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Indian J Pathol Microbiol ; 2022 Dec; 65(4): 844-850
Article | IMSEAR | ID: sea-223355

ABSTRACT

Background: Abnormal uterine bleeding (AUB) is one of the most common problems encountered in gynecological practice. Various benign and malignant disorders of the endometrial tissue show vascular changes such as congestion, dilatation, and vessel wall irregularities. Aim: To evaluate the vascular morphometry of the endometrial tissue in AUB. Materials and Methods: A descriptive cross-sectional study of the endometrial tissue in patients presented with AUB was undertaken for vascular morphometric analysis. Histopathological processing of the endometrial tissue samples was done as per the standard format, and the slides were evaluated for vascular morphometry. Results: Out of 150 cases of endometrial tissue in patients presented with AUB, 80 cases were reported as proliferative phase, 41 as secretory phase, 15 as disordered proliferative endometrium, 6 as atrophic phase endometrium, and 4 each of endometrial hyperplasia without atypia and endometrial carcinoma. An average number of endometrial blood vessels and large-sized blood vessels were more in endometrial carcinoma and endometrial hyperplasia without atypia as compared to proliferative phase, secretory phase, atrophic endometrium, and disordered proliferative endometrium. Vessel shape irregularities and vascular congestion were observed in all the cases of atrophic endometrium, endometrial carcinoma, and endometrial hyperplasia without atypia. Endometrial carcinoma showed severe dilatation of the endometrial blood vessels. Conclusion: Vascular morphometry changes were noted in endometrial hyperplasia, endometrial carcinoma, disordered proliferative endometrium, and atrophic phase endometrium. These findings suggest that studies or trials related to anti-angiogenic therapy may help to plan anti-angiogenic therapy in patients with AUB.

2.
Article | IMSEAR | ID: sea-210889

ABSTRACT

A study evaluating water quality and nutrient dynamics in inland saline water was carried out using biofloc technology with different C/N ratios employed to raise Litopenaeus vannamei juveniles. The study was carried out for 60 days in FRP with no water exchange. Salinity, temperature, Dissolved oxygen, pH, nutrients, Biofloc Volume and Total Suspended Solids were monitored. All biofloc units indicated reduction in alkalinity at 40th day except the treatment with highest (25:1) C/N ratio, pH and alkalinity was not significant different among various treatments. Dissolved Oxygen was found to be significantly decreasing with increasing C/N ratios. The least Dissolved Oxygen was recorded at higher C/N ratios of 20:1 and 25:1 at the end of experiment. The Total Ammonical Nitrogen (TAN) and NO2–Nin C/N ratios 15:1 and 20:1 were found to have a significantly decreasing in trend after 20th and 18th day respectively. The NO3–N, PO43-–P, BVF and TSS in biofloc were shown an increasing trend in all the experiments. The present study elucidates the suitability of optimum C/N ratios in biofloc for maintaining the water quality to raise L. vannamei in inland ground saline water. The finding could help in reducing the environmental concern saline waste water discharge from the shrimp pond to the land.

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