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    • 4. 发明申请
    • Scheduling module in clinical workflow tool for healthcare institutions
    • 医疗机构临床工作流程工具调度模块
    • US20080270179A1
    • 2008-10-30
    • US11796286
    • 2007-04-27
    • Marc MeinerStefan Scholl
    • Marc MeinerStefan Scholl
    • G06Q50/00
    • G06Q50/22G06Q10/06G16H40/20
    • A scheduling module for use in method for simulation of a clinical workflow in a healthcare facility which models the processes and treatment of patients is described. The scheduling module accepts a requirement to perform a service on a target date and within a predetermined time window. Each service is characterized by required resources such as rooms, personnel, equipment, consumables, workplace and the presence of the patient. The scheduling module accesses the resource module to determine if the required resources are available during the predetermined time interval. When the resources are available, the resources are reserved and the scheduling module provides a unique identifier for the requested service to the workflow process.
    • 描述了一种用于模拟医疗机构临床工作流程的方法的调度模块,其对患者的过程和治疗进行建模。 调度模块接受在目标日期和预定时间窗内执行服务的要求。 每个服务的特点是所需的资源,如房间,人员,设备,消耗品,工作场所和病人的存在。 调度模块访问资源模块,以在预定的时间间隔内确定所需的资源是否可用。 当资源可用时,资源被保留,并且调度模块为所请求的服务向工作流程提供唯一的标识符。
    • 6. 发明授权
    • Process for designing and manufacturing semi-conductor memory components, in particular DRAM components
    • 用于设计和制造半导体存储器组件,特别是DRAM组件的工艺
    • US07111263B2
    • 2006-09-19
    • US10668684
    • 2003-09-23
    • Stefan Scholl
    • Stefan Scholl
    • G06F17/50
    • G06F17/5068
    • The invention relates to a process for designing semi-conductor memory components, especially DRAM components, whereby the process comprises the following steps: designing a first layout for a module of the semi-conductor memory component to be used in a first configuration of the semi-conductor memory component; designing a second layout for the semi-conductor memory component module to be used in a second configuration of the semi-conductor memory component; and using the first layout or the second layout for the total layout of the semi-conductor memory component, depending on the current configuration of the semi-conductor memory component.
    • 本发明涉及一种用于设计半导体存储器组件,特别是DRAM组件的方法,由此该过程包括以下步骤:设计用于半导体存储器组件的模块的第一布局,以在半导体存储器组件的第一配置中使用 导体记忆组件; 设计用于半导体存储器组件的第二配置中的半导体存储器组件模块的第二布局; 以及根据半导体存储器组件的当前配置,使用第一布局或第二布局来实现半导体存储器组件的总布局。
    • 7. 发明授权
    • Method to control a magnetic resonance device for image acquisition, and corresponding magnetic resonance device
    • 控制用于图像采集的磁共振装置的方法及相应的磁共振装置
    • US08786282B2
    • 2014-07-22
    • US13227045
    • 2011-09-07
    • Stefan Scholl
    • Stefan Scholl
    • G01V3/00
    • G01R33/5612G01R33/4833G01R33/4838G01R33/543
    • In a method to control a magnetic resonance device for image acquisition in at least one slice, the magnetic resonance device has a radio-frequency antenna with multiple transmission channels. At least one slice deviates from a cuboid shape and/or that is roughly adapted to a target volume of interest that is to be acquired, and/or at least one saturation volume adapted to a shape in a subject to be acquired, are defined automatically and/or manually via a user interface. The selection of possible slices and/or saturation volumes is limited automatically under consideration of the technical embodiment of the radio-frequency antenna. The image acquisition takes place in the selected slice and/or under consideration of the saturation volume.
    • 在至少一个切片中控制用于图像采集的磁共振装置的方法中,磁共振装置具有具有多个传输通道的射频天线。 至少一个切片偏离长方体形状和/或大致适应于要获取的目标感兴趣体积,和/或自动定义适合要获取的对象中的形状的至少一个饱和体积 和/或通过用户界面手动地进行。 在考虑到无线电频率天线的技术实施例的情况下,可能的切片和/或饱和体积的选择被自动限制。 图像采集发生在选定的切片和/或考虑饱和体积。