Fetal brain biometry is an essential part of the sonographic examination to estimate the gestational age of the fetus and to detect congenital abnormalities. However, due to complex anatomy of fetal brain, fetal movement and operator dependency, it is difficult to measure the biometrics and identify all relevant cerebral structures.
Fetal central nervous system (CNS) anomalies have been diagnosed by the combination of recognizable markers including the lateral ventricles, the cerebellum and the cavum septi pellucidi (CSP).
A novel semi-automated technology, 5D CNS, significantly improves accuracy and reproducibility as well as reduces intra-/inter-observer variability by combining fetal brain measurements and the automated process.
5D CNS displays three standardized planes such as trans thalamic view, trans ventricular view and trans cerebellar view including mid-sagittal view of the fetal brain. And it automatically labels the measurements of biparietal diameter (BPD), head circumference (HC) and occipito-frontal diameter (OFD) as well as transverse cerebellar diameter (CEREB) for qualitative evaluation of the fetal growth and some cerebral anomalies. Also, the thickness of the atrium (atrial width) of the lateral ventricles (Vp) is measured for assessing the integrity of the ventricular system and the size of the cisterna magna (CM) is provided by 5D CNS.
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