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    • 4. 发明申请
    • GRIN LENS MICROSCOPE SYSTEM
    • GRIN LENS MICROSCOPE系统
    • WO2009089538A3
    • 2009-11-19
    • PCT/US2009030758
    • 2009-01-12
    • STERLING LCJACOBSEN STEPHEN CMARCEAU DAVID P
    • JACOBSEN STEPHEN CMARCEAU DAVID P
    • G02B21/00G02B3/00G02B9/00G02B13/00G02B21/02G02B25/00
    • G02B21/0008A61B1/00188G02B3/0087G02B6/08G02B6/32G02B21/36G02B23/2407
    • A device for magnifying an object comprising an SSID (15) having at least one imaging array disposed on a distal end (16) thereof. The device further comprises a first optical element (20) disposed on the distal end (16) of the SSID (15) wherein the first optical element (20) has a distal end (21) and a proximal end (22) defining a first longitudinal length. A GRIN lens (25) is disposed on the distal end (21) of the first optical element (20) and a second optical element (30) is disposed on the distal end (21) of the GRIN lens (25) defining a second longitudinal length. The first longitudinal length and the second longitudinal length are configured such that when viewing the object at a predetermined wavelength of light, the object is magnified at a predetermined level of magnification and the focal plane of the magnified object is aligned at the proximal end (22) of the first optical element (20).
    • 一种用于放大对象​​的装置,包括具有设置在其远端(16)上的至少一个成像阵列的SSID(15)。 该装置还包括设置在SSID(15)的远端(16)上的第一光学元件(20),其中第一光学元件(20)具有远端(21)和近端(22),其限定第一 纵长。 GRIN透镜(25)设置在第一光学元件(20)的远端(21)上,并且第二光学元件(30)设置在GRIN透镜(25)的远端(21)上,限定第二光学元件 纵长。 第一纵向长度和第二纵向长度被构造成使得当以预定波长的光线观察物体时,物体以预定的放大倍率放大,并且放大对象的焦平面在近端(22)处对准 )的第一光学元件(20)。
    • 9. 发明申请
    • METHOD FOR MANUFACTURING A COMPLEX STRUCTURE
    • 制造复杂结构的方法
    • WO2008137953A8
    • 2008-12-24
    • PCT/US2008062945
    • 2008-05-07
    • RAYTHEON SARCOS LLCJACOBSEN STEPHEN CMARCEAU DAVID
    • JACOBSEN STEPHEN CMARCEAU DAVID
    • A61M25/09A61B1/005B25J18/00
    • A61M25/09A61M2025/09108Y10T29/49002Y10T29/49826Y10T428/24033
    • A method for manufacturing a complex structure from a two-dimensional layout, the method comprising: (a) obtaining a support plate (40) having a pre-determined, patterned recess (48) formed in a surface thereof; (b) depositing a first series of individual flexible interconnects (70) into the recess, the flexible interconnects being aligned parallel to one another in a common plane and supported by the support plate; (c) adhering, with adhering means, at least one rigid member (102) to each of the flexible interconnects of the first series; (d) adhering, with adhering means, a second series of individual flexible interconnects (132) to the rigid members to form a plurality of stations, wherein each of the second series of flexible interconnects is adhered to two rigid members of adjacent flexible interconnects of the first series, the flexible interconnects of the second series being formed perpendicular to the flexible interconnects of the first series; (e) curing the adhering means to form an assembled, layered structure; (f) removing the layered structure from the support plate; and (g) folding, systematically, the layered structure on itself and causing at least some of the stations to be supported about a central spine (160) in a segmented manner.
    • 一种从二维布局制造复杂结构的方法,所述方法包括:(a)获得在其表面形成有预定的图案化凹部(48)的支撑板(40); (b)将第一系列单独的柔性互连件(70)沉积到所述凹部中,所述柔性互连件在公共平面中彼此平行对齐并由所述支撑板支撑; (c)用粘合装置将至少一个刚性构件(102)粘附到第一系列的每个柔性互连件上; (d)以粘合方式将第二系列单独的柔性互连件(132)粘附到所述刚性构件以形成多个工位,其中所述第二系列柔性互连件中的每一个粘附到所述第二组柔性互连件的两个刚性构件 第一系列中,第二系列的柔性互连件垂直于第一系列的柔性互连件形成; (e)固化所述粘合装置以形成组装的层状结构; (f)从支撑板上移除层状结构; 并且(g)系统地折叠本身上的分层结构,并且使得至少一些站以分段方式被支撑在中心脊(160)周围。