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    • 1. 发明授权
    • Method and apparatus for eye and eyewear characteristics measurement
    • 眼睛和眼镜特征测量的方法和装置
    • US09395562B1
    • 2016-07-19
    • US14680871
    • 2015-04-07
    • Hoa NguyenSameer CholayilPhuong PhamCuong Manh Nguyen
    • Hoa NguyenSameer CholayilPhuong PhamCuong Manh Nguyen
    • A61B3/10G02C13/00A61B3/00A61B3/14
    • G02C13/005A61B3/0025A61B3/111A61B3/14
    • A method and apparatus for contactless measurement of the characteristics of patients' eyes and eyewear without using any reference device for scaling measurements. The non-contact system comprises of a measurement device having an array of proximity sensors for contactless distance measurement, which is embracing a mobile device having a digital camera, a processor, gyroscope or 3-axis accelerometer sensors, and wireless transceivers. The wireless transceivers support fast and real-time communication between the mobile device and the measurement device. The mobile device is configured to obtain information of distance between the patient face the measurement device at the same time as the digital camera is capturing images of the patient. Such distances assist the processor of the mobile device to re-construct actual eye and eyewear characteristics from the captured image of the digital camera. The built-in gyroscope sensors may be used to correct errors caused by inadequate orientation of the patient's face and/or the mobile device. The method thus enables fast, accurate and reference less measurement, and reduces the responsibilities of users.
    • 一种用于非接触式测量患者眼睛和眼镜的特征的方法和装置,而不使用任何参考装置进行缩放测量。 非接触式系统包括具有用于非接触式距离测量的接近传感器阵列的测量装置,其包括具有数字照相机,处理器,陀螺仪或3轴加速度计传感器的移动装置以及无线收发器。 无线收发器支持移动设备和测量设备之间的快速和实时通信。 移动装置被配置为在数字照相机正在拍摄患者的图像的同时获得面对测量装置的患者之间的距离的信息。 这样的距离有助于移动设备的处理器从数字照相机的拍摄图像重构实际的眼睛和眼镜特征。 内置的陀螺仪传感器可用于校正由患者脸部和/或移动装置的不适当取向引起的错误。 因此,该方法能够快速,准确和参考较少的测量,并减少用户的责任。
    • 2. 发明授权
    • Handheld automotive diagnostic tool with VIN decoder and communication system
    • 手持式汽车诊断工具,具有VIN解码器和通信系统
    • US09117319B2
    • 2015-08-25
    • US12501698
    • 2009-07-13
    • Ieon ChenRobert MadisonKeith AndreasenPhuong Pham
    • Ieon ChenRobert MadisonKeith AndreasenPhuong Pham
    • G01M17/00G07C5/00G07C5/08
    • G07C5/008G07C5/0808G07C2205/02
    • Provided is a method of receiving data from a vehicle onboard computer. The onboard computer is configured to transmit vehicle identification data in response to receipt of an identification request, which is transmitted in a basic communication protocol. The onboard computer is further configured to transmit private operational data in response to receipt of a private data request. The private data request is transmitted in a diagnostic protocol. The method includes connecting a scan tool to the onboard computer, and polling the onboard computer to identify the basic communication protocol. The identification request is then transmitted to the onboard computer. Vehicle identification data is subsequently received from the onboard computer. A protocol database having a plurality of diagnostic protocols is then accessed. Each diagnostic protocol is associated with respective vehicle identification data. The diagnostic protocol is then determined based on the received vehicle identification data.
    • 提供一种从车载计算机接收数据的方法。 车载计算机被配置为响应于以基本通信协议发送的识别请求的接收来发送车辆识别数据。 板载计算机还被配置为响应于接收到私人数据请求而发送专用操作数据。 专用数据请求以诊断协议传输。 该方法包括将扫描工具连接到车载计算机,并轮询车载计算机以识别基本通信协议。 然后将识别请求发送到车载计算机。 随后从车载计算机接收车辆识别数据。 然后访问具有多个诊断协议的协议数据库。 每个诊断协议与相应的车辆识别数据相关联。 然后基于所接收的车辆识别数据来确定诊断协议。
    • 3. 发明申请
    • Enhanced production of recombinant proteins by transient transfection of suspension-growing mammalian cells
    • 通过瞬时转染悬浮培养的哺乳动物细胞增强重组蛋白的产生
    • US20050170450A1
    • 2005-08-04
    • US10477148
    • 2002-05-07
    • Yves DurocherSylvie PerretPhuong PhamAmine Kamen
    • Yves DurocherSylvie PerretPhuong PhamAmine Kamen
    • C12N5/071C12N15/85C12P21/02C12P21/06C12N5/08
    • Disclosed is a new process for the production of recombinant proteins, by transient transfection of suspension-grown human embryonic kidney cells (293 cell line and its genetic variants) with an expression vector, using polyethylenimine (PEI) as a transfection reagent. In a preferred embodiment, the process uses 293E cells expressing the Epstein-Barr virus (EBV) EBNA 1 protein, in combination with an oriP-based episomal expression vector having an improved cytomegalovirus expression cassette comprising the CMV5 promoter. The process combines in a single step the cell growth, transfection and protein expression, is carried out without changing the culture medium, and allows to achieve high expression levels in a short period of time. The process may be carried out in a serum-free, low-protein culture medium, is easily scalable, compatible with continuous production processes, and fully adapted to high-throughput production of milligram quantities of recombinant proteins.
    • 公开了通过使用聚乙烯亚胺(PEI)作为转染试剂用表达载体瞬时转染悬浮培养的人胚胎肾细胞(293细胞系及其遗传变体)来生产重组蛋白质的新方法。 在优选的实施方案中,该方法使用表达爱泼斯坦 - 巴尔病毒(EBV)EBNA 1蛋白的293E细胞与具有包含CMV5启动子的改良的巨细胞病毒表达盒的基于oriP的附加型表达载体的组合。 该过程在一个步骤中结合细胞生长,转染和蛋白质表达,不改变培养基进行,并允许在短时间内达到高表达水平。 该方法可以在无血清的低蛋白培养基中进行,易于扩展,与连续生产过程相容,并且完全适应于高产量的毫克量的重组蛋白质。
    • 4. 发明申请
    • Automotive data logger
    • 汽车数据记录仪
    • US20060293811A1
    • 2006-12-28
    • US11166719
    • 2005-06-24
    • Keith AndreasenPhuong Pham
    • Keith AndreasenPhuong Pham
    • G06F19/00
    • G07C5/0808
    • A self-contained, hand held automotive diagnostic tool and method for logging automotive diagnostic data is disclosed. An automotive diagnostic tool is connected to a programming device, at which time the tool is programmed to log specified diagnostic data in response to detection of a selected vehicle diagnostic indicator. The tool is then connected to a vehicle diagnostic port, where diagnostic information is received by the tool. The tool detects the occurrence of the specified vehicle diagnostic indicator and logs diagnostic data for a selectable pre-indicator detection period and a selectable post-indicator detection period.
    • 公开了一种独立的手持式汽车诊断工具和用于记录汽车诊断数据的方法。 汽车诊断工具连接到编程设备,此时该工具被编程为响应于所选择的车辆诊断指示器的检测而记录指定的诊断数据。 然后,该工具连接到车辆诊断端口,其中工具接收诊断信息。 该工具检测指定的车辆诊断指示器的出现,并记录可选择的预先指示器检测周期的诊断数据和可选择的后指示符检测周期。
    • 6. 发明授权
    • Vehicle diagnostic system
    • 车辆诊断系统
    • US08068951B2
    • 2011-11-29
    • US12077855
    • 2008-03-21
    • Ieon C. ChenKeith AndreasenPhuong PhamRobert Madison
    • Ieon C. ChenKeith AndreasenPhuong PhamRobert Madison
    • G06F19/00
    • G07C5/008G07C5/0808G07C5/085
    • There is provided a method of providing vehicle support. The method includes receiving diagnostic data from the onboard vehicle computer. The diagnostic data is received by an automotive diagnostic tool and is then communicated to a prior experience database having information related to diagnostic solutions associated with combinations of diagnostic data. The prior experience database is arranged to match the received diagnostic data to possible diagnostic solutions. The diagnostic solutions are then prioritized in accordance with ranked matches of the received diagnostic data to the previous combinations of diagnostic data stored in the prior experience database. The possible diagnostic solution associated with the highest ranked combination of diagnostic data is identified as the most likely solution. Vehicle components associated with the most likely solution are then identified. The diagnostic tool is subsequently configured to log diagnostic data related to the vehicle components associated with the most likely solution.
    • 提供了一种提供车辆支撑的方法。 该方法包括从车载计算机接收诊断数据。 诊断数据由汽车诊断工具接收,然后被传送到具有与诊断数据的组合相关联的诊断解决方案相关信息的先前经验数据库。 安排先前的经验数据库以将接收到的诊断数据与可能的诊断解决方案相匹配。 然后根据接收到的诊断数据的排序匹配与先前经验数据库中存储的诊断数据的先前组合来对诊断解决方案进行优先级排序。 与诊断数据排名最高的组合相关联的可能诊断解决方案被确定为最有可能的解决方案。 然后识别与最可能的解决方案相关联的车辆部件。 诊断工具随后被配置为记录与最可能的解决方案相关联的车辆部件相关的诊断数据。
    • 7. 发明申请
    • Vehicle diagnostic system
    • 车辆诊断系统
    • US20080177438A1
    • 2008-07-24
    • US12077855
    • 2008-03-21
    • Ieon C. ChenKeith AndreasenPhuong PhamRobert Madison
    • Ieon C. ChenKeith AndreasenPhuong PhamRobert Madison
    • G01M17/00
    • G07C5/008G07C5/0808G07C5/085
    • There is provided a method of providing vehicle support. The method includes receiving diagnostic data from the onboard vehicle computer. The diagnostic data is received by an automotive diagnostic tool and is then communicated to a prior experience database having information related to diagnostic solutions associated with combinations of diagnostic data. The prior experience database is arranged to match the received diagnostic data to possible diagnostic solutions. The diagnostic solutions are then prioritized in accordance with ranked matches of the received diagnostic data to the previous combinations of diagnostic data stored in the prior experience database. The possible diagnostic solution associated with the highest ranked combination of diagnostic data is identified as the most likely solution. Vehicle components associated with the most likely solution are then identified. The diagnostic tool is subsequently configured to log diagnostic data related to the vehicle components associated with the most likely solution.
    • 提供了一种提供车辆支撑的方法。 该方法包括从车载计算机接收诊断数据。 诊断数据由汽车诊断工具接收,然后被传送到具有与诊断数据的组合相关联的诊断解决方案相关信息的先前经验数据库。 安排先前的经验数据库以将接收到的诊断数据与可能的诊断解决方案相匹配。 然后根据接收到的诊断数据的排序匹配与先前经验数据库中存储的诊断数据的先前组合来对诊断解决方案进行优先级排序。 与诊断数据排名最高的组合相关联的可能诊断解决方案被确定为最有可能的解决方案。 然后识别与最可能的解决方案相关联的车辆部件。 诊断工具随后被配置为记录与最可能的解决方案相关联的车辆部件相关的诊断数据。