电池的活性和受控的移动性得到改善并且防止与电池异物的材料的吸收的方法。 该问题通过一种或多种运动细胞被引入或附着到一个或多个磁性颗粒的方法来解决,随后将引入到其中或附着于它们的运动细胞的磁性颗粒在定向微调器中移动 通过施加外部磁场。 通过使用用于哺乳动物或人体内的液体或气体介质中的运动细胞受控运动的方法进一步解决了该问题。
    • 7. 发明申请
    • METHOD FOR THE PRODUCTION OF PRINTED MAGNETIC FUNCTIONAL ELEMENTS FOR RESISTIVE SENSORS AND PRINTED MAGNETIC FUNCTIONAL ELEMENTS
    • 用于制造电阻式传感器和印刷磁性功能元件的印刷磁性功能元件的方法
    • US20120326714A1
    • 2012-12-27
    • US13528076
    • 2012-06-20
    • Daniil KARNAUSHENKODenys MAKAROVOliver G. SCHMIDT
    • Daniil KARNAUSHENKODenys MAKAROVOliver G. SCHMIDT
    • C23C14/30G01R33/09C23C14/35
    • H01F41/18H01F41/14H01F41/20
    • A method for producing printed magnetic functional elements for resistance sensors and printed magnetic functional elements. The invention refers to the field of electronics and relates to a method for producing resistance sensors, such as can be used, for example, in magnetic data storage for read sensors or in the automobile industry. The disclosure includes a simple and cost-effective production method and to obtain such printed magnetic functional elements with properties that can be adjusted as desire, in which a magnetic material is deposited onto a substrate as a film, is removed from the substrate and divided into several components and these components are applied on a substrate by means of printing technologies. Aspects are also directed to a printed magnetic functional element for resistance sensors of several components of a film, wherein at least 5% of the components of the functional element have a magnetoimpedance effect.
    • 一种用于制造用于电阻传感器和印刷磁性功能元件的印刷磁性功能元件的方法。 本发明涉及电子领域,涉及用于制造电阻传感器的方法,例如可用于读取传感器或汽车工业的磁性数据存储。 本公开内容包括简单且具有成本效益的制造方法,并且获得这样的印刷磁性功能元件,其特性可以根据需要进行调节,其中将磁性材料作为膜沉积在基板上,从基板上移除并分成 通过印刷技术将几种组分和这些组分施加在基材上。 方面还涉及用于膜的几个部件的电阻传感器的印刷磁性功能元件,其中功能元件的至少5%的部件具有磁阻效应。
    • 8. 发明授权
    • Magnetic medium for storing information
    • 用于存储信息的磁性介质
    • US07608348B2
    • 2009-10-27
    • US11108942
    • 2005-04-18
    • Sebastian Faehler
    • Sebastian Faehler
    • G11B5/66
    • G11B5/65G11B5/66
    • Magnetic medium for storing information, includes at least two materials A and B which are connected with one another, material A being a hard magnetic material, wherein material B is a material which exhibits metamagnetic behavior in a magnetic field, the metamagnetic behavior of the material being such that, even after passing repeatedly through an external magnetic field from 0 to 10 tesla at least at a magnetic field strength below 3 tesla, an increase in the magnetization occurs as a function of the magnetic field, the increase being superproportional and having a positive curvature.
    • 用于存储信息的磁性介质包括彼此连接的至少两种材料A和B,材料A是硬磁性材料,其中材料B是在磁场中表现出磁性特性的材料,材料的偏磁性能 使得即使在至少在3特斯拉以下的磁场强度下重复经过从0到10特斯拉的外部磁场,磁化的增加作为磁场的函数发生,该增加是超比例的并且具有 正曲率。
    • 9. 发明授权
    • Magnet assembly for the suspension and guidance of suspended vehicles and transport systems
    • 用于悬挂和引导悬挂车辆和运输系统的磁铁组件
    • US07197987B2
    • 2007-04-03
    • US10472619
    • 2002-04-23
    • Martina FalterPeter BartuschLudwig Schultz
    • Martina FalterPeter BartuschLudwig Schultz
    • B60L13/00
    • B60L13/04B60L2200/26F16C32/0438
    • A magnet assembly for the suspension and guidance of suspended vehicles and transport systems creates an intrinsically stable, contactless magnetic suspension and guidance system composed of an assembly of magnetic elements and a superconductor assembly for suspended vehicles and transport systems. At least one part of the magnetic element assembly is physically connected to the superconductor assembly. In addition, the magnetic elements assembly and the superconductor assembly are magnetically intercoupled to maintain a stable distance between at least two magnetic elements by the utilization of a magnetic field that is frozen in the superconductor. The magnetic assembly can be used in particular in those vehicles and transport systems that are configured to be displaced along a magnetic rail without making contact with the latter, thus enabling a displacement devoid of friction and abrasion.
    • 用于悬挂和引导悬挂车辆和运输系统的磁体组件产生一个本质上稳定的非接触式磁悬浮和导向系统,其由磁性元件组件和用于悬挂车辆和运输系统的超导体组件组成。 磁性元件组件的至少一部分物理地连接到超导体组件。 此外,磁性元件组件和超导体组件通过利用在超导体中冻结的磁场而磁耦合以保持至少两个磁性元件之间的稳定的距离。 磁性组件可以特别用于构造成沿着磁轨移动而不与其接触的那些车辆和运输系统,从而能够进行没有摩擦和磨损的位移。