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    • 1. 发明申请
    • Non-Invasive Monitoring Device
    • 无创监测装置
    • US20120150000A1
    • 2012-06-14
    • US13320002
    • 2010-05-11
    • Ahmed Al-Shamma'aAlex MasonAndrew Shaw
    • Ahmed Al-Shamma'aAlex MasonAndrew Shaw
    • A61B5/145
    • H01P3/003A61B5/0507A61B5/14532H01Q7/00
    • The invention concerns a device for non invasive monitoring of the concentration of a constituent of a human or animal bloodstream. In the preferred example the device comprises drive circuitry (50) for provision of an alternating current at a microwave frequency. This frequency is adjustable. The drive circuitry may for example comprise a voltage controlled oscillator. The device has a sensor (19) adapted to be placed in proximity to the body of the human or animal, the sensor being electrically connected to said drive circuitry to receive said alternating current and being adapted to project microwave energy into the said body. Detector circuitry is provided for detecting a signal transmitted and/or reflected by the sensor, the detected signal properties being dependent on the concentration of the said blood constituent.
    • 本发明涉及用于非侵入性监测人或动物血流成分浓度的装置。 在优选示例中,该装置包括用于提供微波频率的交流电的驱动电路(50)。 该频率可调。 驱动电路可以例如包括压控振荡器。 该装置具有适于放置在靠近人或动物身体的传感器(19),所述传感器电连接到所述驱动电路以接收所述交流电并适于将微波能量投射到所述体内。 检测器电路用于检测由传感器传输和/或反射的信号,所检测的信号特性取决于所述血液成分的浓度。
    • 2. 发明申请
    • ELECTROMAGNETIC SENSOR
    • 电磁传感器
    • US20130076557A1
    • 2013-03-28
    • US13642271
    • 2011-04-21
    • Andrew ShawAhmed Al-Shamma'a
    • Andrew ShawAhmed Al-Shamma'a
    • F17D5/06G01S13/89
    • F17D5/06G01S13/89
    • Disclosed is a probe for use in a fluid pipeline, comprising: a transmitter for transmitting an RF signal via an antenna (50); a receiver for receiving an RF signal via an antenna; a processor operable to compare the received signal with an expected signal. Also disclosed is a method of assessing the condition of a pipeline by means of a probe located inside the pipeline, comprising the steps of: transmitting an RF signal from the probe; receiving an RF signal at the probe; comparing the received and an expected signal and, based on the result of the comparison, indicating that the pipeline is acceptable or not.
    • 公开了一种用于流体管道的探针,包括:用于经由天线(50)发送RF信号的发射器; 用于经由天线接收RF信号的接收机; 处理器,其可操作以将所接收的信号与预期信号进行比较。 还公开了一种通过位于管线内的探头来评估管道状况的方法,包括以下步骤:从探头发送RF信号; 在探头处接收RF信号; 比较接收的和预期的信号,并且基于比较的结果,指示管道是否可接受。
    • 5. 发明授权
    • Hybrid alpha-amylases
    • 混合型α-淀粉酶
    • US08841107B2
    • 2014-09-23
    • US13132881
    • 2009-12-11
    • Scott D. PowerAndrew Shaw
    • Scott D. PowerAndrew Shaw
    • C12N9/96C12N9/00C12N9/28
    • C12N9/2417C07K2319/00G06F19/12G06F19/16
    • Hybrid alpha-amylases are provided that share a conserved 3D structure in whole or in part with a wild-type Termamyl-like ?-amylase, e.g., a Bacillus amylase. In the hybrid, an N terminal portion of a Termamyl-like ?-amylase is replaced with sequences from an archae ? amylase. The sequence similarity between the two amylase sequences may be less than 60%. Conserving the wild-type 3D structure in the hybrid facilitates obtaining enzymatically active amylases. In one embodiment, one or both amylase sequences contribute residues to the B domain, resulting in particularly advantageous properties. For instance, replacement of the Ca2+ binding site in the B domain of the Termamyl-like ?-amylase with a B domain sequence of an archae ? amylase that does not bind Ca2+ can produce a hybrid that is fully active in the absence of Ca2+.
    • 提供杂交α-淀粉酶,其与野生型类戊酰样α-淀粉酶(例如芽孢杆菌淀粉酶)全部或部分共享保守的3D结构。 在杂交体中,类戊酰样α-淀粉酶的N末端部分被来自古细菌的序列替代 淀粉酶。 两个淀粉酶序列之间的序列相似性可以小于60%。 在杂交中保护野生型3D结构有助于获得酶活性淀粉酶。 在一个实施方案中,一个或两个淀粉酶序列向B结构域贡献残基,导致特别有利的性质。 例如,用具有古细菌的B结构域序列的Termamyl样α-淀粉酶的B结构域中的Ca 2+结合位点的替换 不结合Ca2 +的淀粉酶可以产生在不存在Ca 2+的情况下完全活性的杂交体。