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    • 1. 发明授权
    • Cooperative pulses
    • 合作脉冲
    • US09557398B2
    • 2017-01-31
    • US13704994
    • 2011-06-20
    • Steffen J. GlaserMichael Braun
    • Steffen J. GlaserMichael Braun
    • G01R33/58G06F17/11G01N24/08G01R33/44G01R33/46G01R33/465
    • G01R33/583G01N24/08G01R33/441G01R33/46G01R33/4616G01R33/465G06F17/11
    • A method is proposed for the simultaneous optimization of an arbitrary number of electromagnetic pulses, which act in a cooperative way, or mutually compensate each other's errors. The method generally relates to pulses which can have improved properties when cooperating with each other compared to single pulses. In experiments with several scans, undesired signal contributions can be suppressed by COOP pulses, which complements and generalizes the concept of phase cycling. COOP pulses can also be used in individual scans. COOP pulses can be optimized efficiently with the aid of an extended version of the optimal-control-theory-based gradient ascent pulse engineering (GRAPE) algorithm. The advantage of the COOP pulse method is demonstrated theoretically and experimentally for broadband and band-selective excitation and saturation pulses.
    • 提出了一种以协同方式同时优化任意数量的电磁脉冲或相互补偿彼此误差的方法。 该方法通常涉及与单个脉冲相比相互配合时具有改进特性的脉冲。 在进行几次扫描的实验中,可以通过COOP脉冲抑制不期望的信号贡献,这补充并概括了相位循环的概念。 COOP脉冲也可用于单个扫描。 COOP脉冲可以借助于基于最优控制理论的梯度上升脉冲工程(GRAPE)算法的扩展版本来有效优化。 COOP脉冲方法的优点在理论和实验上用于宽带和频带选择性激励和饱和脉冲。
    • 2. 发明申请
    • Cooperative Pulses
    • 合作脉冲
    • US20130090884A1
    • 2013-04-11
    • US13704994
    • 2011-06-20
    • Steffen J. GlaserMichael Braun
    • Steffen J. GlaserMichael Braun
    • G01R33/58G06F17/11
    • G01R33/583G01N24/08G01R33/441G01R33/46G01R33/4616G01R33/465G06F17/11
    • A method is proposed for the simultaneous optimization of an arbitrary number of electromagnetic pulses, which act in a cooperative way, or mutually compensate each other's errors. The method generally relates to pulses which can have improved properties when cooperating with each other compared to single pulses. In experiments with several scans, undesired signal contributions can be suppressed by COOP pulses, which complements and generalizes the concept of phase cycling. COOP pulses can also be used in individual scans. COOP pulses can be optimized efficiently with the aid of an extended version of the optimal-control-theory-based gradient ascent pulse engineering (GRAPE) algorithm. The advantage of the COOP pulse method is demonstrated theoretically and experimentally for broadband and band-selective excitation and saturation pulses.
    • 提出了一种以协同方式同时优化任意数量的电磁脉冲或相互补偿彼此误差的方法。 该方法通常涉及与单个脉冲相比相互配合时具有改进特性的脉冲。 在进行几次扫描的实验中,可以通过COOP脉冲抑制不期望的信号贡献,这补充并概括了相位循环的概念。 COOP脉冲也可用于单个扫描。 COOP脉冲可以借助于基于最优控制理论的梯度上升脉冲工程(GRAPE)算法的扩展版本来有效优化。 COOP脉冲方法的优点在理论和实验上用于宽带和频带选择性激励和饱和脉冲。
    • 4. 发明申请
    • VIRTUAL MACHINE FOR PROCESSING MEDICAL DATA
    • 用于处理医疗数据的虚拟机
    • US20130326639A1
    • 2013-12-05
    • US14000296
    • 2011-03-29
    • Claudia DrosteKlaus BreitschaftMichael BraunHenrik Wist
    • Claudia DrosteKlaus BreitschaftMichael BraunHenrik Wist
    • G06F21/62
    • G06F21/6245G06F21/55
    • The present invention relates to a virtual machine (VM) for processing digital data, in particular medical data, by executing a digital data processing application program, in particular a medical data processing application program (MeDPAP), the virtual machine (VM) being a simulation of a computer, a) the virtual machine (VM) comprising a volatile memory (ViMStor) configured to comprise a storage space for temporary data (TEMP) for temporarily storing the digital data; b) the virtual machine (VM) being configured to be accessed by any virtual machine user activated on a virtual machine user list, wherein any activated maintenance virtual machine user is denied any permission regarding the storage space for temporary data (TEMP), wherein denying any permissions is performed by logging into the virtual machine (VM) as an administrator and setting corresponding options; c) wherein any administrator has been deactivated on the virtual machine user list, wherein deactivating any administrator has been performed by logging into the virtual machine (VM) as an administrator and setting corresponding options for each administrator in the virtual machine user list; d) wherein the virtual machine (VM) is in a state in which the administrator has been logged off after deactivating the administrator on the virtual machine user list.
    • 本发明涉及通过执行数字数据处理应用程序,特别是医疗数据处理应用程序(MeDPAP)来处理数字数据,特别是医疗数据的虚拟机(VM),虚拟机(VM)是 计算机的仿真,a)包括易失性存储器(ViMStor)的虚拟机(VM),其被配置为包括用于临时存储数字数据的临时数据(TEMP)的存储空间; b)虚拟机(VM)被配置为由在虚拟机用户列表上激活的任何虚拟机用户访问,其中任何激活的维护虚拟机用户被拒绝关于临时数据(TEMP)的存储空间的任何许可,其中拒绝 通过以管理员身份登录到虚拟机(VM)并设置相应的选项来执行任何权限; c)其中任何管理员已经在虚拟机用户列表上被停用,其中已经通过以管理员身份登录到虚拟机(VM)并且为虚拟机用户列表中的每个管理员设置相应的选项来去激活任何管理员; d)其中虚拟机(VM)处于在虚拟机用户列表上停用管理员之后管理员已经注销的状态。