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June 13, 2007Ultrasound in Obstetrics and Gynecology107 citationsOpen Access

Fetal cardiac ventricle volumetry in the second half of gestation assessed by 4D ultrasound using STIC combined with inversion mode

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BMB. MessingTel Aviv UniversitySCS. M. CohenHebrew University of JerusalemDVD. V. ValskyHadassah Medical Center

Key Result

3D inversion mode sonography combined with STIC demonstrated high reproducibility, with intra- and interobserver agreement reaching 96%, for estimating fetal cardiac ventricle volumes.

Study Design

Type

Observational (n=106)

Structured PICO

P
Population
106 fetuses (100 normal fetuses ranging from 20 + 5 to 40 + 0 gestational weeks, and 6 fetuses diagnosed with a cardiac anomaly)
I
Intervention
3D inversion mode ultrasonography with spatio-temporal image correlation (STIC) modality
O
Outcome
Fetal heart ventricle volume (end diastole and end systole), stroke volume, and ejection fractionsurrogate

3D inversion mode sonography combined with STIC is a reproducible method for estimating fetal cardiac ventricle volume, allowing for the creation of nomograms across gestation.

Abstract

OBJECTIVE: Quantification of fetal heart ventricle volume can aid in the evaluation of functional and anatomical aspects of congenital heart disease. The aim of this study was to establish nomograms for ventricular volume using three-dimensional (3D) inversion mode ultrasonography with the spatio-temporal image correlation (STIC) modality and to calculate ejection fraction and stroke volume. METHODS: The fetal heart was scanned using the STIC modality, during fetal quiescence with abdomen uppermost, at an angle of 30-50 degrees , without color Doppler flow mapping. In post-processing, starting with the classic four-chamber view plane in the A-frame, the reference point was moved to the center of the ventricle. The operator used the edit volume followed by Virtual Organ Computer-aided AnaLysis (VOCAL) mode options; in manual trace the VOCAL settings were set to 15 degrees . The trace was drawn and included the myocardium; inversion mode thresholding provided the volume of the intraventricular (anechoic) voxels within the region of interest. The total volume and the intraventricular volume were displayed. The process was repeated for right (R) and left (L) ventricles at end diastole (EDV) and end systole (ESV). The stroke volume (SV = EDV - ESV) and ejection fraction (EF = SV/EDV) were calculated from these measurements. Intraclass correlation was used to evaluate intra- and interobserver agreement. RESULTS: One hundred fetuses ranging from 20 + 5 to 40 + 0 gestational weeks were included in the study. In addition, six fetuses diagnosed during the study period with a cardiac anomaly were examined and their ventricular volumes compared with those of the main study group. LEDV ranged from a mean of 0.53 cm(3) at midgestation to a mean of 3.96 cm(3) at term. LESV ranged from a mean of 0.17 cm(3) at midgestation to 1.56 cm(3) at term. REDV ranged from a mean of 0.68 cm(3) at midgestation to a mean of 5.44 cm(3) at term. RESV ranged from a mean of 0.26 cm(3) at midgestation to 2.29 cm(3) at term. Total stroke volume ranged from a mean of 0.78 cm(3) at midgestation to a mean of 5.5 cm(3) at term. The mean right : left ventricle ratio was 1.4, and left ejection fraction ranged from 42.5 to 86% in these fetuses. Nomograms were created for RESV, LESV, REDV, LEDV and total stroke volumes vs. estimated fetal weight and gestational age. Intra- and interobserver agreement reached 96%. CONCLUSIONS: 3D inversion mode sonography combined with STIC represents a simple and reproducible method for estimating fetal cardiac ventricle volume. This innovative methodology may add to overall evaluation of cardiac volume and function, and improve our understanding of normal and abnormal cardiac structure, as well as the severity and prognosis of cardiac lesions.

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Cite This Study

Messing et al. (2007) conducted an observational in Fetal cardiac ventricle volumetry (n=106). 3D inversion mode ultrasonography with STIC was evaluated on Ventricular volume (EDV, ESV), stroke volume, and ejection fraction. 3D inversion mode sonography combined with STIC demonstrated high reproducibility, with intra- and interobserver agreement reaching 96%, for estimating fetal cardiac ventricle volumes.

synapsesocial.com/papers/6a1dc5af49e88a0d41601bc4https://doi.org/10.1002/uog.4036
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