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    • 3. 发明申请
    • CLEANING SOLUTION
    • 清洁解决方案
    • US20140200171A1
    • 2014-07-17
    • US14080570
    • 2013-11-14
    • Benjamin R. TravisRitesh MittalSeth M. HuffLijun HuangLiang Tang
    • Benjamin R. TravisRitesh MittalSeth M. HuffLijun HuangLiang Tang
    • C11D1/75C11D3/20C11D3/04
    • C11D1/75C11D3/04C11D3/044C11D3/2003C11D3/2006C11D3/43
    • Disclosed are cleaning solutions. More particularly, non-toxic solutions of base, water, alcohol and detergent, that effectively and surprisingly eliminate contaminating aliphatic acids in aqueous solutions. When present as a foam or even a contaminating film remaining on various parts and surfaces, aliphatic acid contaminants can be present a large and costly problem in manufacturing operations, cleaning tasks, personal hygiene. The need to remove such contaminants arises in a myriad environments and situations, such as during the manufacture of detergents, pharmaceuticals, consumer products, coring and core analysis, manipulation of oils, fuels, fermentation applications, manufacture of emollients, moisturizers, liquors, foods such as seafood, milk, butter and other dairy products, water processing, paper products, tissue culture, reusable clinical equipment, and the like. Presented are cleaning compositions and methods that effectively eliminate and prevent build up of such dangerous and costly contaminants in aqueous solutions.
    • 披露的是清洁解决方案。 更具体地,碱,水,醇和洗涤剂的无毒溶液有效且令人惊奇的消除了水溶液中的污染性脂肪酸。 当作为泡沫或甚至残留在各种部件和表面上的污染膜存在时,脂肪族酸污染物在制造操作,清洁任务,个人卫生中可能存在大而昂贵的问题。 在无数的环境和情况下,例如在制造洗涤剂,药物,消费品,取芯和核心分析,操作油,燃料,发酵应用,润肤剂,保湿剂,液体,食品的制造 如海鲜,牛奶,黄油等乳制品,水处理,纸制品,组织培养,可重复利用的临床设备等。 提出了清洁组合物和方法,其有效地消除并防止在水溶液中积累这种危险且昂贵的污染物。
    • 4. 发明申请
    • Maltoside and Phosphocholine Derivatives, Uses thereof and Methods of Preparing Artificial Lipid Structures Thereof
    • 麦芽糖苷和磷酸胆碱衍生物,其用途及其制备人造脂质结构的方法
    • US20130096295A1
    • 2013-04-18
    • US13272090
    • 2011-10-12
    • Benjamin R. TravisRitesh MittalLijun HuangLiang Tang
    • Benjamin R. TravisRitesh MittalLijun HuangLiang Tang
    • C07D249/04C07H3/04C07F9/10C07H5/04
    • C07F9/6518C07F9/103C07H15/26
    • Disclosed are saccharide and phosphocholine derivatives. The derivatives include azide and alkyne derivatives which form one end of a variable length carbon chain. The opposite end of the variable length carbon chain is covalently linked to the saccharide or phosphocholine. The saccharide may be, for instance, a maltoside. The alkyne and azide derivatives of the saccharides and phosphocholine may be reacted together to form amphiphilic molecules useful in cellular membrane studies and applications. By adjusting the length of the carbon chain, the biochemical and biophysical properties of the resultant 1,4-disubstituted 1,2,3-triazole compounds may be custom tailored for the intended application. Resultant molecules may form micelles, bicelle, lipid bilayers and other like structures useful in the isolation and purification of membrane bound or membrane associated proteins and biochemical components. The saccharides and phosphocholine molecules may be alternatively substituted as desired to provide additional flexibility in designing the desired end product.
    • 公开了糖和磷酸胆碱衍生物。 衍生物包括形成可变长度碳链的一端的叠氮化物和炔衍生物。 可变长度碳链的相对端与糖或磷酸胆碱共价连接。 糖可以是例如麦芽糖苷。 糖和磷酸胆碱的炔和叠氮衍生物可以一起反应以形成用于细胞膜研究和应用的两亲分子。 通过调整碳链的长度,所得的1,4-二取代的1,2,3-三唑化合物的生物化学和生物物理性质可以根据预期的应用定制。 所产生的分子可以形成胶束,双胞胎,脂质双层和其他类似的结构,可用于分离和纯化膜结合或膜相关蛋白和生物化学成分。 糖和磷酸胆碱分子可以根据需要被替代地替代,以在设计期望的最终产物时提供额外的灵活性。
    • 5. 发明授权
    • Method and system for supporting multiple display devices
    • 支持多种显示设备的方法和系统
    • US08365199B2
    • 2013-01-29
    • US12344284
    • 2008-12-26
    • Jinliang HuangLiang Tang
    • Jinliang HuangLiang Tang
    • G06F3/00
    • G09G5/363G06F3/1423G09G2360/02G09G2370/047
    • A method and a system for supporting multiple display adapters in the WDDM architecture are provided. A driver wrapper serves as the interface between the OS and the display drivers. The driver wrapper hides the display drivers from the knowledge of the OS and provides the standard display driver interface (DDI) to the OS. In the view of the OS, the driver wrapper is the single common driver which receives requests from the OS. The driver wrapper dispatches the requests from the OS to the display drivers and relays responses from the display drivers to the OS. The driver wrapper of the present invention is compatible with multiple distinct display drivers.
    • 提供了一种支持WDDM架构中多个显示适配器的方法和系统。 驱动程序包装器用作操作系统和显示驱动程序之间的接口。 驱动程序包装器根据操作系统的知识隐藏显示驱动程序,并向操作系统提供标准显示驱动程序接口(DDI)。 在操作系统视图中,驱动程序包装器是从操作系统接收请求的单一公共驱动程序。 驱动程序包装器将操作系统的请求发送到显示驱动程序,并将显示驱动程序的响应中继到操作系统。 本发明的驱动器包装器与多个不同的显示驱动器兼容。
    • 6. 发明授权
    • Plasmonic device tuned using liquid crystal molecule dipole control
    • 使用液晶分子偶极子控制调谐的等离子体装置
    • US08355099B2
    • 2013-01-15
    • US12635349
    • 2009-12-10
    • Liang TangAkinori HashimuraJiandong HuangApostolos T. Voutsas
    • Liang TangAkinori HashimuraJiandong HuangApostolos T. Voutsas
    • G02F1/1333
    • G02F1/23G02F2203/10G02F2203/34
    • A plasmonic display device is provided with liquid crystal dipole molecule control. The device is made from a first set of electrodes including at least one electrically conductive top electrode and at least one electrically conductive bottom electrode capable of generating a first electric field in a first direction. A second set of electrodes, including an electrically conductive right electrode and an electrically conductive left electrode, is capable of generating a second electric field in a second first direction. A dielectric layer overlies the bottom electrode, made from a liquid crystal material with molecules having dipoles responsive to an electric field. A plasmonic layer, including a plurality of discrete plasmonic particles, is interposed between the first and second set of electrodes and in contact with the dielectric layer. In one aspect, the plasmonic layer is embedded in the dielectric layer.
    • 具有液晶偶极子分子控制的等离子体显示装置。 该装置由第一组电极制成,其包括至少一个导电顶电极和能够沿第一方向产生第一电场的至少一个导电底电极。 包括导电右电极和导电左电极的第二组电极能够在第二第一方向上产生第二电场。 电介质层覆盖在液晶材料制成的底部电极上,分子具有响应于电场的偶极子。 包括多个离散等离子体激元的等离子体激元层介于第一和第二组电极之间并与电介质层接触。 在一个方面,等离子体激元层嵌入电介质层。
    • 7. 发明授权
    • Plasmonic device tuned using elastic and refractive modulation mechanisms
    • 使用弹性和折射调制机制调谐等离子体装置
    • US08339543B2
    • 2012-12-25
    • US12621567
    • 2009-11-19
    • Liang TangAkinori HashimuraApostolos T. Voutsas
    • Liang TangAkinori HashimuraApostolos T. Voutsas
    • G02F1/1333
    • G02B5/008G02F1/0131G02F1/1334G02F1/133555G02F1/23G02F2203/10G02F2203/15G02F2203/34
    • A plasmonic display device is provided having dual modulation mechanisms. The device has an electrically conductive bottom electrode that may be either transparent or reflective. A dielectric layer overlies the bottom electrode, made from an elastic polymer material having a refractive index responsive to an electric field. An electrically conductive top electrode, either transparent or reflective, overlies the dielectric layer. A plasmonic layer, including a plurality of discrete plasmonic particles, is interposed between the top and bottom electrodes and in contact with the dielectric layer. In one aspect, the plasmonic layer is embedded in the dielectric layer. Alternately, the plasmonic layer overlies the bottom (or top) electrode. Then, the dielectric layer overlies the plasmonic layer particles and exposed regions of the bottom electrode between the first plasmonic layer particles.
    • 提供了具有双重调制机制的等离子体显示装置。 该器件具有可以是透明或反射的导电底部电极。 介电层覆盖在由电场响应的折射率的弹性聚合物材料制成的底部电极上。 透明或反射的导电顶电极覆盖介电层。 包括多个离散等离子体激元的等离子体激元层介于顶电极和底电极之间并与电介质层接触。 在一个方面,等离子体激元层嵌入电介质层。 或者,等离子体激元层覆盖底部(或顶部)电极。 然后,电介质层覆盖等离子体激元层颗粒和第一等离子体激元层颗粒之间的底部电极的暴露区域。
    • 8. 发明申请
    • Physical Modulation Tuned Plasmonic Device
    • 物理调制调谐等离子体装置
    • US20120262778A1
    • 2012-10-18
    • US13532177
    • 2012-06-25
    • Akinori HashimuraLiang TangApostolos T. Voutsas
    • Akinori HashimuraLiang TangApostolos T. Voutsas
    • G02B26/00
    • G02F1/23G02F1/19G02F2203/10
    • A plasmonic display device is provided that uses physical modulation mechanisms. The device is made from an electrically conductive bottom electrode and a first dielectric layer overlying the bottom electrode. The first dielectric layer is a piezoelectric material having an index of expansion responsive to an electric field. An electrically conductive top electrode overlies the first dielectric layer. A first plasmonic layer, including a plurality of discrete plasmonic particles, is interposed between the top and bottom electrodes and in contact with the first dielectric layer. In one aspect, the plasmonic particles are an expandable polymer material covered with a metal coating having a size responsive to an electric field.
    • 提供了使用物理调制机制的等离子体显示装置。 该器件由导电底部电极和覆盖底部电极的第一电介质层制成。 第一电介质层是具有响应于电场的扩展指数的压电材料。 导电顶电极覆盖在第一电介质层上。 包括多个离散等离子体激元的第一等离子体激元层介于顶电极和底电极之间并与第一电介质层接触。 在一个方面,等离子体激元粒子是覆盖有对电场有响应尺寸的金属涂层的可膨胀聚合物材料。
    • 10. 发明申请
    • Data Processing System and Method
    • 数据处理系统和方法
    • US20120117084A1
    • 2012-05-10
    • US13258495
    • 2010-01-25
    • Liang TangShan-Qing LiLei WangKe-Yan LiuWei Liu
    • Liang TangShan-Qing LiLei WangKe-Yan LiuWei Liu
    • G06F17/30
    • G06T7/246
    • Embodiments of the present invention relate to a data processing method comprising the steps of processing a first sample set associated with first results of tracking a target in a number of image frames using a first object classifier arranged to operate according to a first feature and processing a second sample set associated with second results of tracking the target in said number of image frames using a second object classifier arrange to operate according to a second feature, and using at least one of the first and second tracking results to influence at least one particle filter adapted to influence at least one of subsequent first and second tracking results.
    • 本发明的实施例涉及一种数据处理方法,包括以下步骤:使用布置为根据第一特征进行操作的第一对象分类器来处理与在多个图像帧中跟踪目标的第一结果相关联的第一样本集,并处理 第二样本集合,其与使用安排按照第二特征进行操作的第二对象分类器相关联地跟踪所述数量的图像帧中的目标的第二结果,以及使用第一和第二跟踪结果中的至少一个来影响至少一个粒子滤波器 适于影响随后的第一和第二跟踪结果中的至少一个。