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Focusing ultrasound in biological media

机译:在生物介质中聚焦超声

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摘要

The authors present a formulation for calculating the field distributions for an ultrasonic imaging system when focusing in biological media. A biological medium is characterized in terms of its complex and frequency-dependent compressibility that, in turn, depends on the medium relaxation time and specific heat ratio. The analysis is based on a spatial/temporal transfer function formalism and can predict the effects of dispersion, frequency-dependent attenuation, aperture apodization and pulse shape. These effects can be observed on a 'snapshot' of the field in time and space. A number of simulations for a 3-MHz broadband system are presented. The results indicate that, aside from geometrical considerations (Fumber), the pulse-width and the dispersive processes can play a major role in imaging performance.
机译:作者提出了一种在生物介质中聚焦时用于计算超声成像系统场分布的公式。生物介质的特征在于其复杂且依赖于频率的可压缩性,而可压缩性又取决于介质的弛豫时间和比热比。该分析基于空间/时间传递函数形式,可以预测色散,频率相关衰减,孔径变迹和脉冲形状的影响。这些影响可以在时间和空间的“快照”中观察到。给出了针对3-MHz宽带系统的许多仿真。结果表明,除了几何因素(F /数)之外,脉冲宽度和色散过程在成像性能中也起着重要作用。

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