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首页> 外文期刊>Investigative radiology >Optical microscopic findings of the behavior of perflubutane microbubbles outside and inside Kupffer cells during diagnostic ultrasound examination.
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Optical microscopic findings of the behavior of perflubutane microbubbles outside and inside Kupffer cells during diagnostic ultrasound examination.

机译:在诊断超声检查过程中,在库普弗细胞内部和外部的全氟丁烷微气泡行为的光学显微镜发现。

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PURPOSE: To investigate the behavior of perflubutane microbubbles outside and inside Kupffer cells during diagnostic ultrasound (US) examination, and to determine the thresholds of the acoustic pressure of different kinds of behavior. METHODS: Acoustic behavior of perflubutane microbubbles inside and outside Kupffer cells in an acoustic field induced by a clinical US transducer and equipment was optically observed in vitro. The acoustic pressure was measured simultaneously by a calibrated hydrophone and an oscilloscope. RESULTS: The acoustic behavior of microbubbles was optically categorized as stabilization, oscillation, transposition, shrinkage, and destruction. The mechanical index (MI) displayed on the US equipment correlated well with the acoustic pressure at the level of microbubbles measured hydrophonically. At a frame rate of 15 Hz with a frequency of 3.5 MHz and pulse repetition frequency of 3 KHz, the thresholds in term of MI for free microbubbles to begin oscillation, reach best oscillation,transposition, shrinkage, and destruction were 0.21, 0.44, 0.53, 0.75, and 1.03, respectively. Although adherent and phagocytosed microbubbles showed more stability enduring insonation compared with free microbubbles, the thresholds of shrinkage and destruction were MI 1.03 and 1.18 for adherent microbubbles, and 1.18 and 1.37 for phagocytosed microbubbles, respectively. Neither oscillation nor transposition of microbubbles inside Kupffer cells was observed microscopically. No cell damage because of microbubbles destruction was found in the present study. CONCLUSION: Perflubutane microbubbles outside and inside Kupffer cells respond to external US insonation with same parameters of a clinical contrast-enhanced US study according to the acoustic pressure. Free microbubbles behave as stabilization, oscillation, transposition, shrinkage, and destruction under insonation. The adherent and phagocytosed microbubbles are more stable under insonation than free microbubbles, but still respond showing shrinkage and destruction when MI is over 1.03.
机译:目的:调查在诊断超声(US)检查期间,Kupffer细胞内外全氟丁烷微气泡的行为,并确定不同行为的声压阈值。方法:体外观察由临床美国换能器和设备引起的声场中库普弗细胞内外的全氟丁烷微泡的声学行为。通过校准的水听器和示波器同时测量声压。结果:微泡的声学行为从光学上分为稳定,振荡,换位,收缩和破坏。在美国设备上显示的机械指数(MI)与通过水声测量的微气泡水平的声压很好地相关。在15 Hz的帧频,3.5 MHz的频率和3 KHz的脉冲重复频率下,自由微气泡开始振荡,达到最佳振荡,移位,收缩和破坏的MI阈值为0.21、0.44、0.53 ,0.75和1.03。尽管粘附的和吞噬的微泡比自由的微泡显示出更大的稳定性,持久的声纳,但收缩和破坏的阈值对于粘附的微泡分别为MI 1.03和1.18,对于吞噬的微泡分别为1.18和1.37。显微镜下既未观察到库普弗细胞内部的微泡振荡也未观察到转位。在本研究中未发现由于微泡破坏引起的细胞损伤。结论:库普弗细胞内部和外部的全氟丁烷微气泡根据超声压与临床对比增强的美国研究的相同参数对外部US声波反应。自由的微气泡表现为在声波作用下的稳定,振荡,移位,收缩和破坏。粘附和吞噬的微泡在声波作用下比自由微泡更稳定,但当MI超过1.03时仍会显示收缩和破坏。

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