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    • 1. 发明申请
    • Contact lens fabrication method and tool
    • 隐形眼镜制造方法和工具
    • US20090166905A1
    • 2009-07-02
    • US12003807
    • 2008-01-02
    • Cheng-Hsiu Chen
    • Cheng-Hsiu Chen
    • B29D11/00
    • B29D11/00038B29D11/00576
    • A contact lens fabrication method of fabrication a contact lens by means of: pressing a male molding block of a supplementary tool into a cavity of a mold to squeeze a contact lens material into shape and to simultaneously cut off an excessive part of the contact lens material from a contact lens by means of a cut angle of sharp edge of the mold, and then curing the contact lens, and then separating the supplementary tool from the mold to have the contact lens be adhered to the surface of the male molding block, and then filling a buffer solution into the supplementary tool to have the contact lens be dipped in the buffer solution after quality examination of the contact lens, and then sealing a sealing film to the supplementary tool to form a finished contact lens product for sale.
    • 一种隐形眼镜制造方法,其通过以下方式制造隐形眼镜:将辅助工具的阳模型块压入模具的腔体中以将隐形眼镜材料挤压成形并同时切除隐形眼镜材料的过多部分 从隐形眼镜通过模具的锋利边缘的切割角度,然后固化隐形眼镜,然后将辅助工具与模具分离,以使隐形眼镜粘附到阳模压块的表面,以及 然后将缓冲溶液填充到补充工具中,以在隐形眼镜质量检查之后将隐形眼镜浸入缓冲溶液中,然后将密封膜密封到辅助工具以形成成品出售的成品隐形眼镜产品。
    • 2. 发明授权
    • Laser laminar structure and method of manufacturing the same
    • 激光层状结构及其制造方法
    • US06679968B2
    • 2004-01-20
    • US09909723
    • 2001-07-19
    • Cheng-Hsiu Chen
    • Cheng-Hsiu Chen
    • B44C1165
    • B32B3/30B32B15/08B32B15/20B32B27/08B32B2307/30Y10T428/2457
    • A laser laminar structure is formed by coating each side of a thin substrate with a bonding resin layer, and then coating each bonding resin layer with a molding resin layer; attaching a transparent laser film provided with fine grooves of a laser image presenting figure, characters or logos to an outer surface of each molding resin layer, so that each molding resin layer is formed at superficial portion with fine lines corresponding to the fine grooves of the laser image on the laser film; baking the molding resin layers at high temperature to harden the fine lines formed thereon; and releasing the transparent laser films from the molding resin layers to provide a thermostable laser laminar structure.
    • 通过用粘合树脂层涂覆薄基板的每一面,然后用模制树脂层涂覆每个粘合树脂层来形成激光层状结构; 在每个模塑树脂层的外表面上附着一个透明激光膜,该透明激光膜具有呈现图形,字符或标志的激光图像的细槽,使得每个模制树脂层在表面部分形成有与微细凹槽 激光胶片上的激光图像; 在高温下烘烤模塑树脂层以硬化其上形成的细线; 并从模塑树脂层中释放透明激光膜,以提供耐热激光层状结构。
    • 7. 发明授权
    • Automatic pre-alignment for registration of medical images
    • 自动预校准用于医学图像的注册
    • US08553961B2
    • 2013-10-08
    • US13054109
    • 2009-07-20
    • Yang-Ming ZhuSteven M. CochoffCheng-Hsiu Chen
    • Yang-Ming ZhuSteven M. CochoffCheng-Hsiu Chen
    • G06K9/00G06K9/46
    • G06T7/38G06T2200/04G06T2207/10081G06T2207/10104G06T2207/10136G06T2207/20076G06T2207/30196
    • In image registration, a similarity measure is computed of first and second images (4, 6) offset at a plurality of relative axial offsets (30). A starting relative axial offset (40) between the first and second images is identified based on the computed similarity measures. An iterative image registration process is performed to relatively register the first and second images (4, 6) using the identified starting relative axial offset between the first and second images as an initial condition for the iterative image registration process. A starting relative in-slice offset (42) may also be identified as an in-slice offset effective to align corresponding slices of the first and second images (4, 6) offset at the starting relative axial offset (40), the identified starting relative in-slice offset also being used as an initial condition for the iterative image registration process.
    • 在图像配准中,计算在多个相对轴向偏移(30)处偏移的第一和第二图像(4,6)的相似性度量。 基于所计算的相似性度量来识别第一和第二图像之间的起始相对轴向偏移(40)。 执行迭代图像注册处理以使用所识别的第一和第二图像之间的起始相对轴向偏移来相对地注册第一和第二图像(4,6)作为迭代图像注册处理的初始条件。 起始相对片内偏移(42)也可以被识别为有效地对准在起始相对轴向偏移(40)处偏移的第一和第二图像(4,6)的对应切片的片内偏移,所识别的起始 相对片内偏移也被用作迭代图像配准过程的初始条件。
    • 9. 发明申请
    • Method of fabricating holographic contact lens
    • 制造全息隐形眼镜的方法
    • US20060012752A1
    • 2006-01-19
    • US10949407
    • 2004-09-27
    • Cheng-Hsiu Chen
    • Cheng-Hsiu Chen
    • G02C7/02
    • B29D11/00038B29D11/00317
    • A method of fabricating holographic colored contact lens is provided. A lens-making mold having multiple micro-lines on the peripheral surface is used to fabricate the contact lens and at the same time the micro-line pattern is copied onto the contact lens to form a light interference zone, which causes light waves to break up to produce light diffraction around the eyes, such that a holographic impression of a person's eyes can be created through the lenses. The perceived eyes through the lenses change color when looking from a different angle. This contact lens makes use of grating diffraction principles to impart colors on the eyes of a person wearing the contact lenses, without using any chemical colorants in the lens-making process; therefore wearing such contact lens is much healthier as opposed to a conventional colored contact lens.
    • 提供制造全息彩色隐形眼镜的方法。 使用在外周表面具有多个微细线的透镜制造模具来制造隐形眼镜,并且同时将微线图案复制到隐形眼镜上以形成光线干涉区域,这导致光波破裂 以产生围绕眼睛的光衍射,使得可以通过透镜产生人的眼睛的全息印象。 当从不同角度观察时,透过透镜的感觉到的眼睛会改变颜色。 该隐形眼镜利用光栅衍射原理在佩戴隐形眼镜的人的眼睛上赋予颜色,而在镜片制造过程中不使用任何化学着色剂; 因此与常规的有色隐形眼镜相反,佩戴这样的隐形眼镜是更健康的。
    • 10. 发明申请
    • AUTOMATIC PRE-ALIGNMENT FOR REGISTRATION OF MEDICAL IMAGES
    • 医学图像注册的自动预对齐
    • US20110116701A1
    • 2011-05-19
    • US13054109
    • 2009-07-20
    • Yang-Ming ZhuSteven M. CochoffCheng-Hsiu Chen
    • Yang-Ming ZhuSteven M. CochoffCheng-Hsiu Chen
    • G06K9/32G06K9/00
    • G06T7/38G06T2200/04G06T2207/10081G06T2207/10104G06T2207/10136G06T2207/20076G06T2207/30196
    • In image registration, a similarity measure is computed of first and second images (4, 6) offset at a plurality of relative axial offsets (30). A starting relative axial offset (40) between the first and second images is identified based on the computed similarity measures. An iterative image registration process is performed to relatively register the first and second images (4, 6) using the identified starting relative axial offset between the first and second images as an initial condition for the iterative image registration process. A starting relative in-slice offset (42) may also be identified as an in-slice offset effective to align corresponding slices of the first and second images (4, 6) offset at the starting relative axial offset (40), the identified starting relative in-slice offset also being used as an initial condition for the iterative image registration process.
    • 在图像配准中,计算在多个相对轴向偏移(30)处偏移的第一和第二图像(4,6)的相似性度量。 基于所计算的相似性度量来识别第一和第二图像之间的起始相对轴向偏移(40)。 执行迭代图像注册处理以使用所识别的第一和第二图像之间的起始相对轴向偏移来相对地注册第一和第二图像(4,6)作为迭代图像注册处理的初始条件。 起始相对片内偏移(42)也可以被识别为有效地对准在起始相对轴向偏移(40)处偏移的第一和第二图像(4,6)的对应切片的片内偏移,所识别的起始 相对片内偏移也被用作迭代图像配准过程的初始条件。