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驱动并优化超声应变弹性成像以检测胎儿生长受限妊娠

Motorizing and Optimizing Ultrasound Strain Elastography for Detection of Intrauterine Growth Restriction Pregnancies.

作者信息

Saw Shier Nee, Low Jess Yi Ru, Mattar Citra Nurfarah Zaini, Biswas Arijit, Chen Lujie, Yap Choon Hwai

机构信息

Department of Biomedical Engineering, National University of Singapore, Singapore.

Department of Obstetrics and Gynecology, Yong Loo Lin School of Medicine, National University Health Systems, National University of Singapore, Singapore.

出版信息

Ultrasound Med Biol. 2018 Mar;44(3):532-543. doi: 10.1016/j.ultrasmedbio.2017.12.007. Epub 2018 Jan 9.

Abstract

Intrauterine growth restriction is a prevalent disease in pregnancy in which placental insufficiency leads to 5 to 10 times higher mortality and lifelong morbidities. The current detection rate is poor, and recently, ultrasound strain elastography (USEL) was proposed as a new diagnostic technique. Currently, placental USEL uses maternal subcutaneous fat as the reference layer, but this is not ideal as fat tissue stiffness can vary widely between subjects. Current USEL also uses manual palpation, and under different compression depths and rates, viscoelastic tissues such as placenta can yield different stiffness results. In the study described here, we strove to improve placental USEL by (i) using an external polymeric pad of known stiffness as the reference layer and (ii) adopting motorized control of the transducer during USEL to standardize palpation motion. Results indicated that motorized USEL reduced measurement variability by 67% compared with freehand USEL. Satisfactory and statistically significant correlations between USEL measurements and mechanical testing validation results were obtained for our new USEL protocol. Placental tissues were found to be non-linear and viscoelastic in nature and, thus, differed in stiffness at different compression rates and depths. Our study also revealed that there was a specific compression depth and rate during USEL that provided better correlation to mechanical testing, and should be considered in clinical placental USEL.

摘要

胎儿生长受限是妊娠期一种常见疾病,其中胎盘功能不全导致死亡率和终身发病率高出5至10倍。目前的检测率较低,最近,超声应变弹性成像(USEL)被提议作为一种新的诊断技术。目前,胎盘USEL使用母体皮下脂肪作为参考层,但这并不理想,因为不同个体之间脂肪组织的硬度差异很大。目前的USEL还采用手动触诊,在不同的压缩深度和速率下,胎盘等粘弹性组织会产生不同的硬度结果。在本文所述的研究中,我们努力通过以下方式改进胎盘USEL:(i)使用已知硬度的外部聚合物垫作为参考层,以及(ii)在USEL期间采用换能器的电动控制来规范触诊运动。结果表明,与徒手USEL相比,电动USEL使测量变异性降低了67%。对于我们新的USEL方案,在USEL测量与机械测试验证结果之间获得了令人满意且具有统计学意义的相关性。发现胎盘组织本质上是非线性和粘弹性的,因此在不同的压缩速率和深度下硬度不同。我们的研究还表明,在USEL期间存在一个特定的压缩深度和速率,与机械测试具有更好的相关性,在临床胎盘USEL中应予以考虑。

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