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    • 1. 发明申请
    • SCHEDULE OPTIMIZATION AND ONLINE BOOKING SYSTEM FOR HEALTHCARE PRACTICES
    • 附表优化和在线预约系统的健康实践
    • US20150269328A1
    • 2015-09-24
    • US14221415
    • 2014-03-21
    • Paul WileyMatthew LevineAaron Lloyd
    • Paul WileyMatthew LevineAaron Lloyd
    • G06F19/00
    • G16H40/20
    • A system and/or process for scheduling patients in a medical practice may be adapted to achieve a set of predetermined scheduling goals of the practice. Such a system may involve collecting a set of scoring parameters for scoring a patient and assigning a numerical quantity to each scoring parameter according to a set of predetermined scoring rules. A patient score may be calculated as an average of the scoring parameters. A set of patient score ranges may be defined to categorize patients into a set of classes (i.e. patient buckets) based on their score. Time ranges may be defined relative to the present time (i.e. time of scheduling) wherein each range is associated with a set of scheduling rules governing the allowed ratio of patients from each patient bucket. A patient may be assigned to a given appointment time slot provided that no scheduling rules are violated thereby.
    • 用于在医疗实践中调度患者的系统和/或过程可以适于实现一组预定的调度目标。 这样的系统可以包括收集用于对患者进行评分的评分参数集合,并且根据一组预定评分规则将数值分配给每个评分参数。 患者得分可以作为评分参数的平均值计算。 可以定义一组患者得分范围,以根据患者的得分将患者分类为一组(即患者水桶)。 可以相对于当前时间(即,调度时间)来定义时间范围,其中每个范围与一组控制来自每个患者桶的患者的允许比例的调度规则相关联。 如果没有违反调度规则,则可以将患者分配给给定的约定时隙。
    • 5. 发明授权
    • Method and apparatus for incorporating a miller compensation for
modeling electrical circuits
    • 用于结合用于建模电路的铣刀补偿的方法和装置
    • US5796985A
    • 1998-08-18
    • US639393
    • 1996-04-29
    • Peter R. O'BrienRichard Paul Wiley
    • Peter R. O'BrienRichard Paul Wiley
    • G06F17/50
    • G06F17/5022
    • A data processing system which calculates timing delays in a circuit having a switching device (3). A computer processor (22) receives input describing a circuit and calculates the timing delays for each switching device (3) or stage. To perform each calculation the computer processor (22) models the circuit incorporating effective resistance R.sub.eff (24), Miller capacitance C.sub..mu. (7), and an associated Miller coefficient. The Miller coefficient is a defined by the behaviour of the model. The model is then reduced to a set of equations, the variables are determined, and the timing delay calculated. In one embodiment, successive stages are calculated to locate timing violations in circuit design. In alternate embodiments, models such as CRYSTAL (4) or the Sakurai model are enhanced by Miller capacitance considerations, however many other models may be used.
    • 一种用于计算具有开关装置(3)的电路中的定时延迟的数据处理系统。 计算机处理器(22)接收描述电路的输入并计算每个开关装置(3)或级的定时延迟。 为了执行每个计算,计算机处理器(22)对包含有效电阻Reff(24),米勒电容C mu(7)和相关的米勒系数的电路建模。 米勒系数是由模型的行为定义的。 然后将模型简化为一组方程,确定变量,并计算定时延迟。 在一个实施例中,计算连续级以定位电路设计中的定时违规。 在替代实施例中,诸如CRYSTAL(4)或Sakurai模型的模型通过米勒电容考虑增强,然而可以使用许多其它模型。
    • 7. 发明授权
    • Max entropy optimized retinal camera
    • 最大熵优化的视网膜摄像机
    • US07587097B2
    • 2009-09-08
    • US12050029
    • 2008-03-17
    • Paul Wiley TruittPeter Soliz
    • Paul Wiley TruittPeter Soliz
    • G06K9/40G06K9/54
    • A61B3/14A61B3/12
    • An enhanced entropy camera provides enhanced image quality by utilizing a custom analog-to-digital conversion function. The analog-to-digital conversion occurs according to a custom non-linear quantization function that provides enhanced entropy in the digitized image, yet avoids the harsh artifacts that tend to arise in images quantized according to a maximum entropy function. A plurality of custom non-linear functions are made available for selection depending upon imaging conditions, such as light intensity, pigmentation of the retina, or the part of the retina being imaged. Each of the plural non-linear quantization function comprises a distinct non-linear look up table for each of plural bands (e.g., red, green, and blue color channels).
    • 增强熵相机通过使用定制的模数转换功能提供增强的图像质量。 根据在数字化图像中提供增强熵的定制非线性量化函数进行模数转换,但是避免了根据最大熵函数量化的图像中倾向于出现的刺激性伪影。 根据诸如光强度,视网膜的色素沉着或被成像的视网膜的部分的成像条件,多个定制的非线性功能可用于选择。 多个非线性量化函数中的每一个包括用于多个频带(例如,红色,绿色和蓝色频道)中的每一个的不同的非线性查询表。
    • 8. 发明授权
    • Max entropy optimized retinal camera
    • 最大熵优化的视网膜摄像机
    • US07433532B2
    • 2008-10-07
    • US10428320
    • 2003-05-01
    • Paul Wiley TruittPeter Soliz
    • Paul Wiley TruittPeter Soliz
    • G06K9/40
    • A61B3/14A61B3/12
    • An enhanced entropy camera provides enhanced image quality by utilizing a custom analog-to-digital conversion function. The analog-to-digital conversion occurs according to a custom non-linear quantization function that provides enhanced entropy in the digitized image, yet avoids the harsh artifacts that tend to arise in images quantized according to a maximum entropy function. A plurality of custom non-linear functions are made available for selection depending upon imaging conditions, such as light intensity, pigmentation of the retina, or the part of the retina being imaged. Each of the plural non-linear quantization function comprises a distinct non-linear look up table for each of plural bands (e.g., red, green, and blue color channels).
    • 增强熵相机通过使用定制的模数转换功能提供增强的图像质量。 根据在数字化图像中提供增强熵的定制非线性量化函数进行模数转换,但是避免了根据最大熵函数量化的图像中倾向于出现的刺激性伪影。 根据诸如光强度,视网膜的色素沉着或被成像的视网膜的部分的成像条件,多个定制的非线性功能可用于选择。 多个非线性量化函数中的每一个包括用于多个频带(例如,红色,绿色和蓝色频道)中的每一个的不同的非线性查询表。
    • 9. 发明授权
    • Hyperspectral retinal imager
    • 高光谱视网膜成像仪
    • US06992775B2
    • 2006-01-31
    • US10651491
    • 2003-08-29
    • Peter SolizLeonard John Otten, IIIPaul Wiley Truitt
    • Peter SolizLeonard John Otten, IIIPaul Wiley Truitt
    • G01B9/02
    • G01J3/453A61B3/12G01J3/28G01J3/2823
    • An ophthalmic instrument (for obtaining high resolution, wide field of area hyperspectral retinal images for various sized eyes) includes a fundus retinal imager, (which includes optics for illuminating and imaging the retina of the eye); apparatus for generating a real time image of the area being imaged and the location of the hyperspectral region of interest; a high efficiency spatially modulated common path Fourier transform hyperspectral imager, a high resolution detector optically coupled to the hyperspectral and fundus imager optics; and a computer (which is connected to the real time scene imager, the illumination source, and the high resolution camera) including an algorithm for recovery and calibration of the hyperspectral images.
    • 一种眼科仪器(用于获得高分辨率,宽范围的各种大小眼睛的高光谱视网膜图像)包括眼底视网膜成像仪(其包括用于照射和成像眼睛视网膜的光学器件); 用于生成被成像区域的实时图像和感兴趣的高光谱区域的位置的装置; 高效率空间调制共路径傅里叶变换超光谱成像仪,高分辨率检测器,光学耦合到高光谱和眼底成像光学器件; 以及包括用于高光谱图像的恢复和校准的算法的计算机(连接到实时场景成像器,照明源和高分辨率相机)。
    • 10. 发明授权
    • Method and assembly for installation or removal of printed circuit card
    • 安装或拆卸印刷电路卡的方法和装配
    • US06496385B1
    • 2002-12-17
    • US09408657
    • 1999-09-29
    • Stephen D. SmithsonBruce GarrettRoger RamseierSteve J. DeanPaul Wiley
    • Stephen D. SmithsonBruce GarrettRoger RamseierSteve J. DeanPaul Wiley
    • H05K710
    • H05K7/1461
    • A printed circuit card carrier permits exchange of a card during continuous operation of electronic equipment, and thus without the need to remove an upper part of the enclosure to gain access to the card for upward removal from a motherboard connector. The carrier includes a movable printed circuit card holder that slides along the carrier, perpendicularly towards and away from the motherboard. An actuator accessible from outside the equipment and the holder are coupled together such that motion of the actuator is directed into perpendicular sliding motion of the holder. This either removes the printed circuit card from the motherboard connector or installs it into connector, depending on the direction of motion of the actuator. The carrier is particularly adapted for cards meeting the PCI standard.
    • 印刷电路卡载体允许在电子设备的连续操作期间交换卡,因此不需要移除外壳的上部以获得对卡的访问以从母板连接器向上移除。 载体包括可移动的印刷电路卡保持器,其沿着载体垂直地朝向和远离主板滑动。 从设备外部和保持器可接近的致动器联接在一起,使得致动器的运动被引导到保持器的垂直滑动运动。 这可以从主板连接器移除印刷电路板,或者根据执行器的运动方向将其安装到连接器中。 运营商特别适用于符合PCI标准的卡。