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עמוד בית
Fri, 22.11.24

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October 2017
Alon Z. Sapir MD, Izzat Khayyat MD, Ron Rabinowitz MD, Arnon Samueloff MD, Lior Drukker MD and Hen Y. Sela MD

Background: Two types of growth curves are commonly used to diagnose fetal growth disorders: neonatal birth weight (BW) and sonographic estimated fetal weight (EFW). The debate as to which growth curve to use is universal.

Objectives: To establish sonographic EFW growth curves for the Israeli population and to assess whether the use of the BW growth curves currently adapted in Israel leads to under-diagnosis of intrauterine growth disorders.

Methods: Biometric data collected during a 6 year period was analyzed to establish sonographic EFW growth curves between 15–42 weeks of gestation for the Israeli population. Growth curves were compared to previously published sonographic EFW growth curves. A comparison with the Israeli BW growth curves was performed to assess the possibility of under-diagnosis of intrauterine growth disorders.

Results: Out of 42,778 sonographic EFW studies, 31,559 met the inclusion criteria. The sonographic EFW growth curves from the current study resembled the EFW curves previously published. The comparison of the current sonographic EFW and BW growth curves revealed under-diagnosis of intrauterine growth disorders during the preterm period. Four percent of the fetuses assessed between 26–34 weeks would have been suspected of being growth restricted; 2.8 percent of the fetuses assessed between 30–36 weeks would have been suspected of having macrosomia, based on the BW growth curves.

Conclusions: New Israeli sonographic EFW growth curves resemble previously published sonographic EFW curves. Using BW growth curves may lead to the under-diagnosis of growth disorders. We recommend adopting sonographic EFW growth to diagnose intrauterine growth disorders.

March 2002
Alfred Drukker, MD, PhD

Recent data have shed significant new light on the structural and functional development of the kidneys, as well as on a rare congenital form of bilateral renal hypoplasia called congenital oligomeganephronia. In this renal disorder, few greatly enlarged and hard-working nephrons are found that will ultimately sclerose and lead to end-stage renal failure during early childhood. At the same time it has been recognized that the number of nephrons in the kidneys of various animal species and humans is correlated to renal mass. Therefore, premature babies and/or infants small for gestational age due to intrauterine malnutrition will be born with relatively small kidneys and a certain nephron deficit, a condition called congenital oligonephropathy. Extensive worldwide epidemiologic studies have now shown that these premature or SGA[1] infants have a high incidence of cardiovascular disease, hypertension, hyperlipidemia, diabetes and renal failure in adulthood. Although the pathophysiologic mechanisms responsible for these complications of premature birth are not entirely understood, it has become clear that the described association may pose a possible health problem in the adult population. This review describes the background of COMN[2] and CON[3] as well as the evidence that has accumulated on the adult complications of the latter. In addition, some thoughts are presented on the importance of identifying subjects possibly affected by CON, such that early recognition may alter the ultimate outcome.

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[1] SGA = small for gestational age

[2] COMN = congenital oligomeganephronia

[3] CON = congenital oligonephropathy


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