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Acoustic Characterization of the CLINIcell for Ultrasound Contrast Agent Studies

机译:用于超声造影剂研究的CLINIcell的声学特性

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Ultrasound contrast agents consist of gas-filled coated microbubbles that oscillate upon ultrasound insonification. Their characteristic oscillatory response provides contrast enhancement for imaging and has the potential to locally enhance drug delivery. Since microbubble response depends on the local acoustic pressure, an ultrasound compatible chamber is needed to study their behavior and the underlying drug delivery pathways. In this study, we determined the amplitude of the acoustic pressure in the CLINIcell, an optically transparent chamber suitable for cell culture. The pressure field was characterized based on microbubble response recorded using the Brandaris 128 ultrahigh-speed camera and an iterative processing method. The results were compared to a control experiment performed in an OptiCell, which is conventionally used in microbubble studies. Microbubbles in the CLINIcell responded in a controlled manner, comparable to those in the OptiCell. For frequencies from 1 to 4 MHz, the mean pressure amplitude was -5.4 dB with respect to the externally applied field. The predictable ultrasound pressure demonstrates the potential of the CLINIcell as an optical, ultrasound, and cell culture compatible device to study microbubble oscillation behavior and ultrasound-mediated drug delivery.
机译:超声造影剂由充气的包被的微泡组成,这些微泡在超声声化时会振荡。它们的特征性振荡反应为成像提供了对比度增强,并具有局部增强药物递送的潜力。由于微泡反应取决于局部声压,因此需要超声兼容腔室来研究其行为和潜在的药物传递途径。在这项研究中,我们确定了CLINIcell(适用于细胞培养的光学透明腔室)中的声压幅度。基于使用Brandaris 128超高速相机记录的微气泡响应和迭代处理方法来表征压力场。将结果与在通常用于微泡研究的OptiCell中进行的对照实验进行比较。与OptiCell中的气泡相比,CLINIcell中的微气泡以受控的方式响应。对于1到4 MHz的频率,相对于外部施加的磁场,平均压力幅度为-5.4 dB。可预测的超声压力证明了CLINIcell作为光学,超声和细胞培养兼容设备的潜力,可用于研究微泡振荡行为和超声介导的药物递送。

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