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Shear wave elastography in obstetrics: Quantification of cervix elasticity and uterine contraction

机译:产科剪切波弹性成像:子宫颈弹性和子宫收缩的量化

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Supersonic Shear Imaging (SSI) is a real-time and quantitative imaging technique that has been proved efficient for tissue elasticity investigation. Very little is known about the physiology of cervix and uterus and SSI could be an efficient tool for a deeper understanding of uterine mechanisms. This could considerably help prevention of premature birth, which consequences on neonate morbidity and pathologies are tremendous. The purpose of this paper is to investigate in vivo the elasticity of the cervix and uterus during pregnancy using SSI with three objectives: the quantification of cervix elasticity, the follow up of uterine elasticity during contraction, and the investigation of uterine anisotropy. In this study, remote palpation using radiation force and ultrafast imaging sequences were adapted on the Aixplorer for the investigation of uterine contraction, as well as for uterine anisotropy estimation. Cervix elasticity was quantified in 20 gravid women using a 7 MHz endocavitary probe. Uterus elasticity was quantified externally on 5 patients, through the abdomen, using an 8 MHz linear probe. Changes of elasticity were tracked in real time during uterus contraction. Shear wave tractography (imaging of fiber orientation) was performed with the same probe by assessing shear wave speed variations with respect to probe angle. This allowed the investigation of uterine anisotropy at different depths. Elasticity values during contraction were correlated to uterine pressure data, which is the gold standard for contraction monitoring. Finally, uterine fiber orientation was observed at different depths.
机译:超音速剪切成像(SSI)是一种实时定量成像技术,已被证明对组织弹性研究有效。关于子宫颈和子宫的生理知识知之甚少,SSI可能是深入了解子宫机制的有效工具。这可以极大地帮助预防早产,早产对新生儿发病率和病理学的影响是巨大的。本文的目的是使用SSI体内研究妊娠期子宫颈和子宫的弹性,这三个目标是:子宫颈弹性的定量,收缩期间子宫弹性的跟进以及子宫各向异性的研究。在这项研究中,使用放射力和超快成像序列进行远程触诊在Aixplorer上进行了研究,以研究子宫收缩以及子宫各向异性的估计。使用7 MHz的腔内探针对20例妊娠妇女的宫颈弹性进行了定量。使用8 MHz线性探头通过腹部从外部对5位患者的子宫弹性进行量化。在子宫收缩期间实时跟踪弹性变化。通过评估剪切波速度相对于探头角度的变化,用相同的探头进行了剪切波束成像(纤维取向成像)。这使得可以研究不同深度的子宫各向异性。收缩期间的弹性值与子宫压力数据相关,子宫压力数据是收缩监测的金标准。最后,在不同深度观察子宫纤维的取向。

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