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大鼠肾脏超分辨率成像中的体内运动校正。

In Vivo Motion Correction in Super-Resolution Imaging of Rat Kidneys.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2021 Oct;68(10):3082-3093. doi: 10.1109/TUFFC.2021.3086983. Epub 2021 Sep 27.

Abstract

Super-resolution (SR) imaging has the potential of visualizing the microvasculature down to the 10- [Formula: see text] level, but motion induced by breathing, heartbeats, and muscle contractions are often significantly above this level. This article, therefore, introduces a method for estimating tissue motion and compensating for this. The processing pipeline is described and validated using Field II simulations of an artificial kidney. In vivo measurements were conducted using a modified bk5000 research scanner (BK Medical, Herlev, Denmark) with a BK 9009 linear array probe employing a pulse amplitude modulation scheme. The left kidney of ten Sprague-Dawley rats was scanned during open laparotomy. A 1:10 diluted SonoVue contrast agent (Bracco, Milan, Italy) was injected through a jugular vein catheter at 100 [Formula: see text]/min. Motion was estimated using speckle tracking and decomposed into contributions from the heartbeats, breathing, and residual motion. The estimated peak motions and their precisions were: heart: axial- [Formula: see text] and lateral- [Formula: see text], breathing: axial- [Formula: see text] and lateral- [Formula: see text], and residual: axial-30 [Formula: see text] and lateral-90 [Formula: see text]. The motion corrected microbubble tracks yielded SR images of both bubble density and blood vector velocity. The estimation was, thus, sufficiently precise to correct shifts down to the 10- [Formula: see text] capillary level. Similar results were found in the other kidney measurements with a restoration of resolution for the small vessels demonstrating that motion correction in 2-D can enhance SR imaging quality.

摘要

超分辨率(SR)成像有潜力将微血管可视化到 10- [Formula: see text] 级别,但呼吸、心跳和肌肉收缩引起的运动通常明显高于该水平。因此,本文介绍了一种估计组织运动并进行补偿的方法。该处理管道通过 Field II 对人工肾脏的模拟进行了描述和验证。在体测量使用经过修改的 bk5000 研究扫描仪(BK Medical,Herlev,丹麦)和采用脉冲幅度调制方案的 BK 9009 线性阵列探头进行。在开腹手术期间扫描了 10 只 Sprague-Dawley 大鼠的左肾。通过颈内静脉导管以 100 [Formula: see text]/min 的速度注射 1:10 稀释的 SonoVue 造影剂(Bracco,米兰,意大利)。使用散斑跟踪估计运动,并将其分解为心跳、呼吸和残余运动的贡献。估计的峰值运动及其精度为:心脏:轴向- [Formula: see text] 和横向- [Formula: see text],呼吸:轴向- [Formula: see text] 和横向- [Formula: see text],残余:轴向-30 [Formula: see text] 和横向-90 [Formula: see text]。运动校正后的微泡轨迹产生了微泡密度和血流向量速度的 SR 图像。因此,估计精度足以校正到 10- [Formula: see text] 毛细血管水平的移位。在其他肾脏测量中也发现了类似的结果,小血管的分辨率得到了恢复,这表明二维运动校正可以提高 SR 成像质量。

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