国际口腔医学杂志 ›› 2017, Vol. 44 ›› Issue (6): 717-720.doi: 10.7518/gjkq.2017.06.018
罗薇, 陈柯
Luo Wei, Chen Ke.
摘要: 牙髓切断术对保持乳牙部分活力和保存乳牙至恒牙萌出至关重要。目前,尚无一种牙髓切断方式能达到理想状态,对于儿童这个生理和心理都特殊的群体来说,激光是新近发展起来的一种方法,它在软组织切割、局部止血等方面都有独到之处。本文就近年来不同类型激光在乳牙牙髓切断术中的应用进展作一综述。
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[1] Fernandes AP, Lourenço Neto N, Teixeira Marques NC, et al. Clinical and radiographic outcomes of the use of low-level laser therapy in vital pulp of primary teeth[J]. Int J Paediatr Dent, 2015, 25(2):144-150. [2] Fuks AB. Vital pulp therapy with new materials for primary teeth: new directions and treatment per-spectives[J]. J Endod, 2008, 34(7 Suppl):S18-S24. [3] Cannon M, Wagner C, Thobaben JZ, et al. Early response of mechanically exposed dental pulps of swine to antibacterial-hemostatic agents or diode laser irradiation[J]. J Clin Pediatr Dent, 2011, 35(3): 271-276. [4] Fuks AB, Papagiannoulis L. Pulpotomy in primary teeth: review of the literature according to standar-dized criteria[J]. Eur Arch Paediatr Dent, 2006, 7(2):64-72. [5] Mohammadi Z. Laser applications in endodontics: an update review[J]. Int Dent J, 2009, 59(1):35-46. [6] Kimura Y, Wilder-Smith P, Matsumoto K. Lasers in endodontics: a review[J]. Int Endod J, 2000, 33(3): 173-185. [7] Parisay I, Ghoddusi J, Forghani M. A review on vital pulp therapy in primary teeth[J]. Iran Endod J, 2015, 10(1):6-15. [8] De Coster P, Rajasekharan S, Martens L. Laser-assisted pulpotomy in primary teeth: a systematic review[J]. Int J Paediatr Dent, 2013, 23(6):389-399. [9] Yadav P, Indushekar K, Saraf B, et al. Comparative evaluation of ferric sulfate, electrosurgical and diode laser on human primary molars pulpotomy: an ‘ in - vivo ’ study[J]. Laser Ther, 2014, 23(1):41-47. [10] Toomarian L, Fekrazad R, Sharifi D, et al. Histopa-thological evaluation of pulpotomy with Er, Cr:YSGG laser vs formocresol[J]. Lasers Med Sci, 2008, 23(4): 443-450. [11] Coluzzi DJ. An overview of laser wavelengths used in dentistry[J]. Dent Clin North Am, 2000, 44(4):753-765. [12] YAG laser: a preliminary report on laser pulpo-tomy[J]. J Clin Laser Med Surg, 2003, 21(6):345- 350. [13] Huth KC, Hajek-Al-Khatar N, Wolf P, et al. Long-term effectiveness of four pulpotomy techniques: 3-year randomised controlled trial[J]. Clin Oral In-vestig, 2012, 16(4):1243-1250. [14] Huth KC, Paschos E, Hajek-Al-Khatar N, et al. Effectiveness of 4 pulpotomy techniques-rando-mized controlled trial[J]. J Dent Res, 2005, 84(12): 1144-1148. [15] Papagiannoulis L. Clinical studies on ferric sulphate as a pulpotomy medicament in primary teeth[J]. Eur J Paediatr Dent, 2002, 3(3):126-132. [16] Saltzman B, Sigal M, Clokie C, et al. Assessment of a novel alternative to conventional formocresol-zinc oxide eugenol pulpotomy for the treatment of pulpally involved human primary teeth: diode laser-mineral trioxide aggregate pulpotomy[J]. Int J Paediatr Dent, 2005, 15(6):437-447. [17] Durmus B, Tanboga I. In vivo evaluation of the treatment outcome of pulpotomy in primary molars using diode laser, formocresol, and ferric sulphate[J]. Photomedic Laser Surg, 2014, 32(5):289-295. [18] Odabaş ME, Bodur H, Bariş E, et al. Clinical, radio-graphic, and histopathologic evaluation of Nd:YAG laser pulpotomy on human primary teeth[J]. J Endod, 2007, 33(4):415-421. [19] Liu JF. Effects of Nd:YAG laser pulpotomy on human primary molars[J]. J Endod, 2006, 32(5): 404-407. [20] 陆铃, 李菊, 刘鲁川. 脉冲Nd:YAG激光对犬牙活髓切断术后组织修复的影响[J]. 四川医学, 2010, 31(12):1745-1747. Lu L, Li J, Liu LC. Effects on the tissue of dental pulp repair of a pulsed Nd:YAG laser irradiation on the pulp tissues following pulpotomy in dog[J]. Sichuan Med J, 2010, 31(12):1745-1747. [21] Marques NC, Neto NL, Rodini Cde O, et al. Low-level laser therapy as an alternative for pulpotomy in human primary teeth[J]. Lasers Med Sci, 2015, 30(7):1815-1822. [22] Nadin G, Goel BR, Yeung CA, et al. Pulp treatment for extensive decay in primary teeth[J]. Cochrane Database Syst Rev, 2003(1):CD003220. [23] Smaïl-Faugeron V, Courson F, Durieux P, et al. Pulp treatment for extensive decay in primary teeth[J]. Cochrane Database Syst Rev, 2014(8):CD003220. |
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