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    • 4. 发明授权
    • Microfluidic interface for highly parallel addressing of sensing arrays
    • 用于感测阵列高度并行寻址的微流体接口
    • US08383059B2
    • 2013-02-26
    • US11241060
    • 2005-09-30
    • David A. Chang-YenSriram NatarajanJosh EckmanBruce K. GaleDavid Myszka
    • David A. Chang-YenSriram NatarajanJosh EckmanBruce K. GaleDavid Myszka
    • B01L3/00
    • G01N33/553B01J19/0046B01L3/0293B01L3/5025B01L3/502715B01L3/50273B01L2200/021B01L2300/0636B01L2300/0819B01L2300/0822B01L2300/0877B01L2400/0487C12N15/1093G01N35/1074G01N2035/00158G01N2035/1039Y10T436/2575
    • Disclosed is a spotter device and methods for the formation of microassays, biochips, biosensors, and cell cultures. The spotter may be used to deposit highly concentrated spots of protein or other materials on a microarray slide, wafer, or other surface. It may also be used to perform various chemistry steps on the same spots. The spotter increases the surface density of substances at each spot by directing a flow the desired substance (or a solution thereof) over the spot area until surface saturation is accomplished. The spotter may be loaded by well plate handling equipment. The spotter uses wells, microfluidic conduits, and orifices to deposit proteins, other biomolecules, or chemicals on a spot on a separate surface. Each orifice is connected to two wells via microconduits. When the spotter contacts a surface, a seal is formed between the orifices and the surface. The same or different substances may be flowed across each orifice. Any number of orifices may be incorporated into a spotter. The spotter is particularly useful for depositing proteins in high concentrations on a surface, since the spotter may be placed on a surface for an extended period of time.
    • 公开了一种用于形成微量测定器,生物芯片,生物传感器和细胞培养物的检测器装置和方法。 斑点斑块可用于将高度浓缩的蛋白质或其他材料的斑点沉积在微阵列载玻片,晶片或其它表面上。 它也可以用于在同一点上执行各种化学步骤。 点样器通过将所需物质(或其溶液)流过斑点区域直到达到表面饱和为止,增加每个斑点处物质的表面密度。 识别器可以由井板处理设备装载。 点样器使用井,微流体管道和孔口将蛋白质,其他生物分子或化学品沉积在单独表面上的一个点上。 每个孔通过微管连接到两个孔。 当检测器接触表面时,在孔和表面之间形成密封。 相同或不同的物质可能流过每个孔口。 任何数量的孔口都可以并入到一个定点器中。 鉴定器对于在表面上沉积高浓度的蛋白质是特别有用的,因为可以将定位器放置在表面上较长时间。
    • 7. 发明申请
    • Intraocular Drug Delivery Device and Associated Methods
    • 眼内药物输送装置及相关方法
    • US20110282328A1
    • 2011-11-17
    • US12945428
    • 2010-11-12
    • Balamurali K. AmbatiBruce K. Gale
    • Balamurali K. AmbatiBruce K. Gale
    • A61F9/00
    • A61F9/0017B33Y80/00
    • The present invention provides devices, systems, and methods for delivery of an active agent into the eye of a subject. In one aspect, for example, an ocular active agent delivery device (10) can include an active agent reservoir (14) disposed in an annular housing (12), the annular housing (12) being configured to fit inside of a lens capsule and at least partially encircling a line of sight of an intraocular lens within the lens capsule. The device (10) can further include a semipermeable membrane (16) operatively coupled to the active agent reservoir (14), where the semipermeable membrane (16) is configured to allow diffusion of an active agent from the active agent reservoir (14). Additionally, a valve (18) can be operatively coupled to the active agent reservoir (14), where the valve (18) is configured to allow filling of the active agent reservoir (14) with an active agent.
    • 本发明提供了将活性剂递送到受试者的眼睛中的装置,系统和方法。 在一个方面,例如,眼部活性剂递送装置(10)可以包括设置在环形壳体(12)中的活性剂储存器(14),所述环形壳体(12)被配置成装配在透镜囊内部, 至少部分地包围晶状体囊内的眼内透镜的视线。 装置(10)还可以包括可操作地耦合到活性剂储存器(14)的半透膜(16),其中半透膜(16)构造成允许活性剂从活性剂储存器(14)扩散。 此外,阀(18)可以可操作地联接到活性剂储存器(14),其中阀(18)构造成允许用活性剂填充活性剂储存器(14)。
    • 10. 发明授权
    • High field strength magentic field generation system and associated methods
    • 高场强磁场生成系统及相关方法
    • US08395468B2
    • 2013-03-12
    • US12159927
    • 2007-01-04
    • James C. StephensonBruce K. GaleCynthia Furse
    • James C. StephensonBruce K. GaleCynthia Furse
    • H01F7/02
    • H01F7/0284G01R33/3806G01R33/383
    • A magnetic field generation system includes first (28a) and second (28b) magnetic flux concentrators spaced apart to form a sample volume (30). A first set of auxiliary permanent magnets (10a, 10b) can be symmetrically oriented about and in contact with a portion of the first magnetic flux concentrator (28a). Similarly, a second set of auxiliary permanent magnets (10c, 10d) can be symmetrically oriented about and in contact with a portion of the second magnetic flux concentrator (28b). The first(10a, 10b) and second (10c, 10d) sets of auxiliary magnets can be magnetically associated via the first (28a) and second (28b) magnetic flux concentrators. Magnetically soft shunts (38) can be movably oriented to allow variation of the magnetic field strength across the sample volume by disrupting the field flux across the magnetic flux concentrators.
    • 磁场产生系统包括间隔开以形成样品体积(30)的第一(28a)和第二(28b)磁通集中器。 第一组辅助永磁体(10a,10b)可以对称地定向并且与第一磁通集中器(28a)的一部分接触。 类似地,第二组辅助永磁体(10c,10d)可以对称地定向并且与第二磁通集中器(28b)的一部分接触。 第一(10a,10b)和第二(10c,10d)组辅助磁体可以经由第一(28a)和第二(28b)磁通量集中器磁性地相关联。 磁软分流器(38)可以可移动地定向以允许通过扰动磁通量集中器上的磁场通量来改变样品体积上的磁场强度。