[1] 顾冰霞,孙江.牙龈生物型对口腔治疗预后影响的研究进展[J].中华口腔医学杂志,2020,55(7):504-508. [2] Kralj L, Lenasi H. Wavelet analysis of laser Doppler microcirculatory signals: Current applications and limitations [J]. Front Physiol, 2023, 13: 1076445. [3] 廖建宏.超声波对正畸牙移动过程中牙龈血流量影响的临床研究[J].临床口腔医学杂志,2006,22(1):41-42. [4] Komaki S, Ozaki H, Takahashi SS, et al. Gingival blood flow before, during, and after clenching, measured by laser Doppler blood flowmeter: A pilot study [J]. Am J Orthod Dentofacial Orthop, 2022, 161(1): 46-52. [5] Kuraji R, Wu YH, Hashimoto S, et al. Temporal and dynamic changes in gingival blood flow during progression of ligature-induced periodontitis [J]. Oral Dis, 2020, 26(6): 1292-1301. [6] Gleissner C, Kempski O, Peylo S, et al. Local gingival blood flow at healthy and inflamed sites measured by laser Doppler flowmetry [J]. J Periodontol, 2006, 77(10): 1762-1771. [7] Heeman W, Steenbergen W, van Dam GM, et al. Clinical applications of laser speckle contrast imaging: a review [J]. J Biomed Opt, 2019, 24(8): 1-11. [8] 翟林君,傅玉青,杜永兆.激光散斑衬比血流成像关键技术及应用研究进展[J].中国激光,2023,50(9):44-71. [9] González-Peña RJ, Braga Jr RA, Pujaico-Rivera F. Diode laser reliability in dynamic laser speckle application: Stability and signal to noise ratio [J]. Optics & Laser Technology, 2018, 108: 279-286. [10] Fazekas R, Molnár E, Lohinai Z, et al. Functional characterization of collaterals in the human gingiva by laser speckle contrast imaging [J]. Microcirculation, 2018, 25(3): e12446. [11] Molnár E, Fazekas R, Lohinai Z, et al. Assessment of the test-retest reliability of human gingival blood flow measurements by Laser Speckle Contrast Imaging in a healthy cohort [J]. Microcirculation, 2018, 25(2): 64-70. [12] Couturier A, Bouvet R, Cracowski J L, et al. Reproducibility of high-resolution laser speckle contrast imaging to assess cutaneous microcirculation for wound healing monitoring in mice [J]. Microvasc Res, 2022, 141: 104319. [13] Regan C, White SM, Yang BY, et al. Design and evaluation of a miniature laser speckle imaging device to assess gingival health [J]. J Biomed Opt, 2016, 21(10):104002. [14] 王文丽,罗兰堃,傅亚婷,等.锥形束CT对上颌前牙区牙龈生物型的测量分析[J].中国组织工程研究,2023,27(23):3616-3620. [15] Laredo-Naranjo MA, Patiño-Marín N, Martínez-Castañón GA, et al. Identification of gingival microcirculation using laser doppler flowmetry in patients with orthodontic treatment-A longitudinal pilot study [J]. Medicina (Kaunas), 2021, 57(10): 1081. [16] Wu C, Liu X, Zhang H, et al. Response of human periodontal ligament to orthodontic force using superb microvascular imaging [J]. Am J Orthod Dentofacial Orthop. 2022,162(5):257-266. [17] 闫雪丹,张丽娜,任秀云.前牙区牙龈生物型研究进展[J].口腔医学研究,2019,35(2):116-118. [18] 初可嘉,王海慧,郑之峻,等.牙龈生物型对上颌埋伏尖牙正畸牵引后牙周组织的影响[J].口腔医学研究,2023,39(4):353-356. [19] Amid R, Kadkhodazadeh M, Moscowchi A, et al. Effect of gingival biotype on orthodontic treatment-inducedperiodontal complications: A systematic review [J]. J Adv Periodontol Implant Dent, 2020, 12(1): 3-10. [20] 黄满英,付云.牙龈生物型的测量方法[J].国际口腔医学杂志,2019,46(2):171-176. [21] Yamaguchi M, Fukasawa S. Is inflammation a friend or foe for orthodontic treatment?: Inflammation in orthodontically induced inflammatory root resorption and accelerating tooth movement [J]. Int J Mol Sci, 2021, 22(5): 2388. [22] Yamaguchi K, Nanda RS. Blood flow changes in gingival tissues due to the displacement of teeth [J]. Angle Orthod, 1992, 62(4): 257-264. [23] Sasano T, Shoji N, Kuriwada S, et al. Calibration of laser doppler flowmetry for measurement of gingival blood flow [J]. Periodontal Res, 1995, 30(4): 298-301. [24] Barta A, Nagy G, Csiki Z, et al. Changes in gingival blood flow during orthodontic treatment [J]. Cent Eur J Med, 2010, 5(6): 758-765. [25] Kerdvongbundit V, Vongsavan N, Soo-Ampon S, et al. Microcirculation and micromorphology of healthy and inflamed gingivae [J]. Odontology, 2003, 91(1): 19-25. |