The incidence of congenital heart defects in the world regarding the severity of the defect

  • Vesna Miranovic Institute for Children's Disease, Clinical Center of Montenegro, Podgorica, Montenegro
Keywords: heart defects, congenital, incidence, severity of illnes index, epidemiology, statistics,

Abstract


Bacground/Aim. Congenital heart defects (CHDs) are structural or functional abnormalities of the heart present at birth even if they are detected much later. Their importance lies in the fact that, depending on the severity, they change the quality of life, and may be life threating. In addition, we should not ignore the high costs of treating people with congenital heart disease. The aim of this study was to analyze the incidence of congenital heart disease in relation to the severity in the world based on the available literature. Methods. All the available literature on the incidence of CHD cases regarding the severity of CHD published from 1955 to 2012 was analyzed. The researcher was able to read the titles and abstracts of 128 papers on the subject. Due to methodological inconsistency, 117 of the papers were rejected. Based on the criteria of reliability, availability and comparability, our analysis included 11 studies testing CHD incidence regarding the severity of the defect conducted all over the world. The Yates' χ2-test was used to compare the observed incidences. Results. The frequency of severe congenital heart defects, ranged from 0.414 to 2.3/1,000 live births, the incidence of moderate congenital heart defects from 0.43 to 2.6/1,000 live births while in the group of minor congenital heart defects the incidence ranged from 0.99 to 10.3/1000 live births. There were no statistically significant differences in the incidence of mild, moderate and severe CHDs. Conclusion. The results obtained studying of the available data suggest that no statistically significant difference in the incidence of mild, moderate and severe congenital heart defects. A universal methodological approach to the incidence of CHD is essential.

 

Author Biography

Vesna Miranovic, Institute for Children's Disease, Clinical Center of Montenegro, Podgorica, Montenegro

Assistant professor in pediatrics at the Medical faculty of the University of Montenegro, pediatrician-cardiologist at the Institute for Sick Children at the Clinical Centre of Montenegro.

References

Loffredo CA. Epidemiology of cardiovascular malformations: prevalence and risk factors. Am J Med Genet 2000; 97(4): 319−25.

World Health Organization . World Health Statistics Annual. Available from: www.thebody.com/content/art61960.html [cited 2011 May 16]

Abu-Harb M, Hey E, Wren C. Death in infancy from unrecog-nized congenital heart disease. Arch Dis Child 1994; 71(1): 3–7.

Keith JD . Prevalence, incidence and epidemiology. In: Keith JD, Rowe RD, Vlad P , editors. Heart Disease in Infancy and Childhood. 3rd ed. New York : Macmillan; 1978. p. 3–13.

Kidd BS. The fate of children with transposition of the great arteries following balloon atrial septostomy.In: Kidd BS, editor. The child with congenital heart disease after surgery. Mount Kisco, NY: Futura publishing Co; 1976.

Hoffman JE, Kaplan K. The incidence of congenital heart dis-ease. J Am Coll Cardiol 2002; 39(12): 1890−900.

Mitchell SC. The ductus arteriosus in the neonatal period. J Pe-diatr 1957; 51(1): 12–7.

Yang XY, Li XF, Lü XD, Liu YL. Incidence of congenital heart disease in Beijing, China. Chin Med J (Engl) 2009; 122(10): 1128−32.

Fyler DC, Buckley LP, Hillenbrand WE. Report of the New Eng-land Regional Infant Cardiac Program. Pediatrics 1980; 65(2 Pt 2): 375−461.

van der Linde D, Konings EE, Slager MA, Witsenburg M, Helbing WA, et al. Birth prevalence of congenital heart disease world-wide: a systematic review and meta-analysis. J Am Coll Cardiol. 2011; 58(21): 2241−7.

Bound JP, Logan WF. Incidence of congenital heart disease in Blackpool 1957-1971. Br Heart J 1977; 39(4): 445−50.

Botto LD, Correa A, Erickson JD. Racial and temporal variations in the prevalence of heart defects. Pediatrics 2001; 107(3): E32.

Wren C, Richmond S, Donaldson L. Temporal variability in birth prevalence of cardiovascular malformations. Heart 2000; 83(4): 414−9.

Wu MH, Chen HC, Lu CW, Wang JK, Huang SC, Huang SK. Prevalence of congenital heart disease at live birth in Taiwan. J Pediatr 2010; 156(5): 782−5.

Begić H, Tahirović H, Mesihović-Dinarević S, Ferković V, Atić N, Latifagić A. Epidemiological and clinical aspects of congenital heart disease in children in Tuzla Canton, Bosnia-Herzegovina. Eur J Pediatr 2003; 162(3): 191−3.

Stephensen SS, Sigfusson G, Eiriksson H, Sverrisson JT, Torfason B, Haraldsson A, et al. Congenital cardiac malformations in Icel-and from 1990 through 1999. Cardiol Young 2004; 14(4): 396−401.

Başpinar O, Karaaslan S, Oran B, Baysal T, Elmaci AM, Yorulmaz A. Prevalence and distribution of children with congenital heart diseases in the central Anatolian region, Turkey. Turk J Pediatr 2006; 48(3): 237−43.

Marelli AJ, Mackie AS, Ionescu-Ittu R, Rahme E, Pilote L. Conge-nital heart disease in the general population: changing preva-lence and age distribution. Circulation 2007; 115(2): 163−72.

Feldt RH, Avasthey P, Yoshimasu F, Kurland LT, Titus JL. Inci-dence of congenital heart disease in children born to residents of Olmsted County, Minnesota, 1950-1969. Mayo Clin Proc 1971; 46(12): 794−9.

Ferencz C, Loffredo CA, Correa-Villasenor A, Wilson PD. Perspec-tives in Pediatric Cardiology, Volume 4: Epidemiology of Congenital Heart Disease: The Baltimore-Washington Infant Study: 1981-1989. Armonk, NY: Futura Publishing Company, Inc.; 1997.

Reller MD, Strickland MJ, Riehle-Colarusso T, Mahle WT, Correa A. Prevalence of congenital heart defects in metropolitan Atlanta, 1998-2005. J Pediatr 2008; 153(6): 807−13.

Cho SY, Oh JH, Lee JH, Lee JY, Lee SJ, Han JW, et al.. Recent incidence of congenital heart disease in neonatal care unit of secondary medical center: a single center study. Korean J Pe-diatr 2012; 55(7): 232−7.

Warnes CA, Liberthson R, Danielson GK, Dore A, Harris L, Hoff-man JI, et al. Task force 1: the changing profile of congenital heart disease in adult life. J Am Coll Cardiol 2001; 37(5): 1170−5.

Kamphuis M, Ottenkamp J, Vliegen HW, Vogels T, Zwinderman KH, Kamphuis RP, et al. Health related quality of life and health status in adult survivors with previously operated complex congenital heart disease. Heart 2002; 87(4): 356−62.

Gersony WM, Hayes CJ, Driscoll DJ, Keane JF, Kidd L, O'Fallon WM, et al. Second natural history study of congenital heart defects.Quality of life of patients with aortic stenosis, pulmonary stenosis, or ventricular septal defect. Circulation 1993; 87(2 Suppl): I52−65.

Dickinson DF, Arnold R, Wilkinson JL. Congenital heart disease among 160 480 liveborn children in Liverpool 1960 to 1969. Implications for surgical treatment. Br Heart J 1981; 46(1): 55−62.

Hoffman JI. Incidence of congenital heart disease: I. Postnatal incidence. Pediatr Cardiol 1995; 16(3): 103−13.

Fixler DE, Pastor P, Chamberlin M, Sigman E, Eifler CW. Trends in congenital heart disease in Dallas County births. 1971-1984. Circulation 1990; 81(1): 137−42. .

Miranović V. Frequencz and the results of treatment in children with congenital heart defects in Montenegro in a period 1995–2005 [dissertation]. Belgrade: University of Belgrade, Medical Faculty; 2007. (Serbian).

Published
2017/01/27
Section
Original Paper