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    • 2. 发明申请
    • DECODING A WATERMARK AND PROCESSING IN RESPONSE THERETO
    • 解码水印和处理响应
    • US20120045089A1
    • 2012-02-23
    • US13288194
    • 2011-11-03
    • Daniel O. RamosKevin C. JonesGeoffrey B. Rhoads
    • Daniel O. RamosKevin C. JonesGeoffrey B. Rhoads
    • G06K9/00
    • G06T1/005G06F3/0482G06F17/2235G06F17/2247G06F17/30026G06F17/30047G06F17/30058H04N1/32144H04N2201/3233H04N2201/3246
    • Watermark encoders and decoders can be integrated into operating systems, Internet browsers, media players, and other applications and devices. Such integration enables the watermark-enabled application or device to provide additional functionality and information available via the watermark. The watermark, for example, may link to metadata or actions related to a media object. To exploit this watermark enabled functionality, the integrated application uses a watermark decoder to access the related metadata and actions. The user interface of the integrated application is enhanced to present metadata and actions linked via the watermark. Similarly, watermark encoders may be integrated into applications to convert media objects into enhanced, watermarked objects. A variety of other arrangements and features are also detailed. Many arrangements can be implemented using object identifiers other than watermarks.
    • 水印编码器和解码器可以集成到操作系统,互联网浏览器,媒体播放器和其他应用程序和设备中。 这种集成使得支持水印的应用或设备能够提供通过水印可用的附加功能和信息。 例如,水印可以链接到与媒体对象相关的元数据或动作。 为了利用该水印启用功能,集成应用程序使用水印解码器来访问相关的元数据和动作。 集成应用的用户界面被增强以呈现通过水印链接的元数据和动作。 类似地,水印编码器可以集成到应用中以将媒体对象转换成增强的带水印的对象。 还详细介绍了各种其他安排和功能。 可以使用除水印之外的对象标识符来实现许多布置。
    • 5. 发明授权
    • Decoding a watermark and processing in response thereto
    • 对水印进行解码和处理
    • US09275053B2
    • 2016-03-01
    • US13288194
    • 2011-11-03
    • Daniel O. RamosKevin C. JonesGeoffrey B. Rhoads
    • Daniel O. RamosKevin C. JonesGeoffrey B. Rhoads
    • G06F3/048G06F17/30H04N1/32
    • G06T1/005G06F3/0482G06F17/2235G06F17/2247G06F17/30026G06F17/30047G06F17/30058H04N1/32144H04N2201/3233H04N2201/3246
    • Watermark encoders and decoders can be integrated into operating systems, Internet browsers, media players, and other applications and devices. Such integration enables the watermark-enabled application or device to provide additional functionality and information available via the watermark. The watermark, for example, may link to metadata or actions related to a media object. To exploit this watermark enabled functionality, the integrated application uses a watermark decoder to access the related metadata and actions. The user interface of the integrated application is enhanced to present metadata and actions linked via the watermark. Similarly, watermark encoders may be integrated into applications to convert media objects into enhanced, watermarked objects. A variety of other arrangements and features are also detailed. Many arrangements can be implemented using object identifiers other than watermarks.
    • 水印编码器和解码器可以集成到操作系统,互联网浏览器,媒体播放器和其他应用程序和设备中。 这种集成使得支持水印的应用或设备能够提供通过水印可用的附加功能和信息。 例如,水印可以链接到与媒体对象相关的元数据或动作。 为了利用该水印启用功能,集成应用程序使用水印解码器来访问相关的元数据和动作。 集成应用的用户界面被增强以呈现通过水印链接的元数据和动作。 类似地,水印编码器可以集成到应用中以将媒体对象转换成增强的带水印的对象。 还详细介绍了各种其他安排和功能。 可以使用除水印之外的对象标识符来实现许多布置。
    • 6. 发明申请
    • VIBRATIONAL SPECTROSCOPY FOR QUANTITATIVE MEASUREMENT OF ANALYTES
    • 用于分析测量的振动光谱
    • US20130221222A1
    • 2013-08-29
    • US13404868
    • 2012-02-24
    • Carlos R. BaizKevin C. JonesAndrei Tokmakoff
    • Carlos R. BaizKevin C. JonesAndrei Tokmakoff
    • G01J5/02
    • G01N21/35G01N21/3577G01N21/636G01N2201/1293G06F19/10
    • The present invention relates to systems and methods for the determination of the secondary structure composition of proteins using coherent two-dimensional infrared (2DIR) spectroscopy of backbone amide I vibrations (1580-1720 cm−1). Fractions of α-helix, β-sheet, and unassigned regions in globular proteins were determined by singular value decomposition using basis spectra from sixteen commercially-available proteins with known crystal structures. Preferred methods included removing each protein from the set and comparing the predicted composition against the crystal structure. The root-mean-squared (RMS) errors of the predicted secondary structure compositions were found to be 7.9% for α-helix, 5.5% for β-sheet, and 7.6% for unassigned regions. The structure analysis can also be performed using one-dimensional absorption spectra and the RMS errors are compared with those obtained from 2DIR.
    • 本发明涉及使用主链酰胺I振动(1580-1720cm-1)的相干二维红外(2DIR)光谱测定蛋白质的二级结构组成的系统和方法。 通过使用具有已知晶体结构的十六种市售蛋白质的基础光谱,通过奇异值分解来确定球形蛋白质中α-螺旋,β-折叠和未分配区域的部分。 优选的方法包括从组中除去每种蛋白质并将预测的组合物与晶体结构进行比较。 发现预测的二级结构组合物的均方根(RMS)误差为α-螺旋7.9%,β-折射率为5.5%,未分配区域为7.6%。 也可以使用一维吸收光谱进行结构分析,并将RMS误差与从2DIR获得的RMS误差进行比较。
    • 7. 发明授权
    • Hat holding apparatus
    • 帽子拿着装置
    • US5092472A
    • 1992-03-03
    • US306073
    • 1989-02-06
    • Kevin C. Jones
    • Kevin C. Jones
    • A47G25/10B60R7/10
    • A42B1/002A47G25/10B60R7/10
    • An improved hat holder having a crown ring and at least one adjustable strap for receiving a hat of the type having a crown and a brim for securing the hat to a surface. In a preferred embodiment, a pair of straps are connected to the surface by means of a first pair of Velcro pads connected to the ends of the straps and a second pair of Velcro pads adhesively connected to the surface whereby the hat may be conveniently placed or removed from the holder by simply separating one or both such straps at the Velcro pads from the surface.
    • 一种改进的帽子保持器,其具有冠环和至少一个可调节带,用于接收具有冠部和帽子的类型的帽子,用于将帽子固定到表面。 在优选实施例中,一对带通过连接到带的端部的第一对Velcro垫连接到表面,以及粘贴地连接到表面的第二对Velcro垫,由此帽子可以方便地放置或 通过简单地将Velcro垫中的一个或两个这样的带从表面分离从支架移除。
    • 8. 发明授权
    • Vibrational spectroscopy for quantitative measurement of analytes
    • 用于定量测量分析物的振动光谱
    • US09222881B2
    • 2015-12-29
    • US13404868
    • 2012-02-24
    • Carlos R. BaizKevin C. JonesAndrei Tokmakoff
    • Carlos R. BaizKevin C. JonesAndrei Tokmakoff
    • G06F19/10G01N21/35G01N21/63G01N21/3577
    • G01N21/35G01N21/3577G01N21/636G01N2201/1293G06F19/10
    • The present invention relates to systems and methods for the determination of the secondary structure composition of proteins using coherent two-dimensional infrared (2DIR) spectroscopy of backbone amide I vibrations (1580-1720 cm−1). Fractions of α-helix, β-sheet, and unassigned regions in globular proteins were determined by singular value decomposition using basis spectra from sixteen commercially-available proteins with known crystal structures. Preferred methods included removing each protein from the set and comparing the predicted composition against the crystal structure. The root-mean-squared (RMS) errors of the predicted secondary structure compositions were found to be 7.9% for α-helix, 5.5% for β-sheet, and 7.6% for unassigned regions. The structure analysis can also be performed using one-dimensional absorption spectra and the RMS errors are compared with those obtained from 2DIR.
    • 本发明涉及使用主链酰胺I振动(1580-1720cm-1)的相干二维红外(2DIR)光谱测定蛋白质的二级结构组成的系统和方法。 通过使用具有已知晶体结构的十六种市售蛋白质的基础光谱,通过奇异值分解来确定球形蛋白质中的α-螺旋,β-骨架和未分配区域的部分。 优选的方法包括从组中除去每种蛋白质并将预测的组合物与晶体结构进行比较。 发现预测的二级结构组成的均方根误差(RMS)误差为α-螺旋7.9%,未分配区域分别为5.5%和7.6%。 也可以使用一维吸收光谱进行结构分析,并将RMS误差与从2DIR获得的RMS误差进行比较。
    • 9. 发明授权
    • Systems and methods for processing content objects
    • 用于处理内容对象的系统和方法
    • US08091025B2
    • 2012-01-03
    • US11924914
    • 2007-10-26
    • Daniel O. RamosKevin C. JonesGeoffrey B. Rhoads
    • Daniel O. RamosKevin C. JonesGeoffrey B. Rhoads
    • G06F3/00
    • G06T1/005G06F3/0482G06F17/2235G06F17/2247G06F17/30026G06F17/30047G06F17/30058H04N1/32144H04N2201/3233H04N2201/3246
    • Watermark encoders and decoders can be integrated into operating systems, Internet browsers, media players, and other applications and devices. Such integration enables the watermark-enabled application or device to provide additional functionality and information available via the watermark. The watermark, for example, may link to metadata or actions related to a media object. To exploit this watermark enabled functionality, the integrated application uses a watermark decoder to access the related metadata and actions. The user interface of the integrated application is enhanced to present metadata and actions linked via the watermark. Similarly, watermark encoders may be integrated into applications to convert media objects into enhanced, watermarked objects. A variety of other arrangements and features are also detailed. Many arrangements can be implemented using object identifiers other than watermarks.
    • 水印编码器和解码器可以集成到操作系统,互联网浏览器,媒体播放器和其他应用程序和设备中。 这种集成使得支持水印的应用或设备能够提供通过水印可用的附加功能和信息。 例如,水印可以链接到与媒体对象相关的元数据或动作。 为了利用该水印启用功能,集成应用程序使用水印解码器来访问相关的元数据和动作。 集成应用的用户界面被增强以呈现通过水印链接的元数据和动作。 类似地,水印编码器可以集成到应用中以将媒体对象转换成增强的带水印的对象。 还详细介绍了各种其他安排和功能。 可以使用除水印之外的对象标识符来实现许多布置。