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    • 3. 发明申请
    • DEVICE FOR ON-LINE DATA ACQUISITION IN THREE-DEMENSIONAL POSITRON EMISSION TOMOGRAPHY
    • 三维数位摄影技术在三维数据采集中的设备
    • WO2005114255A3
    • 2007-06-07
    • PCT/US2005017172
    • 2005-05-16
    • SIEMENS MEDICAL SOLUTIONSJONES WILLIAM FREED JOHNNY
    • JONES WILLIAM FREED JOHNNY
    • G06K9/00G01T1/164G01T1/29
    • G01T1/2985A61B6/037G06T1/20
    • A device for improved on-line histogramming of data acquired in a Positron Emission Tomography (PET) scan. The device is a Smart DRAM (SD) PCI card, of which more than one can be used in combination within a PC-based architecture for on-line histogramming. The SD RMW PCI card is applied as either of a Gating Buffer, a histogramming card, and a normalization buffer. The Gating Buffer card alternately stores an arriving PET data packet stream into two dedicated DRAM banks. The two DRAM banks store and retransmit the packet stream in the order of arrival for an entire physiological cycle. The histogramming SD RMW PCI cards provide a very high rate of histogramming. The extendible daisy-chain of SD RMW PCI cards supports large memory banks across potentially hundreds of SD RMW PCI cards. Under a single PC, a multiple PCI Expansion chassis is employed such that a large number of PCI cards are supported.
    • 用于改进在正电子发射断层扫描(PET)扫描中获取的数据的在线直方图的装置。 该设备是智能DRAM(SD)PCI卡,其中多个可以在基于PC的架构中组合使用,用于在线直方图。 SD RMW PCI卡作为门控缓冲器,直方图卡和归一化缓冲器中的任何一个应用。 门控缓冲卡交替地将到达的PET数据分组流存储到两个专用DRAM组中。 两个DRAM银行以整个生理周期的顺序存储和重新发送分组流。 直方图SD RMW PCI卡提供非常高的直方图率。 SD RMW PCI卡的可扩展菊花链支持可能存在数百个SD RMW PCI卡的大型存储库。 在单个PC下,使用多个PCI扩展机箱,以支持大量的PCI卡。
    • 4. 发明申请
    • METHOD FOR APPLYING A LAYER OF MATERIAL TO THE SURFACE OF A NON-METALLIC SUBSTRATE
    • 用于将材料层施加到非金属衬底的表面的方法
    • WO2012006082A2
    • 2012-01-12
    • PCT/US2011042165
    • 2011-06-28
    • SIEMENS ENERGY INCJONES WILLIAM FHAN ZHAOHUIGARRETT RANDALL S
    • JONES WILLIAM FHAN ZHAOHUIGARRETT RANDALL S
    • C23C24/08
    • C23C24/04Y10T428/249921
    • A method is provided for applying a layer (112) of material to a surface of a non-metallic substrate (116) to enhance a performance characteristic. The method includes applying glass backing (114) to the non-metallic substrate (116) and cold spraying mica or boron nitride (BN) particles (128) onto a surface of the glass backing (114). A conductive tape is also provided, which is formed with the method. The conductive tape includes a first layer of an insulation material (114'), where the first layer is formed from a backing including a fiber-based or polymer backing with resilient and flexible properties for storage in a rolled form and a layer of mica particles or boron nitride particles. The conductive tape further includes a second layer (142') positioned over the layer of particles, and formed from an electrical conductor material
    • 提供了用于将材料层(112)施加到非金属基底(116)的表面以增强性能特性的方法。 该方法包括将玻璃背衬(114)施加到非金属基底(116)并且将云母或氮化硼(BN)颗粒(128)冷喷涂到玻璃背衬(114)的表面上。 还提供了用该方法形成的导电带。 导电带包括绝缘材料(114')的第一层,其中第一层由包括纤维基或聚合物背衬的背衬形成,所述背衬具有用于以卷形式存储的弹性和柔性特性和一层云母颗粒 或氮化硼颗粒。 导电带进一步包括位于颗粒层上并由电导体材料形成的第二层(142')