Purpose: The aim of the study was to determine the accuracy of fetal sex definition by measuring the yolk sac size and the yolk sac-fetal pole distance in the first trimester via ultrasound (US) screening.
Methods: We enrolled 92 gestational women in this prospective study. In the first trimester of US examination, the gestational sac, the gestational sac-fetal pole distance, and the yolk sac size were measured. When the fetal pole was in the longitudinal position, the distance between the fetal pole and the yolk sac was measured in millimeters (mm). The crown-rump length (CRL) was measured in the same position. US examination at 22 weeks was performed to determine whether the fetal gender was male or female. The genders of the fetuses were recorded. The sexes were also confirmed and recorded after birth.
Results: Fifty-five (59.8%) of the newborns were found to be male, while 37 (40.2%) of them were found to be female. We compared the yolk sac size and the yolk sac-fetal pole distance in both the female and male groups. We found that the genders showed a significant difference in terms of yolk sac-fetal pole distance, whereas the yolk sac size showed no significant difference between the genders. The optimal cutoff value of the yolk sac-fetal pole distance was 1.80 mm, with 70% sensitivity and 67% specificity for female gender prediction. The distance also showed an independent association with gender prediction in the first trimester.
Conclusion: Yolk sac-fetal pole distance may have the potential to predict gender in the first trimester of pregnancy.
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http://dx.doi.org/10.1007/s40477-020-00516-0 | DOI Listing |
J Ultrasound
December 2021
Department of Radiology, Yenimahalle Education and Research Hospital, Ankara, Turkey.
Purpose: The aim of the study was to determine the accuracy of fetal sex definition by measuring the yolk sac size and the yolk sac-fetal pole distance in the first trimester via ultrasound (US) screening.
Methods: We enrolled 92 gestational women in this prospective study. In the first trimester of US examination, the gestational sac, the gestational sac-fetal pole distance, and the yolk sac size were measured.
Abdom Radiol (NY)
September 2017
Mallinckrodt Institute of Radiology, Washington University School of Medicine, 510 S. Kingshighway Blvd., Campus Box 8131, St. Louis, MO, 63110, USA.
Purpose: To determine if and when fetal structures are identifiable during first trimester pregnancy on magnetic resonance imaging (MRI) in women with acute abdominopelvic pain.
Methods: Sixty-four first trimester MRI examinations performed for evaluation of abdominopelvic pain were reviewed retrospectively. T2-weighted images were assessed independently by three radiologists for the presence of gestational sac, yolk sac, fetal pole, and limb buds.
J Pharm Bioallied Sci
July 2011
Department of Radiology, Government Medical College and Rajindra Hospital, Punjab, India.
Objectives: Examination of pregnant women in the first trimester with transvaginal ultrasonography with the aim to study various fetal development markers, e.g., gestation sac, yolk sac, fetal heart motion, CRL length, and fetal anatomy in both normal and abnormal pregnancies.
View Article and Find Full Text PDFAJR Am J Roentgenol
December 1988
Department of Radiology, Johns Hopkins Medical Institutions, Baltimore, MD 21205.
Ninety women with a positive pregnancy test and signs and symptoms of threatened abortion or ectopic pregnancy had endovaginal and abdominal sonography in order to compare the value of the two techniques for the detection of gestational abnormalities. Either a normal delivery occurred or surgical and/or pathologic confirmation of the diagnosis was available in all cases. Fifty-five women had normal intrauterine pregnancies, 22 had ectopic pregnancies, seven had blighted ova, and six had missed abortions.
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