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Technical validation studies of a dual-wavelength LED-based photoacoustic and ultrasound imaging system

机译:基于双波长LED光声和超声成像系统的技术验证研究

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摘要

Recent advances in high power, pulsed, light emitting diodes (LEDs) have shown potential as fast, robust and relatively inexpensive excitation sources for photoacoustic imaging (PAI), yet systematic characterization of performance for biomedical imaging is still lacking. We report here technical and biological validation studies of a commercial dual-wavelength LED-based PAI and ultrasound system. Phantoms and small animals were used to assess temporal precision. In phantom studies, we found high temporal stability of the LED-based PAI system, with no significant drift in performance observed during 6 h of operation or over 30 days of repeated measurements. In vivo dual-wavelength imaging was able to map the dynamics of changes in blood oxygenation during oxygen-enhanced imaging and reveal the kinetics of indocyanine green contrast agent inflow after intravenous administration (Tmax∼6 min). Taken together, these studies indicate that LED-based excitation could be promising for future application in functional and molecular PAI.
机译:最近的高功率,脉冲,发光二极管(LED)的进步已经示出了光声成像(PAI)的快速,稳健和相对便宜的激励源,但仍然缺乏对生物医学成像的性能的系统性表征。我们在此报告了基于商业双波长LED的PAI和超声系统的技术和生物验证研究。使用幽灵和小动物评估时间精度。在幻影研究中,我们发现基于LED的PAI系统的高时间稳定性,在6小时内观察到的性能下没有显着漂移,或者重复测量超过30天。在体内双波长成像中能够在氧气增强的成像期间映射血氧变化的动态,并揭示静脉内施用后吲哚菁绿造影剂流入的动力学(Tmax〜6分钟)。在一起,这些研究表明,基于LED的激励可能是未来在功能和分子PAI中的应用。

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