Zobrazeno 1 - 5
of 5
pro vyhledávání: '"Srujana Karumuri"'
Autor:
Priyanka L Angadala, Ravi Kumar Konagala, Anupreeta Anwarullah, Jyothi Mandava, Lakshman Varma Uppalapati, Srujana Karumuri
Publikováno v:
The Journal of Contemporary Dental Practice. 21:1048-1053
Aim and objective To evaluate the synergistic effect of arginine on the remineralizing potential of fluoride varnish and nanohydroxyapatite. Materials and methods A total of 100 teeth were taken; of them, 50 teeth were allotted for microhardness test
Autor:
Ravi K, Konagala, Jyothi, Mandava, Anupreeta, Anwarullah, Lakshman V, Uppalapati, Srujana, Karumuri, Priyanka L, Angadala
Publikováno v:
The journal of contemporary dental practice. 21(9)
To evaluate the synergistic effect of arginine on the remineralizing potential of fluoride varnish and nanohydroxyapatite.A total of 100 teeth were taken; of them, 50 teeth were allotted for microhardness test and 50 teeth for scanning-electron micro
Autor:
Ravi Kumar Konagala, Praveen Kumar Chellapilla, Anupreeta Anwarullah, Lohita Dasari, Srujana Karumuri, Jyothi Mandava
Publikováno v:
Journal of Conservative Dentistry : JCD
Aim: Evaluation of the impact of three different obturation techniques on the penetration depth and adaptation of a bioceramic root canal sealer(BioRoot RCS) to root dentin using scanning electron microscope and confocal laser scanning microscope. Ma
Autor:
Srujana Karumuri, Ravichandra Ravi, Jyothi Mandava, Roopesh Borugadda, Abdul Afraaz, Sahithi Pamidimukkala
Publikováno v:
Cureus
Background To obtain prolonged clinical success with composite restorations, better bonding of resin to the tooth substrate is crucial. Aim The study was aimed to evaluate the microtensile bond strength (µTBS) of bulk-fill composite resin restoratio
Autor:
Lakshman Varma Uppalapati, Lohita Dasari, Srujana Karumuri, Ravi Kumar Konagala, Jyothi Mandava, Sahithi Pamidimukkala
Publikováno v:
Journal of Conservative Dentistry : JCD
Aim: The aim is to assess and compare the mineral gain and penetration depth of hydroxyapatite and silica nanoparticle infiltrates into artificially created erosive lesions of enamel and dentin. Materials and Methods: Sixty extracted human molars wer