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Fetal cerebral ventriculomegaly (VM) is diagnosed when the width of one or both ventricles, measured at the level of the glomus of the choroid plexus (atrium), is ≥ 10 mm. VM can result from different processes: abnormal turnover of the cerebrospinal fluid (CSF), neuronal migration disorders, and destructive processes. In a high percentage of cases, it is associated with structural malformations of the central nervous system (CNS), but also of other organs and systems. The rate of associated malformations is higher (≥60%) in severe VM (>15 mm) and lower (10–50%) in cases of borderline VM (10–15 mm). When malformations are not present, aneuploidies are found in 3–15% of borderline VM; the percentage is lower in severe VM. The neurodevelopmental outcome of isolated VM is normal in > 90% of cases if the measurement of ventricular width is between 10 and 12 mm; it is less favorable when the measurement is > 12 mm. Copyright © 2009 John Wiley & Sons, Ltd.  相似文献   

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The purpose of this study was to examine the natural history and differential diagnosis of ultrasound-detected, isolated fetal ascites. Retrospective review of our patient data base, from 1989 to 1993, revealed 18 patients with fetal ascites diagnosed sonographically. Fetuses presenting with generalized hydrops were excluded. One of the 18 fetuses with ascites had a chromosomal abnormality (trisomy 21), four fetuses had intrauterine infections, seven had gastrointestinal processes, two had genitourinary tract abnormalities, and four were labelled as ‘idiopathic’ (all four resulting in normal neonates). Seventeen of 18 fetuses survived; there was one fetal demise secondary to active syphilis. One fetus with parvovirus infection required intrauterine transfusion and did well. Two infants are developmentally retarded, including one with trisomy 21 and one with microcephaly secondary to cytomegalovirus infection. Fourteen of 18 fetuses had documented in-utero resolution of the ascites. Eleven of the 18 were associated with polyhydramnios sometime during fetal life. None of the fetuses developed hydrops. In conclusion, fetal ascites can result from many different aetiologies, including gastrointestinal and genitourinary anomalies. Chromosomal abnormalities and viral aetiologies must also be considered. Fetuses who have isolated ascites can have a good outcome with resolution of the ascites antenatally.  相似文献   

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From its beginning in the fifties the use of ultrasound in gynaecology and obstetrics has expanded extensively. Ultrasound technology has taken us from a time when the mother was our prime focus to the present where it is the unborn baby. Ultrasound assessments may have significant consequences for pregnancy care by optimizing the time, the mode and the location of the delivery as well as preparing the postnatal staff for a prenatally defined fetal problem. A major factor in the development was the groundbreaking work of an obstetrician, Ian Donald, and an engineer, Tom Brown, at Queen Mother's Hospital in Glasgow, who produced an ultrasound instrument called the Diasonograph. The first screening program offering a systematic ultrasound examination to a large pregnant population began in Malmoe, in 1973 and aimed to detect twins. Since then the examination has evolved over the years to include a systematic evaluation of the intrauterine contents. A number of randomized controlled trials have been reported and several large studies have reported the efficiency of routine fetal examinations for the detection of anomalies. Detection rates for the various subsets are presented. The learning curve regarding the ability to detect anomalies and the importance of proper training has also been shown. The procedure ‘routine fetal examination’ has been significant in supporting the continuous development of fetal medicine. The consequences of the improved dating of every pregnancy and the in utero transport of a sick fetus rather than an emergency transportation of a sick neonate, have an established evidence base. Ultrasound technology has had a remarkable ability to trigger great technical minds to move the technology forward year after year. Through a continuous cooperation between technicians and clinicians, this impressive technology of ultrasound will continue to support our work for the unborn child. Copyright © 2010 John Wiley & Sons, Ltd.  相似文献   

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This review summarizes the development, history and use of second-trimester sonographic markers for the detection of fetal Down syndrome over three decades. Starting with the nuchal fold thickening in 1985 and culminating in the genetic sonogram in the 1990s. The combination of second-trimester serum screening with the ultrasound markers improved the detection rate of affected fetuses but also allowed patients to decrease their risk of carrying a fetus with Down syndrome if the genetic sonogram was normal. More recently the role of the genetic sonogram and its markers have changed with the wide spread use of first-trimester screening. This prior screening ultimately decreases the prevalence of fetal Down syndrome in the second trimester to less than 85% of what it was in the first-trimester as most fetuses with Down syndrome are now identified early. Current interpretation of the second-trimester Down syndrome markers must be based on the result of the first trimester and combined screening to achieve the most accurate risk estimate of an affected fetus. Copyright © 2010 John Wiley & Sons, Ltd.  相似文献   

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