[1] Yuan X, Pei X, Chen J, et al. Comparative analyses of the soft tissue interfaces around teeth and implants: Insights from a pre-clinical implant model [J]. J Clin Periodontol, 2021, 48(5):745-753. [2] Mao Z, Beuer F, Wu D, et al. Microleakage along the implant-abutment interface: a systematic review and meta-analysis of in vitro studies [J]. Int J Implant Dent, 2023, 9(1):34. [3] Mondal U, Bhargava A, Roy AK, et al. Comparative evaluation of the microleakage of various implant-abutment interface designs: An in vitro study [J]. J Contemp Dent Pract, 2025, 26(8):776-779. [4] 曲超,阎妍,臧崇玲,等.牙周炎患者种植二期术后牙龈愈合状况的研究[J].中国现代药物应用,2016,10(23):73-74. [5] Fernandes PF, Grenho L, Fernandes MH, et al. Microgap and bacterial microleakage during the osseointegration period: An in vitro assessment of the cover screw and healing abutment in a platform-switched implant system [J]. J Prosthet Dent, 2023, 130(1):87-95. [6] Pera F, Menini M, Alovisi M, et al. Can abutment with novel superlattice CrN/NbN coatings influence peri-implant tissue health and implant survival rate compared to machined abutment? 6-month results from a multi-center split-mouth randomized control trial [J]. Materials (Basel), 2022, 16(1):246. [7] 王贝贝,李亮,刘爽,等.个性化基台与数字化暂时冠在种植义齿牙龈成型中的临床研究[J].中国基层医药,2017,24(13):2018-2021. [8] Odatsu T, Kuroshima S, Sato M, et al. Antibacterial properties of Nano-Ag coating on healing abutment: An in vitro and clinical study [J]. Antibiotics (Basel), 2020, 9(6):347. [9] Gao WM, Geng W, Luo CC. Prosthetic complications of fixed dental prostheses supported by locking-taper implants: a retrospective study with a mean follow-up of 5 years [J]. BMC Oral Health, 2021, 21(1):476. [10] 任碧晖,徐业豪,戴婕婷,等.纯莫氏锥度连接种植系统种植体—基台锁结力及基台下沉量的实验研究[J].华西口腔医学杂志,2024,42(3):372-381. [11] He Y, Fok A, Aparicio C, et al. Contact analysis of gap formation at dental implant-abutment interface under oblique loading: A numerical-experimental study [J]. Clin Implant Dent Relat Res, 2019, 21(4):741-752. [12] Ardakani MRT, Meimandi M, Amid R, et al. In vitro comparison of microbial leakage of the implant-healing abutment interface in four connection systems [J]. J Oral Implantol, 2019, 45(5):350-355. [13] Mai HN, Kim DY, Hyun DC, et al.A new antibacterial agent-releasing polydimethylsiloxane coating for polymethyl methacrylate dental restorations [J]. J Clin Med, 2019, 8(11):1831. [14] Mai HN, Hyun DC, Park JH, et al. Antibacterial drug-release polydimethylsiloxane coating for 3D-printing dental polymer: Surface alterations and antimicrobial effects [J]. Pharmaceuticals (Basel), 2020, 13(10):304. [15] Carinci F, Lauritano D, Bignozzi CA, et al. A new strategy against peri-implantitis: Antibacterial internal coating [J]. Int J Mol Sci, 2019, 20(16):3897. [16] 庞诗梦,夏荣,李趁趁,等.钛表面新型抗菌涂层的生物相容性研究[J].安徽医科大学学报,2022,57(9):1355-1359. [17] 李趁趁,夏荣,庞诗梦,等.基台表面抗菌涂层PDMS-CHXG的构建及抗菌性能的研究[J].安徽医科大学学报,2022,57(10):1542-1546. [18] D'Ercole S, Dotta TC, Farani MR, et al. Bacterial microleakage at the implant-abutment interface: An in vitro study [J]. Bioengineering (Basel), 2022, 9(7):277. |