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    • 1. 发明申请
    • DETERMINING A PLANE OF ANATOMICAL BODY PART
    • 确定解剖部位的平面图
    • US20120316469A1
    • 2012-12-13
    • US13394612
    • 2009-09-08
    • Martin HaimerlMario SchubertSabine Kling
    • Martin HaimerlMario SchubertSabine Kling
    • A61B5/103
    • A61B5/103A61B5/4528A61B5/6878A61B34/10A61B90/39
    • A data processing method for determining the position of a main plane of an anatomical body part, comprising the steps of: • providing absolute auxiliary point data which describe the position of at least one actual auxiliary point of the body part relative to a marker device attacked to the body part, the at least one actual auxiliary point being outside the main plane; • providing relative point data which constrain the possible positions of the main plane relative to the at least one actual auxiliary point; • providing absolute main point data which describe the position of one or two actual main points of the body part relative to the marker device attached to the body part, said one or two actual main points lying in the main plane and/or calculating the position of at least one virtual main point relative to the marker device, said at least one virtual main point being in the main plane and being calculated based on the absolute auxiliary point data and the relative point data; • calculating a position of the main plane relative to the marker device, wherein the calculation uses the relative point data and auxiliary point data as well as the provided absolute main point data and/or the calculated position of the at least one virtual main point.
    • 一种用于确定解剖体部分的主平面的位置的数据处理方法,包括以下步骤:•提供绝对辅助点数据,其描述身体部分的至少一个实际辅助点相对于被攻击的标记装置的位置 所述至少一个实际辅助点在所述主体部分之外; •提供约束主平面相对于至少一个实际辅助点的可能位置的相对点数据; •提供绝对主要点数据,其描述身体部分相对于附接到身体部位的标记装置的一个或两个实际主要点的位置,所述一个或两个实际主要点位于主平面中和/或计算位置 相对于所述标记装置的至少一个虚拟主要点,所述至少一个虚拟主要点位于所述主平面中,并且基于所述绝对辅助点数据和所述相对点数据来计算; •计算主平面相对于标记装置的位置,其中所述计算使用所述相对点数据和辅助点数据以及所提供的绝对主要点数据和/或所述至少一个虚拟主要点的所计算的位置。
    • 2. 发明授权
    • Data memory with redundant memory cells used for buffering a supply voltage
    • 具有用于缓冲电源电压的冗余存储单元的数据存储器
    • US06724667B2
    • 2004-04-20
    • US10134670
    • 2002-04-29
    • Andreas BaenischSabine Kling
    • Andreas BaenischSabine Kling
    • G11C700
    • G11C29/70G11C11/4074
    • A data memory for storing data, having a memory cell array (2), which comprises a large number of memory cells (3), each of which can be addressed by means of a memory cell select transistor (4) connected to a word line (9) and to a bit line (13) and which have a storage capacity for storing one data bit, the memory cell array (2) containing redundant memory cells (3′), which are provided in order to replace memory cells (3) which have been produced wrongly, by means of readdressing, and having read amplifiers (22), which are in each case provided for the signal amplification of a data bit read from an addressed memory cell (3) via an associated bit line (13) and are supplied with a buffered supply voltage, the redundant memory cells (3′) which have not been readdressed being connected to the associated bit lines (13′) and additionally buffering the supply voltage for the read amplifiers (22).
    • 一种用于存储数据的数据存储器,具有存储单元阵列(2),其包括大量存储单元(3),每个存储单元可通过连接到字线的存储单元选择晶体管(4)来寻址 (9)和位线(13),并且具有用于存储一个数据位的存储容量,所述存储单元阵列(2)包含冗余存储单元(3'),以便替换存储单元(3) ),其通过再调用而被错误地产生,并且具有读取放大器(22),每个读取放大器(22)被提供用于经由相关联的位线(13)从寻址的存储器单元(3)读取的数据位的信号放大 )并且被提供有缓冲的电源电压,未被读取的冗余存储器单元(3')连接到相关联的位线(13'),并且另外缓冲用于读取放大器(22)的电源电压。
    • 4. 发明授权
    • Contact connection of metal interconnects of an integrated semiconductor chip
    • 集成半导体芯片的金属互连的接触连接
    • US06515374B1
    • 2003-02-04
    • US09633704
    • 2000-08-07
    • Andreas BänischSabine Kling
    • Andreas BänischSabine Kling
    • H01L27108
    • H01L23/528H01L23/5226H01L2924/0002Y10S257/908Y10S257/909H01L2924/00
    • An integrated semiconductor chip has at least two metal interconnects of two different metallization planes, which are disposed parallel to one another. The metal interconnects are connected to one another via at least one electrically conductive contact point. The metal interconnects, for each direction, run orthogonally with respect to one another in a first region. For each direction, they run parallel to one another and at an oblique angle to the directions of the metal interconnects of the first region in a second region (20), in which they are contact-connected to one another. This configuration makes it possible, with little influence of electromigration, to have a comparatively small space requirement needed for the contact connection of mutually orthogonal interconnects.
    • 集成半导体芯片具有彼此平行设置的两个不同金属化平面的至少两个金属互连。 金属互连通过至少一个导电接触点相互连接。 对于每个方向,金属互连在第一区域中相对于彼此正交地运行。 对于每个方向,它们在第二区域(20)中彼此平行并且以与第一区域的金属互连件的方向成倾斜的角度延伸,在第二区域(20)中,它们彼此接触连接。 这种配置使得在电迁移的影响很小的情况下,可以具有相互正交的互连的接触连接所需的相对较小的空间要求。
    • 6. 发明授权
    • Determining a plane of anatomical body part
    • 确定解剖体部位的平面
    • US09370317B2
    • 2016-06-21
    • US13394612
    • 2009-09-08
    • Martin HaimerlMario SchubertSabine Kling
    • Martin HaimerlMario SchubertSabine Kling
    • A61B5/103A61B5/00
    • A61B5/103A61B5/4528A61B5/6878A61B34/10A61B90/39
    • A data processing method for determining the position of a main plane of an anatomical body part, comprising the steps of: • providing absolute auxiliary point data which describe the position of at least one actual auxiliary point of the body part relative to a marker device attacked to the body part, the at least one actual auxiliary point being outside the main plane; • providing relative point data which constrain the possible positions of the main plane relative to the at least one actual auxiliary point; • providing absolute main point data which describe the position of one or two actual main points of the body part relative to the marker device attached to the body part, said one or two actual main points lying in the main plane and/or calculating the position of at least one virtual main point relative to the marker device, said at least one virtual main point being in the main plane and being calculated based on the absolute auxiliary point data and the relative point data; • calculating a position of the main plane relative to the marker device, wherein the calculation uses the relative point data and auxiliary point data as well as the provided absolute main point data and/or the calculated position of the at least one virtual main point.
    • 一种用于确定解剖体部分的主平面的位置的数据处理方法,包括以下步骤:•提供绝对辅助点数据,其描述身体部分的至少一个实际辅助点相对于被攻击的标记装置的位置 所述至少一个实际辅助点在所述主体部分之外; •提供约束主平面相对于至少一个实际辅助点的可能位置的相对点数据; •提供绝对主要点数据,其描述身体部分相对于附接到身体部位的标记装置的一个或两个实际主要点的位置,所述一个或两个实际主要点位于主平面中和/或计算位置 相对于所述标记装置的至少一个虚拟主要点,所述至少一个虚拟主要点位于所述主平面中,并且基于所述绝对辅助点数据和所述相对点数据来计算; •计算主平面相对于标记装置的位置,其中所述计算使用所述相对点数据和辅助点数据以及所提供的绝对主要点数据和/或所述至少一个虚拟主要点的所计算的位置。
    • 9. 发明申请
    • DETERMINING A PLANE OF AN ANATOMICAL BODY PART
    • 确定解剖部位的平面图
    • US20120232802A1
    • 2012-09-13
    • US13394465
    • 2010-08-10
    • Martin HaimerlMario SchubertSabine KlingMelanie Wegner
    • Martin HaimerlMario SchubertSabine KlingMelanie Wegner
    • G06F19/00
    • A61B5/103A61B5/4528A61B5/6878A61B34/10A61B90/39
    • A data processing method for determining the position of a main plane of an anatomical body part, comprising the steps of: ·providing absolute auxiliary point data which describe the position of at least one actual auxiliary point of the body part relative to a marker device attached to the body part, the at least one actual auxiliary point being outside the main plane; ·providing relative point data which constrain the possible positions of the main plane relative to the at least one actual auxiliary point; ·providing absolute main point data which describe the position of one or two actual main points of the body part relative to the marker device attached to the body part, said one or two actual main points lying in the main plane and/or calculating the position of at least one virtual main point relative to the marker device, said at least one virtual main point being in the main plane and being calculated based on the absolute auxiliary point data and the relative point data; ·calculating a position of the main plane relative to the marker device, wherein the calculation uses the relative point data and auxiliary point data as well as the provided absolute main point data and/or the calculated position of the at least one virtual main point.
    • 一种用于确定解剖体部分的主平面的位置的数据处理方法,包括以下步骤:·提供绝对辅助点数据,其描述身体部分的至少一个实际辅助点相对于附接的标记装置的位置 所述至少一个实际辅助点在所述主体部分之外; ·提供约束所述主平面相对于所述至少一个实际辅助点的可能位置的相对点数据; ·提供绝对主要点数据,其描述身体部分相对于附接到身体部位的标记装置的一个或两个实际主要点的位置,所述一个或两个实际主要点位于主平面中和/或计算位置 相对于所述标记装置的至少一个虚拟主要点,所述至少一个虚拟主要点位于所述主平面中,并且基于所述绝对辅助点数据和所述相对点数据来计算; ·计算主平面相对于标记装置的位置,其中所述计算使用所述相对点数据和辅助点数据以及所提供的绝对主要点数据和/或所述至少一个虚拟主要点的计算位置。