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    • 21. 发明授权
    • Methods of controlling insects
    • 防治昆虫的方法
    • US08455487B2
    • 2013-06-04
    • US12601596
    • 2008-05-20
    • Pascal CholletDomingos PedroniStephen Wilson Skillman
    • Pascal CholletDomingos PedroniStephen Wilson Skillman
    • A01N43/707A01N25/12A01N25/14A01P7/04
    • C07D401/12A01N43/707
    • The invention relates to a method of controlling insects in the family Nitidulidae using the compound 4,5-di -hydro-6-methyl-4-(3-pyridylmethyleneamino)-1,2,4-triazin-3(2H)-one and also encompasses the use of compositions comprising 4,5-dihydro-6-methyl-4-(3-pyridylmethyleneamino)-1,2,4-triazin-3(2H)-one for controlling Nitidulidae, in particular pollen beetles as well as the preparation of said compound and/or compositions for use in controlling Nitidulidae. In particular, the invention relates to the use of 4,5-dihydro-6-methyl-4-(3-pyridylmethyleneamino)-1,2,4-triazin-3(2H)-one and/or compositions comprising this compound in controlling such insects in crops of useful plants, in particular flowering crops and/or flowering ornamental plants.
    • 本发明涉及使用化合物4,5-二脱水-6-甲基-4-(3-吡啶基亚甲基氨基)-1,2,4-三嗪-3(2H) - 酮,控制昆虫在昆虫中的方法 并且还包括使用包含4,5-二氢-6-甲基-4-(3-吡啶基亚甲基氨基)-1,2,4-三嗪-3(2H) - 酮的组合物,以控制Nitidulidae,特别是花粉甲虫 作为用于控制id科的所述化合物和/或组合物的制备。 特别地,本发明涉及使用4,5-二氢-6-甲基-4-(3-吡啶基亚甲基氨基)-1,2,4-三嗪-3(2H) - 酮和/或包含该化合物的组合物 在有用植物,特别是开花作物和/或开花观赏植物的作物中控制这种昆虫。
    • 22. 发明申请
    • System and method of simplex and duplex scanning
    • 单面和双面扫描的系统和方法
    • US20090168125A1
    • 2009-07-02
    • US12006191
    • 2007-12-31
    • Stephen WilsonCharles Brandon LangrelChengwu Cui
    • Stephen WilsonCharles Brandon LangrelChengwu Cui
    • H04N1/04
    • H04N1/207H04N1/00572H04N1/00578H04N1/00604H04N1/00612
    • A scanning device for simplex and duplex scanning. The device may include a scan head for capturing content appearing on a page; a substantially C-shaped first scan path for simplex scanning, the first scan path adapted to guide the page relative to the scan head for scanning a first side of the page; a second scan path for duplex scanning, the second scan path adapted to guide the page relative to the scan head for scanning a first side of the page and a second side of the page; a path diverter, the path diverter adapted to direct the page to the first path or the second path; and a controller for controlling the first and second scan paths and the diverter. The second scan path forms a loop for moving the first and second sides of the page so that each is temporarily disposed adjacent the scan head.
    • 用于单工和双面扫描的扫描装置。 该设备可以包括用于捕获出现在页面上的内容的扫描头; 用于单工扫描的大致C形的第一扫描路径,所述第一扫描路径适于相对于扫描头引导页面以扫描页面的第一面; 用于双面扫描的第二扫描路径,所述第二扫描路径适于引导所述页面相对于所述扫描头用于扫描所述页面的第一侧和所述页面的第二侧; 路径转向器,所述路径转向器适于将所述页引导到所述第一路径或所述第二路径; 以及用于控制第一和第二扫描路径和分流器的控制器。 第二扫描路径形成用于移动页面的第一和第二侧的环,使得每个扫描路径临时设置在扫描头附近。
    • 23. 发明申请
    • Means and Method of Using Cryptographic Device to Combat Online Institution Identity Theft
    • 使用加密设备来打击在线机构身份盗用的手段和方法
    • US20080288790A1
    • 2008-11-20
    • US11578217
    • 2005-04-11
    • Stephen Wilson
    • Stephen Wilson
    • G06F12/14
    • G07F7/1008G06F21/34G06F21/445G06F2221/2119G06Q20/341G06Q20/4014G06Q20/40975H04L63/0853H04L63/1441H04L63/1483
    • Whereas smartcards and similar cryptographic devices may customarily be used to protect against personal identity theft, this invention stores Public Keys of an institution in cryptographic devices issued by the institution to its customers, in order to protect the institution's identity from being stolen. The invention improves the security of electronic business applications using Secure Sockets Layer, Secure E-mail, Object Signing and similar low level electronic business security functions by storing various Public Keys of the institution within the cryptographic device. The invention thereby helps to reduce the likelihood of “ghosting” an institution's web site (where an illegitimate web site seeks to mimic a genuine web site in order to defraud customers), and provides a means to overcome the problem of “phishing” (where illegitimate e-mails purporting to be from the institution are sent to customers in order to elicit personal information).
    • 虽然智能卡和类似的加密设备可能习惯上用于防止个人身份盗用,但是本发明将机构的公共密钥存储在由该机构发布的加密设备中,以保护其客户,以保护机构的身份被盗。 本发明通过将机构的各种公共密钥存储在加密设备内,从而提高了使用安全套接层,安全电子邮件,对象签名和类似的低级电子业务安全功能的电子商务应用的安全性。 因此,本发明有助于减少机构的网站(其中非法网站旨在模仿真实网站以欺骗客户)的“重影”的可能性,并且提供了克服“网络钓鱼”问题的方法(其中 看来是来自机构的非法电子邮件被发送给客户以获取个人信息)。
    • 24. 发明申请
    • Medical Monitoring System
    • 医疗监控系统
    • US20080125666A1
    • 2008-05-29
    • US11662800
    • 2005-06-10
    • Stuart CrozierStephen WilsonHang Ding
    • Stuart CrozierStephen WilsonHang Ding
    • A61B5/0402
    • G06K9/00496A61B5/044A61B5/0452A61B5/0464
    • Biological data, such as human heart rate data, is acquired and processed in a non-linear manner to facilitate an assessment of the physiological state of the subject, and/or to assist in predicting incipient disorders or instability. Determinism, laminarity and recurrence measures are derived for a rolling sample of a time series of said data. The recurrence measure can be the Euclidean threshold (εthresh) at a given recurrence rate. A representation, such a colour coded matrix or multi-dimensional vector, is formed from a combination of the derived determinism, laminarity and recurrence measures. The representation can then be analysed to detect indicators of physiological instability, such as arrhythmia, or to discriminate between arrhythmias. The analysis may be performed visually, or in an automated manner in real time, such as in an ambulatory or implanted device, or post hoc by a bedside monitor.
    • 获取并以非线性方式处理诸如人心率数据的生物学数据,以促进对受试者的生理状态的评估和/或有助于预测初期障碍或不稳定性。 对于所述数据的时间序列的滚动样本,导出确定性,层叠和复现度量。 在给定的复发率下,重复测量可以是欧几里得阈值(ε= thresh )。 由衍生的确定性,层叠和复现测量的组合形成诸如颜色编码矩阵或多维向量的表示。 然后可以分析该表示以检测生理不稳定性的指标,例如心律失常,或区分心律失常。 分析可以在视觉上或以自动化方式实时执行,例如在移动或植入的装置中,或者通过床边监护仪进行事后执行。
    • 25. 发明申请
    • Robotic gripper for transporting multiple object types
    • 用于运输多种物体类型的机器人抓爪
    • US20070258858A1
    • 2007-11-08
    • US11417271
    • 2006-05-03
    • Brian RasnowChuck LiStephen Wilson
    • Brian RasnowChuck LiStephen Wilson
    • G01N35/00B01L9/00
    • G01N35/0099B01L9/523B01L9/54
    • A gripping apparatus is provided that includes a sensor, an actuator, a base, and a plurality of fingers extending relative to the base to grip an object that is one of a plurality of object types. A first finger includes a first support surface located a first distance relative to the base and a second support surface located a second distance relative to the base. The first distance is selected based on a first object type, and the second distance is selected based on a second object type. The second finger includes a third support surface located the first distance relative to the base and a fourth support surface located the second distance relative to the base. The first finger opposes the second finger. The actuator is operably coupled to the sensor(s) to effect movement at least one of the fingers to hold an object detected by the sensor.
    • 提供一种夹持装置,其包括传感器,致动器,基部和相对于基部延伸的多个手指,以夹持作为多个对象类型之一的对象。 第一指状物包括相对于基部定位第一距离的第一支撑表面和相对于基部定位第二距离的第二支撑表面。 基于第一对象类型选择第一距离,并且基于第二对象类型选择第二距离。 第二手指包括相对于底座位于第一距离的第三支撑表面和相对于基座定位第二距离的第四支撑表面。 第一个手指反对第二个手指。 致动器可操作地耦合到传感器以实现移动至少一个手指以保持由传感器检测到的物体。
    • 26. 发明申请
    • Ink-Jet Printing Process and Ink
    • 喷墨印刷工艺和墨水
    • US20070247502A1
    • 2007-10-25
    • US11572074
    • 2005-06-30
    • Alexander GrantStephen WilsonHugh AllenNigel CaigerDerek Wilson
    • Alexander GrantStephen WilsonHugh AllenNigel CaigerDerek Wilson
    • B41J2/17B41J2/01C09D11/02
    • C09D11/101
    • The invention relates to a process of ink jet printing a radiation-curable ink from a printer having a de-wetting faceplate onto a substrate in which the ink is such that it has an advancing contact angle on the substrate of no more than 22° and a receding contact angle on the faceplate, after a period of contact of one month, of greater than 28°. The invention also provides a radiation-curable ink for use in an ink jet printer having a de-wetting faceplate, the ink having a receding contact angle on a material having a surface energy in the range of 16 to 20 dyne/cm of greater than 28° after a period of contact of one month and having an advancing contact angle on a substrate having a surface energy of less than 30 dyne/cm of no more than 22°.
    • 本发明涉及一种将可辐射固化油墨从具有去湿面板的打印机喷墨印刷到基材上的方法,其中油墨使得其在基材上的前进接触角不大于22°, 在面板后面接触角度,经过一个月的接触时间,大于28°。 本发明还提供一种用于具有脱湿面板的喷墨打印机中的可辐射固化油墨,该油墨在具有16至20达因/厘米范围内的表面能的材料上具有后退接触角大于 在一个月的接触周期之后28°,并且在表面能小于30达因/厘米不大于22度的基底上具有前进接触角。
    • 27. 发明申请
    • Coating thickness gauge
    • 涂层厚度计
    • US20070195331A1
    • 2007-08-23
    • US11548817
    • 2006-10-12
    • Ian BainKetil KarstadStephen WilsonDavid Hamilton
    • Ian BainKetil KarstadStephen WilsonDavid Hamilton
    • G01B11/02G01B21/08G01B11/28G01D21/00
    • G01B11/0675
    • A coating thickness gauge for measuring the thickness of a coating on a surface of a can is described. The gauge comprises a probe head and a probe head locating mechanism. By employing the probe head locating mechanism the probe head can be easily orientated relative to the surface of a can. The ability to select and fix the measurement orientation of the probe head provides the coating thickness gauge with enhanced flexibility such that it can be employed to take measurements from all surface sections of the can, both interior and exterior. This ability is not dependent on the experience, knowledge or skill of a particular operator. As a result the gauge provides for a fast means of measuring the thickness of a coating which can be used within an in line feedback system, on a commercial scale.
    • 描述了用于测量罐表面上的涂层厚度的涂层厚度计。 该计量器包括探针头和探针头定位机构。 通过采用探针头定位机构,探针头可以容易地相对于罐表面定向。 选择和固定探针头的测量方向的能力为涂层厚度计提供了增强的灵活性,使得它可以用于从内部和外部的罐的所有表面部分进行测量。 这种能力不依赖于特定操作者的经验,知识或技能。 因此,该量规提供了一种测量可在工业规模的在线反馈系统中使用的涂层厚度的快速方法。