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J Ultrasound Med. 2015 Aug;34(8):1373-83. doi: 10.7863/ultra.34.8.1373.
2
Correcting the Shrinkage Effects of Formalin Fixation and Tissue Processing for Renal Tumors: toward Standardization of Pathological Reporting of Tumor Size.纠正福尔马林固定和组织处理对肾肿瘤的收缩效应:实现肿瘤大小病理报告标准化。
J Cancer. 2015 Jul 2;6(8):759-66. doi: 10.7150/jca.12094. eCollection 2015.
3
Structure function for high-concentration biophantoms of polydisperse scatterer sizes.多分散散射体尺寸的高浓度生物仿体的结构函数。
IEEE Trans Ultrason Ferroelectr Freq Control. 2015 Feb;62(2):303-18. doi: 10.1109/TUFFC.2014.006629.
4
Noninvasive Diagnosis of Nonalcoholic Fatty Liver Disease and Quantification of Liver Fat Using a New Quantitative Ultrasound Technique.使用新型定量超声技术对非酒精性脂肪性肝病进行无创诊断及肝脏脂肪定量分析
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6
Quantitative ultrasound characterization of locally advanced breast cancer by estimation of its scatterer properties.通过估计局部晚期乳腺癌的散射体特性进行定量超声表征。
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从组织学切片中估计结构功能。

Structure Function Estimated From Histological Tissue Sections.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2016 Sep;63(9):1296-305. doi: 10.1109/TUFFC.2016.2546851. Epub 2016 Mar 25.

DOI:10.1109/TUFFC.2016.2546851
PMID:27046871
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5049507/
Abstract

Ultrasonic scattering is determined by not only the properties of individual scatterers but also the correlation among scatterer positions. The role of scatterer spatial correlation is significant for dense medium, but has not been fully understood. The effect of scatterer spatial correlation may be modeled by the structure function as a frequency-dependent factor in the backscatter coefficient (BSC) expression. The structure function has been previously estimated from the BSC data. The aim of this study is to estimate the structure function from histology to test if the acoustically estimated structure function is indeed caused by the scatterer spatial distribution. Hematoxylin and eosin stained histological sections from dense cell pellet biophantoms were digitized. The scatterer positions were determined manually from the histological images. The structure function was calculated from the extracted scatterer positions. The structure function obtained from histology showed reasonable agreement in the shape but not in the amplitude, compared with the structure function previously estimated from the backscattered data. Fitting a polydisperse structure function model to the histologically estimated structure function yielded relatively accurate cell radius estimates ([Formula: see text]). Furthermore, two types of mouse tumors that have similar cell size and shape but distinct cell spatial distributions were studied, where the backscattered data were shown to be related to the cell spatial distribution through the structure function estimated from histology. In conclusion, the agreement between acoustically estimated and histologically estimated structure functions suggests that the acoustically estimated structure function is related to the scatterer spatial distribution.

摘要

超声散射不仅取决于单个散射体的特性,还取决于散射体位置之间的相关性。对于密集介质,散射体空间相关性的作用非常重要,但尚未得到充分理解。可以通过结构函数将散射体空间相关性的影响建模为反向散射系数(BSC)表达式中的频率相关因子。先前已经从 BSC 数据中估计了结构函数。本研究的目的是从组织学中估计结构函数,以检验声学估计的结构函数是否确实是由散射体空间分布引起的。对密集细胞颗粒生物模拟物的苏木精和伊红染色组织学切片进行了数字化。从组织学图像中手动确定散射体位置。从提取的散射体位置计算结构函数。与先前从反向散射数据估计的结构函数相比,从组织学获得的结构函数在形状上具有合理的一致性,但在幅度上没有一致性。用多分散结构函数模型拟合组织学估计的结构函数,可以得到相对准确的细胞半径估计值 ([Formula: see text])。此外,研究了两种具有相似细胞大小和形状但细胞空间分布不同的小鼠肿瘤,通过从组织学中估计的结构函数,反向散射数据与细胞空间分布相关。总之,声学估计和组织学估计的结构函数之间的一致性表明,声学估计的结构函数与散射体空间分布有关。