Literature DB >> 3358397

Epidemiology of the early amnion rupture spectrum of defects.

A Garza1, J F Cordero, J Mulinare.   

Abstract

We used data from the population-based Metropolitan Atlanta Congenital Defects Program to study the epidemiology of the early amnion rupture spectrum of defects. For the period 1968 through 1982, we identified 45 patients among 388,325 live births, for a birth prevalence rate of 1.16 per 10,000. The prevalence for male infants was 0.91 and for female infants, 1.44. The defects occurred 1.76 times more often in blacks than in whites (95% confidence interval 0.98, 3.13). Infants of young, black multigravidas (less than 20 years, more than one pregnancy) showed the highest rate (6.2), and infants of older, black multigravidas showed the lowest rate (0.5) (rate ratio = 12.4, 95% confidence interval 4.2, 36.4). These findings suggest that young, black multigravidas are at much higher risk than are older, black multigravidas of having infants with this spectrum of defects. Ascertainment (diagnostic) differences between hospitals probably account for some of the racial discrepancy in birth prevalence, but they do not explain the maternal age effects in black multigravidas. Because the higher rates for blacks probably reflect more accurate diagnoses, the findings also suggest that a closer estimate of the true birth prevalence may be about 3 per 10,000 live births.

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Mesh:

Year:  1988        PMID: 3358397     DOI: 10.1001/archpedi.1988.02150050079037

Source DB:  PubMed          Journal:  Am J Dis Child        ISSN: 0002-922X


  10 in total

1.  Embryology, diagnosis, and evaluation of congenital hand anomalies.

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2.  AMNIOTIC BAND SYNDROME.

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3.  Abnormal first-trimester fetal nuchal translucency and amniotic band syndrome.

Authors:  Takayuki Higuchi; Mamoru Tanaka; Keiko Kuroda; Akira Yabuno; Seon Hye Kim; Satoshi Asai; Sokichi Iwata; Kei Miyakoshi
Journal:  J Med Ultrason (2001)       Date:  2012-03-09       Impact factor: 1.314

4.  Association between maternal age and birth defects of unknown etiology: United States, 1997-2007.

Authors:  Simerpal K Gill; Cheryl Broussard; Owen Devine; Ridgely Fisk Green; Sonja A Rasmussen; Jennita Reefhuis
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5.  Prenatal imaging of amniotic band sequence: utility and role of fetal MRI as an adjunct to prenatal US.

Authors:  Jeremy Neuman; Maria A Calvo-Garcia; Beth M Kline-Fath; Constance Bitters; Arnold C Merrow; Carolina V A Guimaraes; Foong-Yen Lim
Journal:  Pediatr Radiol       Date:  2011-12-02

6.  Fractures in the Setting of Constriction Band Syndrome: A Case Series of Three Patients with Extremity Fractures at the Site of a Constriction Band.

Authors:  Yerin Cho; Leeann Qubain; Melissa Esparza; Judson Karlen; Timothy Schaub; Mohan V Belthur
Journal:  Children (Basel)       Date:  2022-06-12

7.  Surgical correction of congenital constriction band syndrome in children: Replacing Z-plasty with direct closure.

Authors:  Mazen Yohanness Choulakian; H Bruce Williams
Journal:  Can J Plast Surg       Date:  2008

8.  Maternal vasoactive exposures, amniotic bands, and terminal transverse limb defects.

Authors:  Martha M Werler; Jaclyn L F Bosco; Stuart K Shapira
Journal:  Birth Defects Res A Clin Mol Teratol       Date:  2009-01

9.  Constriction band syndrome occurring in the setting of in vitro fertilization and advanced maternal age.

Authors:  Brian Rinker; Henry C Vasconez
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Review 10.  First trimester mechanisms of gestational sac placental and foetal teratogenicity: a framework for birth cohort studies.

Authors:  Jennifer J Adibi; Alexander J Layden; Rahel L Birru; Alexandra Miragaia; Xiaoshuang Xun; Megan C Smith; Qing Yin; Marisa E Millenson; Thomas G O'Connor; Emily S Barrett; Nathaniel W Snyder; Shyamal Peddada; Rod T Mitchell
Journal:  Hum Reprod Update       Date:  2021-06-22       Impact factor: 15.610

  10 in total

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