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    • 41. 发明申请
    • Online source reconstruction for EEG/MEG and ECG/MCG
    • EEG / MEG和ECG / MCG的在线源重建
    • US20050059874A1
    • 2005-03-17
    • US10765320
    • 2004-01-27
    • Manfred FuchsStephen Sands
    • Manfred FuchsStephen Sands
    • A61B5/04A61B5/0484A61B5/05A61B6/00A61B6/03A61N20060101A61N1/00G06F20060101
    • A61B5/0484A61B5/04008
    • In one embodiment, the present invention includes an EEG system comprising of sensors which are utilized to gather an electromagnetic signal from a patient; a signal processing system; and a computer system. The computer system is configured to support multiple threads of execution. The computer system initiates a first thread of execution, a measurement module, where the data is filtered and in some cases averaged. Typically, the data is filtered for a particular latency period. Once the data has been filtered and averaged, the result is given to a second thread of execution, the source reconstruction module, which then proceeds to generate a source reconstruction for the trial. The measurement module then acquires and processes new electromagnetic data from a new trial while the source reconstruction is being performed on the most recent trial.
    • 在一个实施例中,本发明包括由用于从患者收集电磁信号的传感器的EEG系统; 信号处理系统; 和计算机系统。 计算机系统被配置为支持多个执行线程。 计算机系统启动第一个执行线程,一个测量模块,其中数据被过滤,在某些情况下是平均的。 通常,数据在特定的等待时间内被过滤。 一旦数据被过滤和平均化,结果被给予第二执行线程,源重建模块然后继续为该试验生成源重建。 然后,在最近的试验中进行源重建时,测量模块从新试验中获取并处理新的电磁数据。
    • 47. 发明授权
    • Transport device for continuously removing mined material
    • 用于连续清除开采材料的运输装置
    • US07926640B2
    • 2011-04-19
    • US11988603
    • 2006-07-06
    • Manfred Fuchs
    • Manfred Fuchs
    • B65G15/08E21F13/02
    • B65G15/08E21F13/02
    • In a haulage device for the continuous removal of material excavated below ground, which can be continuously slaved between a mining machine (8) and a continuous road haulage means (2) over a defined path and narrow curve radii of the mining machine (8) while continuously hauling without interruption, the haulage device is configured as a closed-belt conveyor (9) which is movable on a suspended rail system (3), whose receiving end adjacent the mining machine (8) is coupled with a movable transfer conveyor (7) and whose end facing away from the mining machine (8) and adjacent the continuous road haulage means (2) is connected with a clamping device exerting a defined tensile stress over a defined displacement path of the transfer end of the closed-belt conveyor (8) in a displaceable transfer position onto the continuous road haulage means (2).
    • 在用于连续移除地下挖掘的材料的运输装置中,该挖掘机可以在采矿机(8)的规定路径和窄曲线半径之间连续地从采矿机(8)和连续道路运输装置(2) 在不间断地连续牵引的情况下,运输装置被配置为可在悬挂轨道系统(3)上移动的封闭带式输送机(9),其中邻近采矿机(8)的接收端与可移动传送输送机 7)并且其远离采矿机(8)的端部并且邻近连续道路运输装置(2)的端部与夹紧装置连接,该夹紧装置在封闭带式输送机的传送端的限定位移路径上施加限定的拉伸应力 (8)处于可移动的转移位置到所述连续道路牵引装置(2)上。
    • 48. 发明申请
    • ONLINE SOURCE RECONSTRUCTION FOR EEG/MEG AND ECG/MCG
    • EEG / MEG和ECG / MCG的在线重建
    • US20110082360A1
    • 2011-04-07
    • US12952145
    • 2010-11-22
    • Manfred FuchsStephen F. Sands
    • Manfred FuchsStephen F. Sands
    • A61B5/04A61B5/05
    • A61B5/0484A61B5/04008
    • In one embodiment, the present invention includes an EEG system comprising of sensors which are utilized to gather an electromagnetic signal from a patient; a signal processing system; and a computer system. The computer system is configured to support multiple threads of execution. The computer system initiates a first thread of execution, a measurement module, where the data is filtered and in some cases averaged. Typically, the data is filtered for a particular latency period. Once the data has been filtered and averaged, the result is given to a second thread of execution, the source reconstruction module, which then proceeds to generate a source reconstruction for the trial. The measurement module then acquires and processes new electromagnetic data from a new trial while the source reconstruction is being performed on the most recent trial.
    • 在一个实施例中,本发明包括由用于从患者收集电磁信号的传感器的EEG系统; 信号处理系统; 和计算机系统。 计算机系统被配置为支持多个执行线程。 计算机系统启动第一个执行线程,一个测量模块,其中数据被过滤,在某些情况下是平均的。 通常,数据在特定的等待时间内被过滤。 一旦数据被过滤和平均化,结果被给予第二执行线程,源重建模块然后继续为该试验生成源重建。 然后,在最近的试验中进行源重建时,测量模块从新试验中获取并处理新的电磁数据。