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Quantitative Ultrasound Parameters Based on the Backscattered Echo Power Signal as Biomarkers of Cervical Remodeling: A Longitudinal Study in the Pregnant Rhesus Macaque.基于背向散射回波功率信号的定量超声参数作为宫颈重塑生物标志物的研究:恒河猴孕期纵向研究
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本文引用的文献

1
Analysis of Coherent and Diffuse Scattering Using a Reference Phantom.使用参考体模分析相干和漫散射。
IEEE Trans Ultrason Ferroelectr Freq Control. 2016 Sep;63(9):1306-20. doi: 10.1109/TUFFC.2016.2547341. Epub 2016 Mar 25.
2
Backscatter coefficient estimation using tapers with gaps.使用带间隙的窗函数估计后向散射系数。
Ultrason Imaging. 2015 Apr;37(2):117-34. doi: 10.1177/0161734614549263. Epub 2014 Sep 3.
3
Task-oriented comparison of power spectral density estimation methods for quantifying acoustic attenuation in diagnostic ultrasound using a reference phantom method.基于参考体模法的诊断超声中声衰减定量的功率谱密度估计方法的任务导向比较。
Ultrason Imaging. 2013 Jul;35(3):214-34. doi: 10.1177/0161734613495524.
4
Comparison of ultrasound attenuation and backscatter estimates in layered tissue-mimicking phantoms among three clinical scanners.三种临床扫描仪在层状组织模拟体中的超声衰减和反向散射估计值的比较。
Ultrason Imaging. 2012 Oct;34(4):209-21. doi: 10.1177/0161734612464451.
5
Cross-imaging system comparison of backscatter coefficient estimates from a tissue-mimicking material.组织模拟材料反向散射系数估计的跨成像系统比较。
J Acoust Soc Am. 2012 Sep;132(3):1319-24. doi: 10.1121/1.4742725.
6
Quantitative ultrasonic characterization of diffuse scatterers in the presence of structures that produce coherent echoes.存在产生相干回波的结构时弥散散射体的定量超声特征。
IEEE Trans Ultrason Ferroelectr Freq Control. 2012 May;59(5):893-904. doi: 10.1109/TUFFC.2012.2274.
7
Ultrasound attenuation measurements using a reference phantom with sound speed mismatch.使用存在声速失配的参考试块进行超声衰减测量。
Ultrason Imaging. 2011 Oct;33(4):251-63. doi: 10.1177/016173461103300404.
8
Ultrasonic attenuation and backscatter coefficient estimates of rodent-tumor-mimicking structures: comparison of results among clinical scanners.鼠类肿瘤模拟结构的超声衰减和背向散射系数估计:临床扫描仪间结果的比较。
Ultrason Imaging. 2011 Oct;33(4):233-50. doi: 10.1177/016173461103300403.
9
Quantitative ultrasound assessment of cervical microstructure.定量超声评估颈椎微结构。
Ultrason Imaging. 2010 Jul;32(3):131-42. doi: 10.1177/016173461003200302.
10
An ultrasound research interface for a clinical system.一种用于临床系统的超声研究界面。
IEEE Trans Ultrason Ferroelectr Freq Control. 2007 Jan;54(1):198-210. doi: 10.1109/tuffc.2007.226.

使用参考体模法量化背散射各向异性。

Quantifying Backscatter Anisotropy Using the Reference Phantom Method.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2017 Jul;64(7):1063-1077. doi: 10.1109/TUFFC.2017.2698832. Epub 2017 Apr 27.

DOI:10.1109/TUFFC.2017.2698832
PMID:28463191
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5554403/
Abstract

Acoustic properties can be exploited to infer and evaluate tissue microstructure. However, common assumptions are that the medium of interest is homogeneous and isotropic, and that its underlying physical properties cause diffuse scattering. In this paper, we describe how we developed and tested novel parameters designed to address isotropy/anisotropy in backscattered echo signal power in complex biological tissues. Specifically, we explored isotropy/anisotropy in backscattered power in isotropic phantoms (spherical glass beads), an anisotropic phantom (dialysis phantom with rodlike fibers), and an in vivo human tissue with well-described anisotropy (bicep muscle). Our approach uses the reference phantom method to compensate for system transfer and diffraction losses when electronically beamsteering a linear array transducer. We define three parameters to quantify the presence and orientation of anisotropic scatterers, as well as address magnitude of anisotropy. We found that these parameters can detect and sense the degree of anisotropy in backscatter in both phantoms and bicep muscle. Bias of the summary anisotropy parameters, induced through a speed of sound mismatch of sample media and reference phantom, was less than 0.2 dB if the speed of sound was within ±20 m/s of the sample media. In summary, these new parameters may be useful for testing the assumption of isotropy as well as providing more detailed information about the underlying microstructural sources of backscatter in complex biological tissues.

摘要

声特性可用于推断和评估组织微结构。然而,通常的假设是感兴趣的介质是均匀各向同性的,并且其基础物理特性会导致漫散射。在本文中,我们描述了如何开发和测试旨在解决复杂生物组织中背散射回波信号功率各向同性/各向异性的新参数。具体来说,我们探索了各向同性幻影(球形玻璃珠)、各向异性幻影(具有棒状纤维的透析幻影)和具有明确各向异性的体内人组织中的背散射功率的各向同性/各向异性。我们的方法使用参考幻影方法来补偿电子波束转向线性阵列换能器时的系统传输和衍射损耗。我们定义了三个参数来量化各向异性散射体的存在和方向,以及解决各向异性的幅度。我们发现,这些参数可以检测和感知两种幻影和肱二头肌中背散射的各向异性程度。如果样本介质和参考幻影的声速相差在±20 m/s 以内,则汇总各向异性参数的偏差小于 0.2 dB。总之,这些新参数可能有助于检验各向同性的假设,并为复杂生物组织中背散射的潜在微观结构源提供更详细的信息。