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公开(公告)号:US20080040287A1
公开(公告)日:2008-02-14
申请号:US11558825
申请日:2006-11-10
申请人: Daniel C. Harrell , Craig Lewis
发明人: Daniel C. Harrell , Craig Lewis
IPC分类号: H04L9/08
CPC分类号: G07F13/025 , G06Q20/347 , G06Q20/3829 , G07F7/10 , G07F7/1075
摘要: Systems and processes may provide for managing a fuel dispenser. In particular implementations, a system and process for a fuel dispenser may include the ability to receive at least a portion of transaction data for a fueling session, determine whether at least a portion of the received transaction data requires a security measure, and, if at least a portion of the received transaction data requires a security measure, apply a security measure to at least a portion of the received transaction data.
摘要翻译: 系统和过程可以提供用于管理燃料分配器。 在特定实施方案中,用于燃料分配器的系统和过程可以包括接收加油会话的交易数据的至少一部分的能力,确定所接收的交易数据的至少一部分是否需要安全措施,以及如果在 所接收的交易数据的至少一部分需要安全措施,对所接收的交易数据的至少一部分应用安全措施。
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公开(公告)号:US20080025875A1
公开(公告)日:2008-01-31
申请号:US11664339
申请日:2005-09-29
申请人: Charles Martin , Zuzanna Siwy , Punit Kohli , Lacramioara Trofin , C. Harrell
发明人: Charles Martin , Zuzanna Siwy , Punit Kohli , Lacramioara Trofin , C. Harrell
CPC分类号: B01D69/02 , B01D67/0032 , B01D67/0034 , B01D67/0062 , B01D67/0069 , B01D67/0093 , B01D69/141 , B01D71/022 , B01D71/027 , B01D71/48 , B01D71/50 , B01D71/64 , B01D2325/021 , B01J20/28033 , B01J20/2808 , B01J20/28097 , B01J20/3242 , B82Y15/00 , G01N30/7233 , G01N33/48721 , G01N33/5302 , G01N2030/027
摘要: The subject invention provides novel and efficacious systems and methods for particle, chemical, and/or biocompound sensing. In one embodiment, the system of the invention comprises a sensing device that includes a membrane containing at least one nanochannel that spans all or substantially all of the thickness of the membrane. The nanochannel(s) of the invention can be functionalized to enhance target analyte detection and quantification. In one embodiment, the nanochannel is conically shaped and includes a molecular recognition agent for a target analyte. In certain operations, the sensing systems of the invention quantitatively and qualitatively detect biochemical/biomedical species and biomacromolecules, such as proteins, DNA, cells, spores and viruses, with a high degree of sensitivity and specificity.
摘要翻译: 本发明提供了用于颗粒,化学和/或生物复合物感测的新颖有效的系统和方法。 在一个实施例中,本发明的系统包括感测装置,该感测装置包括包含至少一个跨越膜的全部或基本上全部的纳米通道的膜。 本发明的纳米通道可以被功能化以增强目标分析物的检测和定量。 在一个实施方案中,纳米通道是锥形的并且包括用于靶分析物的分子识别剂。 在某些操作中,本发明的感测系统以高灵敏度和特异性定量和定性地检测生物化学/生物医学物种和生物大分子,如蛋白质,DNA,细胞,孢子和病毒。
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公开(公告)号:US20060280769A1
公开(公告)日:2006-12-14
申请号:US11383845
申请日:2006-05-17
申请人: George Chu , C. Harrell , Hector Gomez
发明人: George Chu , C. Harrell , Hector Gomez
CPC分类号: A61L2/007 , A61L2/0011 , A61L2/0035 , A61L2/0041 , A61L2/08 , A61L2202/23
摘要: Methods of sterilizing dermal fillers and injectable collagen material have been developed which reduce the level of active biological contaminants or pathogens without adversely affecting the material, i.e., wherein the dermal fillers and injectable collagen material retain their same properties before and after its terminal sterilization. In one embodiment the method for sterilizing the dermal filler or injectable collagen material that is sensitive to radiation contains the steps of protecting the filler or material from radiation, and irradiating the filler or material with a suitable dose of radiation for a time and at a rate effective to sterilize the filler or injectable material. In a preferred embodiment the method for sterilizing the dermal filler or injectable collagen material that is sensitive to radiation includes the steps of a) freezing the filler or material at a temperature below its freezing temperature, which is generally below 0° C. and b) irradiating the filler or material with a suitable dose of radiation at an effective rate for a time effective to sterilize the filler or material. The exposure of the radiation differs depending upon the density of the filler or material, but is preferably between 5kGy and 12kGy and more preferably between 6kGy and 8kGy. These doses result in a sterility assurance level (SAL) of 10−6 SAL for the filler or material.
摘要翻译: 已经开发了对皮肤填充剂和可注射胶原材料进行灭菌的方法,其降低活性生物污染物或病原体的水平,而不会对材料产生不利影响,即其中真皮填料和可注射胶原材料在其终端灭菌前后保持相同的性质。 在一个实施方案中,对对辐射敏感的真皮填料或可注射胶原材料进行灭菌的方法包括以下步骤:保护填料或材料免受辐射,并且以适当剂量的辐射照射填料或材料一段时间 有效地对填料或可注射材料进行灭菌。 在优选的实施方案中,对对辐射敏感的真皮填料或可注射胶原材料进行灭菌的方法包括以下步骤:a)在低于其冷冻温度的温度下将填料或材料冷冻,其一般低于0℃,和b) 用合适剂量的辐射以有效速率照射填料或材料一段时间以有效地消除填料或材料。 辐射的曝光取决于填料或材料的密度而不同,但优选在5kGy和12kGy之间,更优选在6kGy和8kGy之间。 这些剂量导致填料或材料的无菌保证水平(SAL)为10 -6 SAL。
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公开(公告)号:USD371315S
公开(公告)日:1996-07-02
申请号:US29628
申请日:1994-10-12
申请人: Leslie C. Harrell
设计人: Leslie C. Harrell
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