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    • 1. 发明申请
    • Incubation system with low temperature enclosure
    • 孵化系统具有低温外壳
    • US20100062522A1
    • 2010-03-11
    • US12283191
    • 2008-09-09
    • Mark J. FanningJacky YamDavid M. RobbinsKevin G. KetsenburgJames C. Bishop
    • Mark J. FanningJacky YamDavid M. RobbinsKevin G. KetsenburgJames C. Bishop
    • C12M1/00
    • B23P6/00C12M41/14Y10T29/49716
    • An incubator is fitted with an enclosure which surrounds the incubator. A cold air generation system supplies relatively cold air to a space formed between enclosure and the incubator. The system supplying the cold air can be embodied in a cart or base upon which the incubator sits. The enclosure is also placed on the base in a manner such that it substantially envelops the incubator. The top of the cart has openings for egress of cold air and return of air so that air may circulate in a closed loop. The incubator, cold air supply system and enclosure present a solution for incubating samples in a nominal 20-25° C. temperature environment. The enclosure, which is preferably insulated, may include a void or opening which exposes doors or other access device of the incubator, allowing direct access to the samples in the incubator while the rest of the incubator is enveloped by the enclosure.
    • 培养箱内装有围绕孵化器的外壳。 冷空气发生系统将相对冷的空气提供给在外壳和培养箱之间形成的空间。 提供冷空气的系统可以体现在孵化器所在的推车或底座上。 外壳也以基本上包围培养箱的方式放置在基座上。 推车的顶部具有用于排出冷空气和返回空气的开口,使得空气可以在闭环中循环。 培养箱,冷气供应系统和外壳提供了一个在标称20-25℃的温度环境中孵化样品的解决方案。 优选绝缘的外壳可以包括暴露孵化器的门或其他进入装置的空隙或开口,允许直接进入培养箱中的样品,同时孵化器的其余部分被封套包围。
    • 5. 发明授权
    • Compliant pressure roller
    • 符合压力辊
    • US5058497A
    • 1991-10-22
    • US628472
    • 1990-12-17
    • James C. BishopRichard E. Sharp
    • James C. BishopRichard E. Sharp
    • B29C63/00B29C65/00B29C70/38
    • B29C70/34B29C63/0004B29C70/38B29C66/81461
    • A compact roller system including a housing for a plurality of disks, each independently supported within a support member having sides which partially envelop the external peripheries of the disk. The disks do not separate or dislodge from their corresponding support members, yet the disks are capable of rotating within their corresponding support members. Each disk/support member shifts radially within the housing to accommodate the varying contours of a workpiece surface. The disks, in combination with their corresponding support members, apply an adjustable, evenly distributed compaction force to the workpiece surface through internal pressurization of the housing with a compressed gas.
    • 一种小型辊系统,包括用于多个盘的壳体,每个独立地支撑在具有部分地包围盘的外周的侧面的支撑构件内。 磁盘不与其对应的支撑构件分离或移开,但是磁盘能够在其相应的支撑构件内旋转。 每个盘/支撑构件在壳体内径向移动以适应工件表面的变化轮廓。 盘与其对应的支撑构件组合,通过用压缩气体对壳体进行内部加压,向工件表面施加可调节的均匀分布的压实力。
    • 8. 发明申请
    • Mixing pipette
    • 混合移液器
    • US20100047898A1
    • 2010-02-25
    • US12229098
    • 2008-08-19
    • James C. Bishop
    • James C. Bishop
    • C12N1/20C12M1/00B32B1/08
    • B01F11/0071B01F5/061B01F11/0074B01F13/002B01F13/0025B29L2023/008
    • A pipette includes a tubular body having an internal passage, a first end and a second end. The tubular body is deformed inward to create a narrow constriction or slit within the internal passage of the pipette. When vacuum is applied to the pipette and a solution is drawn into the pipette, the slit increases the velocity of the solution while gently deforming and separating clumps of matter (e.g., colonies of bacteria) contained in the solution. As the deformed bacterial colony passes through the slit, the bacteria solution is mixed due to turbulent flow within the pipette created by the increase in velocity. Bacteria colony size is further reduced by alternating the pipette flow direction to cycle the bacteria through the slit two or more times. A sloped entrance to the slit also prevents the oily bacteria from clogging the slit during cycle reversals.
    • 移液管包括具有内部通道,第一端和第二端的管状体。 管状体向内变形以在吸液管的内部通道内形成狭窄的狭窄或狭缝。 当真空被施加到移液管上并且溶液被吸入移液管时,狭缝增加了溶液的速度,同时轻轻地变形并分离溶液中所含的物质(例如细菌菌落)。 当变形的细菌菌落通过狭缝时,细菌溶液由于速度增加产生的移液管内的紊流而混合。 通过交替移液管流动方向进一步减少细菌集落大小,以使细菌通过裂缝循环两次或更多次。 狭缝的倾斜入口还防止油脂细菌在循环反转期间堵塞狭缝。