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    • 1. 发明申请
    • Mobile in vivo infra red data collection and diagnoses comparison system
    • 移动式体内红外数据采集与诊断比较系统
    • US20090012402A1
    • 2009-01-08
    • US12214553
    • 2008-06-18
    • Frederick W. MintzPhilip I. MoynihanSarath D. Gunapala
    • Frederick W. MintzPhilip I. MoynihanSarath D. Gunapala
    • A61B5/1455
    • G01J5/061A61B5/0008A61B5/0042A61B5/0484A61B5/6814A61B5/7264
    • Described is a mobile in vivo infrared brain scan and analysis system. The system includes a data collection subsystem and a data analysis subsystem. The data collection subsystem is a helmet with a plurality of infrared (IR) thermometer probes. Each of the IR thermometer probes includes an IR photodetector capable of detecting IR radiation generated by evoked potentials within a user's skull. The helmet is formed to collect brain data that is reflective of firing neurons in a mobile subject and transmit the brain data to the data analysis subsystem. The data analysis subsystem is configured to generate and display a three-dimensional image that depicts a location of the firing neurons. The data analysis subsystem is also configured to compare the brain data against a library of brain data to detect an anomaly in the brain data, and notify a user of any detected anomaly in the brain data.
    • 描述了一种移动式体内红外脑扫描和分析系统。 该系统包括数据收集子系统和数据分析子系统。 数据采集​​子系统是具有多个红外(IR)温度计探针的头盔。 每个IR温度计探针都包括能够检测用户头骨内的诱发电位产生的IR辐射的IR光电检测器。 头盔被形成以收集反映在移动对象中发射神经元的脑数据,并将脑数据传送到数据分析子系统。 数据分析子系统被配置为生成和显示描绘发射神经元的位置的三维图像。 数据分析子系统还被配置为将脑数据与脑数据库进行比较,以检测大脑数据中的异常,并通知用户脑数据中任何检测到的异常。
    • 4. 发明授权
    • Sample levitation and melt in microgravity
    • 样品悬浮和微重力熔化
    • US4896849A
    • 1990-01-30
    • US66450
    • 1987-06-26
    • Philip I. Moynihan
    • Philip I. Moynihan
    • B64G1/22C30B30/08H02N11/00
    • H02N11/006B64G1/22C30B30/08Y10S75/96
    • A system is described for maintaining a sample material in a molten state and away from the walls of a container in a microgravity environment, as in a space vehicle. A plurality of sources of electromagnetic radiation, such as an infrared wavelength, are spaced about the object, with the total net electromagnetic radiation applied to the object being sufficient to maintain it in a molten state, and with the vector sum of the applied radiation being in a direction to maintain the sample close to a predetermined location away from the walls of a container surrounding the sample. For a processing system in a space vehicle that orbits the Earth, the net radiation vector is opposite the velocity of the orbiting vehicle.
    • 描述了一种系统,用于在微重力环境中保持样品材料处于熔融状态并远离容器的壁,如在太空车辆中。 诸如红外波长的多个电磁辐射源围绕物体隔开,施加到物体的总净电磁辐射足以使其保持在熔融状态,并且所施加的辐射的矢量和为 在保持样品接近远离包围样品的容器的壁的预定位置的方向上。 对于轨道运行在地球上的太空车辆的处理系统,净辐射矢量与轨道车辆的速度相反。