Guidi G, Licciardello C, Falteri S
Department of Electronics and Telecommunications, University of Florence, Florence, Italy.
Ultrasound Med Biol. 2000 Jun;26(5):853-62. doi: 10.1016/s0301-5629(00)00218-0.
Doppler signals collected with a focused transducer are known to be affected by the so-called intrinsic spectral broadening (ISB). This article aims to point out how ISB is, in general, related to both the limited lateral extent of a focused beam (leading to a finite transit time), and the presence of several local insonation angles around the beam axis, due to focusing and diffraction effects (local geometrical broadening). The influence of these two elementary spectral contributions on the whole ISB is shown by considering the Doppler signal as simultaneously modulated in amplitude and frequency, and applying well-known relationships employed in the communication field. Such an analysis reveals that transit time and local geometrical broadening are two different phenomena, whose simultaneous knowledge is necessary for correctly evaluating the overall ISB. Finally, thanks to a novel technique for separately measuring transit time and local geometrical broadening effects on transducers with markedly different focusing properties, more than 1000 experimental acquisitions show how a proper combination of such measured contributions gives an accurate ISB estimation, confirming the theoretical expectations.
已知使用聚焦换能器收集的多普勒信号会受到所谓的固有频谱展宽(ISB)的影响。本文旨在指出,一般而言,ISB如何与聚焦波束有限的横向范围(导致有限渡越时间)以及由于聚焦和衍射效应(局部几何展宽)在波束轴周围存在多个局部声入射角度相关。通过将多普勒信号视为同时在幅度和频率上进行调制,并应用通信领域中使用的知名关系,展示了这两种基本频谱贡献对整个ISB的影响。这样的分析表明,渡越时间和局部几何展宽是两种不同的现象,要正确评估整体ISB,必须同时了解它们。最后,得益于一种用于分别测量具有明显不同聚焦特性的换能器上的渡越时间和局部几何展宽效应的新技术,超过1000次实验采集表明,这些测量贡献的适当组合如何给出准确的ISB估计,证实了理论预期。