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    • 3. 发明申请
    • Automated bioculture and bioculture experiments system
    • 自动生物培养和生物培养实验系统
    • US20050186671A1
    • 2005-08-25
    • US11063599
    • 2005-02-24
    • Thomas CannonLaura CohnPeter QuinnPaul Kosnik
    • Thomas CannonLaura CohnPeter QuinnPaul Kosnik
    • C12M1/00C12M3/00C12M3/06C12N5/08
    • C12M41/00C12M23/42C12M23/48C12M29/04C12M29/10C12M37/00Y10S435/809
    • The present invention provides a feedback controlled bioculture platform for use as a precision cell biology research tool and for clinical cell growth and maintenance applications. The system provides individual closed-loop flowpath cartridges, with integrated, aseptic sampling and routing to collection vials or analysis systems. The system can operate in a standard laboratory or other incubator for provision of requisite gas and thermal environment. System cartridges are modular and can be operated independently or under a unified system controlling architecture, and provide for scale-up production of cell and cell products for research and clinical applications. Multiple replicates of the flowpath cartridges allow for individual, yet replicate cell culture growth and multiples of the experiment models that can be varied according to the experiment design, or modulated to desired cell development of cell culture end-points. The integral flowpath cartridge aseptic sampling system provides for dynamic analysis of metabolic products or representative cells from the culture.
    • 本发明提供了一种用于精细细胞生物学研究工具和临床细胞生长和维持应用的反馈控制的生物培养平台。 该系统提供单独的闭环流径柱,具有集成的无菌取样和路线到采集瓶或分析系统。 该系统可以在标准实验室或其他孵化器中操作,以提供必要的气体和热环境。 系统墨盒是模块化的,可以独立运行或统一的系统控制架构下运行,并提供用于研究和临床应用的细胞和细胞产品的放大生产。 流路筒的多次重复允许单独的,但是重复的细胞培养生长和可以根据实验设计而变化的实验模型的倍数,或调节到细胞培养终点的期望的细胞发育。 积分流路管柱无菌取样系统提供了对来自培养物的代谢产物或代表性细胞的动态分析。
    • 4. 发明授权
    • Drain guard
    • 排水守卫
    • US3970559A
    • 1976-07-20
    • US534586
    • 1974-12-19
    • Thomas CannonFrances G. H. CannonJane E. H. CowanBernard McCarthy
    • Thomas CannonFrances G. H. CannonJane E. H. CowanBernard McCarthy
    • E03B9/10E03F5/06E03F5/08E03F1/00
    • E03B9/10E03F5/06E03F5/08
    • A drain guard is disclosed having a tubular body with a funnel-shaped portion at its upper end. The tubular body has an annular recess extending about the inside periphery thereof proximate the bottom end of the guard. The recess receives a sealing grommet therein for sealing the space between a tube on which the guard is positioned and the inner periphery of the tubular portion of the guard. Stop lugs are positioned about the inner periphery of the tubular portion of the guard at the junction of the funnel-shaped end portion thereof for limiting the upward movement of the tube on which the guard is positioned through the drain guard. A liquid permeable seat is positioned on the funnel-shaped end portion of the drain to permit the ingress of water or other liquids with respect to the drain guard. In an alternative embodiment of the invention, a rubber grommet is affixed to the inside periphery of the drain guard at the junction of the tubular and funnel shaped portions thereof with the grommet serving to limit the upward movement of the tube on which the guard is positioned and to seal the space between the guard and the tube to inhibit the passage of liquids therebetween.
    • 公开了一种排水管,其上端具有漏斗形部分的管状体。 管状体具有围绕其靠近护罩底端的内周延伸的环形凹部。 该凹部在其中容纳密封垫圈,用于密封防护件所在的管与护罩的管状部分的内周之间的空间。 止动凸耳围绕防护件的管状部分的内周边定位在其漏斗形端部的接合部处,以限制护罩在其上定位的管的向上运动通过排水管。 液体可渗透的座位置在漏斗的漏斗形端部,以允许水或其他液体相对于排水管进入。 在本发明的替代实施例中,橡胶垫圈在管状和漏斗状部分的接合部处与排水保护罩的内周边固定在一起,用于限制防护罩所在的管的向上运动 并且密封防护件和管之间的空间以阻止液体之间的通过。
    • 6. 发明申请
    • Automated bioculture and bioculture experiments system
    • 自动生物培养和生物培养实验系统
    • US20080032398A1
    • 2008-02-07
    • US11893430
    • 2007-08-15
    • Thomas CannonLaura CohnPeter Quinn
    • Thomas CannonLaura CohnPeter Quinn
    • C12M3/00C12M1/26C12N5/02
    • C12M23/42C12M23/48C12M29/04C12M29/10C12M37/00C12M41/00Y10S435/809
    • The present invention provides a feedback controlled bioculture platform for use as a precision cell biology research tool and for clinical cell growth and maintenance applications. The system provides individual closed-loop flowpath cartridges, with integrated, aseptic sampling and routing to collection vials or analysis systems. The system can operate in a standard laboratory or other incubator for provision of requisite gas and thermal environment. System cartridges are modular and can be operated independently or under a unified system controlling architecture, and provide for scale-up production of cell and cell products for research and clinical applications. Multiple replicates of the flowpath cartridges allow for individual, yet replicate cell culture growth and multiples of the experiment models that can be varied according to the experiment design, or modulated to desired cell development of cell culture end-points. The integral flowpath cartridge aseptic sampling system provides for dynamic analysis of metabolic products or representative cells from the culture.
    • 本发明提供了一种用于精细细胞生物学研究工具和临床细胞生长和维持应用的反馈控制的生物培养平台。 该系统提供单独的闭环流径柱,具有集成的无菌取样和路线到采集瓶或分析系统。 该系统可以在标准实验室或其他孵化器中操作,以提供必要的气体和热环境。 系统墨盒是模块化的,可以独立运行或统一的系统控制架构下运行,并提供用于研究和临床应用的细胞和细胞产品的放大生产。 流路筒的多次重复允许单独的,但是重复的细胞培养生长和可以根据实验设计而变化的实验模型的倍数,或调节到细胞培养终点的期望的细胞发育。 积分流路管柱无菌取样系统提供了对来自培养物的代谢产物或代表性细胞的动态分析。
    • 8. 发明授权
    • Form reader with linear CCD scanner and drum feed
    • 带有线性CCD扫描仪和滚筒进给的读卡器
    • US5247166A
    • 1993-09-21
    • US902549
    • 1992-06-22
    • Thomas CannonDaniel SmithMark Bowen
    • Thomas CannonDaniel SmithMark Bowen
    • G06K19/00G06K7/14G06K13/08
    • G06K13/08G06K7/14
    • A form reader especially for lottery forms with handwritten marks or bar codes includes a drum transport engaging the form, and a stepping motor advances the form circularly along a path around the drum, passing through a linear reading station elongated perpendicularly to the path. A light source illuminates the form at the read station and reflected light is incident on an elongated array of charge coupled device (CCD) light sensors via a focusing lens arrangement. An analog comparator coupled to a serial output of the CCD sensors digitizes encode and encodes each pixel in the elongated array repetitively during transport, sampling the reflectance of the form and defining an X-Y array of pixels. A digital processor coupled to an image memory analyzes the data for predetermined patterns such as handwritten marks, printed reference marks and/or printed bar code or OCR characters on the form. A throat sensor detects the form at an inlet to the reader for initiating operation of the stepping motor when the form is present. Form guides align the form generally to the transport path, and can be laterally movable for aligning one or both edges of the form to the transport path.
    • 特别是具有手写标记或条形码的彩票形式的表格阅读器包括接合该形式的鼓式传送器,并且步进电机沿着绕鼓的路径循环地前进,通过垂直于路径延伸的线性阅读站。 光源照亮读站的形式,反射光通过聚焦透镜装置入射到电荷耦合器件(CCD)光传感器的细长阵列上。 耦合到CCD传感器的串行输出的模拟比较器在传输期间重复编码和编码细长阵列中的每个像素,对形式的反射率进行采样并且定义X-Y像素阵列。 耦合到图像存储器的数字处理器在表格上分析诸如手写标记,打印的参考标记和/或打印的条形码或OCR字符之类的预定图案的数据。 喉部传感器检测在读取器的入口处的形式,用于当形式存在时启动步进电机的操作。 形状引导件一般将该形式对准传送路径,并且可以横向移动,以将形式的一个或两个边缘对准传送路径。