1 |
于欣悦,陈荣新,梁轩伟. 原发性获得性鼻泪管阻塞发病机制的研究进展[J]. 眼科学报,2021,36(11):921⁃927.
|
2 |
GUL A, ASLAN K, KARLI R, et al. A possible cause of nasolacrimal duct obstruction: narrow angle between inferior turbinate and upper part of the medial wall of the maxillary sinus[J]. Curr Eye Res, 2016, 41(6):729⁃733.
|
3 |
WANG W, GONG L, WANG Y. Anatomic characteristics of primary acquired nasolacrimal duct obstruction: a comparative computed tomography study[J]. Quant Imaging Med Surg, 2022, 12(11):5068⁃5079.
|
4 |
KANG T S, CHO J, KIM J, et al. Modified ocular surface disease index as a screening criteria for dry eye syndrome presenting after successful dacryocystorhinostomy[J]. PLoS One, 2021, 16(2):e0247168.
|
5 |
MEHTA S, YING G S, HUSSAIN A, et al. Is gastroesophageal reflux disease associated with primary acquired nasolacrimal duct obstruction?[J]. Orbit, 2018, 37(2):135⁃139.
|
6 |
BULBUL E, YAZICI A, YANIK B, et al. Morphometric evaluation of bony nasolacrimal canal in a Caucasian population with primary acquired nasolacrimal duct obstruction: a multidetector computed tomography study[J]. Korean J Radiol, 2016, 17(2): 271.
|
7 |
SAMAREI R, SAMAREI V, AIDENLOO N S, et al. Sinonasal Anatomical Variations and Primary Acquired Nasolacrimal Duct Obstruction: A Single Centre, Case⁃Control Investigation[J]. Eurasian J Med, 2020, 52(1):21⁃24.
|
8 |
ALI M J, PAULSEN F. Prolactin and Prolactin⁃inducible protein (PIP) in the pathogenesis of primary acquired nasolacrimal duct obstruction (PANDO)[J]. Med Hypotheses, 2019, 125: 137⁃138.
|
9 |
ALI M J, SCHICHT M, PAULSEN F. Qualitative hormonal profiling of the lacrimal drainage system: potential insights into the etiopathogenesis of primary acquired nasolacrimal duct obstruction[J]. Ophthalmic Plast Reconstr Surg, 2017, 33(5): 381⁃388.
|
10 |
DIKICI O, ULUTAŞ H G. Relationship between primary acquired nasolacrimal duct obstruction, paranasal abnormalities and nasal septal deviation[J]. J Craniofacial Surg, 2020, 31(3): 782⁃786.
|
11 |
SAMAREI R, SAMAREI V, AIDENLOO N S, et al. Sinonasal anatomical variations and primary acquired nasolacrimal duct obstruction: a single centre, case⁃control investigation[J]. Eurasian J Med, 2020, 52(1): 21⁃24.
|
12 |
ZHOU X, ZHANG X, ZHOU D, et al. A Narrative Review of Ocular Surface Disease Related to Anti⁃Glaucomatous Medications[J]. Ophthalmol Ther, 2022, 11(5):1681⁃1704.
|
13 |
薛利利,张苗,张琳. 先天性鼻泪管阻塞的临床治疗[J]. 眼科学报, 2022, 37(10):795⁃798.
|
14 |
黄伟锋,陈荣新,赵静,等. 黏膜瓣泪小点成形术治疗慢性泪小管炎的疗效[J]. 眼科学报,2021,36(11):881⁃887.
|
15 |
KAMAO T, ZHENG X, SHIRAISHI A. Outcomes of bicanalicular nasal stent inserted by sheath⁃guided dacryoendoscope in patients with lacrimal passage obstruction: a retrospective observational study[J]. BMC Ophthalmol, 2021, 21(1):103.
|
16 |
谭思敏, 梁德茂. Nd: YAG激光泪道成形术联合泪道支架置入治疗泪道阻塞的疗效及影响因素[J]. 国际眼科杂志, 2020, 20(11): 1979⁃1982.
|
17 |
GOEL R, GOLHAIT P, KHANAM S, et al. Comparative evaluation of dacryocystorhinostomy with retrograde intubation and conjunctivo⁃dacryocystorhinostomy[J]. Can J Ophthalmol, 2023, 58(1): 39⁃46.
|
18 |
张福宏,卢蓉,史剑波. 内镜鼻眼相关外科现状与展望[J]. 眼科学报,2022,37(11):835⁃842,909.
|
19 |
ALAM M S, KUNDU D. Is dacryocystectomy effective in reducing epiphora?[J]. Indian J Ophthalmol, 2022, 70(12):4416⁃4418.
|
20 |
汤喜成, 魏厚仁. 超声诊断在泪道疾病中的应用[J]. 实用眼科杂志, 1986,4(7): 419⁃421.
|
21 |
ALI M J, SINGH S, NAIK M N, et al. Interactive navigation⁃guided ophthalmic plastic surgery: the utility of 3D CT⁃DCG⁃guided dacryolocalization in secondary acquired lacrimal duct obstructions[J]. Clin Ophthalmol, 2016, 11: 127⁃133.
|
22 |
HIGASHI H, TAMADA T, MIZUKAWA K, et al. MR dacryocystography: comparison with dacryoendoscopy in positional diagnosis of nasolacrimal duct obstruction[J]. Radiol med, 2016, 121(7): 580⁃587.
|
23 |
SINGH S, ALI M J, PAULSEN F. Dacryocystography: from theory to current practice[J]. Ann Anat, 2019, 224: 33⁃40.
|
24 |
武俊男,孙悦奇,王康华,等. 经鼻内镜鼻泪管⁃泪囊切除术的应用解剖[J]. 眼科学报,2022,37(11):856⁃863.
|
25 |
BAE S H, PARK J, LEE J K. Comparison of digital subtraction dacryocystography and dacryoendoscopy in patients with Epiphora[J]. Eye, 2021, 35(3): 877⁃882.
|