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    • 32. 发明授权
    • System for calibrating dissolved oxygen analyzers using compressed fluids during cleaning
    • 在清洁过程中使用压缩流体校准溶解氧分析仪的系统
    • US07640784B2
    • 2010-01-05
    • US11522828
    • 2006-09-18
    • Chang-Dong Feng
    • Chang-Dong Feng
    • G12B13/00
    • G01N33/1806
    • A dissolved oxygen measurement system, and a method for calibrating a dissolved oxygen analyzer are provided. The method includes directing a pressurized cleaning fluid, having a known oxygen content, upon a sensing surface of a dissolved oxygen sensor disposed in a fluid. Then, the analyzer waits until the dissolved oxygen sensor response to the pressurized cleaning fluid is relatively stable, and stores a calibration value relative to the dissolved oxygen sensor response to the pressurized cleaning fluid. A dissolved oxygen measurement system is also provided. The system includes a dissolved oxygen sensor disposed in a fluid and a first source of a first compressed cleaning fluid that has a first dissolved oxygen content. A dissolved oxygen analyzer is coupled to the dissolved oxygen sensor and to the first valve and is configured to obtain a first calibration value related to the first dissolved oxygen content.
    • 提供溶解氧测量系统和用于校准溶解氧分析仪的方法。 该方法包括将具有已知氧含量的加压清洁流体引导到设置在流体中的溶解氧传感器的感测表面上。 然后,分析仪等待直到对加压清洗流体的溶解氧传感器响应相对稳定,并且存储相对于加压清洗流体的溶解氧传感器响应的校准值。 还提供了一种溶解氧测量系统。 该系统包括设置在流体中的溶解氧传感器和具有第一溶解氧含量的第一压缩清洁流体的第一源。 溶解氧分析仪耦合到溶解氧传感器和第一阀,并被配置成获得与第一溶解氧含量相关的第一校准值。
    • 33. 发明申请
    • CALIBRATION METHOD AND SYSTEM FOR PET SCANNERS
    • PET扫描仪的校准方法和系统
    • US20090283668A1
    • 2009-11-19
    • US12472285
    • 2009-05-26
    • Robert Gilbertson
    • Robert Gilbertson
    • G01T1/164G12B13/00
    • G01D18/00A61B6/037A61B2560/0223G21F5/015
    • A method, system and kit for calibrating a PET scanner is disclosed. A first aliquot (10) containing a quantity of a radionuclide dispersed in a solid matrix material is provided, wherein the first aliquot is sized and configured to be received for measurement by a conventional dose calibrator. A second aliquot (200) containing a quantity of the radionuclide dispersed in the solid matrix material is sized configured to be scanned in a PET scanner. The radionuclide/matrix materials in the first and second aliquots are obtained from the same batch of material, such that the two quantities have the same radioactivity density, or are obtained from different cross-calibrated batches of material. In a method, the first aliquot is placed in a does calibrator (36) and the radioactivity is measured. The second aliquot is scanned in the PET scanner (190) and the intensity of the image is correlated with the known radioactivity measured by the dose calibrator and used to calibrate the PET scanner.
    • 公开了一种用于校准PET扫描仪的方法,系统和套件。 提供了包含分散在固体基质材料中的一定数量的放射性核素的第一等分试样(10),其中所述第一等分试样的尺寸和构造被接收以供常规剂量校准器测量。 包含分散在固体基质材料中的一定数量的放射性核素的第二等分试样(200)的尺寸被配置为在PET扫描器中扫描。 第一和第二等分试样中的放射性核素/基体材料是从相同批次的材料获得的,使得两个量具有相同的放射性密度,或者是从不同的交叉校准批次的材料获得的。 在一种方法中,将第一等分试样放置在校准器(36)中,并测量放射性。 在PET扫描仪(190)中扫描第二等分试样,并且图像的强度与由剂量校准器测量的已知放射性相关并用于校准PET扫描仪。
    • 35. 发明申请
    • BICYCLE COMPONENT CALIBRATION DEVICE
    • 自行车组件校准装置
    • US20090210118A1
    • 2009-08-20
    • US12034149
    • 2008-02-20
    • Ryuichiro Takamoto
    • Ryuichiro Takamoto
    • G12B13/00
    • B62M9/122B62M25/08
    • A bicycle component calibration device and method are provided that assist the user in determining that an adjustment was made. Basically, when a calibration command in inputted to indicate a selected adjustment amount in a selected adjustment direction, the bicycle component (e.g., a derailleur) initially moves farther than the selected adjustment amount in a first direction by an adjustment indicating amount in response to the calibration command, and then subsequently moves the bicycle component in a second direction to the selected adjustment position in which the second direction is opposite to the first direction. The adjustment indicating amount is greater than the selected adjustment amount of the calibration command. Finally, the selected adjustment position is set as an adjusted position of the bicycle component.
    • 提供一种自行车部件校准装置和方法,其帮助用户确定进行了调整。 基本上,当输入的校准命令指示所选择的调整方向上的选定的调整量时,自行车部件(例如,拨链器)首先比第一方向上的所选择的调整量更远地响应于 校准命令,然后随后将自行车部件沿第二方向移动到所述第二方向与第一方向相反的所选调节位置。 调整指示量大于所选校准命令的调整量。 最后,将所选择的调整位置设定为自行车部件的调整位置。
    • 37. 发明申请
    • APPARATUS AND METHOD FOR CALIBRATING AN ACOUSTIC DETECTION SYSTEM
    • 用于校准声学检测系统的装置和方法
    • US20090073803A1
    • 2009-03-19
    • US11856235
    • 2007-09-17
    • Richard A. Smith
    • Richard A. Smith
    • G12B13/00
    • G08B13/1672G08B13/04G08B13/1663G08B29/183G08B29/22
    • A system and method for calibrating an acoustic detector. The method includes the steps of simultaneously transmitting an acoustic signal and an electromagnetic signal to an acoustic detector, receiving both signals, calculating a timing difference between the reception of the acoustic signal and electromagnetic signal, and setting a first time threshold used to determine if a glass panel is broken using the calculated difference and storing the first time threshold. A sensitivity level is also set based upon the determined timing difference. A unique key signature in the acoustic signal and electromagnetic signal is detected and matched with a stored signature to determine whether the signals are from a calibration signal. The timing difference is only calculated if both signals are calibration signals.
    • 用于校准声学检测器的系统和方法。 该方法包括以下步骤:将声信号和电磁信号同时发送到声检测器,接收两信号,计算声信号的接收与电磁信号之间的定时差,以及设定用于确定是否 使用计算出的差异破坏玻璃面板并存储第一时间阈值。 还基于确定的时间差设置灵敏度水平。 检测声信号和电磁信号中的唯一密钥签名并与存储的签名匹配,以确定信号是否来自校准信号。 仅当两个信号都是校准信号时才计算定时差。
    • 40. 发明授权
    • Non-circular-orbit detection method and apparatus
    • 非圆轨道检测方法和装置
    • US07470896B2
    • 2008-12-30
    • US10608704
    • 2003-06-27
    • John Thomas PawlakAnthony Perrone
    • John Thomas PawlakAnthony Perrone
    • G12B13/00
    • G01T1/1644A61B6/027A61B6/037
    • A non-circular-orbit detection method and apparatus is disclosed. In some embodiments, the method includes: locating first and second detectors, displaced with respect to one another, a distance from a patient; moving the first and second detectors in a direction towards the patient until a first sensor senses a first point of the patient at a first sensing position; moving the first and second detectors in a second direction from the first sensing position until a second sensor senses a second point of the patient at a second sensing position; and moving the first and second detectors in a non-circular-orbit around the patient. Preferably, the method includes determining the non-circular-orbit based on, among other things, locations of the first point and the second point.
    • 公开了一种非圆轨道检测方法和装置。 在一些实施例中,该方法包括:定位相对于彼此移位的第一和第二检测器,距离患者的距离; 沿着朝向患者的方向移动第一和第二检测器,直到第一传感器在第一感测位置处感测到患者的第一点; 将第一和第二检测器从第一感测位置向第二方向移动,直到第二传感器在第二检测位置处感测到患者的第二点; 以及使所述第一和第二检测器在所述患者周围的非圆形轨道中移动。 优选地,该方法包括基于第一点和第二点的位置来确定非圆轨道。