Background: Fetal suprarenal gland consists of three zones. They are the outer definitive zone or neocortex (DZ) that forms adult Zona Glomerulosa (ZG), the centrally located fetal zone and a third transitional zone (TZ) the future adult Zona Fasciculata (ZF) which lies just between the neocortex and fetal zone (FZ). The inner ZF that consists of large eosinophilic cells, and the outer definitive zone (DZ) consists of small, densely packed basophilic cells. As early as in 6th week of gestational Age, pheochromoblasts derived from the neural crest migrate through the fetal cortex to form the medulla at a later stage of development. The medulla unrecognizable as a distinct structure in the suprarenal gland throughout most of the gestation, except for small clusters or nests of chromaffin cells scattered throughout the body of the cortex. Aims and Objective: The study was designed and aimed to understand the early developmental histology of suprarenal gland. Materials and Methods: Study conducted at the Department of Anatomy, SV Medical College, Tirupati, Andhra Pradesh, India. The study was carried out by processing representative samples of fetal suprarenal tissues of 13 weeks, 17 weeks, 24 weeks, 25 weeks and 38 weeks gestational age. While processing, we observed the standard dissection procedure and histopathological tissue processing for the human samples. Results: Peripheral narrower and darker definitive zone or true cortex and an inner wider and lighter fetal zone was observed at 13, 17, 24 weeks with 10x objective. The demarcation between cortex and medulla could be seen clearly at 24 weeks. At 25 weeks capsule is very thick and vascular. A well-differentiated gland tissue with clear demarcation of cortex and medulla and a large central vein was observed. At 38 weeks degeneration of fetal zone with a thick-walled central vein was observed at lower magnification (10x objective) Conclusion: Observations on prenatal microscopic structure and gestational age-related changes in suprarenal glands form the basis for understanding structural changes and a foetal database for the local population.
Introduction: Development of adrenal gland is always peculiar as it involves the complex process. It has an intriguing role in the harmonious development of fetus. Ultrasonographic Studies on fetal supra renal glands help in understanding the embryology of Suprarenal glands and are also useful in obstetrics, perinatology and fetopathology. Risk factors associated in the pregnancy like maternal diabetes and hypertension could impair the growth of adrenal glands. The nomograms of adrenal glands observed by ultrasonography are of clinical importance and help us in planning prevention and management of a fetus in high-risk pregnancies. This requires a feasible and repeatable screening test. Objective: To estimate various suprarenal gland measurements such as length, width, thickness, volume, surface area, circumference, thickness of cortex and medulla Materials and methods: Present study conducted with62 live normal human fetuses of different gestational ages ranging from 20 – 40 weeks, through ultrasonographic study using real time 4D and B mode Ge Voluson 730 pro ultra sound macine. Probes used were AB-2-7 Convex 2d abdominal Probe and RABA 4-8 Convex 4D abdominal probe. After obtaining the prior permission from the institutional ethics committee, consent from pregnant woman. Sex of the fetus was not revealed during ultrasonographic study. Fetal parameters of supra-renal gland were recorded and documented. Results: Suprarenal gland length, width, thickness, cortico-medullary thickness, surface area and circumference of both right and left side revealed significant difference (p<0.01). the detailed data analysis was presented in the subsequent headings. Conclusion: The data obtained from this study, may useful to understand the suprarenal morphometry in live fetuses thus the database useful in obstetrics, perinatology and fetopathology.
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