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The effects of bubble size on nonlinear scattering from microbubbles

机译:气泡尺寸对微气泡非线性散射的影响

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The influence of bubble size on nonlinear scattering at high ultrasound frequencies is investigated for a lipid encapsulated microbubble contrast agent. Simulations indicate that bubbles on the order of 1-2 microns in diameter and below can potentially participate in nonlinear scattering at transmit frequencies in the 20-30 MHz range. Experimental measurements of nonlinear scattering were made when the agent size distribution was manipulated by means of mechanical filtering and decantation techniques. By preferentially excluding larger bubbles (< 1-3 microns in diameter) it was observed that the ratios of harmonic (sub harmonic, ultra harmonic, and second harmonic) to fundamental energy were improved for transmit frequencies of 20 and 30 MHz. These results suggests that subpopulations of micron and sub-micron sized bubbles, which comprise a very small volume fraction of current agents, are giving rise to nonlinear signals in the ultrasound biomicroscopy (UBM) frequency range.
机译:对于脂质封装的微泡造影剂,研究了气泡尺寸对高超声频率下非线性散射的影响。仿真表明,直径在1-2微米以下的气泡可能在20-30 MHz范围内的发射频率上参与非线性散射。当通过机械过滤和倾析技术来控制试剂尺寸分布时,进行了非线性散射的实验测量。通过优先排除较大的气泡(直径小于1-3微米),可以发现,对于20和30 MHz的发射频率,谐波(次谐波,超谐波和二次谐波)与基本能量的比率得到了改善。这些结果表明,微米级和亚微米级气泡的亚群(占电流试剂的体积分数非常小)在超声生物显微镜(UBM)频率范围内引起非线性信号。

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