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    • 14. 发明申请
    • MEDICAL IMAGE PROCESSING DEVICE
    • 医学图像处理装置
    • US20130251231A1
    • 2013-09-26
    • US13991012
    • 2011-12-01
    • Tomoaki GotoTetsutaro Ono
    • Tomoaki GotoTetsutaro Ono
    • G06T7/00
    • G06T7/0012A61B5/055G06T5/007G06T7/337G06T7/62G06T2207/20128G06T2207/30016
    • Provided is a medical image processing device capable of determining a state of an obtained brain image and adjusting the obtained image to suit for performing tissue separation processing. The medical image processing device is configured to select a slice image to be processed as a target slice image from a brain image configured by a plurality of slice images, performs processing for measuring an effective maximum value in the cerebral parenchyma, an effective maximum value in a whole image, and a peak average value around the skull with respect to the selected target slice to determine necessity of high-signal-value-control processing based on the measured effective maximum value in the cerebral parenchyma, the effective maximum value in a whole image, and the peak average value around the skull so that when it is determined that the high-signal-value-control processing is necessary, the high-signal-value-control processing is performed to the brain image.
    • 提供一种能够确定所获得的脑图像的状态并调整所获得的图像以适合进行组织分离处理的医疗图像处理装置。 医疗图像处理装置被配置为从由多个切片图像构成的脑图像中选择要处理的切片图像作为目标切片图像,执行用于测量大脑实质中的有效最大值的处理, 整个图像和围绕颅骨的峰值平均值相对于所选择的目标切片,以基于大脑实质中测量的有效最大值确定高信号值控制处理的必要性,整个有效最大值 图像和颅骨周围的峰值平均值,使得当确定需要高信号值控制处理时,对脑图像执行高信号值控制处理。
    • 17. 发明申请
    • PRODUCTION PROCESS OF OLEFIN POLYMER
    • 烯烃聚合物的生产工艺
    • US20100029868A1
    • 2010-02-04
    • US12528421
    • 2008-02-25
    • Yasutoyo KawashimaTomoaki Goto
    • Yasutoyo KawashimaTomoaki Goto
    • C08F4/6592
    • C08F110/02C08F4/65912C08F4/65927C08F210/16C08F2410/01C08F4/6492C08F4/65916C08F210/14
    • The present invention provides a highly active process for producing an olefin polymer, comprising: the step (I) of preliminarily polymerizing an olefin at 65° C. or lower in the presence of a preliminary polymerization catalyst prepared by bringing the following components (A), (B) and (C) into contact with each other, to produce a preliminary polymerization catalyst component (X); and the step (II) of polymerizing an olefin in the presence of a polymerization catalyst prepared by bringing the preliminary polymerization catalyst component (X) into contact with the following component (D), to produce an olefin polymer; component (A): a metallocene-base complex, component (B): a solid co-catalyst component in which a compound capable of ionizing the metallocene-base complex into an ionic complex is supported on fine particle support, component (C): an organoaluminum compound represented by the general formula R13Al (wherein, R1 is a linear hydrocarbon group of 1 to 8 carbon atoms, wherein the R1 can be the same or different), and component (D): an organoaluminum compound represented by the general formula R23Al (wherein, R2 is a branched hydrocarbon group of 3 to 8 carbon atoms, wherein the R2 can be the same or different).
    • 本发明提供一种生产烯烃聚合物的高活性方法,包括:在通过使以下组分(A)制备的预聚合催化剂存在下,在65℃或更低温度下预先聚合烯烃的步骤(I) ,(B)和(C)彼此接触以产生预聚合催化剂组分(X); 和通过使预聚合催化剂组分(X)与以下组分(D)接触制备的聚合催化剂存在下使烯烃聚合以制备烯烃聚合物的步骤(II); 组分(A):茂金属 - 基配合物,组分(B):其中可将金属茂基络合物离子化成离子络合物的化合物负载在细颗粒载体上的固体助催化剂组分,组分(C): 由通式R 13 Al表示的有机铝化合物(其中,R1为碳原子数为1〜8的直链烃基,其中R1可以相同或不同),成分(D):由通式 R 23 Al(其中,R 2为3〜8个碳原子的支链烃基,其中R2可以相同或不同)。