[1] 廖常锐,何俊,王义平.飞秒激光制备光纤布拉格光栅高温传感器研究[J].光学学报,2018,38(3):123-131. [2] 杨刚,许国良,涂郭结,等.基于频谱分区的高精度光纤光栅波长解调系统[J].中国激光,2015,42(4):98-103. [3] 娄辛灿,郝凤欢,刘鹏飞,等.一种光纤光栅阵列波长解调系统[J].激光与光电子学进展,2019,56(3):42-47. [4] Karam L, Franco A, Pulido C, et al. In vitro and in situ fiber Bragg grating densor analysis of two dental resin cements [J]. J Lightwave Technol, 2015, 33(12): 2543-2568. [5] Roriz P, Carvalho L, Frazão O, et al. From conventional sensors to fibre optic sensors for strain and force measurements in biomechanics applications: A review [J]. J Biomech, 2014, 47:1251-1261. [6] 张文涛,黄稳柱,李芳.高精度光纤光栅传感技术及其在地球物理勘探、地震观测和海洋领域中的应用[J].光电工程,2018,45(9):90-104. [7] 李三喜,马龙,吕京生,等.用于油井温度剖面快速测量的高精度光纤光栅温度传感器设计[J].山东科学,2018,31(3):55-60. [8] 潘勇.口腔种植牙生物力学研究进展[J].全科口腔医学电子杂志,2018,5(1):12. [9] Schiller M, Abe I, Carvalho P, et al. On the use of FBG sensors to assess the performance of a dental implant system [C]. in In Proceeding of the Optical Fiber Sensors,2006. [10] Carvalho L, Silva J, Nogueira R, et al. Application of Bragg grating sensors in dental biomechanics [J]. J Strain Anal Eng, 2006, 41(6): 411-416. [11] Milczewski M, da Silva J, Martelli C, et al. Force monitoring in a maxilla model and dentition using optical fiber bragg gratings [J]. Sensors, 2012, 12:11957-11964. [12] Romanyk DL, Guan R, Major PW, et al.Repeatability of strain magnitude and strain rate measurements in the periodontal ligament using fibre Bragg gratings: An ex vivo study in a swine model [J]. J Biomech, 2017, 54(21):117-122. [13] Trannin P, Milczewski M, Oliveira W, et al. Orthodontic mechanics using mini-implant measured by FBG [C]. Proceedings of SPIE-The Fifth Asia-Pacific Optical Sensors Conference, 2015. [14] Carvalho L, Roriz P, Frazão O, et al. Evaluation of the performance of orthodontic devices using FBG sensors [J]. Journal of Physics Conference Series, 2014,605(1):012017. [15] Abe I, Milczewski M, Souza M. The force magnitude of a human bite measured at the molar intercuspidation using fiber Bragg gratings [J]. J Microwaves, 2017, 16(2):434-444. [16] Tjin S, Tan Y, Yow M, et al. Recording compliance of dental splint use in obstructive sleep apnoea patients by force and temperature modelling [J]. Med Biol Eng Comput, 2001, 39:182-184. [17] Franc A, Gebert A, Souza M, et al. Measurement of mandibular movements in parafunctional patient using occlusal splint with Bragg gratings: pilot study [C]. in Sixth European Workshop on Optical Fibre Sensors, 2016. [18] Fiorin R, Franco A, Nascimento P, et al. The use of fiber Bragg gratings in the detection of the rhythmic masticatory muscle activity during bruxism episodes [C]. in 26th International Conference on Optical Fiber Sensors, 2018. [19] Tiwari U, Mishra V, Bhalla A, et al.Fiber Bragg grating sensor for measurement of impact absorption capability of mouthguards [J]. Dent Traumatol, 2011, 27:263-268. [20] Kalinowski A, Karam L, Pegorini V, et al. Optical fiber Bragg grating strain sensor for bone stress analysis in bovine during masticatory movements [J]. IEEE Sens J, 2017, 17(8): 2385-2392. [21] Keiser G, Xiong F, Cui Y, et al. Review of diverse optical fibers used in biomedical research and clinical practice [J]. J Biomed Opt, 2014, 19(8):080902. [22] Ottevaere H, Tabak M, Chah K, et al. Dental composite resins: Measuring the polymerization shrinkage using optical fiber Bragg grating sensors [J]. Proceedings of SPIE-The International Society for Optical Engineering, 2012, 8439(2):2. [23] Franco A, Costa M, Karam L, et al. Dentistry applications of fibre Bragg gratings: irradiation protocols for bulk fill flow dental composites [C]. in 26th International Conference on Optical Fiber Sensors, 2018. [24] Fornaini C, Merigo E, Poli F, et al. Use of 1070 nm fiber lasers in oral surgery: preliminary ex vivo study with FBG temperature monitoring [J]. Laser Therapy, 2017, 26(4): 311-318. |