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1.
Indian J Otolaryngol Head Neck Surg ; 76(1): 130-136, 2024 Feb.
Article in English | MEDLINE | ID: mdl-38440502

ABSTRACT

The sino-nasal cavities represent an anatomical region affected by a variety of tumors with clinical, etiological, genetic and pathological features, which are distinct from tumors commonly encountered in the area of head and neck cancers. We have undertaken this study with the aim of assessing clinical profile, various treatment modalities and outcome of patients with malignant sino-nasal tumors. In this prospective study of two years, done in a rural tertiary care hospital of India, 40 patients with malignant neoplastic tumors of nasal cavity, sinuses and nasopharynx were analyzed for their clinic-pathological and radiological profile and surgical management. The age range found was 10-78 years. There was a significant male preponderance with 23 (57.5%) male patients. Most common histological type seen in our study was Squamous cell carcinoma amongst 32 (80%) of cases. Maximum number of patients were managed with combination therapy of Surgery and Radiotherapy i.e. in 21 patients (52.5%). Multimodality treatment has been deemed the most efficacious choice of treatment which would improve disease free survival for the patients.

2.
Crit Rev Biomed Eng ; 52(3): 1-16, 2024.
Article in English | MEDLINE | ID: mdl-38523438

ABSTRACT

The present work is focused on the study of hemodynamic characteristics for tortuous arteries/veins. Tortuosity in arteries/veins is defined by introducing waviness in the wall of the tube. Analysis is further extended for bifurcated veins with and without wavy walls. Waviness is defined by two geometric parameters; pitch and depth of the wave. Four different combinations of pitch and depth are studied and compared with a plain straight wall. The present study is carried out numerically by using a computational fluid dynamics tool. Hemodynamics for a steady flow of blood is investigated through pressure, velocity, and wall shear stress distribution. Waviness in the wall of arteries/veins creates a recirculation zone at the crest and trough of the wall. Occurrence of the recirculation zone leads to reduction in velocity which in turn reduces wall shear stress. Variation in the magnitude of the velocity and corresponding wall shear stress at the crest and trough of the wavy wall depends on the pitch and depth of the artery/veins (tube).


Subject(s)
Arteries , Models, Cardiovascular , Humans , Blood Flow Velocity , Computer Simulation , Hemodynamics , Stress, Mechanical
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