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    • 3. 发明申请
    • Electroosmotic micropumps with applications to fluid dispensing and field sampling
    • 电渗雾微乳液,适用于流体分配和现场取样
    • US20050034842A1
    • 2005-02-17
    • US10638732
    • 2003-08-11
    • David HuberShuhuai YaoJuan Santiago
    • David HuberShuhuai YaoJuan Santiago
    • B01L3/02C01B5/00F04B19/00F28F7/00
    • C01B5/00B01L3/0241B01L2200/143B01L2300/069B01L2400/0418F04B19/006
    • Apparatus and methods according to the present invention preferably utilize electroosmotic pumps in fluid handling and field sampling applications. The electroosmotic pumps used in these applications are capable of generating high pressure and flow without moving mechanical parts and the associated generation of unacceptable electrical and acoustic noise, as well as the associated reduction in reliability. Having multiple small flow channels in parallel provides both a high flow rate and high pressure in liquid handling. These electroosmotic pumps are fabricated with materials and structures that improve performance, efficiency, and reduce weight and manufacturing cost relative to presently available micropumps. These electroosmotic pumps also allow for recapture of evolved gases and deposited materials, which may provide for long-term closed-loop operation. Apparatus and methods according to the present invention also allow active regulation of the fluid handling and field sampling devices through electrical control of the flow through the pump. Electroosmotic pumping enables precise dispensing of samples to form genetic, proteomic, or small molecule arrays. A fluid sensor which can be optical, capacitive or other type of electrical sensor is integrated with the electroosmotic pump for measuring liquid levels in liquid drawing and dispensing operations.
    • 根据本发明的设备和方法优选地在流体处理和现场取样应用中使用电渗泵。 在这些应用中使用的电渗泵能够在不移动机械部件的情况下产生高压力和流量,并且相关产生不可接受的电气和噪音噪声以及相关联的可靠性降低。 具有多个小流量通道并联提供液体处理中的高流速和高压力。 这些电渗泵由材料和结构制成,相对于目前可获得的微量泵,其材料和结构提高了性能,效率并降低了重量和制造成本。 这些电渗泵还允许重新捕获可能提供长期闭环操作的放出气体和沉积材料。 根据本发明的装置和方法还允许通过对通过泵的流的电控制来主动调节流体处理和现场取样装置。 电渗抽吸可以精确分配样品以形成遗传,蛋白质组或小分子阵列。 可以将光学,电容或其它类型的电传感器的流体传感器与电渗泵一体化,以测量液体抽取和分配操作中的液位。
    • 4. 发明申请
    • RELIEF MEMBER
    • 救济会员
    • US20120184886A1
    • 2012-07-19
    • US13375862
    • 2010-06-04
    • David HuberCraig Andrews
    • David HuberCraig Andrews
    • A61F5/01B23P17/04
    • A47C20/021A61G7/05715A61G7/0755Y10T29/49826
    • A relief member is described. The relief member is suitable for engaging a support member adapted to support a subject's body part and includes a relief member body which includes a body thickness and comprises a relief member body plane disposed along a selected body axis; and an engagement means integral with the relief member body and adapted to engage with a support member, the engagement means being movable between a first configuration and an engagement configuration, the engagement means in the first configuration being disposed within extremity boundaries of the body thickness or is disposed substantially within the same plane as the relief member body plane, and the engagement means when in the engagement configuration extending outside the extremity boundaries of the body thickness or outside the relief member body plane to releasably engage the relief member to the support member.
    • 描述了一个浮雕元件。 所述浮雕构件适于接合适于支撑被摄体的身体部分的支撑构件,并且包括包括主体厚度并包括沿着选定的身体轴线布置的浮雕构件主体平面的浮雕构件主体; 以及与所述浮雕构件主体一体并且适于与支撑构件接合的接合装置,所述接合装置可在第一构型和接合构造之间移动,所述接合装置在所述第一构造中设置在所述主体厚度的末端边界内, 基本上设置在与所述浮雕构件主体平面相同的平面内,并且所述接合装置在接合构造中延伸到所述主体厚度的所述末端边界之外或者在所述浮雕构件主体平面之外,以将所述浮雕构件可释放地接合到所述支撑构件。
    • 5. 发明申请
    • Continuous extended range image processing
    • 连续扩展范围图像处理
    • US20060269155A1
    • 2006-11-30
    • US11429958
    • 2006-05-09
    • Gene TenerBarry MattoxJennifer ParkJohn CowanWilliam HerzogHai-Wen ChenJames KaneDavid HuberTimothy Alderson
    • Gene TenerBarry MattoxJennifer ParkJohn CowanWilliam HerzogHai-Wen ChenJames KaneDavid HuberTimothy Alderson
    • G06K9/46
    • G06T3/4038G06T7/337G06T2200/32
    • Methods and systems for image processing are provided. A method for processing images of a scene includes receiving image data of a reference and a current frame; generating N motion vectors that describe motion of the image data within the scene by computing a correlation function on the reference and current frames at each of N registration points; registering the current frame based on the N motion vectors to produce a registered current frame; and updating the image data of the scene based on the registered current frame. Optionally, registered frames may be oversampled. Techniques for generating the N motion vectors according to roll, zoom, shift and optical flow calculations, updating image data of the scene according to switched and intermediate integration approaches, re-introducing smoothed motion into image data of the scene, re-initializing the process, and processing images of a scene and moving target within the scene are provided.
    • 提供了图像处理的方法和系统。 一种用于处理场景图像的方法包括:接收参考和当前帧的图像数据; 通过计算N个登记点中的每一个的参考和当前帧的相关函数,生成描述场景内的图像数据的运动的N个运动矢量; 基于N个运动矢量注册当前帧以产生注册的当前帧; 以及基于所登记的当前帧更新场景的图像数据。 可选地,可以对已注册的帧进行过采样。 用于根据滚动,缩放,移位和光流计算产生N个运动矢量的技术,根据切换和中间积分方法更新场景的图像数据,将平滑的运动重新引入到场景的图像数据中,重新初始化该过程 并且提供场景内的场景和移动目标的图像处理。
    • 7. 发明授权
    • Hydraulic power steering system with reservoir and method of operating same
    • 液压动力转向系统及其运行方法
    • US06832969B2
    • 2004-12-21
    • US09839914
    • 2001-04-20
    • John SaarinenDavid Huber
    • John SaarinenDavid Huber
    • B62D1106
    • F16H61/0025B62D5/062
    • An apparatus (10) comprises a hydraulic fluid operated automatic transmission (20) for transmitting motive power from an engine (22) of a vehicle (16) to drive wheels (24) of the vehicle. The apparatus (10) also includes a hydraulic fluid power assisted steering gear (12) for effecting steering movement of steerable wheels (14) of the vehicle (16), the steering gear including a fluid motor (19). The apparatus (10) includes one body of hydraulic fluid (30) for operating both the transmission (20) and the steering gear (12), and one reservoir (32). A transmission pump (40) connected with the reservoir (32) pumps fluid (30) between the reservoir and the transmission (20). A power steering pump (34) connected with the reservoir (32) pumps fluid (30) between the reservoir and the motor (19). One of the pumps (40, 34) is operative to pump fluid (30) between the reservoir (32) and a cooler (50).
    • 装置(10)包括用于将来自车辆(16)的发动机(22)的动力传递到车辆的驱动轮(24)的液压流体操作的自动变速器(20)。 该装置(10)还包括用于实现车辆(16)的可转向轮(14)的转向运动的液压流体动力辅助舵机(12),该转向装置包括一个流体马达(19)。 设备(10)包括用于操作变速器(20)和舵机(12)的一个液压流体(30)和一个储存器(32)。 与储存器(32)连接的传动泵(40)泵送储存器和变速器(20)之间的流体(30)。 与储存器(32)连接的动力转向泵(34)泵送储存器和电动机(19)之间的流体(30)。 泵(40,34)中的一个可操作地泵送储存器(32)和冷却器(50)之间的流体(30)。
    • 9. 发明授权
    • Tube rotator
    • 管旋转器
    • US09459268B2
    • 2016-10-04
    • US14468759
    • 2014-08-26
    • Marco BucherDavid Huber
    • Marco BucherDavid Huber
    • G01N35/02G01N35/00B01L9/06G06K7/10G01N35/04
    • G01N35/00732B01L9/06B01L2200/025G01N35/0099G01N35/026G01N2035/00772G01N2035/0413G06K7/10861Y10T436/113332
    • A tube rotator for rotating test tubes arranged in a tube rack as well as a system and process for reading information of machine-readable labels of the test tubes are disclosed. The tube rotator may comprise a pivoted lever having two lever arms, a friction wheel rotatably fixed to one lever arm and arranged to be brought in or out of contact with at least one test tube for rotating the test tube by friction. A first actuator may be rotatably coupled to the friction wheel, and a pretensioner which is capable of generating a pretensioning force may act on the lever for pivoting the lever in one pivoting direction. An eccentric may be rotatably fixed with respect to the base and arranged to roll off the other lever arm for pivoting the lever in another pivoting direction. A second actuator may be rotatably coupled to the eccentric.
    • 公开了一种用于旋转设置在管架中的试管的管旋转器以及用于读取试管的机器可读标签的信息的系统和过程。 管旋转器可以包括具有两个杠杆臂的枢转杠杆,摩擦轮可旋转地固定到一个杠杆臂并且布置成与至少一个试管接触或脱离接触,用于通过摩擦旋转试管。 第一致动器可以可旋转地联接到摩擦轮,并且能够产生预张紧力的预张紧器可以作用在杠杆上,以在一个枢转方向上枢转杠杆。 偏心体可以相对于基座可旋转地固定并且被布置成滚动另一个杠杆臂,以在另一个枢转方向上枢转杠杆。 第二致动器可以可旋转地联接到偏心轮。
    • 10. 发明授权
    • Visual attention and segmentation system
    • 视觉注意和分割系统
    • US08363939B1
    • 2013-01-29
    • US12214259
    • 2008-06-16
    • Deepak KhoslaDavid Huber
    • Deepak KhoslaDavid Huber
    • G06K9/00
    • G06K9/4623G06K9/3241
    • Described is a bio-inspired vision system for attention and object segmentation capable of computing attention for a natural scene, attending to regions in a scene in their rank of saliency, and extracting the boundary of an attended proto-object based on feature contours to segment the attended object. The attention module can work in both a bottom-up and a top-down mode, the latter allowing for directed searches for specific targets. The region growing module allows for object segmentation that has been shown to work under a variety of natural scenes that would be problematic for traditional object segmentation algorithms. The system can perform at multiple scales of object extraction and possesses a high degree of automation. Lastly, the system can be used by itself for stand-alone searching for salient objects in a scene, or as the front-end of an object recognition and online labeling system.
    • 描述了一种生物灵感的视觉系统,用于注意和对象分割,能够计算自然场景的注意力,参与场景中的显着性级别的区域,并且基于特征轮廓提取出现的原型对象的边界以分段 参加的对象。 注意模块可以同时工作在自下而上和自上而下的模式,后者允许定向搜索特定的目标。 区域增长模块允许已经显示在多种自然场景下工作的对象分割,这对于传统的对象分割算法是有问题的。 该系统可以在多个对象提取尺度下执行,并具有高度的自动化程度。 最后,该系统本身可以用于独立搜索场景中的显着对象,或者作为对象识别和在线标签系统的前端。