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    • 2. 发明申请
    • Method for consolidatin medical records through the world wide web
    • 通过万维网整合医疗记录的方法
    • US20050209891A1
    • 2005-09-22
    • US11141430
    • 2005-05-31
    • Charles JacobusJeffrey BraunPaul Cobb
    • Charles JacobusJeffrey BraunPaul Cobb
    • G06Q10/00G06F17/60
    • G06F19/322G06F19/00G06Q10/10G06Q50/22G06Q50/24G16H10/60
    • Medical records, clinical observations, and medical imagery are organized and aggregated into a common database, enabling the data to be viewed and/or updated by medical practitioners world-wide. The information may also be viewed and monitored by patients or their relatives for accuracy, also regardless of their location. The invention further allows the records to be updated by manually controlled or automated instrumentation which measures medical parameters whether located in a doctors office, in a hospital setting, in the patient's home, or worn by the patient. Common access and point-to-point data transmission is via the global grid, or over public access common data networks supporting TCP/IP, most often referred to as the Internet. The same approach can be using insider an organization over an internal network or Intranet.
    • 医疗记录,临床观察和医学图像被组织并汇总成一个共同的数据库,使得数据可以被世界各地的医疗人员查看和/或更新。 这些信息也可以由患者或其亲属进行查看和监视,以获得准确性,也不管其位置如何。 本发明还允许通过手动控制或自动化仪器来更新记录,该仪器测量医疗参数,无论是医院办公室,医院环境中,在患者家中,还是患者佩戴的。 公共访问和点对点数据传输是通过全球网格,或通过公共访问支持TCP / IP的通用数据网络,通常被称为互联网。 同样的方法可以通过内部网络或内部网使用内部组织。
    • 3. 发明申请
    • Gesture-controlled interfaces for self-service machines and other applications
    • 用于自助服务机器和其他应用的手势控制接口
    • US20060013440A1
    • 2006-01-19
    • US11226831
    • 2005-09-14
    • Charles CohenGlenn BeachBrook CavellGene FoulkCharles JacobusJay ObermarkGeorge Paul
    • Charles CohenGlenn BeachBrook CavellGene FoulkCharles JacobusJay ObermarkGeorge Paul
    • G06K9/00
    • G06K9/00355A63F2300/1093A63F2300/6045G06F3/017G06T7/246
    • A gesture recognition interface for use in controlling self-service machines and other devices is disclosed. A gesture is defined as motions and kinematic poses generated by humans, animals, or machines. Specific body features are tracked, and static and motion gestures are interpreted. Motion gestures are defined as a family of parametrically delimited oscillatory motions, modeled as a linear-in-parameters dynamic system with added geometric constraints to allow for real-time recognition using a small amount of memory and processing time. A linear least squares method is preferably used to determine the parameters which represent each gesture. Feature position measure is used in conjunction with a bank of predictor bins seeded with the gesture parameters, and the system determines which bin best fits the observed motion. Recognizing static pose gestures is preferably performed by localizing the body/object from the rest of the image, describing that object, and identifying that description. The disclosure details methods for gesture recognition, as well as the overall architecture for using gesture recognition to control of devices, including self-service machines.
    • 公开了一种用于控制自助服务机器和其他设备的手势识别界面。 手势被定义为人类,动物或机器产生的运动和运动姿态。 跟踪特定身体特征,并解释静态和运动手势。 运动手势被定义为参数定界的振荡运动系列,被建模为参数线性参数动态系统,附加的几何约束允许使用少量的存储器和处理时间进行实时识别。 优选使用线性最小二乘法来确定表示每个姿态的参数。 特征位置测量结合使用手势参数种子的预测器仓组,并且系统确定哪个箱最适合观察到的运动。 识别静态姿势手势优选地通过将来自图像的其余部分的身体/物体定位,描述该对象并识别该描述来执行。 本公开详细描述了用于手势识别的方法,以及用于使用手势识别来控制设备(包括自助服务机器)的整体架构。
    • 6. 发明申请
    • Method and system of generating audit procedures and forms
    • 产生审计程序和形式的方法和制度
    • US20090113324A1
    • 2009-04-30
    • US11977288
    • 2007-10-24
    • L. Scott SpradlingStephen W. LindseyMarriette L. KershnerJames B. BassettCharles Jacobus
    • L. Scott SpradlingStephen W. LindseyMarriette L. KershnerJames B. BassettCharles Jacobus
    • G06F3/048G06Q10/00
    • G06Q10/10G06Q10/0635G06Q10/0639G06Q40/02G06Q40/025G06Q40/12G06Q40/123
    • The present invention provides a computer-implemented method for assessing risks associated with an audit. A user is presented with a plurality of audit items and a set of risk levels associated with the audit items and may also be presented with a plurality of prompts designed to elicit a set of responses from the user. The set of user responses being associated with a set of risks associated with the audit. The set of risk levels being associated with a set of assertions associated with the audit items and may include first and second risk levels of different degrees. The method further includes processing a set of responses received from the user in response to the items presented. The method includes automatically generating a suggested audit approach that is based at least in part on the processed responses. The method may also determine a set of procedures that are based on the responses. The set of procedures are presented to the user based on the suggested audit approach. The user is presented for selection with a set of audit approaches comprising the suggested audit approach and an alternative audit approach.
    • 本发明提供了一种用于评估与审计相关的风险的计算机实现的方法。 用户被呈现与审核项目相关联的多个审核项目和一组风险级别,并且还可以呈现设计成从用户引出一组响应的多个提示。 该组用户响应与与审计相关的一组风险相关联。 一组风险水平与与审计项目相关联的一组断言相关联,并且可以包括不同程度的第一和第二风险水平。 该方法还包括响应于所呈现的项目来处理从用户接收的一组响应。 该方法包括自动生成至少部分基于所处理的响应的建议的审计方法。 该方法还可以确定基于响应的一组过程。 根据建议的审计方法向用户提供一套程序。 用户可以通过一套包括建议的审计方法和替代审计方法的审计方法进行选择。
    • 7. 发明申请
    • Optical body tracker
    • 光学身体追踪器
    • US20050105772A1
    • 2005-05-19
    • US10958457
    • 2004-10-05
    • Nestor VoronkaCharles Jacobus
    • Nestor VoronkaCharles Jacobus
    • G06F3/00G06F3/01G06K9/00G06T7/20
    • G06F3/017A61B5/1127A63F2300/1087G06K9/00335G06T7/246
    • An optical system tracks the motion of objects, including the human body or portions thereof using a plurality of three-dimensional active markers based upon triangulation from data read via multiple linear CCDs through cylindrical lenses. Each marker is lit in sequence so that it is in sync with a frame capture using the imaging system positioned and oriented so as to provide a basis for computing three-dimensional location. In the preferred embodiment, the imaging system detects an infrared signal which is sent out by the tag controller as part of the tag/marker illumination sequence at the beginning of the first tag position capture time. The controller then traverses through the tags in time sync with each imaging system frame capture cycle. Thus, only one unique tag will be lit during each image capture of the cameras, thereby simplifying identification. Using linear CCD sensors, the frame time (i.e. point acquisition time) is very short, allowing very many markers to be sampled and located sequentially in real time.
    • 光学系统基于通过多个线性CCD通过柱面透镜读取的数据的三角测量,使用多个三维有源标记跟踪物体的运动,包括人体或其部分。 每个标记物依次点亮,使得它与使用定位和定向的成像系统的帧捕获同步,以便为计算三维位置提供基础。 在优选实施例中,成像系统在第一标签位置捕获时间的开始处检测作为标签/标记照明序列的一部分由标签控制器发送的红外信号。 然后,控制器在与每个成像系统帧捕获周期的时间同步中遍历标签。 因此,在摄像机的每次图像拍摄期间,仅一个唯一标签将被点亮,从而简化了识别。 使用线性CCD传感器,帧时间(即点采集时间)非常短,允许非常多的标记被实时采样和定位。
    • 8. 发明授权
    • Method and system of generating audit procedures and forms
    • 产生审计程序和形式的方法和制度
    • US08036980B2
    • 2011-10-11
    • US11977288
    • 2007-10-24
    • L. Scott SpradlingStephen W. LindseyMarriette L. KershnerJames B. BassettCharles Jacobus
    • L. Scott SpradlingStephen W. LindseyMarriette L. KershnerJames B. BassettCharles Jacobus
    • G07B17/00G07F19/00
    • G06Q10/10G06Q10/0635G06Q10/0639G06Q40/02G06Q40/025G06Q40/12G06Q40/123
    • The present invention provides a computer-implemented method for assessing risks associated with an audit. A user is presented with a plurality of audit items and a set of risk levels associated with the audit items and may also be presented with a plurality of prompts designed to elicit a set of responses from the user. The set of user responses being associated with a set of risks associated with the audit. The set of risk levels being associated with a set of assertions associated with the audit items and may include first and second risk levels of different degrees. The method further includes processing a set of responses received from the user in response to the items presented. The method includes automatically generating a suggested audit approach that is based at least in part on the processed responses. The method may also determine a set of procedures that are based on the responses. The set of procedures are presented to the user based on the suggested audit approach. The user is presented for selection with a set of audit approaches comprising the suggested audit approach and an alternative audit approach.
    • 本发明提供了一种用于评估与审计相关的风险的计算机实现的方法。 用户被呈现与审核项目相关联的多个审核项目和一组风险级别,并且还可以呈现设计为从用户引出一组响应的多个提示。 该组用户响应与与审计相关的一组风险相关联。 一组风险水平与与审计项目相关联的一组断言相关联,并且可以包括不同程度的第一和第二风险水平。 该方法还包括响应于所呈现的项目来处理从用户接收的一组响应。 该方法包括自动生成至少部分基于所处理的响应的建议的审计方法。 该方法还可以确定基于响应的一组过程。 根据建议的审计方法向用户提供一套程序。 用户可以通过一套包括建议的审计方法和替代审计方法的审计方法进行选择。
    • 10. 发明申请
    • Tracking and gesture recognition system particularly suited to vehicular control applications
    • 跟踪和姿态识别系统特别适用于车辆控制应用
    • US20070195997A1
    • 2007-08-23
    • US11440228
    • 2006-05-23
    • George PaulGlenn BeachCharles CohenCharles Jacobus
    • George PaulGlenn BeachCharles CohenCharles Jacobus
    • G06K9/00
    • G06K9/00355A63F2300/1093A63F2300/6045A63F2300/69G06F3/017G06K9/00335G06K9/4652G06K9/6212G06T7/246G06T7/251G06T2207/10016G06T2207/30196G06T2207/30268
    • A system and method tracks the movements of a driver or passenger in a vehicle (ground, water, air, or other) and controls devices in accordance with position, motion, and/or body or hand gestures or movements. According to one embodiment, an operator or passenger uses the invention to control comfort or entertainment features such the heater, air conditioner, lights, mirror positions or the radio/CD player using hand gestures. An alternative embodiment facilitates the automatic adjustment of car seating restraints based on head position. Yet another embodiment is used to determine when to fire an airbag (and at what velocity or orientation) based on the position of a person in a vehicle seat. The invention may also be used to control systems outside of the vehicle. The on-board sensor system would be used to track the driver or passenger, but when the algorithms produce a command for a desired response, that response (or just position and gesture information) could be transmitted via various methods (wireless, light, whatever) to other systems outside the vehicle to control devices located outside the vehicle. For example, this would allow a person to use gestures inside the car to interact with a kiosk located outside of the car.
    • 系统和方法跟踪车辆(地面,水,空气或其他)中的驾驶员或乘客的运动,并根据位置,运动和/或身体或手势或运动来控制装置。 根据一个实施例,操作者或乘客使用本发明来使用手势来控制诸如加热器,空调,灯,镜子位置或无线电/ CD播放器之类的舒适性或娱乐特征。 一个替代实施例有助于基于头部位置自动调节汽车座椅限制器。 另一个实施例用于基于车辆座椅中的人的位置来确定何时触发安全气囊(并以什么速度或取向)。 本发明还可以用于控制车辆外部的系统。 车载传感器系统将用于跟踪驾驶员或乘客,但是当算法产生所需响应的命令时,可以通过各种方法(无线,轻,无论什么)传送该响应(或仅位置和手势信息) )到车辆外部的其他系统以控制位于车辆外部的装置。 例如,这将允许人们使用车内的手势来与位于汽车外部的信息亭进行交互。