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    • 2. 发明申请
    • METHODS AND APPARATUS FOR MANIPULATION AND/OR DETECTION OF BIOLOGICAL SAMPLES AND OTHER OBJECTS
    • 用于操纵和/或检测生物样本和其他对象的方法和装置
    • WO2005099419A9
    • 2005-12-01
    • PCT/US2005012719
    • 2005-04-13
    • HARVARD COLLEGEHAM DONHEEWESTERVELT ROBERTHUNT THOMASLIU YONGLEE HAKHO
    • HAM DONHEEWESTERVELT ROBERTHUNT THOMASLIU YONGLEE HAKHO
    • G01R33/30G01R33/465G01R33/56
    • G01R33/302B01L3/502761B01L2200/0668B01L2200/147B01L2300/0816B01L2300/0819B01L2300/0877B01L2300/1822B01L2300/1827B01L2400/043G01N15/1031G01N24/08G01N24/10G01R33/307G01R33/34092G01R33/3415G01R33/465G01R33/4808G01R33/5604
    • Methods and apparatus for manipulation, detection, imaging, characterization, sorting and/or assembly of biological or other materials, involving an integration of CMOS or other semiconductor-based technology and microfluidics. In one implementation, various components relating to the generation of electric and/or magnetic fields are implemented on an IC chip that is fabricated using standard protocols. The generated electric and/or magnetic fields are used to manipulate and/or detect one or more dielectric and/or magnetic particles and distinguish different types of particles. A microfluidic system is fabricated either directly on top of the IC chip, or as a separate entity that is then appropriately bonded to the IC chip, to facilitate the introduction and removal of cells in a biocompatible environment, or other particles/objects of interest suspended in a fluid. The patterned electric and/or magnetic fields generated by the IC chip can trap and move biological cells or other objects inside the microfluidic system. Electric and/or magnetic field generating components also may be controlled using signals of various frequencies so as to detect one or more cells, particles or objects of interest, and even the type of particle or object of interest, by measuring resonance characteristics associated with interactions between samples and one or more of the field-generating devices. Such systems may be employed in a variety of biological and medical related applications, including cell sorting and tissue assembly.
    • 用于操作,检测,成像,表征,分选和/或组装生物或其他材料的方法和装置,涉及CMOS或其他基于半导体的技术和微流体的集成。 在一个实现中,与使用标准协议制造的IC芯片上实现与电场和/或磁场的产生相关的各种组件。 产生的电场和/或磁场用于操纵和/或检测一个或多个电介质和/或磁性颗粒并区分不同类型的颗粒。 微流体系统直接制造在IC芯片的顶部上,或者作为独立的实体,然后适当地结合到IC芯片,以便促进在生物相容性环境中引入和去除细胞,或其它悬浮的粒子/物体 在流体中。 由IC芯片产生的图案化电场和/或磁场可以捕获并移动微流体系统内的生物细胞或其它物体。 可以使用各种频率的信号来控制电场和/或磁场产生组件,以便通过测量与相互作用相关联的共振特性来检测一个或多个感兴趣的细胞,颗粒或感兴趣的物体,甚至是感兴趣的粒子或物体的类型 样本和一个或多个场产生装置之间。 这样的系统可以用于各种生物和医学相关应用,包括细胞分选和组织组装。
    • 4. 发明申请
    • MEDIA STORAGE ORGANIZER AND METHOD FOR USING SAME
    • 媒体存储组织及其使用方法
    • WO2006076380A3
    • 2009-04-16
    • PCT/US2006000858
    • 2006-01-10
    • SPECTRUM CONCEPTS INCHUNT THOMAS
    • HUNT THOMAS
    • A47G29/00
    • G11B33/0461
    • A media storage organizer and method as disclosed relate to a storage device for attachment to a support structure to hold a collection of media objects in a side-by-side generally upright manner. At least one organizer mount secures a media object support transversely to the support structure and helps the support to move along a path of travel generally parallel to the plane of the media objects. A stop limits the forward movement of the support to a display position. In one embodiment, at lease one retainer may be disposed above the media object support and spaced from an end thereof for engaging a media object to help limit the number of media objects positioned on the media object support. The retainer enables the media object to lean at an angle over the retainer against the support structure while engaging the retainer, thereby providing a gap between two portions of the collection of media objects to facilitate viewing of the faces of a media object at the gap and to facilitate flipping of the media objects about their bottom edges for media object selection purposes.
    • 所公开的介质存储组织器和方法涉及一种用于附接到支撑结构以将大致直立方式并排的介质物体的集合保持的存储装置。 至少一个组织器支架横向于支撑结构固定介质对象支撑,并帮助支撑件沿着大致平行于介质物体的平面的行进路径移动。 停止将支撑件向前移动限制到显示位置。 在一个实施例中,至少一个保持器可以设置在介质对象支撑件上方并与其端部间隔开以接合介质对象以帮助限制定位在介质对象支撑件上的介质对象的数量。 保持器使得媒体对象能够在与保持器接合的同时以一定角度倾斜在支撑结构上,从而在媒体对象集合的两个部分之间提供间隙,以便于在间隙处观看媒体对象的面部,并且 以便于介质物体围绕其底部边缘的翻转,用于媒体对象选择目的。