What are the screening methods for fetal malformations using four-dimensional color ultrasound

  With the advancement of science and technology and the improvement of living standards, many pregnant women provide their children with the best prenatal examinations during pregnancy. There is now a popular method called four-dimensional color ultrasound. Four dimensional color ultrasound provides very realistic and clear images, which can directly identify the gender of the fetus, the limbs of the fetus, whether the fetal development is healthy, or some diseases of the fetus. So, what are the screening methods for fetal abnormalities using four-dimensional ultrasound?

  

What are the screening methods for fetal malformations using four-dimensional color ultrasound1

  Firstly, four-dimensional ultrasound fetal malformation screening can determine fetal age, detect structural abnormalities in the uterus, detect fetal abnormalities, detect abnormal bleeding, detect ovarian tumors and fibroadenomas, and observe fetal growth and development from multiple perspectives and angles.

  Four dimensional color ultrasound fetal malformation screening provides a scientific basis for early diagnosis of congenital surface deformities and congenital heart diseases in fetuses. It can locate the placenta, evaluate multiple pregnancies or high-risk pregnancies, analyze fetal development, detect placental abnormalities, detect ectopic pregnancies and other abnormal pregnancies, automatically take intrauterine photos and dynamic videos of fetuses, or real-time activity images of human internal organs.

  Four dimensional color ultrasound, also known as real-time 3D, has been improved to real-time dynamic activity images on the stereoscopic dynamic display of 3D color ultrasound. Four dimensional color ultrasound also has the purpose of three-dimensional color ultrasound examination, which can observe the growth and development of the fetus in the uterus from multiple directions and angles, and provide accurate scientific basis for early diagnosis of congenital surface deformities and congenital heart disease in fetuses. In the past, ultrasound equipment could only detect physiological indicators of the fetus, while four-dimensional ultrasound can also examine the surface of the fetus, such as cleft lip, spina bifida, and developmental disorders of the brain, kidneys, heart, and bones, in order to treat them as early as possible.

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