394
Views
0
CrossRef citations to date
0
Altmetric
Original Article

Evaluation of the changes in cardiac morphology of fetuses with congenital heart disease using fetalHQ

, , , , , & show all
Article: 2285239 | Received 14 Jul 2023, Accepted 14 Nov 2023, Published online: 27 Nov 2023

References

  • Bravo-Valenzuela NJ, Peixoto AB, Carrilho MC, et al. Fetal cardiac function by three-dimensional ultrasound using 4D-STIC and VOCAL - an update. J Ultrason. 2019;19(79):287–294.
  • Luo Y, Xiao F, Long C, et al. Evaluation of the sphericity index of the fetal heart during Middle and late pregnancy using fetalHQ. J Matern Fetal Neonatal Med. 2022;35(25):8006–8011. doi:10.1080/14767058.2021.1940934.
  • DeVore GR, Klas B, Satou G, et al. 24-segment sphericity index: a new technique to evaluate fetal cardiac diastolic shape. Ultrasound Obstet Gynecol. 2018;51(5):650–658. doi:10.1002/uog.17505.
  • Izumo M, Lancellotti P, Suzuki K, et al. Three-dimensional echocardiographic assessments of exercise-induced changes in left ventricular shape and dyssynchrony in patients with dynamic functional mitral regurgitation. Eur J Echocardiogr. 2009;10(8):961–967. doi:10.1093/ejechocard/jep114.
  • Cotran RS, Collins T, Schoen FJ, editors. Robbins pathologic basis of disease. Philadelphia (PA): W.B. Saunders; 1999.
  • Vasciaveo L, Zanzarelli E, D'Antonio F. Fetal cardiac function evaluation: a review. J Clin Ultrasound. 2023;51(2):215–224. doi:10.1002/jcu.23421.
  • DeVore GR, Satou G, Sklansky M, et al. Speckle tracking analysis in fetuses with D-Transposition: predicting the need for urgent neonatal balloon atrial septostomy. Pediatr Cardiol. 2023;44(6):1382–1396. doi:10.1007/s00246-023-03131-y.
  • DeVore GR, Satou G, Sklansky M, et al. Speckle tracking analysis to evaluate the size, shape, and function of the atrial chambers in fetuses with d-transposition of the great arteries to predict the need for neonatal urgent balloon atrial septostomy. Echocardiography. 2023;40(3):204–216. doi:10.1111/echo.15533.
  • DeVore GR, Cuneo B, Sklansky M, et al. Abnormalities of the width of the four-chamber view and the area, length, and width of the ventricles to identify fetuses at High-Risk for D-Transposition of the great arteries and tetralogy of fallot. J Ultrasound Med. 2023;42(3):637–646. doi:10.1002/jum.16060.
  • DeVore GR, Afshar Y, Harake D, et al. Speckle-Tracking analysis in fetuses with tetralogy of fallot: evaluation of right and left ventricular contractility and left ventricular function. J Ultrasound Med. 2022;41(12):2955–2964. doi:10.1002/jum.15987.
  • DeVore GR, Satou GM, Afshar Y, et al. Evaluation of fetal cardiac size and shape: a new screening tool to identify fetuses at risk for tetralogy of fallot. J Ultrasound Med. 2021;40(12):2537–2548. doi:10.1002/jum.15639.
  • DeVore GR, Haxel C, Satou G, et al. Improved detection of coarctation of the aorta using speckle-tracking analysis of fetal heart on last examination prior to delivery. Ultrasound Obstet Gynecol. 2021;57(2):282–291. doi:10.1002/uog.21989.
  • DeVore GR, Jone PN, Satou G, et al. Aortic coarctation: a comprehensive analysis of shape, size, and contractility of the fetal heart. Fetal Diagn Ther. 2020;47(5):429–439. doi:10.1159/000500022.
  • DeVore GR, Portella PP, Andrade EH, et al. Cardiac measurements of size and shape in fetuses with absent or reversed end-diastolic velocity of the umbilical artery and perinatal survival and severe growth restriction before 34 weeks’ gestation. J Ultrasound Med. 2021;40(8):1543–1554. doi:10.1002/jum.15532.
  • DeVore GR, Klas B, Satou G, et al. Measuring the area of the interventricular septum in the 4-chamber view: a new technique to evaluate the fetus at risk for septal hypertrophy. J Ultrasound Med. 2022;41(12):2939–2953. doi:10.1002/jum.15980.
  • DeVore GR, Satou G, Sklansky M. Abnormal fetal findings associated with a global sphericity index of the 4-chamber view below the 5th centile. J Ultrasound Med. 2017;36(11):2309–2318. doi:10.1002/jum.14261.
  • Tan F, Yang J, Shen Y, et al. Evaluating fetal heart morphology in hypertensive disorders of pregnancy using the fetal heart quantitative technique. Transl Pediatr. 2022;11(11):1804–1812. doi:10.21037/tp-22-492.
  • Shen Y, Tan F, Yang J, et al. A preliminary study on fetal cardiac morphology and systolic function of normal and anemic pregnant women by fetal heart quantification technology. Transl Pediatr. 2022;11(8):1336–1345. doi:10.21037/tp-22-315.
  • Wang D, Liu C, Liu X, et al. Evaluation of prenatal changes in fetal cardiac morphology and function in maternal diabetes mellitus using a novel fetal speckle-tracking analysis: a prospective cohort study. Cardiovasc Ultrasound. 2021;19(1):25. doi:10.1186/s12947-021-00256-z.
  • Zhao L, Wu P, Jiao X, et al. Characteristics and outcomes of fetal ventricular aneurysm and diverticulum: combining the use of a new technique, fetal HQ. Front Pediatr. 2023;11:1165972. doi:10.3389/fped.2023.1165972.
  • DeVore GR, Zaretsky M, Gumina DL, et al. Right and left ventricular 24-segment sphericity index is abnormal in small-for-gestational-age fetuses. Ultrasound Obstet Gynecol. 2018;52(2):243–249. doi:10.1002/uog.18820.
  • Ma J, Cao H, Hong L, et al. Cardiac function assessment in fetuses with ductus arteriosus constriction: a two-Dimensional echocardiography and FetalHQ study. Front Cardiovasc Med. 2022;9:868675. doi:10.3389/fcvm.2022.868675.
  • Gireadă R, Socolov D, Mihălceanu E, et al. Evaluation of fetal cardiac geometry and contractility in gestational diabetes mellitus by two-Dimensional speckle-tracking technology. Diagnostics. 2022;12(9):2053. doi:10.3390/diagnostics12092053.
  • Li T, Han J, Han Y, et al. Evaluation of changes of cardiac morphology and function in fetuses with ductus arteriosus constriction by speckle-tracking echocardiography. Front Pediatr. 2023;11:1085352. doi:10.3389/fped.2023.1085352.