1、Yokoi N, Bron AJ, Georgiev GA. The precorneal tear film as a fluid
shell: the effect of blinking and saccades on tear film distribution and
dynamics[ J]. Ocul Surf, 2014, 12(4): 252-266.Yokoi N, Bron AJ, Georgiev GA. The precorneal tear film as a fluid
shell: the effect of blinking and saccades on tear film distribution and
dynamics[ J]. Ocul Surf, 2014, 12(4): 252-266.
2、Argüeso P. Glycobiology of the ocular surface: mucins and lectins[ J].
Jpn J Ophthalmol, 2013, 57(2): 150-155.Argüeso P. Glycobiology of the ocular surface: mucins and lectins[ J].
Jpn J Ophthalmol, 2013, 57(2): 150-155.
3、Yokoi N, Georgiev GA. Tear-film-oriented diagnosis for dry eye[ J]. Jpn
J Ophthalmol, 2019, 63(2): 127-136.Yokoi N, Georgiev GA. Tear-film-oriented diagnosis for dry eye[ J]. Jpn
J Ophthalmol, 2019, 63(2): 127-136.
4、Yokoi N, Georgiev GA, Kato H, et al. Classification of fluorescein
breakup patterns: a novel method of differential diagnosis for dry
eye[ J]. Am J Ophthalmol, 2017, 180: 72-85.Yokoi N, Georgiev GA, Kato H, et al. Classification of fluorescein
breakup patterns: a novel method of differential diagnosis for dry
eye[ J]. Am J Ophthalmol, 2017, 180: 72-85.
5、周黎纹, 谢玉秀, 袁非. 角膜地形图对干眼症患者泪膜稳定性的
评价分析[ J]. 中国临床医学, 2019, 26(1): 69-71.
ZHOU LW, XIE YX, YUAN F. Corneal topography for
evaluation of tear film stability in dry eye patients[ J]. Chinese Journal
of Clinical Medicine, 2019, 26(1): 69-71周黎纹, 谢玉秀, 袁非. 角膜地形图对干眼症患者泪膜稳定性的
评价分析[ J]. 中国临床医学, 2019, 26(1): 69-71.
ZHOU LW, XIE YX, YUAN F. Corneal topography for
evaluation of tear film stability in dry eye patients[ J]. Chinese Journal
of Clinical Medicine, 2019, 26(1): 69-71
6、孙铁, 石文卿, 邵毅. 干眼成像技术的研究进展[ J]. 国际眼科杂
志, 2019, 19(6): 937-940.
SUN T, SHI WQ, SHAO Y. Research progress on dry eye
imaging technology[ J]. International Eye Science, 2019, 19(6):
937-940.孙铁, 石文卿, 邵毅. 干眼成像技术的研究进展[ J]. 国际眼科杂
志, 2019, 19(6): 937-940.
SUN T, SHI WQ, SHAO Y. Research progress on dry eye
imaging technology[ J]. International Eye Science, 2019, 19(6):
937-940.
7、Yamamoto Y, Yokoi N, Higashihara H, et al. Clinical characteristics of
short tear film breakup time (BUT) -type dry eye[ J]. Nippon Ganka
Gakkai Zasshi, 2012, 116(12): 1137-1143.Yamamoto Y, Yokoi N, Higashihara H, et al. Clinical characteristics of
short tear film breakup time (BUT) -type dry eye[ J]. Nippon Ganka
Gakkai Zasshi, 2012, 116(12): 1137-1143.
8、洪晶. 解读国际泪膜与眼表协会2017年干眼专家共识中的干眼
病理生理机制[ J]. 中华眼科杂志, 2018, 54(6): 415-418.
HONG J. Interpretation of dry eye pathophysiological mechanisms
in the 2017 dry eye workshop of the Tear Film and Ocular Surface
Association[ J]. Chinese Journal of Ophthalmology, 2018, 54(6):
415-418.洪晶. 解读国际泪膜与眼表协会2017年干眼专家共识中的干眼
病理生理机制[ J]. 中华眼科杂志, 2018, 54(6): 415-418.
HONG J. Interpretation of dry eye pathophysiological mechanisms
in the 2017 dry eye workshop of the Tear Film and Ocular Surface
Association[ J]. Chinese Journal of Ophthalmology, 2018, 54(6):
415-418.
9、Yokoi N, Uchino M, Uchino Y, et al. Importance of tear film instability
in dry eye disease in office workers using visual display terminals: the
Osaka study[ J]. Am J Ophthalmol, 2015, 159(4): 748-754.Yokoi N, Uchino M, Uchino Y, et al. Importance of tear film instability
in dry eye disease in office workers using visual display terminals: the
Osaka study[ J]. Am J Ophthalmol, 2015, 159(4): 748-754.
10、Tsubota K, Yokoi N, Shimazaki J, et al. New perspectives on dry eye
definition and diagnosis: a consensus report by the Asia Dry Eye
Society[ J]. Ocul Surf, 2017, 15(1): 65-76.Tsubota K, Yokoi N, Shimazaki J, et al. New perspectives on dry eye
definition and diagnosis: a consensus report by the Asia Dry Eye
Society[ J]. Ocul Surf, 2017, 15(1): 65-76.
11、刘祖国, 张晓博. 解读国际泪膜与眼表协会2017年干眼专家共
识中的干眼定义与分类[ J]. 中华眼科杂志, 2018, 54(4): 246-248.
LIU ZG, ZHANG XB. Interpretation of the definition and
classification of dry eyes in the 2017 dry eye workshop of the Tear Film
and Ocular Surface Association[ J]. Chinese Journal of Ophthalmology,
2018, 54(4): 246-248.刘祖国, 张晓博. 解读国际泪膜与眼表协会2017年干眼专家共
识中的干眼定义与分类[ J]. 中华眼科杂志, 2018, 54(4): 246-248.
LIU ZG, ZHANG XB. Interpretation of the definition and
classification of dry eyes in the 2017 dry eye workshop of the Tear Film
and Ocular Surface Association[ J]. Chinese Journal of Ophthalmology,
2018, 54(4): 246-248.
12、Wong H, Fatt II, Radke CJ. Deposition and thinning of the human tear
film[ J]. J Colloid Interface Sci, 1996, 184(1): 44-51.Wong H, Fatt II, Radke CJ. Deposition and thinning of the human tear
film[ J]. J Colloid Interface Sci, 1996, 184(1): 44-51.
13、Sharma A, Tiwari S, Khanna R, et al. Hydrodynamics of meniscus-induced thinning of the tear film[ J]. Adv Exp Med Biol, 1998, 438:
425-431.Sharma A, Tiwari S, Khanna R, et al. Hydrodynamics of meniscus-induced thinning of the tear film[ J]. Adv Exp Med Biol, 1998, 438:
425-431.
14、Jones MB, Please CP, Mcelwain DL, et al. Dynamics of tear film
deposition and draining[ J]. Math Med Biol, 2005, 22(3): 265-288.Jones MB, Please CP, Mcelwain DL, et al. Dynamics of tear film
deposition and draining[ J]. Math Med Biol, 2005, 22(3): 265-288.
15、Afsar-Siddiqui AB, Luckham PF, Matar OK. The spreading of surfactant
solutions on thin liquid films[ J]. Adv Colloid Interface Sci, 2003, 106:
183-236.Afsar-Siddiqui AB, Luckham PF, Matar OK. The spreading of surfactant
solutions on thin liquid films[ J]. Adv Colloid Interface Sci, 2003, 106:
183-236.
16、Berger RE, Corrsin S. A surface tension gradient mechanism for driving
the pre-corneal tear film after a blink[ J]. J Biomech, 1974, 7(3):
225-238.Berger RE, Corrsin S. A surface tension gradient mechanism for driving
the pre-corneal tear film after a blink[ J]. J Biomech, 1974, 7(3):
225-238.
17、King-Smith PE, Reuter KS, Braun RJ, et al. Tear film breakup and
structure studied by simultaneous video recording of fluorescence and
tear film lipid layer images[ J]. Invest Ophthalmol Vis Sci, 2013, 54(7):
4900-4909.King-Smith PE, Reuter KS, Braun RJ, et al. Tear film breakup and
structure studied by simultaneous video recording of fluorescence and
tear film lipid layer images[ J]. Invest Ophthalmol Vis Sci, 2013, 54(7):
4900-4909.
18、King-Smith PE, Fink BA, Hill RM. Evaporation from the human tear
film studied by interferometry[ J]. Adv Exp Med Biol, 2002, 506(Pt A):
425-429.King-Smith PE, Fink BA, Hill RM. Evaporation from the human tear
film studied by interferometry[ J]. Adv Exp Med Biol, 2002, 506(Pt A):
425-429.
19、Ya?ez-Soto B, Mannis MJ, Schwab IR, et al. Interfacial phenomena and
the ocular surface[ J]. Ocul Surf, 2014, 12(3): 178-201.Ya?ez-Soto B, Mannis MJ, Schwab IR, et al. Interfacial phenomena and
the ocular surface[ J]. Ocul Surf, 2014, 12(3): 178-201.
20、Sharma A. Breakup and dewetting of the corneal mucus layer. An
update[ J]. Adv Exp Med Biol, 1998, 438: 273-280.Sharma A. Breakup and dewetting of the corneal mucus layer. An
update[ J]. Adv Exp Med Biol, 1998, 438: 273-280.
21、Sharma A. Surface-chemical pathways of the tear film breakup. Does
corneal mucus have a role?[ J]. Adv Exp Med Biol, 1998, 438: 361-370.Sharma A. Surface-chemical pathways of the tear film breakup. Does
corneal mucus have a role?[ J]. Adv Exp Med Biol, 1998, 438: 361-370.
22、Shanker RM, Ahmed I, Bourassa PA, et al. An in vitro technique for
measuring contact angles on the corneal surface and its application to
evaluate corneal wetting properties of water soluble polymers[ J]. Int J
Pharm, 1995, 119(2): 149-163.Shanker RM, Ahmed I, Bourassa PA, et al. An in vitro technique for
measuring contact angles on the corneal surface and its application to
evaluate corneal wetting properties of water soluble polymers[ J]. Int J
Pharm, 1995, 119(2): 149-163.
23、韩玉灿, 杨燕宁, 成进魁, 等. 干眼患者非接触泪膜破裂时间测定
结果的临床分析[ J]. 临床眼科杂志, 2015(3): 238-241.
HAN YC, YANG Yn, CHENG Jk, et al. The clinical analysis
of noninvasive tear film break-up time test in dry eye patients[ J].
Journal of Clinical Ophthalmology, 2015(3): 238-241.韩玉灿, 杨燕宁, 成进魁, 等. 干眼患者非接触泪膜破裂时间测定
结果的临床分析[ J]. 临床眼科杂志, 2015(3): 238-241.
HAN YC, YANG Yn, CHENG Jk, et al. The clinical analysis
of noninvasive tear film break-up time test in dry eye patients[ J].
Journal of Clinical Ophthalmology, 2015(3): 238-241.
24、Miller KL, Polse KA, Radke J. Black-line formation and the “perched”
human tear film[ J]. Curr Eye Res, 2002, 25(3): 155-162.Miller KL, Polse KA, Radke J. Black-line formation and the “perched”
human tear film[ J]. Curr Eye Res, 2002, 25(3): 155-162.
25、Willcox MD, Argueso P, Georgiev GA, et al. TFOS DEWS II tear film
report[ J]. Ocul Surf, 2017, 15(3): 366-403.Willcox MD, Argueso P, Georgiev GA, et al. TFOS DEWS II tear film
report[ J]. Ocul Surf, 2017, 15(3): 366-403.
26、Georgiev GA, Eftimov P, Yokoi N. Structure-function relationship of
tear film lipid layer: a contemporary perspective[ J]. Exp Eye Res, 2017,
163: 17-28.Georgiev GA, Eftimov P, Yokoi N. Structure-function relationship of
tear film lipid layer: a contemporary perspective[ J]. Exp Eye Res, 2017,
163: 17-28.
27、Peng CC, Cerretani C, Braun RJ, et al. Evaporation-driven instability
of the precorneal tear film[ J]. Adv Colloid Interface Sci, 2014, 206:
250-264.Peng CC, Cerretani C, Braun RJ, et al. Evaporation-driven instability
of the precorneal tear film[ J]. Adv Colloid Interface Sci, 2014, 206:
250-264.
28、Danjo Y, Watanabe H, Tisdale AS, et al. Alteration of mucin in human
conjunctival epithelia in dry eye[ J]. Invest Ophthalmol Vis Sci, 1998,
39(13): 2602-2609.Danjo Y, Watanabe H, Tisdale AS, et al. Alteration of mucin in human
conjunctival epithelia in dry eye[ J]. Invest Ophthalmol Vis Sci, 1998,
39(13): 2602-2609.
29、Yokoi N, Kato H, Kinoshita S. Facilitation of tear fluid secretion by
3% diquafosol ophthalmic solution in normal human eyes[ J]. Am J
Ophthalmol, 2014, 157(1): 85-92.e1.Yokoi N, Kato H, Kinoshita S. Facilitation of tear fluid secretion by
3% diquafosol ophthalmic solution in normal human eyes[ J]. Am J
Ophthalmol, 2014, 157(1): 85-92.e1.
30、Yokoi N, Kato H, Kinoshita S. The increase of aqueous tear volume by
diquafosol sodium in dry-eye patients with Sjogren's syndrome: a pilot
study[ J]. Eye (Lond), 2016, 30(6): 857-864.Yokoi N, Kato H, Kinoshita S. The increase of aqueous tear volume by
diquafosol sodium in dry-eye patients with Sjogren's syndrome: a pilot
study[ J]. Eye (Lond), 2016, 30(6): 857-864.
31、Shigeyasu C, Yamada M, Akune Y. Influence of Ophthalmic Solutions
on Tear Components[ J]. Cornea, 2016, 35 Suppl 1: S71-S77.Shigeyasu C, Yamada M, Akune Y. Influence of Ophthalmic Solutions
on Tear Components[ J]. Cornea, 2016, 35 Suppl 1: S71-S77.
32、邵毅. 国际干眼新共识(TFOS DEWS II)解读[ J]. 眼科新进展,
2018, 38(1): 1-12.
SHAO Y. Interpretation of TFOS DEWS II[ J]. Recent Advances in
Ophthalmology, 2018, 38(1): 1-12.邵毅. 国际干眼新共识(TFOS DEWS II)解读[ J]. 眼科新进展,
2018, 38(1): 1-12.
SHAO Y. Interpretation of TFOS DEWS II[ J]. Recent Advances in
Ophthalmology, 2018, 38(1): 1-12.
33、张明昌, 刘洋. 解读国际泪膜与眼表协会2017年干眼专家共识
中的干眼检查[ J]. 中华眼科杂志, 2018, 54(2): 87-89.
ZHANG Mc, LIU Y. Interpretation of dry eye examination
in the 2017 dry eye workshop of the Tear Film and Ocular Surface
Association[ J]. Chinese Journal of Ophthalmology, 2018, 54(2): 87-89.张明昌, 刘洋. 解读国际泪膜与眼表协会2017年干眼专家共识
中的干眼检查[ J]. 中华眼科杂志, 2018, 54(2): 87-89.
ZHANG Mc, LIU Y. Interpretation of dry eye examination
in the 2017 dry eye workshop of the Tear Film and Ocular Surface
Association[ J]. Chinese Journal of Ophthalmology, 2018, 54(2): 87-89.
34、Koh S, Tung CI, Inoue Y, et al. Effects of tear film dynamics on quality
of vision[ J]. Br J Ophthalmol, 2018, 102(12): 1615-1620.Koh S, Tung CI, Inoue Y, et al. Effects of tear film dynamics on quality
of vision[ J]. Br J Ophthalmol, 2018, 102(12): 1615-1620.