[1] 马岚,曲哲,张翔,等.上颌后牙区无牙位点在锥形束CT中的解剖学表现[J].华西口腔医学杂志,2016,34(1):85-90. [2] 郑小菲,莫安春,朱娟芳,等.上颌窦解剖因素对经牙槽嵴顶上颌窦底提升术成骨效果的影响[J].华西口腔医学杂志,2020,38(6):652-656. [3] Testori T, Weinstein T, Taschieri S, et al. Risk factors in lateral window sinus elevation surgery [J]. Periodontol 2000, 2019, 81(1):91-123. [4] Kang SJ, Shin SI, Herr Y, et al. Anatomical structures in the maxillary sinus related to lateral sinus elevation: a cone beam computed tomographic analysis [J]. Clin Oral Implants Res, 2013, 24 (A100):75-81. [5] 罗志强,叶钟泰.新疆地区不同人群上颌窦外侧骨壁厚度的锥形束CT测量分析[J].国际口腔医学杂志,2017,44(1):55-58. [6] 褚杨,王宇,关淼升,等.上颌窦外侧壁厚度的CBCT影像测量分析[J].口腔颌面修复学杂志,2020,21(5):286-290. [7] Kiakojori A, Nasab SPM, Abesi F, et al. Radiographic assessment of maxillary sinus lateral wall thickness in edentulous posterior maxilla [J]. Electron Physician, 2017, 9(12):5948-5953. [8] 王艳琳,孙晓军.基于CBCT对上颌窦外侧壁厚度的研究[J].口腔疾病防治,2021,29(11):761-765. [9] Monje A, Catena A, Monje F, et al. Maxillary sinus lateral wall thickness and morphologic patterns in the atrophic posterior maxilla [J]. J Periodontol, 2014, 85(5):676-682. [10] Rong Q, Li X, Chen SL, et al. Effect of the Schneiderian membrane on the formation of bone after lifting the floor of the maxillary sinus: an experimental study in dogs [J]. Br J Oral Maxillofac Surg, 2015, 53(7):607-612. [11] Lombardi T, Stacchi C, Berton F, et al. Influence of maxillary sinus width on new bone formation after transcrestal sinus floor elevation: a proof-of-concept prospective cohort study [J]. Implant Dent, 2017, 26(2):209-216. [12] Spinato S, Bernardello F, Galindo-Moreno P, et al. Maxillary sinus augmentation by crestal access: a retrospective study on cavity size and outcome correlation [J]. Clin Oral Implants Res, 2015, 26(12):1375-1382. [13] Avila G, Wang HL, Galindo-Moreno P, et al. The influence of the bucco-palatal distance on sinus augmentation outcomes [J]. J Periodontol, 2010, 81(7):1041-1050. [14] Zheng X, Teng M, Zhou F, et al. Influence of maxillary sinus width on transcrestal sinus augmentation outcomes: radiographic evaluation based on cone beam CT [J]. Clin Implant Dent Relat Res, 2016, 18(2):292-300. [15] Keceli HG, Dursun E, Dolgun A, et al. Evaluation of single tooth loss to maxillary sinus and surrounding bone anatomy with cone-beam computed tomography: A multicenter study [J]. Implant Dent, 2017, 26(5):690-699. [16] Pignaton TB, Wenzel A, Ferreira CEA, et al. Influence of residual bone height and sinus width on the outcome of maxillary sinus bone augmentation using anorganic bovine bone [J]. Clin Oral Implants Res, 2019, 30(4):315-323. [17] Pizzini A, Basma HS, Li P, et al. The impact of anatomic, patient and surgical factors on membrane perforation during lateral wall sinus floor elevation [J]. Clin Oral Implants Res, 2021, 32(3):274-284. [18] Cho SC, Wallace SS, Froum SJ, et al. Influence of anatomy on Schneiderian membrane perforations during sinus elevation surgery: three-dimensional analysis [J]. Pract Proced Aesthet Dent, 2001, 13(2):160-163. [19] Chan HL, Monje A, Suarez F, et al. Palatonasal recess on medial wall of the maxillary sinus and clinical implications for sinus augmentation via lateral window approach [J]. J Periodontol, 2013, 84(8):1087-1093. [20] Niu L, Wang J, Yu H, et al. New classification of maxillary sinus contours and its relation to sinus floor elevation surgery [J]. Clin Implant Dent Relat Res, 2018, 20(4):493-500. [21] Kawakami S, Botticelli D, Nakajima Y, et al. Anatomical analyses for maxillary sinus floor augmentation with a lateral approach: A cone beam computed tomography study [J]. Ann Anat, 2019, 226:29-34. |