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评估时空图像相关技术作为一种工具,用于培训非专业超声医师进行胎儿心脏检查。

Evaluating Spatiotemporal Image Correlation Technology as a Tool for Training Nonexpert Sonographers to Perform Examinations of the Fetal Heart.

作者信息

Avnet Hagai, Mazaaki Eyal, Shen Ori, Cohen Sarah, Yagel Simcha

机构信息

School of Women's and Children's Health, University of New South Wales Medicine, and Department of Maternal-Fetal Medicine, Royal Hospital for Women, Randwick, New South Wales, Australia (H.A.); Department of Obstetrics and Gynecology, Shaare Zedek Medical Center, Jerusalem, Israel (E.M., O.S.); and Ultrasound Center, Department of Obstetrics and Gynecology, Hadassah-Hebrew University Medical Centers, Mt Scopus, Jerusalem, Israel (S.C., S.Y.).

出版信息

J Ultrasound Med. 2016 Jan;35(1):111-9. doi: 10.7863/ultra.15.01072. Epub 2015 Dec 7.

Abstract

OBJECTIVES

We aimed to evaluate the use of spatiotemporal image correlation (STIC) as a tool for training nonexpert examiners to perform screening examinations of the fetal heart by acquiring and examining STIC volumes according to a standardized questionnaire based on the 5 transverse planes of the fetal heart.

METHODS

We conducted a prospective study at 2 tertiary care centers. Two sonographers without formal training in fetal echocardiography received theoretical instruction on the 5 fetal echocardiographic transverse planes, as well as STIC technology. Only women with conditions allowing 4-dimensional STIC volume acquisitions (grayscale and Doppler) were included in the study. Acquired volumes were evaluated offline according to a standardized protocol that required the trainee to mark 30 specified structures on 5 required axial planes. Volumes were then reviewed by an expert examiner for quality of acquisition and correct identification of specified structures.

RESULTS

Ninety-six of 112 pregnant women examined entered the study. Patients had singleton pregnancies between 20 and 32 weeks' gestation. After an initial learning curve of 20 examinations, trainees succeeded in identifying 97% to 98% of structures, with a highly significant degree of agreement with the expert's analysis (P < .001). A median of 2 STIC volumes for each examination was necessary for maximal structure identification. Acquisition quality scores were high (8.6-8.7 of a maximal score of 10) and were found to correlate with identification rates (P = .017).

CONCLUSIONS

After an initial learning curve and under expert guidance, STIC is an excellent tool for trainees to master extended screening examinations of the fetal heart.

摘要

目的

我们旨在评估时空图像相关技术(STIC)作为一种工具,用于培训非专业检查人员根据基于胎儿心脏5个横切面的标准化问卷获取并检查STIC容积,从而对胎儿心脏进行筛查检查。

方法

我们在2个三级医疗中心进行了一项前瞻性研究。两名未接受过胎儿超声心动图正式培训的超声检查医师接受了关于胎儿超声心动图5个横切面以及STIC技术的理论指导。仅纳入了具备进行四维STIC容积采集(灰阶和多普勒)条件的女性。采集的容积根据标准化方案进行离线评估,该方案要求受训者在5个所需轴向平面上标记30个特定结构。然后由一名专家检查人员对容积的采集质量和特定结构的正确识别情况进行复查。

结果

112名接受检查的孕妇中有96名进入研究。患者为单胎妊娠,孕周在20至32周之间。经过20次检查的初始学习曲线后,受训者成功识别了97%至98%的结构,与专家分析的一致性程度非常高(P < .001)。每次检查中位数为2个STIC容积对于最大程度地识别结构是必要的。采集质量得分较高(满分10分,得分为8.6 - 8.7),且发现与识别率相关(P = .017)。

结论

经过初始学习曲线并在专家指导下,STIC是受训者掌握胎儿心脏扩展筛查检查的优秀工具。

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