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    • 53. 发明申请
    • Forensic Feature For Secure Documents
    • 安全文件的取证功能
    • US20160236460A1
    • 2016-08-18
    • US15140952
    • 2016-04-28
    • Daoshen BiTung-Feng YehRobert JonesJ. Scott Carr
    • Daoshen BiTung-Feng YehRobert JonesJ. Scott Carr
    • B41F11/02B42D25/45B42D25/333B41M5/50
    • B42D25/373B41F11/02B41M3/14B41M5/502B42D25/00B42D25/23B42D25/309B42D25/313B42D25/318B42D25/333B42D25/45B42D2033/30B42D2033/32
    • A forensic feature for a secure document comprises a base document layer and a covert material applied to the base document layer. The covert material includes a carrier and forensic material within the carrier. The forensic material includes a ratio of salts or oxides of metals, such as rare earth metals. The ratio is selected to correspond with a source of the document. The forensic material may be mixed into a coating or ink that is applied at predetermined locations on a secure document. The ratio is then measurable from metal ion signals of the salts or oxides. This ratio, or some metric derived from it, may be linked with information embedded elsewhere in the document to enable verification of the document. Another forensic document feature has a forensic metric that is measurable from a covert material in the document, and this forensic metric corresponds to a source of the document. A blocking layer applied over the covert material prevents access to the covert material such that at least partial destruction of the document is required to measure the forensic metric. The blocking layer may have a blocking property that blocks electromagnetic waves from activating the covert material, or blocks the electromagnetic waves from the covert material in response to the activating waves. The blocking layer is deconstructed to access the forensic feature, verify the document and perform forensic tracking.
    • 用于安全文档的取证功能包括应用于基本文档层的基本文档层和隐蔽材料。 隐蔽材料包括载体和载体内的法医材料。 法医材料包括金属的盐或氧化物的比例,例如稀土金属。 该比率被选择为与文档的来源相对应。 法医材料可以混合到在安全文件上的预定位置施加的涂层或油墨中。 然后可以从盐或氧化物的金属离子信号测量该比例。 该比率或从其导出的某种度量可能与文档中其他地方嵌入的信息相关联,以便能够验证文档。 另一个法医文档特征具有可从文档中的隐蔽材料测量的取证度量,并且该法医指标对应于文档的来源。 施加在隐蔽材料上的阻挡层防止对隐蔽材料的访问,使得需要文档的至少部分破坏来测量取证度量。 阻挡层可以具有阻挡电磁波激活隐蔽材料的阻挡特性,或者响应于激活波阻挡来自隐蔽材料的电磁波。 阻塞层被解构以访问取证功能,验证文档并执行取证跟踪。
    • 54. 发明授权
    • Device and method for measuring scattering of radiation
    • 用于测量辐射散射的装置和方法
    • US08742368B2
    • 2014-06-03
    • US12865432
    • 2009-02-02
    • Robert JonesRoger Fane SewellPaul D. RyderMatthew J. HayesEdwin C. Carter
    • Robert JonesRoger Fane SewellPaul D. RyderMatthew J. HayesEdwin C. Carter
    • F21V9/16
    • G01N21/49G01J1/0242G01J1/0266G01J3/02G01J3/0208G01J3/0218G01J3/0229G01J3/0291G01J3/4412G01N15/0205G01N21/51G01N21/53G01N21/532G01N21/64G01N2015/03G01N2021/4792G01N2021/6419G01N2021/6421G01N2021/6476
    • A photometric device for investigating a sample, comprises an array of radiation sources that are spaced apart from one another, and which are operable to generate radiation that differs from that generated by the other radiation sources in the array. The device includes a lens arrangement for focusing the radiation at a region of space where a sample may be located for example by means of a sample holder, and at least one detector for receiving radiation from the region of space. Preferably, a number of detectors are employed that are spaced apart from one another, and especially about an axis of the device, so that one radiation detector can detect radiation transmitted by the sample and the other detectors can detect radiation scattered by it. The radiation sources may be time division multiplexed so that in each time slot the detectors receive radiation originating from each radiation source. In an alternative embodiment, the radiation from the region of space may be transmitted to the sample via a beam homogeniser, for example an optical waveguide in the form of an optical fibre, which may be used to reduce or remove speckle where laser diodes are employed as the radiation sources. The device may be used to determine the particle size distribution of particles in a sample by a method employing Bayesian inference.
    • 用于调查样品的测光装置包括彼此间隔开的辐射源阵列,并且其可操作以产生与由阵列中的其它辐射源产生的辐射不同的辐射。 该装置包括用于将辐射聚焦在例如借助于样品保持器的样品可能位于的空间区域处的透镜装置,以及用于接收来自空间区域的辐射的至少一个检测器。 优选地,使用彼此间隔开的多个检测器,特别是围绕设备的轴线,使得一个辐射检测器可以检测由样品传输的辐射,并且其它检测器可以检测由其散射的辐射。 辐射源可以被时分复用,使得在每个时隙中,检测器接收来自每个辐射源的辐射。 在替代实施例中,来自空间区域的辐射可以经由光束均化器(例如,光纤形式的光波导)传输到样品,其可以用于减少或去除使用激光二极管的斑点 作为辐射源。 该装置可用于通过采用贝叶斯推理的方法来确定样品中颗粒的粒度分布。
    • 55. 发明授权
    • Methods for the application of ingredients to the inside of a straw
    • 将成分施用于秸秆内部的方法
    • US08409643B2
    • 2013-04-02
    • US13029811
    • 2011-02-17
    • Anilkumar Ganapati GaonkarCathy Jean LudwigNeil Edward DarinRobert Jones
    • Anilkumar Ganapati GaonkarCathy Jean LudwigNeil Edward DarinRobert Jones
    • A47G21/18
    • A23L5/40A23L27/00A23L27/82A23P10/10
    • Methods of coating the interior surface of a hollow tubular structure, in particular a drinking device, and more particularly a drinking straw, with an edible composition to impart a desirable modification to a beverage that is drunk through the straw. The edible composition comprises an adhering agent and a powdered ingredient coated to the interior surface. Suitable adhering agents include lipids (e.g., soybean oil, corn oil, canola oil, sunflower oil, rapeseed oil, peanut oil, and mixtures thereof), medium chain triglycerides oils, emulsifiers, and mixtures thereof. Suitable powdered ingredients include edible acids, edible bases, sweeteners, flavorings, vitamins, minerals, colorants, sensate agents, carotenoids, antioxidants, polyphenols, phytonutrients, and mixtures thereof. The adhering agent is applied to the interior surface of the straw by any one of a number of methods followed by incorporating the powdered ingredient into the adhering agent layer. The powdered ingredient adheres or sticks to, and is incorporated into, the adhering agent layer. Once the powdered ingredient layer is added, the coated drinking straw is ready for use with a beverage.
    • 用可食用组合物涂覆中空管状结构的内表面,特别是饮用装置,更具体地是吸管的方法,以将饮料通过吸管赋予理想的修饰。 可食用组合物包含粘附剂和涂覆在内表面上的粉末状成分。 合适的粘合剂包括脂质(例如大豆油,玉米油,卡诺拉油,向日葵油,菜籽油,花生油及其混合物),中链甘油三酯油,乳化剂及其混合物。 合适的粉末成分包括食用酸,食用基质,甜味剂,矫味剂,维生素,矿物质,着色剂,感觉剂,类胡萝卜素,抗氧化剂,多酚,植物营养素及其混合物。 通过多种方法中的任何一种将粘合剂施加到吸管的内表面,然后将粉末成分掺入粘合剂层中。 粉末成分粘附或粘附并粘合到粘合剂层中。 一旦添加粉末成分层,涂覆的吸管可以与饮料一起使用。
    • 57. 发明申请
    • Molecularly Imprinted Polymers for Use as Imaging and Therapeutics Agents
    • 分子印迹聚合物用作成像和治疗剂
    • US20120093720A1
    • 2012-04-19
    • US13274093
    • 2011-10-14
    • Robert JonesThomas Beck
    • Robert JonesThomas Beck
    • A61K49/00A61K51/06C08G65/34
    • A61K49/0002A61K51/06A61K51/1244C08G65/329C08L71/02C08L2203/02
    • The invention described herein provides biocompatible molecularly imprinted polymers (MIPs) that are non-toxic, water soluble, small molecular weight, and degradable in a living body. The MIPs are capable of binding to all or a portion of a specific target macromolecule associated with a disease located within the living body and they are derivatized for stealth for in vivo applications to avoid the reticuloendothelial system. The MIPs of the invention are functionalized to an amine or carboxyl group and are derivatized with an imaging and/or therapeutic agent for taking images of the disease and/or for providing therapy. The macromolecule can be selected from a group consisting of proteins, glycoproteins, lipoproteins, peptidoglycans, peptides, polypeptides, polynucleotides, and polysaccharides. The invention described herein also provides methods and kits wherein MIPs of the invention can be employed as targeted imaging and therapeutic agents.
    • 本文描述的本发明提供了生物相容性分子印迹聚合物(MIP),其在生物体中是无毒的,水溶性的,小分子量的和可降解的。 MIP能够结合与位于生物体内的疾病相关的特定目标大分子的全部或一部分,并且它们被衍生化用于隐形以用于体内应用以避免网状内皮系统。 本发明的MIP被官能化为胺或羧基,并且用成像和/或治疗剂衍生以获取疾病图像和/或用于提供治疗。 大分子可以选自蛋白质,糖蛋白,脂蛋白,肽聚糖,肽,多肽,多核苷酸和多糖。 本文所述的发明还提供了本发明的MIP可用作靶向成像和治疗剂的方法和试剂盒。