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    • 2. 发明授权
    • Method for identifying implanted reconstructive prosthetic devices
    • 识别植入式重建假体装置的方法
    • US08249318B2
    • 2012-08-21
    • US12239531
    • 2008-09-26
    • Mike SchmittTroy S. BergquistBrian Smithgall
    • Mike SchmittTroy S. BergquistBrian Smithgall
    • G06K9/00G01B11/30A61B5/05
    • G06K9/6276G06K9/6253G06K9/629G06K2209/055
    • A method for identifying implanted reconstructive prosthetic devices comprising obtaining a digital radiographic image of a prosthetic implant that has been implanted in a person or animal for which the manufacturer and/or model is unknown; allowing a user to enter into a computer metadata relating to the implant for use as metadata feature values; cleaning up the unknown implant image; rotating, flipping and/or scaling the unknown implant image; extracting features from the unknown implant image according to one or more feature extraction algorithms; and comparing the metadata and extracted feature values for the unknown implant image to feature values for other implant images according to a comparison algorithm to create an overall likelihood score for each of the other implant images.
    • 一种用于识别植入的重建假体装置的方法,包括获得植入在制造商和/或模型未知的人或动物中的假体植入物的数字放射照相图像; 允许用户输入与植入物相关的计算机元数据作为元数据特征值; 清理未知的植入物图像; 旋转,翻转和/或缩放未知植入物图像; 根据一种或多种特征提取算法从未知植入物图像提取特征; 以及根据比较算法将未知植入物图像的元数据和提取的特征值与其他植入物图像的特征值进行比较,以创建每个其他植入物图像的总体似然分数。
    • 4. 发明申请
    • METHOD FOR IDENTIFYING IMPLANTED RECONSTRUCTIVE PROSTHETIC DEVICES
    • 用于识别植入式重构假设装置的方法
    • US20100080426A1
    • 2010-04-01
    • US12239531
    • 2008-09-26
    • Mike SchmittTroy S. BergquistBrian Smithgall
    • Mike SchmittTroy S. BergquistBrian Smithgall
    • G06K9/00
    • G06K9/6276G06K9/6253G06K9/629G06K2209/055
    • A method for identifying implanted reconstructive prosthetic devices comprising obtaining a digital radiographic image of a prosthetic implant that has been implanted in a person or animal for which the manufacturer and/or model is unknown; allowing a user to enter into a computer metadata relating to the implant for use as metadata feature values; cleaning up the unknown implant image; rotating, flipping and/or scaling the unknown implant image; extracting features from the unknown implant image according to one or more feature extraction algorithms; and comparing the metadata and extracted feature values for the unknown implant image to feature values for other implant images according to a comparison algorithm to create an overall likelihood score for each of the other implant images.
    • 一种用于识别植入的重建假体装置的方法,包括获得植入在制造商和/或模型未知的人或动物中的假体植入物的数字放射照相图像; 允许用户输入与植入物相关的计算机元数据作为元数据特征值; 清理未知的植入物图像; 旋转,翻转和/或缩放未知植入物图像; 根据一种或多种特征提取算法从未知植入物图像提取特征; 以及根据比较算法将未知植入物图像的元数据和提取的特征值与其他植入物图像的特征值进行比较,以创建每个其他植入物图像的总体似然分数。
    • 5. 发明授权
    • Process for producing functional vitreous layers
    • 生产功能性玻璃体层的方法
    • US5731091A
    • 1998-03-24
    • US635971
    • 1996-08-01
    • Helmut SchmidtMartin MennigThomas BurkhartClaudia Fink-StraubeGerhard JonschkerMike SchmittAnnette Bauer
    • Helmut SchmidtMartin MennigThomas BurkhartClaudia Fink-StraubeGerhard JonschkerMike SchmittAnnette Bauer
    • C03C14/00C03C17/00C03C17/30C04B41/50C04B41/86C23C18/12B05D5/06
    • C03C14/004C03C14/006C03C14/008C03C17/007C03C17/008C03C17/009C04B41/5022C04B41/86C03C2214/32C03C2217/485C03C2217/92
    • To produce functional vitrous, preferably colored or colloid-dyed layers, a composition produced by hydrolysis and polycondensation of (A) at least on hydrolyzable silane of general formula (I) SiX.sub.4 (I) wherein the radicals X are the same or different and represent hydrolyzable groups or hydroxy groups, or an oligomer derived therefrom, and (B) at least one organosilane of general formula (II) R.sup.1.sub.a R.sup.2.sub.b SiX.sub.(4-a-b) (II) wherein R.sup.1 is a non-hydrolyzable radical, R.sup.2 represents a radical carrying a functional group, X has the meaning given above, and a and b have the values 0, 1, 2 or 3, the sum (a+b) having the values 1, 2 or 3, or an oligomer derived therefrom with an (A):(B) substance ratio of 5-50:50-95, and optionally (C) one or more compounds of glass-forming elements, is mixed with at least one function carrier from the group of temperature-stable dyes or pigments, metallic or non-metallic oxides, coloring metallic ions, metallic or metallic compound colloids, and metal ions that react under reduction conditions to form metallic colloids; the composition mixed with the function carrier is applied onto a substrate and the coating is thermally condensed to form a vitreous layer.
    • PCT No.PCT / EP94 / 03423 Sec。 371日期:1996年8月1日 102(e)日期1996年8月1日PCT 1994年10月18日PCT PCT。 公开号WO95 / 13249 日期1995年5月18日为了生产功能性玻璃色,优选着色或胶体染色层,通过(A)至少在通式(I)SiX 4(I)的可水解硅烷上进行水解和缩聚制备的组合物,其中基团X相同 或者不同,表示可水解基团或羟基,或由其衍生的低聚物,和(B)至少一种通式(II)的有机硅烷R 1 a R 2 b SiX(4-ab)(II)其中R 1是不可水解的基团, 带有官能团的基团X具有上述含义,a和b具有值0,1,2或3,具有值1,2或3的和(a + b)或由其衍生的低聚物 (A):(B)的物质比例为5-50:50-95,和任选的(C)一种或多种玻璃形成元素化合物,与至少一种功能性载体从温度稳定的 染料或颜料,金属或非金属氧化物,着色金属离子,金属或金属化合物胶体和金属 在还原条件下反应形成金属胶体的离子; 将与功能性载体混合的组合物施加到基材上,并将涂层热凝聚以形成玻璃质层。