Biocompatibility of root filling pastes used in primary teeth.
暂无分享,去创建一个
[1] O. Peters. Research that matters - biocompatibility and cytotoxicity screening. , 2013, International endodontic journal.
[2] P. Cerri,et al. Biocompatibility of Intracanal Medications Based on Calcium Hydroxide , 2012, ISRN dentistry.
[3] M. Rossi,et al. Response of mice connective tissue to intracanal dressings containing chlorhexidine , 2012, Microscopy research and technique.
[4] P. Cerri,et al. Biocompatibility of an experimental MTA sealer implanted in the rat subcutaneous: quantitative and immunohistochemical evaluation. , 2012, Journal of biomedical materials research. Part B, Applied biomaterials.
[5] C. Trairatvorakul,et al. Success rates of a mixture of ciprofloxacin, metronidazole, and minocycline antibiotics used in the non-instrumentation endodontic treatment of mandibular primary molars with carious pulpal involvement. , 2012, International journal of paediatric dentistry.
[6] S. Valentini,et al. Effect of a calcium hydroxide/chlorhexidine paste as intracanal dressing in human primary teeth with necrotic pulp against Porphyromonas gingivalis and Enterococcus faecalis. , 2012, International journal of paediatric dentistry.
[7] L. Â. Cintra,et al. Tissue reaction to a triantibiotic paste used for endodontic tissue self-regeneration of nonvital immature permanent teeth. , 2012, Journal of endodontics.
[8] A. Loyola,et al. Histological evaluation of bone response to pediatric endodontic pastes: an experimental study in guinea pig. , 2012, Brazilian dental journal.
[9] P. Dummer,et al. Properties and applications of calcium hydroxide in endodontics and dental traumatology. , 2011, International endodontic journal.
[10] Dell Dl,et al. Antibacterial effects of chemomechanical instrumentation and calcium hydroxide in primary teeth with pulp necrosis. , 2011 .
[11] E. C. Sponchiado,et al. Morphological analysis of tissue reaction caused by a new endodontic paste in subcutaneous tissue of rats , 2011, Journal of conservative dentistry : JCD.
[12] K. Shashibhushan,et al. Endodontic treatment of necrosed primary teeth using two different combinations of antibacterial drugs: an in vivo study. , 2011, Journal of the Indian Society of Pedodontics and Preventive Dentistry.
[13] J. Borke,et al. The response of subcutaneous connective tissue to newly developed calcium phosphate-based root canal sealers. , 2011, International endodontic journal.
[14] B. H. de Oliveira,et al. A Systematic Review of Root Canal Filling Materials for Deciduous Teeth: Is There an Alternative for Zinc Oxide-Eugenol? , 2010, ISRN dentistry.
[15] N. Tani-Ishii,et al. A biocompatible model for evaluation of the responses of rat periapical tissue to a new zinc oxide-eugenol sealer. , 2011, Dental materials journal.
[16] A. Consolaro,et al. Subcutaneous connective tissue response to primary root canal filling materials. , 2011, Brazilian dental journal.
[17] S. Bhat,et al. Comparative evaluation of bactericidal potential of four root canal filling materials against microflora of infected non-vital primary teeth. , 2010, The Journal of clinical pediatric dentistry.
[18] C. Serhan. Novel lipid mediators and resolution mechanisms in acute inflammation: to resolve or not? , 2010, The American journal of pathology.
[19] P. Nelson-Filho,et al. Histopathological evaluation of root canal filling materials for primary teeth. , 2010, Brazilian dental journal.
[20] A. Consolaro,et al. Subcutaneous tissue response of isogenic mice to calcium hydroxide-based pastes with chlorhexidine. , 2009, Brazilian dental journal.
[21] T. A. D. Semenoff,et al. BIOCOMPATIBILITY OF DIFFERENT INTRACANAL MEDICATIONS IN RAT BUCCAL SUBMUCOSA TISSUE , 2008, Journal of applied oral science : revista FOB.
[22] A. Consolaro,et al. Microscopic analysis of subcutaneous reactions to endodontic sealer implants in rats. , 2007, Journal of biomedical materials research. Part A.
[23] G. Viana,et al. Biocompatibility evaluation of an antibiotic paste after pulpotomy in dogs , 2007 .
[24] M. Versiani,et al. A comparative histological evaluation of the biocompatibility of materials used in apical surgery. , 2004, International endodontic journal.
[25] E. Hoshino,et al. Endodontic treatment of primary teeth using a combination of antibacterial drugs. , 2004, International endodontic journal.
[26] G. Dahlén,et al. Evaluation of the antibacterial potential of tetracycline or erythromycin mixed with calcium hydroxide as intracanal dressing against Enterococcus faecalis in vivo. , 2003, Oral surgery, oral medicine, oral pathology, oral radiology, and endodontics.
[27] R. Love,et al. Biocompatibility of dental materials used in contemporary endodontic therapy: a review. Part 2. Root-canal-filling materials. , 2003, International endodontic journal.
[28] R. Love,et al. Biocompatibility of dental materials used in contemporary endodontic therapy: a review. Part 1. Intracanal drugs and substances. , 2003, International endodontic journal.
[29] J. Wataha. Principles of biocompatibility for dental practitioners. , 2001, The Journal of prosthetic dentistry.
[30] R. Holland,et al. Reaction of rat connective tissue to implanted dentin tube filled with mineral trioxide aggregate, Portland cement or calcium hydroxide. , 2001, Brazilian dental journal.
[31] A. Fuks. Pulp therapy for the primary and young permanent dentitions. , 2000, Dental clinics of North America.
[32] D. Ranly,et al. Current and potential pulp therapies for primary and young permanent teeth. , 2000, Journal of dentistry.
[33] K. Langeland,et al. Subcutaneous implantation for the biological evaluation of endodontic materials. , 1981, Journal of endodontics.
[34] F. A. Putt. Manual of histopathological staining methods , 1972 .
[35] C. Torneck. Reaction of rat connective tissue to polyethylene tube implants. II. , 1966, Oral surgery, oral medicine, and oral pathology.