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    • 1. 发明授权
    • Magnetic stimulation device
    • 磁刺激装置
    • US6123658A
    • 2000-09-26
    • US313559
    • 1999-05-14
    • Peter SchweighoferMichael MoritzFranz Schmitt
    • Peter SchweighoferMichael MoritzFranz Schmitt
    • A61N2/00A61N2/02A61N2/04A61N1/00
    • A61N2/02A61N2/006
    • A magnetic stimulation device has at least one stimulation coil, which is connected with its terminals to the output of at least one controllable electronic power converter and which has an inductance and current and voltage carrying capability, so that the stimulation pulses it generates permeate at least one volume on the order of magnitude of limbs, head or trunk of a patient. The controllable electronic power converter contains at least one activatable and deactivatable power semiconductor switch with short switching times. The electronic power converter is connected with its input to a voltage intermediate circuit. The voltage intermediate circuit and the controllable electronic power converter have a layout for high output voltages and currents, so that action potentials can be triggered even in deeper neuromuscular tissue of a patient, and the magnetic stimulation device offers wide freedom in the selection of the stimulation pulse shapes.
    • 磁刺激装置具有至少一个刺激线圈,其与其端子连接至至少一个可控电子功率转换器的输出,并且具有电感和电流和电压承载能力,使得其产生的刺激脉冲至少渗透至少 一个病人肢体,头部或躯干的数量级。 可控电子功率转换器包含至少一个具有短切换时间的可激活和可去激活的功率半导体开关。 电子功率转换器与其输入端连接到电压中间电路。 电压中间电路和可控电子功率转换器具有用于高输出电压和电流的布局,使得即使在患者的较深的神经肌肉组织中也可以触发动作电位,并且磁刺激装置在刺激的选择中提供广泛的自由度 脉冲形状。
    • 3. 发明授权
    • Method for carrying out quality control on an analytical process and device for carrying out said method
    • 用于对分析过程进行质量控制的方法和用于执行所述方法的装置
    • US07359806B2
    • 2008-04-15
    • US10535134
    • 2003-10-22
    • Klaus Abraham-FuchsMichael Moritz
    • Klaus Abraham-FuchsMichael Moritz
    • G01N31/00
    • G06F19/326G06F19/00G16H10/40G16H15/00
    • A method is proposed for carrying out quality control on an analytical process which belongs to a group of related analytical processes that can be executed in at least one analytical device and includes a respective chain of sub-processes. The method includes fundamental chemical and/or physical underlying sub-processes being stored for the group in a first database. Further, at least one section of the chain of the analytical process is emulated by the specification of one of the underlying sub-processes for each sub-process in a section of the chain, using at least one control parameter and at least one corresponding threshold value. Finally, measured values are determined for the control parameters for at least one run of the analytical process and the measured values are compared with the corresponding threshold values for the quality control procedure.
    • 提出了一种对分析过程进行质量控制的方法,该分析过程属于可在至少一个分析装置中执行的一组相关分析过程,并且包括各个子过程链。 该方法包括为第一数据库中的组存储的基本化学和/或物理底层子过程。 此外,使用至少一个控制参数和至少一个对应阈值,通过对链的一部分中的每个子过程的一个潜在子过程的指定来模拟分析过程链中的至少一个部分 值。 最后,对于分析过程的至少一次运行的控制参数确定测量值,并将测量值与质量控制程序的相应阈值进行比较。
    • 4. 发明申请
    • Method for carrying out quality control on an analytical process and device for carrying out said method
    • 用于对分析过程进行质量控制的方法和用于执行所述方法的装置
    • US20060167830A1
    • 2006-07-27
    • US10535134
    • 2003-10-22
    • Klaus Abraham-FuchsMichael Moritz
    • Klaus Abraham-FuchsMichael Moritz
    • G06F17/30
    • G06F19/326G06F19/00G16H10/40G16H15/00
    • A method is proposed for carrying out quality control on an analytical process which belongs to a group of related analytical processes that can be executed in at least one analytical device and includes a respective chain of sub-processes. The method includes fundamental chemical and/or physical underlying sub-processes being stored for the group in a first database. Further, at least one section of the chain of the analytical process is emulated by the specification of one of the underlying sub-processes for each sub-process in a section of the chain, using at least one control parameter and at least one corresponding threshold value. Finally, measured values are determined for the control parameters for at least one run of the analytical process and the measured values are compared with the corresponding threshold values for the quality control procedure.
    • 提出了一种对分析过程进行质量控制的方法,该分析过程属于可在至少一个分析装置中执行的一组相关分析过程,并且包括各个子过程链。 该方法包括为第一数据库中的组存储的基本化学和/或物理底层子过程。 此外,使用至少一个控制参数和至少一个对应阈值,通过对链的一部分中的每个子过程的一个潜在子过程的指定来模拟分析过程链中的至少一个部分 值。 最后,对于分析过程的至少一次运行的控制参数确定测量值,并将测量值与质量控制程序的相应阈值进行比较。
    • 6. 发明申请
    • Ultrasound beamformer with scalable receiver boards
    • 超声波波束形成器具有可扩展的接收板
    • US20060173335A1
    • 2006-08-03
    • US11033188
    • 2005-01-11
    • Snehal ShahSteven MillerMichael Moritz
    • Snehal ShahSteven MillerMichael Moritz
    • A61B8/06
    • G01S7/52023
    • A beamformer for an ultrasound system and a method for developing a beamformer are provided. The beamformer includes an RF interface configured to be connected to receiver boards that are connected to a probe. The method includes providing receiver boards, wherein each of the receiver boards is capable of conveying a common number of channels per board and has substantially similar circuit components and layouts. The method also includes selecting a number of channels per probe to be conveyed in parallel between a probe and the receiver boards, wherein the channels per probe is an integer multiple of the channels per board. The method further includes determining a combination of the receiver boards to use in the beamformer based on the number of channels per probe, wherein the receiver boards are capable of being used in at least first and second different combinations that support first and second different numbers of channels per probe.
    • 提供了一种用于超声波系统的波束形成器和用于开发波束形成器的方法。 波束形成器包括被配置为连接到连接到探针的接收器板的RF接口。 该方法包括提供接收器板,其中每个接收器板能够输送每个板的通道数,并且具有基本相似的电路部件和布局。 该方法还包括在探针和接收器板之间并行传送每个探针的多个通道,其中每个探针的通道是每个板的通道的整数倍。 该方法还包括基于每个探测器的通道数量来确定在波束形成器中使用的接收器板的组合,其中接收器板能够被用于支持第一和第二不同数量的至少第一和第二不同组合 每个探针通道。
    • 10. 发明授权
    • Device for processing eye tissue by means of a pulsed laser beam
    • 用于通过脉冲激光束处理眼睛组织的装置
    • US08992020B2
    • 2015-03-31
    • US13683635
    • 2012-11-21
    • Christian RathjenHartmut KanngiesserVincent DucryLorenz KlauserMichael Moritz
    • Christian RathjenHartmut KanngiesserVincent DucryLorenz KlauserMichael Moritz
    • A61B3/10A61B3/14A61F9/008
    • A61B3/10A61F9/00825A61F2009/00872A61F2009/00897
    • An ophthalmological device (1) for processing eye tissue includes a projection optical unit for focused projection of a laser beam (L) into the eye tissue, and a scanner system upstream of the projection optical unit for beam-deflecting scanning of the eye tissue with the laser beam (L) in a scanning movement (s') performed over a scanning angle along a scanning line(s). The ophthalmological device includes at least one optical element upstream of the projection optical unit, the optical element configured to generate a divergence—dependent on the scanning angle—of the laser beam (L), the scanning line(s) tilted in a plane running through the optical axis of the projection optical unit and the scanning line(s). Tilting of the scanning line(s)displaces—dependent on the scanning angle—the focus of the laser pulses projected into the eye tissue without vertical displacement of the projection optical unit.
    • 一种用于加工眼科组织的眼科装置(1)包括用于将激光束(L)聚焦投射到眼组织中的投影光学单元,以及用于投影光学单元上游的扫描器系统,用于对眼组织进行光束偏转扫描, 扫描移动(s')中的激光束(L)沿着扫描线在扫描角上执行。 眼科装置包括在投影光学单元上游的至少一个光学元件,该光学元件被配置为产生与激光束(L)的扫描角度有关的发散度,扫描线在平面运行中倾斜 通过投影光学单元的光轴和扫描线。 扫描线的倾斜取决于扫描角度 - 投射到眼睛组织中的激光脉冲的焦点,而不会投影光学单元的垂直位移。