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    • 104. 发明申请
    • A DIRECT SCREW-DRIVEN CELL/BIOLOGICS FABRICATION HEAD FOR THE ASSEMBLY OF 3D TISSUE CONSTRUCTS
    • 一种用于3D组织构建的直接螺杆驱动的细胞/生物学制造头
    • WO2017143355A2
    • 2017-08-24
    • PCT/US2017/021265
    • 2017-03-08
    • SUNP BIOTECH, LLCSUN, WeiHAMID, Qudus
    • SUN, WeiHAMID, Qudus
    • C12N5/07
    • C12N5/0062C12N2533/74
    • Tissue generation have advanced tremendously in recent decades. Precision motion systems present a unique opportunity to establish new platforms to fabrication living tissue constructs. The key of successfully building a functional tissue construct, is having the right tool. In order to assemble cells into a functional array, the fabrication head must sustain cell life and have full control of the fluid/bio-suspension being printed. This article presents a direct screw-driven cell/biologics deposition fabrication head for the assembly of three-dimensional tissue constructs. This fabrication head is designed to be 100% biocompatible, sustain cell life, and has full control of mass flow rate with interchangeable nozzles.
    • 近几十年来,组织生成已经取得了巨大的进步。 精密运动系统为建立制造活组织结构的新平台提供了独特的机会。 成功构建功能性组织结构的关键是拥有正确的工具。 为了将细胞组装成功能性阵列,制造头必须维持细胞寿命并且完全控制正在印刷的流体/生物悬浮液。 本文介绍了一种用于组装三维组织结构的直接螺杆驱动的细胞/生物制剂沉积制造头。 这种制造头设计为100%生物相容性,可维持细胞寿命,并可通过可互换喷嘴完全控制质量流量。
    • 106. 发明申请
    • MULTIPROCESSOR SYSTEM AND METHOD OF SAVING ENERGY THEREIN
    • 多处理器系统及节能方法
    • WO2013001576A1
    • 2013-01-03
    • PCT/JP2011/003733
    • 2011-06-29
    • NEC CORPORATIONSUN, Wei
    • SUN, Wei
    • G06F9/48
    • G06F1/3287G06F1/3206G06F1/329G06F9/4843G06F9/4893G06F2209/483Y02D10/24Y02D50/20
    • A multiprocessor system comprises: a plurality of processors; a counting, measuring and calculating (CMC) unit that determines a generating rate of sleep tasks and a time length of each of the sleep tasks based on an acceptable delay; a sleep task generator that generates the sleep tasks with the time length at the generating rate, and injects the generated sleep tasks into a traffic for original tasks; and a scheduler that assigns both the original tasks and the sleep tasks in the traffic to the plurality of processors, wherein each of the sleep tasks switches off one of the plurality of processors, on which the sleep task is assigned. Power consumption in the multiprocessor system can be reduced and the average response time of tasks can be controlled.
    • 多处理器系统包括:多个处理器; 基于可接受的延迟来确定睡眠任务的生成速率和每个睡眠任务的时间长度的计数,测量和计算(CMC)单元; 休眠任务生成器,其以生成速率生成具有时间长度的睡眠任务,并将生成的睡眠任务注入用于原始任务的流量; 以及调度器,其将所述业务中的原始任务和睡眠任务两者分配给所述多个处理器,其中所述睡眠任务中的每一个关闭所述多个处理器中的一个,分配了所述睡眠任务。 可以减少多处理器系统中的功耗,并且可以控制任务的平均响应时间。
    • 110. 发明申请
    • METHOD, DISTRIBUTED SYSTEM AND COMPUTER PROGRAM FOR FAILURE RECOVERY
    • 方法,分布式系统和计算机程序的故障恢复
    • WO2011080910A3
    • 2011-08-18
    • PCT/JP2010007523
    • 2010-12-24
    • NEC CORPSUN WEI
    • SUN WEI
    • G06F11/20
    • G06F11/2041G06F11/1438G06F11/2025G06F11/2028G06F11/2046G06F11/2097
    • A distributed system (1) includes: a plurality of nodes (100) each having a memory (102), running distributed processes, and checkpointing to create checkpoint data for each process; a node selection unit (206) which selects spare nodes for future failure recovery for each process; an allocation unit (208) which allocates the checkpoint data to the spare nodes and to be transmitted to the spare nodes to make the spare nodes store the checkpoint data in the memories, respectively, before failure occurs; and a recovery unit (212) which selects one checkpoint data for recovery when at least one checkpoint data is suitable for recovery, to activate the selected checkpoint data to run a process on the spare node, or partitions the existing checkpoint data stored in the memory (102), when any one checkpoint data is not suitable for recovery, the partitions of the checkpoint data as a whole being integrated into a complete checkpoint data; and transmits the partitions respectively from the spare nodes to a new node, and to reorganize the transmitted partitions into a complete data to be activated to run a process on the new node.
    • 分布式系统(1)包括:多个节点(100),每个节点具有存储器(102),运行分布式过程以及检查点以为每个过程创建检查点数据; 节点选择单元(206),其为每个进程选择用于未来故障恢复的备用节点; 分配单元(208),其在发生故障之前将检查点数据分配给所述备用节点并且将所述检查点数据发送到所述备用节点,以使所述备用节点分别将检查点数据存储在所述存储器中; 以及恢复单元(212),当至少一个检查点数据适于恢复时,选择一个检查点数据用于恢复,激活所选检查点数据以在备用节点上运行进程,或者将存储在存储器中的现有检查点数据 (102)中,当任何一个检查点数据不适合于恢复时,将检查点数据的分区作为整体集成到完整的检查点数据中; 并将分区分别从备用节点传输到新节点,并将传输的分区重新组织成完整的数据以被激活,以在新节点上运行进程。