1. Adams DJ, Eberly MD, Goudie A, Nylund CM. Rising Vancomycin-Resistant Enterococcus Infections in Hospitalized Children in the United States. Hosp Pediatr. 2016; 6(7):404-11.
2. Nasaj M, Mousavi SM, Hosseini SM, Arabestani MR. Prevalence of Virulence Factors and Vancomycin-resistant Genes among Enterococcus faecalis and E. faecium Isolated from Clinical Specimens. Iran J Public Health. 2016; 45(6):806-13.
3. Stępień-Pyśniak D, Marek A, Banach T, Adaszek Ł, Pyzik E, Wilczyński J, Winiarczyk S. Prevalence and antibiotic resistance of Enterococcus strains isolated from poultry. Acta Vet Hung. 2016; 64(2):148-63.
4. Johnston LM, Jaykus LA. Antimicrobial resistance of Enterococcus species isolated from produce. Appl Environ Microbiol. 2004; 70(5):3133-7.
5. Adelman MR, Tsai LJ, Tangchitnob EP, Kahn BS. Laser technology and applications in gynaecology. J Obstet Gynaecol. 2013; 33(3):225-31.
6. Najeeb S, Khurshid Z, Zafar MS, Ajlal S. Applications of Light Amplification by Stimulated Emission of Radiation (Lasers) for Restorative Dentistry. Med Princ Pract. 2016; 25(3):201-11.
7. Zachary CB, Gustavsson M. TRASER--Total Reflection Amplification of Spontaneous Emission of Radiation. PLoS One. 2012; 7(4): e35899.
8. Holonyak N, Bevacqua SF. Coherent (visible) light emission from Ga (As1-xPx) junctions. Appl Phys Lett. 1962; 1(4):82-3.
9. Marchesan MA, Brugnera-Junior A, Ozorio JE, Pécora JD, Sousa-Neto MD. Effect of 980-nanometer diode laser on root canal permeability after dentin treatment with different chemical solutions. J Endod. 2008; 34(6):721-4.
10. Li L. The advances and characteristics of high-power diode laser materials processing. Optics and lasers in engineering. 2000; 34: 231-253.
11. Soleimani N, Mobarez AM, Olia MSJ, Atyabi F. Synthesis, Characterization and Effect of the Antibacterial Activity of Chitosan Nanoparticles on Vancomycin-resistant Enterococcus and Other Gram Negative or Gram Positive. International Journal of Pure and Applied Sciences and Technology. 2015; 26 (1): 14.
12. Cheng X, Xiang D, He W, Qiu J, Han B, Yu Q, Tian Y. Bactericidal Effect of Er: YAG Laser-Activated Sodium Hypochlorite Irrigation Against Biofilms of Enterococcus faecalis Isolate from Canal of Root-Filled Teeth with Periapical Lesions. Photomed Laser Surg. 2017; 35(7): 386-392.
13. Cretella G, Lajolo C, Castagnola R, Somma F, Inchingolo M, Marigo L. The Effect of Diode Laser on Planktonic Enterococcus faecalis in Infected Root Canals in an Ex Vivo Model. Photomed Laser Surg. 2017; 35(4):190-194.
14. Rahimi S, Shahi Sh, Gholizadeh S, Shakouie S, Rikhtegaran S, Soroush Barhaghi MH, Ghojazadeh M, Froughreyhani M and Abdolrahimi M. Bactericidal Effects of Nd: YAG Laser Irradiation and Sodium Hypochlorite Solution on Enterococcus FaecalisBiofilm. Photomedicine and Laser Surgery. 2012; 30(11): 637–641.
15. Habiboallah G, Mahdi Z, Mahbobeh NN, Mina ZJ, Sina F, Majid Z. Bactericidal effect of visible light in the presence of erythrosine on Porphyromonas gingivalis and Fusobacterium nucleatum compared with diode laser, an in vitro study. Laser Ther. 2014; 23(4):263-71.
16. Franzen R, Esteves-Oliveira M, Meister J, et al. Decontamination of deep dentin by means of erbium, chromium: yttriumscandium-gallium-garnet laser irradiation. Lasers Med Sci. 2009; 24:75–80.
17. Beer F, Buchmair A, Wernisch J, Georgopoulos A, Moritz A. Comparison of two diode lasers on bactericidity in root canals—anin vitrostudy. Lasers Med Sci. 2012; 27:361–364.