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    • 22. 发明授权
    • Multi-electrode neurostimulation device
    • 多电极神经刺激装置
    • US09020604B2
    • 2015-04-28
    • US13285084
    • 2011-10-31
    • Hubert Cecile Francois Martens
    • Hubert Cecile Francois Martens
    • A61N1/36A61N1/05
    • A61N1/36139A61N1/0531A61N1/0553A61N1/36146A61N1/36157A61N1/36182A61N1/36185
    • A neurostimulation device is provided comprising an input, a neurostimulation probe, a stimulation unit and a distribution calculation module. At the input stimulation data is received comprising information relating to a stimulation preferability and an orientation of at least one fiber bundle. The neurostimulation probe comprises an array of stimulation electrodes which are coupled to the stimulation unit. The stimulation unit, in accordance with a specified current distribution, provides currents to the respective stimulation electrodes for generating an electric field gradient. The distribution calculation module is coupled to the input and the stimulation unit for based on the stimulation data determining a preferred position and orientation for the electric field gradient, and based on the preferred position and orientation for the electric field gradient, calculating the specified current distribution.
    • 提供神经刺激装置,其包括输入,神经刺激探针,刺激单元和分布计算模块。 在输入刺激数据被接收包括与刺激优选性和至少一个纤维束的取向有关的信息。 神经刺激探针包括耦合到刺激单元的刺激电极的阵列。 刺激单元根据指定的电流分布,向相应的刺激电极提供电流以产生电场梯度。 分布计算模块基于确定电场梯度的优选位置和取向的刺激数据耦合到输入和刺激单元,并且基于电场梯度的优选位置和取向,计算指定的电流分布 。
    • 23. 发明授权
    • System and method for planning a neurosurgical operation
    • 用于规划神经外科手术的系统和方法
    • US08942446B2
    • 2015-01-27
    • US13640490
    • 2011-04-08
    • Hubert Cecile Francois Martens
    • Hubert Cecile Francois Martens
    • G06K9/00G06F19/00
    • G06F19/3437G06F19/00G06F19/3481G16H50/50
    • A system (10) and method (20) for planning a neurosurgical operation are provided the system (10) comprises an input (11) for receiving functional data (25) and anatomical data of a brain region (31), and a processor (12) configured to perform the method (20) according to the invention. The method (20) comprises analyzing (26) the functional data (25) to form a network representation (27) of functional connections, mapping the network representation (27) of the functional connections and the anatomical data to a common coordinate system, determining an expected function loss associated with a simulated removal of network nodes (32) or network connections (42) from the network representation (27), and identifying critical network connections and/or critical network nodes based on the expected function loss.
    • 提供了一种用于规划神经外科手术的系统(10)和方法(20),所述系统(10)包括用于接收功能数据(25)的输入端(11)和脑区域(31)的解剖数据,以及处理器 12),其被配置为执行根据本发明的方法(20)。 方法(20)包括分析(26)功能数据(25)以形成功能连接的网络表示(27),将功能连接的网络表示(27)和解剖数据映射到公共坐标系,确定 与来自网络表示(27)的网络节点(32)或网络连接(42)的模拟移除相关联的预期功能损失,以及基于预期功能损失来识别关键网络连接和/或关键网络节点。
    • 24. 发明授权
    • Visualizing surgical trajectories
    • 可视化手术轨迹
    • US08831307B2
    • 2014-09-09
    • US13378094
    • 2010-06-21
    • Hayriye CagnanHubert Cecile Francois MartensKevin Thomas Dolan
    • Hayriye CagnanHubert Cecile Francois MartensKevin Thomas Dolan
    • G06K9/00A61B19/00
    • A61B19/50A61B34/10A61B34/20A61B2034/105A61B2034/107A61B2090/364A61B2090/3762
    • A method is provided for visualizing a surgical trajectory (32, 101, 42, 46, 47). The method comprises steps of receiving (71) 3D imaging information (31) of a region to undergo surgery and combining (72) the received 3D imaging information (31) with data from a digitized anatomical atlas. As a result, a combined map of the region to undergo surgery is obtained. The combined map comprises expected positions of anatomical structures (102, 103, 104) in the region to undergo surgery. The method further comprises steps of receiving (73) the surgical trajectory (32, 101, 42, 46, 47) for the surgery, determining (74) positions of intersections (43, 44) of the surgical trajectory (32, 101, 42, 46, 47) with the anatomical structures (102, 103, 104) and providing (75) the positions of the intersections (43, 44) in a coordinate system aligned with the surgical trajectory (32, 101, 42, 46, 47).
    • 提供了一种用于可视化手术轨迹(32,101,42,46,47)的方法。 该方法包括以下步骤:接收(71)区域的3D成像信息(31)以进行手术并将接收的3D成像信息(31)与来自数字化解剖图谱的数据组合(72)。 结果,获得了进行手术的区域的组合图。 组合图包括在进行手术的区域中的解剖结构(102,103,104)的预期位置。 该方法还包括以下步骤:接收(73)用于手术的手术轨迹(32,101,42,46,47),确定手术轨迹(32,101,42)的交叉点(43,44)的位置(74) ,46,47),其具有解剖结构(102,103,104),并且提供(75)所述交叉点(43,44)在与所述外科轨迹(32,101,42,46,47)对准的坐标系中的位置 )。
    • 25. 发明授权
    • Multi-speed recording for multi-layer disc
    • 多层光盘多段录像
    • US08477578B2
    • 2013-07-02
    • US13017234
    • 2011-01-31
    • Ronald Van Den OetelaarHubert Cecile Francois MartensWilhelmus Robert KoppersPierre Hermanus
    • Ronald Van Den OetelaarHubert Cecile Francois MartensWilhelmus Robert KoppersPierre Hermanus
    • G11B7/00
    • G11B7/0045G11B7/00456G11B7/00736G11B7/24038G11B2007/0013
    • The present invention relates to a recording apparatus, record carrier and method of recording data on at least two layers of a recording medium by using a radiation power, wherein individual recording speeds are determined for respective ones of the at least two layers at different values of the radiation power. A recording speed to be used for recording on an individual one of the at least two recording layers is selected based on a maximum radiation power specified for the recording operation, and the speed of the recording operation is controlled individually for each of the at least two layers based on the selected recording speed. The determination of the individual recording speeds at different radiation power values may be written or embossed on the record carrier. Furthermore, a recording sequence used for recording on the recording layers can be set based on the sensitivities and thus recording speeds. Thereby, total recording time can be minimized for multi-layer recording media.
    • 本发明涉及一种通过使用辐射功率在至少两层记录介质上记录数据的记录装置,记录载体和方法,其中针对所述至少两个层中的不同值确定各个记录速度 辐射功率。 基于为记录操作指定的最大辐射功率来选择用于记录在至少两个记录层中的单个记录层上的记录速度,并且对于至少两个记录层中的每一个单独地控制记录操作的速度 基于所选记录速度的层。 在不同辐射功率值下的单个记录速度的确定可以被写入或压印在记录载体上。 此外,可以基于灵敏度和因此记录速度来设置用于记录层上的记录的记录顺序。 因此,对于多层记录介质,总记录时间可以最小化。
    • 26. 发明申请
    • VISUALIZING SURGICAL TRAJECTORIES
    • 可视化外科手术
    • US20120099770A1
    • 2012-04-26
    • US13378094
    • 2010-06-21
    • Hayriye CagnanHubert Cecile Francois MartensKevin Thomas Dolan
    • Hayriye CagnanHubert Cecile Francois MartensKevin Thomas Dolan
    • G06K9/00
    • A61B19/50A61B34/10A61B34/20A61B2034/105A61B2034/107A61B2090/364A61B2090/3762
    • A method is provided for visualizing a surgical trajectory (32, 101, 42, 46, 47). The method comprises steps of receiving (71) 3D imaging information (31) of a region to undergo surgery and combining (72) the received 3D imaging information (31) with data from a digitized anatomical atlas. As a result, a combined map of the region to undergo surgery is obtained. The combined map comprises expected positions of anatomical structures (102, 103, 104) in the region to undergo surgery. The method further comprises steps of receiving (73) the surgical trajectory (32, 101, 42, 46, 47) for the surgery, determining (74) positions of intersections (43, 44) of the surgical trajectory (32, 101, 42, 46, 47) with the anatomical structures (102, 103, 104) and providing (75) the positions of the intersections (43, 44) in a coordinate system aligned with the surgical trajectory (32, 101, 42, 46, 47).
    • 提供了一种用于可视化手术轨迹(32,101,42,46,47)的方法。 该方法包括以下步骤:接收(71)区域的3D成像信息(31)以进行手术并将接收的3D成像信息(31)与来自数字化解剖图谱的数据组合(72)。 结果,获得了进行手术的区域的组合图。 组合图包括在进行手术的区域中的解剖结构(102,103,104)的预期位置。 该方法还包括以下步骤:接收(73)用于手术的手术轨迹(32,101,42,46,47),确定手术轨迹(32,101,42)的交叉点(43,44)的位置(74) ,46,47),其具有解剖结构(102,103,104),并且提供(75)所述交叉点(43,44)在与所述外科轨迹(32,101,42,46,47)对准的坐标系中的位置 )。