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    • 1. 发明申请
    • REAL-TIME, BI-DIRECTIONAL TRANSLATION
    • 实时,双向翻译
    • US20140358516A1
    • 2014-12-04
    • US13542190
    • 2012-07-05
    • Yu-Kuan LinHung-Ying TyanChung-Yih Wang
    • Yu-Kuan LinHung-Ying TyanChung-Yih Wang
    • G06F17/28
    • G06F17/289
    • Methods, systems, and apparatus, including computer programs encoded on a computer-readable storage medium, that include receiving a first audio signal from a first client communication device. A transcription of the first audio signal is then generated. Next, the transcription is translated. Then a second audio signal is generated from the translation. And then the following are communicated to a second client communication device: (i) the first audio signal received from the first device; and (2) the second audio signal generated from the translation of the transcription of the first audio signal received from the first client communication device.
    • 包括在计算机可读存储介质上编码的计算机程序的方法,系统和装置包括从第一客户端通信设备接收第一音频信号。 然后生成第一音频信号的转录。 接下来,转录被翻译。 然后从翻译生成第二音频信号。 然后将以下信息传送到第二客户端通信设备:(i)从第一设备接收的第一音频信号; 和(2)从从第一客户端通信设备接收的第一音频信号的转录的转换产生的第二音频信号。
    • 3. 发明授权
    • Method of measuring chemical concentration based on spatial separation and resolution of luminescence
    • 基于空间分离和发光分辨率测量化学浓度的方法
    • US06501549B1
    • 2002-12-31
    • US09077694
    • 1998-12-03
    • Joseph D. AndradeChung-Yih WangVladimir HladyPhilip M. TrioloRobert J. Scheer
    • Joseph D. AndradeChung-Yih WangVladimir HladyPhilip M. TrioloRobert J. Scheer
    • G01B1100
    • G01N21/763G01N21/6456G01N21/76
    • A method and associated apparatus for measuring chemical concentration in a liquid sample based on spatial separation and resolution of light is disclosed. The method is preferably applied to sensitive, quantitative, luminescence-based biosensors which reads the analyte concentration via spatial distribution of the emitted light. The detection of light is used to assess the spatial position, rather than the intensity or wavelength, of emitted light. A bioluminescent or chemiluminescent reaction requiring, for example, ATP, NADPH or NADH as a specific, and sensitive co-factor is used. ATP or NADH concentration is modulated, “tuned,” and/or regulated via, for example, an enzyme which consumes (“consumase”) ATP, NADPH, or NADH, thereby producing a spatial distribution of ATP or NADH and a spatial distribution in the emitted light. By appropriate control of the consumase or “synthase” activity and kinetics, a sensitive, specific, and easily readable luminescent pattern is produced, permitting detection.
    • 公开了一种基于空间分离和光分辨率来测量液体样品中化学浓度的方法和相关装置。 该方法优选地应用于通过发射光的空间分布读取分析物浓度的灵敏的,定量的,基于发光的生物传感器。 光的检测用于评估发射光的空间位置,而不是强度或波长。 使用需要例如ATP,NADPH或NADH作为特异性和敏感辅因子的生物发光或化学发光反应。 ATP或NADH浓度通过例如消耗(“消耗”)ATP,NADPH或NADH的酶“调节”和/或调节,由此产生ATP或NADH的空间分布和空间分布 发出的光。 通过适当控制消耗或“合成酶”活性和动力学,产生敏感,特异且容易读取的发光图案,允许检测。