TY - JOUR T1 - Yeni geliştirilen bir kompozit rezin materyalinin bükülme dayanımının karşılaştırılmalı olarak değerlendirilmesi: Bir in vitro çalışma TT - Comparative evaluation of flexural strength of a newly developed composite resin material: An in vitro study. AU - Tirali, Ebru AU - Senirkentli, Güler Burcu AU - Turan, Yeşim AU - Sonkaya, Ezgi AU - Çakmak, Eda PY - 2022 DA - September DO - 10.54617/adoklinikbilimler.1109155 JF - ADO Klinik Bilimler Dergisi PB - Ankara Diş Hekimleri Odası WT - DergiPark SN - 1307-3540 SP - 220 EP - 224 VL - 11 IS - 3 LA - tr AB - Amaç: Bu in vitro çalışmada Mikrohibrid doldurucu içeriği ile yeni geliştirilen bir dental kompozitin mekanik özelliklerinden bükülme dayanımının iki farklı mikrohibrit dolduruculu kompozit materyal ile karşılaştırılmalı olarak değerlendirilmesi amaçlanmıştır.Gereç ve Yöntem: Mevcut çalışmada, yeni üretilen bir Üniversal Kompozit (Dolgunn, Himg Seramik ve Medikal Kompozit San.Tic. Ltd.Sti, Türkiye) ile 2 farklı mikrohibrit kompozit (G- aenial Anterior, GC-Japonya ve Filtek Z250 3M, USA) kullanıldı. Her bir dolgu materyalinden 10 adet dikdörtgenler prizması şeklinde (2x2x25 mm boyutunda) örnekler hazırlanarak, instron test cihazında 1 mm/dk hızda bükülme dayanım değerleri ölçüldü. Verilerin istatistiksel analiz için Kruskal-Wallis testi kullanıldı. Tüm testler için istatistiksel anlamlılık düzeyi p=0.05 alındı.Bulgular: Tüm test materyalleri arasında bükülme dayanımları açısından istatistiksel olarak anlamlı farklılıklar gözlendi (p KW - Bükülme dayanımı KW - Kompozit dental rezin KW - Mikrohibrit N2 - Aim: In this in vitro study, it was aimed to evaluate the mechanical properties of a newly developed dental composite material with microhybrid filler content and its flexural strength comparatively with two different microhybrid filler composite materials.Material and Methods:In the current study, the newly produced Universal Composite filling material (Dolgunn, Himg Seramik ve Medikal Kompozit San.Tic. Ltd.Sti, Turkey) and 2 different microhybrid composite materials (G-aenial Anterior, GC-Japan and Filtek Z250 3M, USA) were used. Ten rectangular prisms (2x2x25 mm in size) samples were prepared from each filling material, and the bending strength values were measured at a speed of 1 mm/min in an instron test device. 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