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    • 2. 发明授权
    • Avocado skinning and pulping device
    • 鳄梨皮和制浆装置
    • US08967039B2
    • 2015-03-03
    • US13443802
    • 2012-04-10
    • Richard Moore
    • Richard Moore
    • A23N7/08A47J17/00A23N1/02A23N7/10
    • A23N1/02A23N7/08A23N7/10
    • An Avocado Skinning and Pulping Device. The avocado pulper has two grip belts approximately oval in shape and further having a plurality of grip plates around the grip belts. The grip plates are knurled thereby facilitating a grasping of an avocado as it is conveyed into the grip belts and rides through to the rear opening. A pivotable and adjustable belt guide within an inner section of each grip belt is adapted to exert maximum squeezing pressure on the avocado at the approximate middle section of the grip belts at which point the grip belts are in approximate contact with one another. Pulp is thereby squeezed from the avocado. The grip belts separate at the approximate rear defining space for releasing the skin of the avocado. A de-seeder adjacent to the front end opening of the grip belts removes the seed from the avocado prior to its entry into the maximum squeezing section.
    • 鳄梨皮和造纸设备。 鳄梨碎浆机具有大致椭圆形的两个夹持带,并且还具有围绕握持带的多个抓握板。 抓握板被滚花,从而便于在被输送到抓握带中并骑过去到后开口时抓取鳄梨。 在每个握持带的内部部分内的可枢转和可调节的带引导件适于在抓握带的大致中间部分处对鳄梨施加最大挤压压力,此时把手带彼此大致接触。 因此,纸浆从鳄梨中挤出。 握把带在大致后方定义的空间处分开,以释放鳄梨的皮肤。 与抓握带的前端开口相邻的脱粒机在进入最大挤压部分之前将种子从鳄梨中除去。
    • 3. 发明授权
    • Automatic termination path configuration
    • 自动终止路径配置
    • US08547964B2
    • 2013-10-01
    • US12551533
    • 2009-08-31
    • Michael F. DeConcilisRichard Moore
    • Michael F. DeConcilisRichard Moore
    • H04L12/56
    • H04Q3/66H04M7/128H04Q2213/13141H04Q2213/13353
    • There is provided herein a system and method for automatic configuration of data routings for use with electronic data such as phone calls, faxes, etc. In an exemplary embodiment, when more than one carrier might potentially terminate the transmission, the carriers are ordered based on some screening criterion (e.g., transmission price). Data transmissions are then assigned to the carriers based on the sorting order, with the second place and lower carriers (e.g., the higher priced carriers) not being selected unless the first carrier cannot complete the transaction. The switch instructions necessary to implement this scheme may be generated automatically.
    • 这里提供了用于自动配置用于电子数据(例如电话呼叫,传真等)的数据路由的系统和方法。在示例性实施例中,当多于一个运营商可能潜在地终止传输时,基于 一些筛选标准(如传输价格)。 然后,基于排序顺序将数据传输分配给​​载波,除非第一载波不能完成交易,否则第二位和低载波(例如,较高价格的载波)不被选择。 可以自动生成实现该方案所需的切换指令。
    • 8. 发明申请
    • TOMOSYNTHESIS IMAGING SYSTEM AND METHOD
    • TOMOSYNTHESIS成像系统和方法
    • US20080232545A1
    • 2008-09-25
    • US12099416
    • 2008-04-08
    • Tao WuAlex StewartMartin StantonWalter PhillipsDaniel B. KopansRichard Moore
    • Tao WuAlex StewartMartin StantonWalter PhillipsDaniel B. KopansRichard Moore
    • A61B6/00
    • G06T11/006A61B6/025A61B6/502A61B6/583G01N23/04G06T2211/424G06T2211/436
    • A system for three-dimensional tomosynthesis imaging of a target element is provided having an image acquisition element and a processor. The image acquisition element obtains a plurality of images of the target element from a plurality of angles and includes a radiation source that is positionable at a plurality of angles with respect to the target element and a radiation detector. The radiation detector is positioned so as to detect radiation emitted by the radiation source passing through the target element and determine a plurality of attenuation values for radiation passing through the target element to establish a radiation absorbance projection image of the target element for a particular radiation source angle. The processor is configured to apply an iterative reconstruction algorithm to the radiation absorbance projection images of the target element obtained from a plurality of radiation source angles to generate a three-dimensional reconstruction of the target element. The system can gain further accuracy where the iterative reconstruction algorithm is applied using cone-beam forward projection and back projection.
    • 提供了具有图像采集元件和处理器的目标元件的三维断层合成成像系统。 图像采集元件从多个角度获得目标元件的多个图像,并且包括可相对于目标元件以多个角度定位的辐射源和放射线检测器。 放射线检测器被定位成检测通过目标元件的辐射源发射的辐射,并确定通过目标元件的辐射的多个衰减值,以建立用于特定辐射源的目标元件的辐射吸收投影图像 角度。 处理器被配置为对从多个辐射源角度获得的目标元件的辐射吸收投影图像应用迭代重建算法,以产生目标元素的三维重建。 在使用锥束前向投影和反投影应用迭代重建算法的情况下,系统可以获得进一步的准确性。