4.Three-dimensional analysis of impacted maxillary third molars: A cone-beam computed tomographic study of the position and depth of impaction.
Priscila Ferreira DE ANDRADE ; Jesca Neftali Nogueira SILVA ; Bruno Salles SOTTO-MAIOR ; Cleide Gisele RIBEIRO ; Karina Lopes DEVITO ; Neuza Maria Souza Picorelli ASSIS
Imaging Science in Dentistry 2017;47(3):149-155
PURPOSE: The classification of impacted maxillary third molars (IMTMs) facilitates interdisciplinary communication and helps estimate the degree of surgical difficulty. Thus, this study aimed to develop a 3-dimensional classification of the position and depth of impaction of IMTMs and to estimate their prevalence with respect to gender and age. MATERIALS AND METHODS: This cross-sectional retrospective study analyzed images in sagittal and coronal cone-beam computed tomography (CBCT) sections of 300 maxillary third molars. The proposed classification was based on 3 criteria: buccolingual position (buccal, lingual, or central), mesial-distal position (mesioangular, vertical, or distoangular), and depth of impaction (low, medium, or high). CBCT images of IMTMs were classified, and the associations of the classifications with gender and age were examined using analysis of variance with the Scheffé post-hoc test. To determine the associations among the 3 classifications, the chi-square test was used (P<.05). RESULTS: No significant association of the classifications with gender was observed. Age showed a significant relationship with depth of impaction (P=.0001) and mesial-distal position (P=.005). The most common positions were buccal (n=222), vertical (n=184), and low (n=124). Significant associations among the 3 tested classifications were observed. CONCLUSION: CBCT enabled the evaluation of IMTMs in a 3-dimensional format, and we developed a proposal for a new classification of the position and depth of impaction of IMTMs.
Classification
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Cone-Beam Computed Tomography
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Interdisciplinary Communication
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Molar, Third*
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Prevalence
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Retrospective Studies
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Tooth, Impacted
5.Flavonoids Modulate the Proliferation of Neospora caninum in Glial Cell Primary Cultures.
Rosan BARBOSA DE MATOS ; Suzana BRAGA-DE-SOUZA ; Bruno PENA SEARA PITANGA ; Victor Diogenes AMARAL DA SILVA ; Erica Etelvina VIANA DE JESUS ; Alexandre MORALES PINHEIRO ; Maria de Fatima DIAS COSTA ; Ramon DOS SANTOS EL-BACHA ; Catia Suse DE OLIVEIRA RIBEIRO ; Silvia LIMA COSTA
The Korean Journal of Parasitology 2014;52(6):613-619
Neospora caninum (Apicomplexa; Sarcocystidae) is a protozoan that causes abortion in cattle, horses, sheep, and dogs as well as neurological and dermatological diseases in dogs. In the central nervous system of dogs infected with N. caninum, cysts were detected that exhibited gliosis and meningitis. Flavonoids are polyphenolic compounds that exhibit antibacterial, antiparasitic, antifungal, and antiviral properties. In this study, we investigated the effects of flavonoids in a well-established in vitro model of N. caninum infection in glial cell cultures. Glial cells were treated individually with 10 different flavonoids, and a subset of cultures was also infected with the NC-1 strain of N. caninum. All of the flavonoids tested induced an increase in the metabolism of glial cells and many of them increased nitrite levels in cultures infected with NC-1 compared to controls and uninfected cultures. Among the flavonoids tested, 3',4'-dihydroxyflavone, 3',4',5,7-tetrahydroxyflavone (luteolin), and 3,3',4',5,6-pentahydroxyflavone (quercetin), also inhibited parasitophorous vacuole formation. Taken together, our findings show that flavonoids modulate glial cell responses, increase NO secretion, and interfere with N. caninum infection and proliferation.
Animals
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Cells, Cultured
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Flavonoids/*pharmacology
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Immunologic Factors/*pharmacology
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Neospora/*drug effects/*growth & development
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Neuroglia/*drug effects/*parasitology
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Rats, Wistar