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    • 1. 发明授权
    • Resolution-dependent and color-dependent print masking
    • 分辨率依赖和颜色相关的打印屏蔽
    • US6033048A
    • 2000-03-07
    • US212009
    • 1998-12-15
    • Nicholas Nicoloff, Jr.Stephen K. GlassMark HickmanDonald G. HarrisMajid Azmoon
    • Nicholas Nicoloff, Jr.Stephen K. GlassMark HickmanDonald G. HarrisMajid Azmoon
    • B41J3/54B41J2/15B41J2/16B41J2/175B41J2/205B41J2/21B41J2/505B41J2/525G06K15/10B41J29/38
    • B41J2/17526B41J2/15B41J2/1752B41J2/2121B41J2/2125B41J2/2132B41J2/5056B41J2/525B41J3/54G06K15/107G06K2215/0094
    • At least two different printmasks are used for different printing devices--such as inkjet pens--that operate concurrently, or different printing steps that proceed concurrently, to produce respective image swaths in a single, pixel-based printing machine. In one form of the invention, the different printing devices produce different respective pixel-row pitches (related to resolution) on a printing medium, and the different printmasks help to minimize adverse patterning effects that result from interaction of the different pitches with dot-placement errors. The different pitches on the print medium may be provided through different pitches of marking devices (for example, the number of inkjet nozzles per unit distance along a pen) or in other ways. In another form of the invention the different printing devices are provided with different respective liquid-base colorants, to mark in different colors on a printing medium, and the different masks facilitate physical separation of the different colorants to promote drying. Earlier-applied colorants have more time to dry and penetrate before later adjacent or superposed application of other colorants improving print attributes such as bleed, offset, cockle, curl, overall drying time and throughput.
    • 至少两个不同的打印掩模用于不同的打印设备(例如同时进行的喷墨笔)或同时进行的不同打印步骤,以在单个基于像素的打印机中产生相应的图像条。 在本发明的一种形式中,不同的打印装置在打印介质上产生不同的相应的像素行间距(与分辨率相关),并且不同的打印掩模有助于最小化由不同间距与点位置的相互作用产生的不利图案化效果 错误。 打印介质上的不同间距可以通过标记装置的不同间距(例如,沿笔的每单位距离的喷墨喷嘴的数量)或以其它方式提供。 在本发明的另一种形式中,不同的印刷装置设置有不同的各自的液态着色剂,以在印刷介质上标记不同的颜色,并且不同的掩模促进不同着色剂的物理分离以促进干燥。 早期施用的着色剂在稍后相邻或叠加施加其它着色剂之前具有更多的时间干燥和渗透,从而改善印刷属性,例如渗色,偏移,起翘,卷曲,总干燥时间和生产量。
    • 4. 发明授权
    • Mixed-density print masking in a mixed-swath-height printer
    • 混合扫描高度打印机中的混合密度打印屏蔽
    • US6017113A
    • 2000-01-25
    • US968867
    • 1997-11-05
    • Nicholas Nicoloff, Jr.John M. SkeneJoseph H. BaumanDonald G. HarrisMajid Azmoon
    • Nicholas Nicoloff, Jr.John M. SkeneJoseph H. BaumanDonald G. HarrisMajid Azmoon
    • B41J2/16B41J2/175B41J2/21B41J2/505B41J3/54G06K15/10B41J2/145
    • B41J2/17526B41J2/1752B41J2/2132B41J2/5056B41J3/54G06K15/107
    • At least two different pixel densities are used for different printing devices--such as inkjet pens--that operate concurrently, or different printing steps that proceed concurrently, to produce respective image swaths in a single, pixel-based printing machine. The different print devices or steps produce image swaths of respective different swath heights. In one form of the invention, the taller-swath-height printing device operates at lower pixel density, spreading its colorant over a greater area while printing-medium advance keeps pace with operation of the shallower-swath-height printing device. This procedure allows more drying and penetrating time for the colorant applied by the taller-swath device, thereby improving print attributes such as bleed, offset, cockle, curl, overall drying time and throughput. In another form of the invention the taller-swath device operates at higher pixel density, providing physical and temporal separation of colorant application from the two printing devices--to avoid adverse interfering effects between reactive inks.
    • 至少两个不同的像素密度用于不同的打印装置,例如同时进行的喷墨笔,或同时进行的不同的打印步骤,以在单个基于像素的印刷机中产生相应的图像条。 不同的打印设备或步骤产生各个不同的扫描高度的图像条纹。 在本发明的一种形式中,较高的扫描高度打印设备以更低的像素密度工作,在较大的区域上扩展其着色剂,同时打印介质的前进跟随较浅的扫描高度打印设备的操作。 该方法允许由较高条带装置施加的着色剂的更多的干燥和穿透时间,从而改善打印属性,例如渗色,偏移,起翘,卷曲,总干燥时间和生产量。 在本发明的另一种形式中,较高的条带装置以更高的像素密度工作,从而提供着色剂应用与两个印刷装置的物理和时间分离,以避免反应性墨水之间的不利干扰效应。
    • 9. 发明授权
    • Dental implantation system and method
    • 牙植入系统及方法
    • US08936466B2
    • 2015-01-20
    • US13554267
    • 2012-07-20
    • Allen M. MoffsonMajid Azmoon
    • Allen M. MoffsonMajid Azmoon
    • A61C3/00A61C1/08A61C8/00A61B19/00A61B17/34
    • A61C1/084A61B6/14A61B90/11A61B90/16A61B90/39A61B2017/3407A61B2034/2059A61B2090/062A61B2090/363A61B2090/3966A61C8/0089Y10T29/49567
    • Drilling of an implant shaft is carried out with a handpiece tool whose location and angular orientation with respect to a radiographic working guide is updated in real time with respect to the radiographic working guide and anatomical structures of the patient, free of viewing obstructions. Prior to the drilling, the radiographic working guide is fitted to a particular patient. Real-time imaging support is provided on a display of a computer, wherein the radiographic workpiece guide includes a plurality of fiducial markers that define a substantially planar reference surface of the radiographic workpiece guide. The radiographic workpiece guide also includes an alignment structure located a predetermined distance from a pilot hole proximate the work site. The image is updated based on an initial radiographic scan and updated position information from the handpiece tool as to location and angular orientation of the handpiece tool relative to the workpiece guide.
    • 用手持工具进行植入物轴的钻孔,其相对于放射照相工作指南的位置和角度取向相对于放射线照相工作指南和患者的解剖结构实时更新,而不受观察障碍物的影响。 在钻探之前,将射线照相工作指南安装到特定的患者身上。 在计算机的显示器上提供实时成像支持,其中放射线照相工件引导件包括限定射线照相工件引导件的基本上平面的参考表面的多个基准标记。 射线照相工件引导件还包括位于距工作现场附近的导向孔预定距离的对准结构。 基于来自手持工具的初始放射线扫描和更新的位置信息,针对手持工具相对于工件引导件的位置和角度取向来更新图像。