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    • 2. 发明申请
    • DEVICE AND METHOD FOR MEDICAL IMAGE PROCESSING
    • 用于医学图像处理的装置和方法
    • US20110306868A1
    • 2011-12-15
    • US13202592
    • 2010-02-26
    • Tomohiro Nagao
    • Tomohiro Nagao
    • A61B5/055A61B6/03
    • A61B5/02007A61B6/463A61B6/481A61B6/503A61B6/504A61B6/507A61B6/5217G06T7/0012G06T2207/10081G06T2207/30048G06T2207/30104
    • By a CPU (101) of a device (100) for processing medical image, a coronary artery region and a cardiac muscle region that are to be analyzed are extracted from angiographic images of the coronary artery obtained from X-ray CT images or the like.Next, degrees of isolation (blood vessel dependences), which indicate the effects of the coronary artery on the individual sites of the myocardium, are calculated.The thus calculated degrees of isolation are referred to as pixel values and displayed while superimposed on a bull's eye map of the cardiac muscle, a three-dimensional image of the heart or the like.As a result, the effect of infarction or constriction on the cardiac muscle region can be visually recognized merely by using the angiographic image data of the coronary artery without conducting a delay angiographic imaging examination or the like.
    • 通过用于处理医学图像的装置(100)的CPU(101),从由X射线CT图像等获得的冠状动脉的血管造影图像中提取要分析的冠状动脉区域和心肌区域 。 接下来,计算表示冠状动脉对心肌各个部位的影响的分离度(血管依赖性)。 将这样计算的隔离度称为像素值,并且叠加在心肌的公牛眼图上,心脏的三维图像等显示。 结果,仅通过使用冠状动脉的血管造影图像数据而不进行延迟血管造影成像检查等,可以仅视觉识别梗塞或收缩对心肌区域的影响。
    • 3. 发明申请
    • MEDICAL IMAGE PROCESSING DEVICE, MEDICAL IMAGE PROCESSING METHOD, AND MEDICAL IMAGE PROCESSING PROGRAM
    • 医学图像处理设备,医学图像处理方法和医学图像处理程序
    • US20110069874A1
    • 2011-03-24
    • US12993392
    • 2009-05-26
    • Tomohiro Nagao
    • Tomohiro Nagao
    • G06K9/00
    • A61B6/032G06T5/50G06T7/11G06T2207/10072G06T2207/30008G06T2207/30048
    • A medical image processing device etc. which supports work for precisely identifying the area of a diagnosis object from a medical image scanned by a medical imaging apparatus is provided.A CPU (11) of the medical image processing device (1) inputs image data and stores the same in a main memory (12) (S101).Next, the CPU (11) subjects the inputted image data to threshold processing (S102).Next, the CPU (11) stores, in the main memory (12), data obtained by separating the area of the high signal values of the binarized image data into a bone region and an angiographically scanned region (S103).Next, the CPU (11) identifies the contact area of the bone region and the angiographically scanned region from the data stored in the main memory (12) (S104).Next, the CPU (11) emphasizes the contact area stored in the main memory (12) at the S104 and displays the contact area on a display device (15) (S105).
    • 提供一种医疗图像处理装置等,其支持从由医学成像装置扫描的医疗图像精确地识别诊断对象的区域的工作。 医疗图像处理装置(1)的CPU(11)输入图像数据并将其存储在主存储器(12)中(S101)。 接下来,CPU(11)对输入的图像数据进行阈值处理(S102)。 接下来,CPU(11)在主存储器(12)中存储通过将二值化图像数据的高信号值的区域分割为骨区域和血管造影扫描区域而获得的数据(S103)。 接下来,CPU(11)从存储在主存储器(12)中的数据中识别骨区域和血管造影扫描区域的接触面积(S104)。 接下来,CPU(11)在S104中强调存储在主存储器(12)中的接触区域,并在显示装置(15)上显示接触区域(S105)。
    • 5. 发明授权
    • Polycarbonate, method of preparing the same and electrophotographic
photoreceptor produced by using the same
    • 聚碳酸酯,其制备方法和使用该聚碳酸酯制造的电子照相感光体
    • US5521041A
    • 1996-05-28
    • US133126
    • 1993-10-13
    • Hideyuki MiyamotoShuji SakamotoHironobu MorishitaTomohiro Nagao
    • Hideyuki MiyamotoShuji SakamotoHironobu MorishitaTomohiro Nagao
    • C08G64/00C08G64/10C08G64/14C08G64/20C08G64/30G03G5/05G03G15/02G03G5/00
    • C08G64/14C08G64/10G03G5/0564
    • A polycarbonate and a method of preparing the polycarbonate which comprises a repeating unit represented by the following general formula ##STR1## wherein each of R.sup.1 and R.sup.2 respectively is a halogen atom, an alkyl group, a cycloalkyl group or an aryl group, each of a and b is an integer of 0 to 4, and X is a single bond, --O--, --CO--, --S--, --SO--, --SO.sub.2 --, --CR.sup.3 R.sup.4 --, a 1,1-cycloalkylidene group or an .alpha.,.omega.-alkylene group, and end groups represented by the following general formulas ##STR2## wherein, R.sup.5 is a perfluoroalkyl group or substituted perfluoroalkyl group of 1 to 30 carbon atoms, Y is --CH.sub.2 --, e is an integer of 0 to 6, Z is --O--, --CO--, --OCO--, --S--, --SO--, --SO.sub.2 -- or --NHCO--, f is 0 or 1, R.sup.6 is a halogen atom, an alkyl group, a cycloalkyl group or an aryl group, and each of c and d is an integer satisfying c+d.ltoreq.5, c=1 to 5 and d=0 to 4, and an electrophotographic photoreceptor the photosensitive layer of which contains the polycarbonate of the specific structure as a component. The electrophotographic photoreceptor is produced by using a coating liquid which contains the polycarbonate and does not get cloudy (gel), and is practically useful since it maintains excellent mechanical strength, such as high plate wear, and excellent electrophotographic properties for a long period.
    • PCT No.PCT / JP93 / 00267 Sec。 371日期:1993年10月13日 102(e)1993年10月13日PCT 1993年3月3日PCT公布。 公开号WO93 / 18081 日期:1993年9月16日。聚碳酸酯和制备聚碳酸酯的方法,其包含由下列通式(I)表示的重复单元,其中R1和R2各自为卤素原子,烷基, 环烷基或芳基,a和b各自为0〜4的整数,X为单键,-O - , - CO - , - S - , - SO - , - SO 2 - , - CR 3 R 4 - (III),(IV)表示的端基,其中,R 1,R 2,R 3, R5为1〜30个碳原子的全氟烷基或取代全氟烷基,Y为-CH2-,e为0〜6的整数,Z为-O-,-CO-,-OCO-,-S-, -​​ SO - , - SO 2 - 或-NHCO-,f为0或1,R6为卤素原子,烷基,环烷基或芳基,c和d分别为满足c + = 5,c = 1〜5,d = 0〜4,以及电子照相感光体,其感光层含有 具体结构的聚碳酸酯作为组分。 电子照相感光体通过使用含有聚碳酸酯的涂布液而不发生浑浊(凝胶)而制造,并且实际上是有用的,因为它保持了优异的机械强度,例如高的板磨损和长时间的优异的电子照相特性。
    • 6. 发明授权
    • Medical image processing device, medical image processing method, and medical image processing program
    • 医疗图像处理装置,医学图像处理方法,医学图像处理程序
    • US08503746B2
    • 2013-08-06
    • US12993392
    • 2009-05-26
    • Tomohiro Nagao
    • Tomohiro Nagao
    • G06K9/00
    • A61B6/032G06T5/50G06T7/11G06T2207/10072G06T2207/30008G06T2207/30048
    • A medical image processing device etc. which supports work for precisely identifying the area of a diagnosis object from a medical image scanned by a medical imaging apparatus is provided.A CPU (11) of the medical image processing device (1) inputs image data and stores the same in a main memory (12) (S101).Next, the CPU (11) subjects the inputted image data to threshold processing (S102).Next, the CPU (11) stores, in the main memory (12), data obtained by separating the area of the high signal values of the binarized image data into a bone region and an angiographically scanned region (S103).Next, the CPU (11) identifies the contact area of the bone region and the angiographically scanned region from the data stored in the main memory (12) (S104).Next, the CPU (11) emphasizes the contact area stored in the main memory (12) at the S104 and displays the contact area on a display device (15) (S105).
    • 提供一种医疗图像处理装置等,其支持从由医学成像装置扫描的医学图像精确地识别诊断对象的区域的工作。 医疗图像处理装置(1)的CPU(11)输入图像数据并将其存储在主存储器(12)中(S101)。 接下来,CPU(11)对输入的图像数据进行阈值处理(S102)。 接下来,CPU(11)在主存储器(12)中存储通过将二值化图像数据的高信号值的区域分割为骨区域和血管造影扫描区域而获得的数据(S103)。 接下来,CPU(11)从存储在主存储器(12)中的数据中识别骨区域和血管造影扫描区域的接触面积(S104)。 接下来,CPU(11)在S104中强调存储在主存储器(12)中的接触区域,并在显示装置(15)上显示接触区域(S105)。
    • 7. 发明申请
    • IMAGE PROCESSING DEVICE AND IMAGE PROCESSING METHOD
    • 图像处理装置和图像处理方法
    • US20110221756A1
    • 2011-09-15
    • US13128567
    • 2009-11-10
    • Atsushi InoueTomohiro Nagao
    • Atsushi InoueTomohiro Nagao
    • G06T1/00
    • A61B5/1075A61B5/055A61B6/463A61B6/466A61B6/469A61B6/504A61B6/5217G06F19/00G06F19/321G06T19/00G06T2219/028
    • Provided is an image processing device capable of effectively displaying the details of a plurality of different branches included in a structure that is divided into a plurality of branches. An image processing device 100 reads the entire image of a coronary artery region, extracts a coronary artery region A from the read image data, displays the coronary artery region A, calculates cores 41, 42, and 43 of three coronary arteries A1, A2, and A3, and calculates the lengths of blood vessels. In addition, when an operator uses a GUI 33 that is displayed in parallel to the entire image of the coronary artery region A to designate an arbitrary scale position on the GUI 33, a CPU 101 calculates positions on the blood vessels A1, A2, and A3 corresponding to the designated scale position. The CPU 101 displays vertical tomographic images 321, 322, and 323 at the calculated corresponding positions in a detailed image display region 32.
    • 提供了能够有效地显示分割成多个分支的结构中包含的多个不同分支的细节的图像处理装置。 图像处理装置100读取冠状动脉区域的整体图像,从读取的图像数据中提取冠状动脉区域A,显示冠状动脉区域A,计算三个冠状动脉A1,A2的心脏41,42和43, 和A3,并计算血管的长度。 此外,当操作者使用平行于冠状动脉区域A的整个图像显示的GUI 33来指定GUI 33上的任意刻度位置时,CPU 101计算血管A1,A2和 A3对应于指定的刻度位置。 CPU 101在详细图像显示区域32中计算的对应位置处显示垂直断层图像321,322和323。