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    • 22. 发明授权
    • Just-in-time analytics on large file systems
    • 大型文件系统的即时分析
    • US09244975B2
    • 2016-01-26
    • US13328810
    • 2011-12-16
    • Gautam DasHao H. HuangSandor SzalayNan Zhang
    • Gautam DasHao H. HuangSandor SzalayNan Zhang
    • G06F17/30
    • G06F17/30442
    • As file systems reach the petabytes scale, users and administrators are increasingly interested in acquiring high-level analytical information for file management and analysis. Two particularly important tasks are the processing of aggregate and top-k queries which, unfortunately, cannot be quickly answered by hierarchical file systems such as ext3 and NTFS. Existing pre-processing based solutions, e.g., file system crawling and index building, consume a significant amount of time and space (for generating and maintaining the indexes) which in many cases cannot be justified by the infrequent usage of such solutions. User interests can often be sufficiently satisfied by approximate (i.e., statistically accurate) answers. A just-in-time sampling-based system can, after consuming a small number of disk accesses, produce extremely accurate answers for a broad class of aggregate and top-k queries over a file system without the requirement of any prior knowledge. The system is efficient, accurate and scalable.
    • 随着文件系统达到PB级,用户和管理员越来越有兴趣获取用于文件管理和分析的高级分析信息。 两个特别重要的任务是处理聚合和top-k查询,不幸的是不能通过分层文件系统(如ext3和NTFS)快速回答。 现有的基于预处理的解决方案,例如文件系统爬行和索引构建,消耗了大量的时间和空间(用于生成和维护索引),这在许多情况下不能被这种解决方案的频繁使用所证明。 用户兴趣通常可以通过近似(即统计准确的)答案来充分满足。 基于时间抽样的系统可以在消耗少量磁盘访问后,通过文件系统为广泛的聚合和顶级查询提供非常准确的答案,而无需任何先前的知识。 该系统是高效,准确和可扩展的。
    • 26. 发明申请
    • Positron Emission Tomography Block Detector Interconnect
    • 正电子发射断层扫描检测器互连
    • US20130062525A1
    • 2013-03-14
    • US13229797
    • 2011-09-12
    • James Frank CarubaNiraj K. DoshiJohn W. YoungNan Zhang
    • James Frank CarubaNiraj K. DoshiJohn W. YoungNan Zhang
    • G01T1/20G01T1/164
    • G01T1/1648
    • Using standard or “off the shelf” cable to interconnect between the PET block detector and the detector circuit may save substantial costs given the number of PMTs in a PET system. Given space constraints, simple maintenance with reduced risk of disturbing cabling is desired, making ongoing use of standard cabling without adding further cabling desired. To implement digital gain control, a further communication is provided between the PET detector block and the detector circuit. Since the standard cable may not have additional wires for such communications and to reduce timing degradation, the PMT signals are combined, such as generating position and energy signals at the PET detector block. The four PMT signals are reduced to three signals without reduction in function, allowing a fourth twisted pair of wires in a CAT5 cable to be used for digital gain control.
    • 使用标准或现货电缆在PET块检测器和检测器电路之间进行互连可以节省大量成本,因为PET系统中PMT的数量。 鉴于空间限制,需要简单的维护,减少干扰布线的风险,不断增加布线需求,不断使用标准布线。 为了实现数字增益控制,在PET检测器块和检测器电路之间提供进一步的通信。 由于标准电缆可能没有用于这种通信的附加电线并且减少定时劣化,所以组合PMT信号,例如在PET检测器块处产生位置和能量信号。 四个PMT信号减少到三个信号,而不会降低功能,允许CAT5电缆中的第四根双绞线用于数字增益控制。
    • 28. 发明申请
    • High Density, Proportional-Mode, APD Arrays for Individual Scintillator Readout in PET Applications
    • 高密度,比例模式,APD阵列用于PET应用中的单个闪烁读出
    • US20120112083A1
    • 2012-05-10
    • US12943164
    • 2010-11-10
    • Nan ZhangRonald GraziosoDebora HenselerMatthias J. Schmand
    • Nan ZhangRonald GraziosoDebora HenselerMatthias J. Schmand
    • G01T1/20
    • G01T1/1642A61B6/037
    • The present invention is a photodetector including improved photosensors configured of an array of small (sub-millimeter) high-density avalanche photodiode cells utilized to readout a single scintillator. Each photosensor comprises a plurality of avalanche photodiodes cells arranged in an (n×n) array of avalanche photodiode cells (where, n>1) that are coupled to a single scintillation crystal. The overall (n×n) array area as the photosensor is the same as the area of a face of the scintillator and each avalanche photodiode cell has a surface area that is not greater than one square millimeter. The photosensor is also configured to facilitate reading the output of each avalanche photodiode cell in the array. By reading out each small avalanche photodiode cell independently, the noise and capacitance are minimized and thereby provide a more accurate determination of energy and timing.
    • 本发明是一种光电检测器,其包括由用于读出单个闪烁体的小(亚毫米)高密度雪崩光电二极管阵列的阵列构成的改进的光电传感器。 每个光传感器包括以与单个闪烁晶体耦合的雪崩光电二极管单元(其中,n> 1)的(n×n)阵列排列的多个雪崩光电二极管单元。 作为光传感器的整体(n×n)阵列区域与闪烁体的面的面积相同,并且每个雪崩光电二极管单元的表面积不大于1平方毫米。 光传感器还被配置为便于读取阵列中每个雪崩光电二极管单元的输出。 通过独立地读出每个小雪崩光电二极管单元,噪声和电容被最小化,从而提供更准确的能量和时间的确定。