Literature DB >> 15328429

Validation of volume and mass assessments for human fetal heart imaging by 4-dimensional spatiotemporal image correlation echocardiography: in vitro balloon model experiments.

Aarti Hejmadi Bhat1, Virginia N Corbett, Ruolan Liu, Nathan D Carpenter, Nick W Liu, Anna M Wu, Graham D Hopkins, Xiaokui Li, David J Sahn.   

Abstract

OBJECTIVE: This study was designed to validate a slow-sweep real-time 4-dimensional (4D) spatiotemporal image correlation method for producing quantitatively accurate dynamic fetal heart images using an in vitro pulsatile balloon model and apparatus.
METHODS: To model fetal heart chambers, asymmetric double-walled finger stalls (tips of surgical latex gloves) were used and attached to a laboratory-designed circuit that allowed calibrated changes in the inner balloon volume as well as an intermediate gel mass interposed between the 2 layers. The water-submerged model was attached to a small-volume pulsatile pump to produce phasic changes in volume within the inner balloon at a fixed rate. A sonography system with 4D spatiotemporal image correlation (STIC) capabilities was used for 3-dimensional (3D) and 4D data acquisition. Volume data were analyzed by customized radial summation techniques with 4D data analysis software and compared with known volumes and masses.
RESULTS: Fifty-six individual volumes ranging from 2.5 to 10 mL were analyzed. Volume and mass measurements with 4D STIC were highly correlated (R2 > 0.90). The mean percentage error was better (<6%) for volumes exceeding 4 mL and was as low as 0.3% for 6-mL estimations. Measurements in the diastolic phase were the most accurate, followed by mass estimations equivalent to chamber walls. There was a wider range of percentage error in the lowest volumes tested (2.5 mL), which might have arisen from difficulties in spatial resolution or distortions from within the model apparatus itself. Resolution limitations of 4D technology in combination with extremely small volume targets may explain higher error rates at these small volumes.
CONCLUSIONS: Four-dimensional STIC is an acceptably accurate method for volume and mass estimations in the ranges comparable with mid- and late-gestation fetal hearts. It is particularly accurate for diastolic estimations, for chamber wall mass measurements, and at volumes of greater than 2.5 mL. This study validates use of 4D STIC technology to overcome the limitations of nongated 3D technology for phasic and quantitative assessments in fetal echocardiography.

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Year:  2004        PMID: 15328429     DOI: 10.7863/jum.2004.23.9.1151

Source DB:  PubMed          Journal:  J Ultrasound Med        ISSN: 0278-4297            Impact factor:   2.153


  8 in total

Review 1.  Three- and 4-dimensional ultrasound in obstetric practice: does it help?

Authors:  Luís F Gonçalves; Wesley Lee; Jimmy Espinoza; Roberto Romero
Journal:  J Ultrasound Med       Date:  2005-12       Impact factor: 2.153

2.  A novel algorithm for comprehensive fetal echocardiography using 4-dimensional ultrasonography and tomographic imaging.

Authors:  Jimmy Espinoza; Juan Pedro Kusanovic; Luís F Gonçalves; Jyh Kae Nien; Sonia Hassan; Wesley Lee; Roberto Romero
Journal:  J Ultrasound Med       Date:  2006-08       Impact factor: 2.153

3.  Standardized views of the fetal heart using four-dimensional sonographic and tomographic imaging.

Authors:  J Espinoza; R Romero; J P Kusanovic; F Gotsch; W Lee; L F Gonçalves; S S Hassan
Journal:  Ultrasound Obstet Gynecol       Date:  2008-02       Impact factor: 7.299

4.  The role of the sagittal view of the ductal arch in identification of fetuses with conotruncal anomalies using 4-dimensional ultrasonography.

Authors:  Jimmy Espinoza; Roberto Romero; Juan Pedro Kusanovic; Francesca Gotsch; Offer Erez; Wesley Lee; Luís F Gonçalves; Mary Lou Schoen; Sonia S Hassan
Journal:  J Ultrasound Med       Date:  2007-09       Impact factor: 2.153

5.  Fetal cardiac ventricular volume, cardiac output, and ejection fraction determined with 4-dimensional ultrasound using spatiotemporal image correlation and virtual organ computer-aided analysis.

Authors:  Neil Hamill; Lami Yeo; Roberto Romero; Sonia S Hassan; Stephen A Myers; Pooja Mittal; Juan Pedro Kusanovic; Mamtha Balasubramaniam; Tinnakorn Chaiworapongsa; Edi Vaisbuch; Jimmy Espinoza; Francesca Gotsch; Luis F Goncalves; Wesley Lee
Journal:  Am J Obstet Gynecol       Date:  2011-04-30       Impact factor: 8.661

6.  Repeatability and reproducibility of fetal cardiac ventricular volume calculations using spatiotemporal image correlation and virtual organ computer-aided analysis.

Authors:  Neil Hamill; Roberto Romero; Sonia S Hassan; Wesley Lee; Stephen A Myers; Pooja Mittal; Juan Pedro Kusanovic; Tinnakorn Chaiworapongsa; Edi Vaisbuch; Jimmy Espinoza; Francesca Gotsch; Angela Carletti; Luís F Gonçalves; Lami Yeo
Journal:  J Ultrasound Med       Date:  2009-10       Impact factor: 2.153

7.  The fetal cardiovascular response to increased placental vascular impedance to flow determined with 4-dimensional ultrasound using spatiotemporal image correlation and virtual organ computer-aided analysis.

Authors:  Neil Hamill; Roberto Romero; Sonia Hassan; Wesley Lee; Stephen A Myers; Pooja Mittal; Juan Pedro Kusanovic; Mamtha Balasubramaniam; Tinnakorn Chaiworapongsa; Edi Vaisbuch; Jimmy Espinoza; Francesca Gotsch; Luis F Goncalves; Shali Mazaki-Tovi; Offer Erez; Edgar Hernandez-Andrade; Lami Yeo
Journal:  Am J Obstet Gynecol       Date:  2012-12-07       Impact factor: 8.661

8.  Four-dimensional ultrasonography of the fetal heart using a novel Tomographic Ultrasound Imaging display.

Authors:  Luís F Gonçalves; Jimmy Espinoza; Roberto Romero; Juan Pedro Kusanovic; Betsy Swope; Jyh Kae Nien; Offer Erez; Eleazar Soto; Marjorie C Treadwell
Journal:  J Perinat Med       Date:  2006       Impact factor: 1.901

  8 in total

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