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    • 1. 发明授权
    • Visualization of medical conditions in a virtual universe
    • 虚拟世界中医疗状况的可视化
    • US08977959B2
    • 2015-03-10
    • US12410538
    • 2009-03-25
    • Aaron K. BaughmanChristopher J. DawsonBarry M. GrahamDavid J. Kamalsky
    • Aaron K. BaughmanChristopher J. DawsonBarry M. GrahamDavid J. Kamalsky
    • G06F3/00G06N3/00G06F19/00
    • G06N3/006G06F19/00G06F19/3481G16H50/50
    • This disclosure provides a system and method to enable the diagnosis, prognosis and emulation of medical conditions using virtual world environments. The system and method combines probabilistic and pattern recognition mechanisms for both real and virtual world applications to increase health care reach and presence within computational environments. The disclosure describes a system and method that uses physiological measurements and behaviors to diagnose a medical condition. Experimental data, either gathered or generated, provide points for emulation. An emulation algorithm increases the feeling of user presence within a virtual world. Avatar behaviors are mapped to scripts which describe the output of the medical diagnosis and prognosis algorithm. Based on proposed treatment plans, emulations can be run, and the appearance of the avatar altered based on the outcome (e.g., improvement, worsening, etc.).
    • 本公开提供了一种使用虚拟世界环境来实现医疗状况的诊断,预测和仿真的系统和方法。 该系统和方法结合了实际和虚拟世界应用的概率和模式识别机制,以增加计算环境中的医疗保健覆盖面和存在。 本公开描述了使用生理测量和行为诊断医疗状况的系统和方法。 收集或生成的实验数据提供了仿真点。 仿真算法增加了虚拟世界中用户存在的感觉。 头像行为被映射到描述医学诊断和预后算法输出的脚本。 根据提出的治疗计划,可以运行模拟,并且基于结果(例如,改善,恶化等)改变化身的外观。
    • 4. 发明申请
    • VISUALIZATION OF MEDICAL CONDITIONS IN A VIRTUAL UNIVERSE
    • 虚拟大学医学条件的可视化
    • US20100251117A1
    • 2010-09-30
    • US12410538
    • 2009-03-25
    • Aaron K. BaughmanChristopher J. DawsonBarry M. GrahamDavid J. Kamalsky
    • Aaron K. BaughmanChristopher J. DawsonBarry M. GrahamDavid J. Kamalsky
    • G06F3/048G06N5/02G06G7/60
    • G06N3/006G06F19/00G06F19/3481G16H50/50
    • This disclosure provides a system and method to enable the diagnosis, prognosis and emulation of medical conditions using virtual world environments. The system and method combines probabilistic and pattern recognition mechanisms for both real and virtual world applications to increase health care reach and presence within computational environments. The disclosure describes a system and method that uses physiological measurements and behaviors to diagnose a medical condition. Experimental data, either gathered or generated, provide points for emulation. An emulation algorithm increases the feeling of user presence within a virtual world. Avatar behaviors are mapped to scripts which describe the output of the medical diagnosis and prognosis algorithm. Based on proposed treatment plans, emulations can be run, and the appearance of the avatar altered based on the outcome (e.g., improvement, worsening, etc.).
    • 本公开提供了一种使用虚拟世界环境来实现医疗状况的诊断,预测和仿真的系统和方法。 该系统和方法结合了实际和虚拟世界应用的概率和模式识别机制,以增加计算环境中的医疗保健覆盖面和存在。 本公开描述了使用生理测量和行为诊断医疗状况的系统和方法。 收集或生成的实验数据提供了仿真点。 仿真算法增加了虚拟世界中用户存在的感觉。 头像行为被映射到描述医学诊断和预后算法输出的脚本。 根据提出的治疗计划,可以运行模拟,并且基于结果(例如,改善,恶化等)改变化身的外观。
    • 6. 发明授权
    • System and method for optimizing teams
    • 优化团队的系统和方法
    • US08712945B2
    • 2014-04-29
    • US13362632
    • 2012-01-31
    • Aaron K. BaughmanPhaedra K. BoinodirisBarry M. GrahamRussell R. Vane, III
    • Aaron K. BaughmanPhaedra K. BoinodirisBarry M. GrahamRussell R. Vane, III
    • G06N5/00
    • G06N7/005G06N5/04G06N5/047G06N99/005G06Q10/06G06Q50/01
    • A system, method and program product for optimizing a team to solve a problem. The system includes: a team building system for building a fundamental analytic team from a database of analysts to solve an inputted problem, wherein the fundamental analytic team includes at least one cluster of analysts characterized with specificity and at least one cluster of analysts characterized with sensitivity; and a problem analysis system that collects sensor data from the fundamental analytic team operating within an immersive environment, wherein the problem analysis system includes a system for evaluating the sensor data to identify a bias condition from the fundamental analytic team, and includes a system for altering variables in the immersive environment in response to a detected bias condition.
    • 用于优化团队解决问题的系统,方法和程序产品。 该系统包括:一个团队建设系统,用于从分析人员数据库构建基础分析团队,以解决输入的问题,其中基础分析团队包括至少一组以特异性为特征的分析人员集群,以及至少一个以灵敏度为特征的分析人员集群 ; 以及问题分析系统,其从在沉浸式环境中运行的基础分析团队收集传感器数据,其中所述问题分析系统包括用于评估所述传感器数据以从所述基础分析小组识别偏差状况的系统,并且包括用于改变的系统 响应于检测到的偏差条件,沉浸式环境中的变量。