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  • Item type:Документ,
    Morphometric thresholds of the ostiomeatal complex and their psychological correlates in sinus ventilation impairment
    (2025) Yurevych, N.; Kysylenko, K.; Sukhina, I.; Falova, O.; Khartsiy, O.; Rozhkova, O.; Lupyr, M.; Alekseeva, V.
    The ostiomeatal complex (OMC) is a critical anatomical region ensuring ventilation and drainage of the anterior paranasal sinuses. Variability in its morphology can lead to functional impairment and predispose individuals to chronic rhinosinusitis. Objective: To determine quantitative morphometric thresholds associated with inadequate sinus ventilation based on OMC structure and semilunar hiatus dimensions using CT data and computational modeling. Methods: Morphometric analysis was performed on 400 spiral CT scans. OMC parameters were measured manually and automatically, and 3D models were constructed. Pressure and flow simulations were conducted using the IMED system. Subjects were divided into three groups based on the width of the semilunar hiatus: narrow, moderate, and wide. Parameters such as sinus wall thickness, OMC component density, and estimated ventilation pressure were analyzed. Results: Both excessively narrow (<1.8 mm) and overly wide (>3.5 mm) semilunar hiatuses were associated with impaired ventilation. Optimal airflow occurred in the intermediate range (2.1–3.2 mm). A pressure gradient of <2.5 Pa between the maxillary sinus and nasal cavity was associated with stasis in 73% of cases. Strong correlations were observed between sinus ventilation efficiency and the thickness of the uncinate process (r = –0.75, p < 0.01), as well as medial maxillary sinus wall thickness (r = –0.72, p < 0.05). Conclusion: Functional ventilation of the maxillary sinus requires a semilunar hiatus width between 2.1 and 3.2 mm and a pressure differential above 2.5 Pa. Both morphological extremes are associated with physiological dysfunction, highlighting the importance of patient-specific anatomical assessment in surgical planning
  • Item type:Документ,
    Variant anatomy of the maxillary sinus based on multispiral computed tomography data (msct)
    (2024) Sosonna, L.; Yurevych, N.; Lupyr, M.; Babiy, L.; Kysylenko, K.; Kachailo, I.; Narbutova, T.; Borisenko, Ye.; Baiazitov, D.; Alekseeva, V
    The structural features of the paranasal sinuses play a key role in the development of pathological processes within them. The aim of our study was to examine the variations in the anatomical structure of the maxillary sinus based on MSCT data.
  • Item type:Документ,
    Anatomical variability of the alveolar process of the maxilla based on multislice computed tomography data
    (2024) Shiyan, D.; Kysylenko, K.; Trach, O.; Yurevych, N.; Lupyr, M.; Alekseeva, V.
    Modern research methods, widely implemented in routine medical practice, open new horizons for the study of anatomical structures. The maxilla is one of the regions of the human skull that shows significant variability with age and gender. This is due to the peculiarities of tooth eruption and age-related changes in the periodontium and adjacent structures, which undoubtedly affect the structure of the alveolar process, sometimes drastically altering it over time.