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三维可视化和超分辨率超声成像的改进定量 - 利用鸡胚模型分析微血管形态的验证框架。

Three-dimensional visualization and improved quantification with super-resolution ultrasound imaging - validation framework for analysis of microvascular morphology using a chicken embryo model.

机构信息

Department of Bioengineering, University of Texas at Dallas, Richardson, TX, United States of America.

Department of Radiology, University of Texas Southwestern Medical Center, Dallas, TX, United States of America.

出版信息

Phys Med Biol. 2021 Apr 16;66(8). doi: 10.1088/1361-6560/abf203.

Abstract

The purpose of this study was to improve the morphological analysis of microvascular networks depicted in three-dimensional (3D) super-resolution ultrasound (SR-US) images. This was supported by qualitative and quantitative validation by comparison to matched brightfield microscopy and traditional B-mode ultrasound (US) images. Contrast-enhanced US (CEUS) images were collected using a preclinical US scanner (Vevo 3100, FUJIFILM VisualSonics Inc.) equipped with an MX250 linear array transducer. CEUS imaging was performed after administration of a microbubble (MB) contrast agent into the vitelline network of a developing chicken embryo. Volume data was collected by mechanically scanning the US transducer throughout a tissue volume-of-interest in 90m step increments. CEUS images were collected at each increment and stored as in-phase/quadrature data (2000 frames at 152 frames per sec). SR-US images were created for each cross-sectional plane using established data processing methods. All SR-US images were then used to reconstruct a final 3D volume for vessel diameter (VD) quantification and for surface rendering. VD quantification from the 3D SR-US data exhibited an average error of 6.1% ± 6.0% when compared with matched brightfield microscopy images, whereas measurements from B-mode US images had an average error of 77.1% ± 68.9%. Volume and surface renderings in 3D space enabled qualitative validation and improved visualization of small vessels below the axial resolution of the US system. Overall, 3D SR-US image reconstructions depicted the microvascular network of the developing chicken embryos. Improved visualization of isolated vessels and quantification of microvascular morphology from SR-US images achieved a considerably greater accuracy compared to B-mode US measurements.

摘要

本研究旨在改进三维(3D)超分辨率超声(SR-US)图像中微血管网络的形态分析。通过与匹配的明场显微镜和传统 B 型超声(US)图像进行定性和定量验证,支持了这一目标。对比增强超声(CEUS)图像是使用临床前超声扫描仪(Vevo 3100,FUJIFILM VisualSonics Inc.)采集的,该扫描仪配备了 MX250 线性阵列换能器。CEUS 成像在向发育中的鸡胚卵黄网中注入微泡(MB)造影剂后进行。通过机械扫描超声换能器,以 90m 的步长增量在感兴趣的组织体积内采集体积数据。在每个增量处采集 CEUS 图像,并以同相/正交数据存储(152 帧/秒时 2000 帧)。使用既定的数据处理方法为每个横截面平面创建 SR-US 图像。然后,所有 SR-US 图像都用于重建最终的 3D 体积,以进行血管直径(VD)定量和表面渲染。与匹配的明场显微镜图像相比,来自 3D SR-US 数据的 VD 定量平均误差为 6.1%±6.0%,而来自 B 型 US 图像的测量值平均误差为 77.1%±68.9%。3D 空间中的体积和表面渲染可进行定性验证,并改善了低于 US 系统轴向分辨率的小血管的可视化效果。总体而言,3D SR-US 图像重建描绘了发育中鸡胚的微血管网络。与 B 型 US 测量相比,SR-US 图像中孤立血管的可视化和微血管形态的定量得到了显著提高。

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