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    • 8. 发明申请
    • OPTICAL COHERENCE TOMOGRAPHY CELL DETECTION
    • 光学相干细胞检测
    • WO2009052481A1
    • 2009-04-23
    • PCT/US2008/080477
    • 2008-10-20
    • BOARD OF REGENTS, THE UNIVERSITY OF TEXAS SYSTEMMILNER, Thomas, E.
    • MILNER, Thomas, E.
    • A61B5/05
    • A61B5/0066A61B5/0035A61B5/026A61B5/0261A61B5/0275A61B5/05A61B5/0515A61B5/6852A61B5/725A61B8/06A61B8/13A61B8/488A61B2576/00A61N2/02G01N21/1717G01N21/4795
    • Medical diagnostic imaging, in particular imaging blood flow using magneto-motive optical Doppler tomography (MMODT), Optical Coherence Tomography, or Ultrasound, which combines an externally applied temporally oscillating high-strength magnetic field with ODT, OCT, or Ultrasound Accurate determination of location and flow velocity of moving particles in highly scattering media, such as blood flow, is important for medical diagnostics Numerous non-invasive approaches have been developed using techniques such as Doppler ultrasound, conventional angiography, laser Doppler flowmetry and magnetic resonance angiography Ultrasound is directed into the body of the patient and red blood cells, which are suspended in the blood plasma, scatter the ultrasonic energy back towards the receiver or transducer The transducer then converts the back-scattered ultrasonic energy into an electrical signal that is processed in some known manner to determine the presence of a flow and an estimate of the flow velocity.
    • 医学诊断成像,特别是使用磁动力学光学多普勒断层扫描(MMODT),光学相干断层扫描或超声波成像血流,其将外部施加的时间振荡的高强度磁场与ODT,OCT或超声波组合精确确定位置 并且高度散射介质(如血液流动)中的移动颗粒的流速对于医学诊断是重要的。已经使用诸如多普勒超声,常规血管造影,激光多普勒血流计和磁共振血管造影术的技术开发了许多非侵入性方法。超声被引导到 悬挂在血浆中的患者身体和红细胞将超声波能量分散回接收器或换能器。然后,换能器将反向散射的超声能量转换成以一些已知方式处理的电信号 确定流的存在和流的估计 速度。