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    • 6. 发明申请
    • Device And Method For Assembling Sets Of Instruments
    • 仪器组装装置及方法
    • US20130091679A1
    • 2013-04-18
    • US13650719
    • 2012-10-12
    • Oliver GlogerOmid Abri
    • Oliver GlogerOmid Abri
    • B23P21/00B23P11/00
    • G06Q10/0875A61B90/90G06Q50/22G16H40/63Y10T29/49769Y10T29/53087
    • The invention relates to a device for assembling sets of instruments, having a data processing installation and a fine identification unit. The data processing installation has a display unit, a database, a first interface and an evaluation unit. The fine identification unit has a first support for placing the instruments of a set of instruments thereon and a first camera. The first camera is arranged and oriented such that it can capture image data from instruments to be identified and arranged on the first support from at least one perspective, and the data processing installation is designed such that it uses the first interface to receive image data from the first camera and can store the received image data in the database. It can further visually identify a respective instrument by use of the evaluation unit. The invention also relates to an according method for assembling sets of instruments.
    • 本发明涉及一种用于组装仪器的装置,具有数据处理装置和精细识别单元。 数据处理装置具有显示单元,数据库,第一接口和评估单元。 精细识别单元具有用于将一组仪器的仪器放置在其上的第一支撑件和第一相机。 第一相机被布置和定向成使得其可以从至少一个角度捕获要被识别和布置在第一支架上的装置的图像数据,并且数据处理装置被设计成使得其使用第一接口从 第一台相机,并可将接收到的图像数据存储在数据库中。 它可以通过使用评估单元进一步目视识别相应的仪器。 本发明还涉及一种用于组装仪器的相关方法。
    • 7. 发明授权
    • Method for segmenting an organ in volume data records from magnetic resonance imaging
    • 从磁共振成像分割体数据记录器官的方法
    • US08447085B2
    • 2013-05-21
    • US12860204
    • 2010-08-20
    • Oliver Gloger
    • Oliver Gloger
    • G06K9/00
    • G06T7/11G06T7/143G06T7/187G06T2200/04G06T2207/10088G06T2207/20076G06T2207/20081G06T2207/30056
    • A method is disclosed for segmenting an organ, more particularly the liver, in n-channel volume data records from magnetic resonance imaging. In at least one embodiment of the method, probability distributions are generated on the basis of segmentation results from n-channel training data records, which probability distributions specify probabilities of positions of voxels and intensity values, which have been reduced from n-dimensions to one dimension with the aid of discriminant reduction, of voxels in the training data records belonging to the organ. At least one 3D probability data record is then generated from the n-channel volume data records on the basis of the probability distributions, in which 3D probability data record each voxel is assigned a probability of belonging to the organ. A maximum value of the 3D probability data record is set as the start point for the segmentation, and the organ is subsequently segmented on the basis of the 3D probability data record using a region-growing technique. The method allows very reliable fully-automatic segmentation of the organ.
    • 公开了一种用于在来自磁共振成像的n通道体积数据记录中分割器官,特别是肝脏的方法。 在该方法的至少一个实施例中,基于来自n个信道训练数据记录的分割结果生成概率分布,该概率分布指定已经从n维减少到一个的体素的位置的概率和强度值 借助于判别式缩减维度,属于该器官的训练数据记录中的体素。 然后,基于概率分布从n个通道体数据记录中生成至少一个3D概率数据记录,其中3D概率数据记录每个体素分配属于机关的概率。 将3D概率数据记录的最大值设置为分割的开始点,随后使用区域生长技术基于3D概率数据记录分割器官。 该方法允许器官非常可靠的全自动分割。
    • 9. 发明申请
    • METHOD FOR SEGMENTING AN ORGAN IN VOLUME DATA RECORDS FROM MAGNETIC RESONANCE IMAGING
    • 从磁共振成像中分离体积数据记录中的有机体的方法
    • US20110044523A1
    • 2011-02-24
    • US12860204
    • 2010-08-20
    • Oliver Gloger
    • Oliver Gloger
    • G06T15/00
    • G06T7/11G06T7/143G06T7/187G06T2200/04G06T2207/10088G06T2207/20076G06T2207/20081G06T2207/30056
    • A method is disclosed for segmenting an organ, more particularly the liver, in n-channel volume data records from magnetic resonance imaging. In at least one embodiment of the method, probability distributions are generated on the basis of segmentation results from n-channel training data records, which probability distributions specify probabilities of positions of voxels and intensity values, which have been reduced from n-dimensions to one dimension with the aid of discriminant reduction, of voxels in the training data records belonging to the organ. At least one 3D probability data record is then generated from the n-channel volume data records on the basis of the probability distributions, in which 3D probability data record each voxel is assigned a probability of belonging to the organ. A maximum value of the 3D probability data record is set as the start point for the segmentation, and the organ is subsequently segmented on the basis of the 3D probability data record using a region-growing technique. The method allows very reliable fully-automatic segmentation of the organ.
    • 公开了一种用于在来自磁共振成像的n通道体积数据记录中分割器官,特别是肝脏的方法。 在该方法的至少一个实施例中,基于来自n个信道训练数据记录的分割结果生成概率分布,该概率分布指定已经从n维减少到一个的体素的位置的概率和强度值 借助于判别式缩减维度,属于该器官的训练数据记录中的体素。 然后,基于概率分布从n个通道体数据记录中生成至少一个3D概率数据记录,其中3D概率数据记录每个体素分配属于机关的概率。 将3D概率数据记录的最大值设置为分割的开始点,随后使用区域生长技术基于3D概率数据记录分割器官。 该方法允许器官非常可靠的全自动分割。
    • 10. 发明申请
    • Device And Method For Identifying Anomalies On Instruments
    • 识别仪器异常的装置和方法
    • US20130093877A1
    • 2013-04-18
    • US13650751
    • 2012-10-12
    • Oliver Gloger
    • Oliver Gloger
    • H04N7/18
    • G01N21/94A61B90/90G01N21/8851
    • The present invention relates to a device for identifying anomalies on medical instruments, having a data processing installation and an instrument analysing unit. The data processing installation has a display unit, a database, a first interface and an evaluation unit and the instrument analysing unit has a support and at least one camera. The at least one camera is arranged and oriented such that it can capture image data from medical instruments arranged on the support from at least one perspective, and the data processing installation is designed such that it uses the first interface to receive image data from the at least one camera and can store the received image data in the database. Further, it can use the evaluation unit to examine said image data for regions which have anomalies. In addition, the invention also relates to an according method.
    • 本发明涉及一种用于识别医疗器械异常的装置,具有数据处理装置和仪器分析单元。 数据处理装置具有显示单元,数据库,第一接口和评估单元,并且仪器分析单元具有支撑件和至少一个相机。 所述至少一个相机被布置和定向成使得其可以从至少一个角度从布置在所述支架上的医疗仪器捕获图像数据,并且所述数据处理装置被设计成使得其使用所述第一接口从所述第一接口接收图像数据 至少一个相机,并且可以将接收到的图像数据存储在数据库中。 此外,可以使用评估单元检查具有异常的区域的所述图像数据。 此外,本发明还涉及一种相关方法。