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    • 3. 发明申请
    • CONTROL DEVICE FOR A CHILDREN'S BOUNCER AND INFANT SUPPORT
    • 控制孩子的孩子和婴儿支持的设备
    • WO2012033944A1
    • 2012-03-15
    • PCT/US2011/050875
    • 2011-09-08
    • KIDS II, INC.GILBERT, DavidCHEN, Jing RuXING, Zheng, Qiao
    • GILBERT, DavidCHEN, Jing RuXING, Zheng, Qiao
    • A47D13/10G01L1/16H01L41/113
    • A47D13/107H01L41/1132
    • Various embodiments of the present invention are directed to a piezoelectric motion sensing apparatus (530) and a bouncer control device (40) configured to control the oscillation of a children's bouncer based on feedback from the piezoelectric motion sensing apparatus (530). In various embodiments, the piezoelectric motion sensing apparatus is configured to sense the motion of a body to which it is attached, such as a children's bouncer, and provide a feedback signal indicative of the motion. In addition, various embodiments of the present invention are directed to an infant support control device (40) configured to impart soothing sensation to a child positioned in the infant support. In particular, the infant support control device is configured to impart gentle, repetitive pulses to an infant support that mimic the heartbeat of a parent or caregiver.
    • 本发明的各种实施例涉及一种压电运动感测装置(530)和一个保持器控制装置(40),其被配置为基于来自压电运动感测装置(530)的反馈来控制儿童跳板的振荡。 在各种实施例中,压电运动感测装置被配置为感测其附接到的身体的运动,例如儿童保镖,并且提供指示运动的反馈信号。 此外,本发明的各种实施例涉及一种婴儿支持控制装置(40),其被配置为将舒缓感觉赋予位于婴儿支架中的儿童。 特别地,婴儿支持控制装置被配置为向模拟父母或看护者的心跳的婴儿支持件施加温和的重复脉冲。
    • 7. 发明申请
    • MULTI-USER DISCOVERY
    • 多用户发现
    • US20120276996A1
    • 2012-11-01
    • US13244069
    • 2011-09-23
    • Dang Van TRANYingnan ZHUXing ZHENGJaffar KHOSHGOZARAN
    • Dang Van TRANYingnan ZHUXing ZHENGJaffar KHOSHGOZARAN
    • A63F13/00
    • H04N21/47815H04N21/25883H04N21/4126H04N21/42202H04N21/8133H04N21/8352H04N21/84
    • In a first embodiment of the present invention, a method is provided for enhancing full-app content playing on a first device, the method comprising: receiving a first selection of a first item from a first micro-app; receiving a second selection of a second item from a second micro-app, wherein the second micro-app is different than the first micro-app and the second selection is in a different format than the first selection; retrieving item context information regarding the first item; retrieving item context information regarding the second item; issuing a query to a micro-app partner based upon both the item context information regarding the first item and the item context information regarding the second item; receiving results from the micro-app partner; and causing at least a portion of the results to be displayed or played.
    • 在本发明的第一实施例中,提供了一种用于在第一设备上增强全应用内容播放的方法,所述方法包括:从第一微应用接收第一项目的第一选择; 从第二微应用程序接收第二项目的第二选择,其中所述第二微应用程序不同于所述第一微应用程序,并且所述第二选择具有与所述第一选择不同的格式; 检索关于第一项目的项目上下文信息; 检索关于第二项的项目上下文信息; 基于关于第一项目的项目上下文信息和关于第二项目的项目上下文信息,向微应用程序伙伴发出查询; 接收微型应用程序伙伴的结果; 并且使得至少一部分结果被显示或播放。
    • 10. 发明授权
    • Measurement of fluorescence using capillary isoelectric focusing
    • 使用毛细管等电聚焦测量荧光
    • US06852206B2
    • 2005-02-08
    • US09832807
    • 2001-04-12
    • Janusz PawliszynXing-Zheng WuTiemin Huang
    • Janusz PawliszynXing-Zheng WuTiemin Huang
    • G01N21/64G01N27/447C02F1/469
    • G01N27/44721G01N27/44795
    • Improved apparatus is disclosed for carrying out axially illuminated laser induced fluorescence whole-column imaging detection in the capillary isoelectric focusing of proteins. The separation capillary was made of low refractive index Teflon conditioned with methylcellulose to reduce electroosmotic flow and a small amount of high refractive index organic solvent (glycerol) was added to the sample mixture. It was found that an axially directed laser excitation beam was propagated essentially with total internal reflection, so that minimum interference arose from stray light or from scattering light originating from the wall of the capillary. With the naturally fluorescent protein R-phycoerythrin, a concentration detection limit LOD 10−11 M or mass LOD 10−17 Mo was obtained.
    • 公开了改进的装置,用于在蛋白质的毛细管等电聚焦中进行轴向照射的激光诱导的荧光全色谱成像检测。 分离毛细管由用甲基纤维素调节的低折射率特氟隆制成,以减少电渗流量,并向样品混合物中加入少量高折射率有机溶剂(甘油)。 已经发现,轴向定向的激光激发光束基本上以全内反射传播,使得最小干扰源自杂散光或源自毛细管壁的散射光。 使用天然荧光蛋白R-藻红蛋白,获得浓度检测限LOD 10 -11 M或质量LOD 10 -17 Mo。