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    • 10. 发明申请
    • METHOD AND DEVICE FOR MONITORING CELL MOTILITY IN REAL-TIME
    • 用于实时监测细胞动力的方法和装置
    • WO2003012726A1
    • 2003-02-13
    • PCT/US2002/024071
    • 2002-07-29
    • SURFACE LOGIX, INC.KIM, EnochKIRK, Gregory, L.SCHEULLER, OliverOSTUNI, EmanueleWANG, EvelynRAPHEL, AaronBROWN, Matthew
    • KIM, EnochKIRK, Gregory, L.SCHEULLER, OliverOSTUNI, EmanueleWANG, EvelynRAPHEL, AaronBROWN, Matthew
    • G06K9/00
    • B82Y30/00B01L3/5085B01L2200/12B01L2300/0636B01L2300/0887B01L2300/0893C12M23/12C12M25/06C12M41/46G06T7/70G06T2207/30072
    • The invention relates to devices, devices for arraying biomolecules, including cells, methods for arraying biomolecules, assays for monitoring cellular movement, and systems for monitoring cellular movement. The devices include a support (140), a first layer (150) configured to be placed in fluid-tight contact with the support, the first layer (150) having an upper surface (140a) and defining a pattern of micro-orifices (300), each micro-orifice of the pattern of micro-orifices (300) having walls (150a) and defining a micro-region on the support (140) when the first layer (150) is placed in fluid-tight contact with the support such that the walls (150a) of each micro-orifice (300) and the micro-region on the support (140) together define a micro-well (141); and a second layer (160) configured to be placed in fluid-tight contact with the upper surface of the first layer (150), the second layer (160) defining a pattern of macro-orifices (170), each macro-orifice (170) of the pattern of macro-orifices (170) having walls and defining a macro-region when the first layer is placed in fluid-tight contact with the support (140) and the second layer (160) is placed in fluid-tight contact with the first layer (150) such that the walls of the macro-orifice and the macro-region together define a macro-well (151).
    • 本发明涉及用于排列生物分子的装置,包括细胞,用于排列生物分子的方法,用于监测细胞运动的测定法和用于监测细胞运动的系统。 所述装置包括支撑件(140),被配置为与所述支撑件流体密封接触的第一层(150),所述第一层(150)具有上表面(140a)并限定微孔图案 300),当所述第一层(150)与所述第一层(150)流体密封地接触时,所述微孔图案的每个微孔具有壁(150a)并且在所述支撑件(140)上限定微区域 支撑,使得每个微孔(300)的壁(150a)和支撑件(140)上的微区域一起限定微孔(141); 和配置成与第一层(150)的上表面流体密封接触的第二层(160),第二层(160)限定宏观孔(170)的图案,每个宏观孔 具有壁的大孔(170)的图案的图示(170),并且当第一层被放置成与支撑件(140)流体密封接触并且第二层(160)被置于流体密封 与第一层(150)接触,使得宏观孔口和宏观区域的壁一起限定了宏观井(151)。