Anquan Xue
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Explore the profile of Anquan Xue including associated specialties, affiliations and a list of published articles.
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26
Citations
417
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Recent Articles
1.
Wang Y, Chen S, Lin J, Chen W, Huang H, Fan X, et al.
Invest Ophthalmol Vis Sci
. 2022 Nov;
63(12):20.
PMID: 36378132
Purpose: Photoreceptor loss plays a role in visual impairment in pathological myopia. As the nutrition and oxygen demands of photoreceptors are mainly supported by the choroidal vessels, we aimed to...
2.
He Q, Wang X, Shi Q, Xie C, Xue A, Wei R
BMC Ophthalmol
. 2022 Jun;
22(1):273.
PMID: 35729520
Background: This study aimed to investigate the clinical effectiveness of posterior scleral reinforcement(PSR) for the treatment of myopic traction maculopathy (MTM). Methods: This was a prospective study of 32 eyes...
3.
Ma J, Wu F, Liu Z, Fang Y, Chu X, Zheng L, et al.
Front Med (Lausanne)
. 2022 Jun;
9:888542.
PMID: 35652073
Purpose: To characterize biomechanical properties of genipin-crosslinked human dura mater as reinforcing material for posterior scleral reinforcement (PSR) and to compare it with crosslinked human sclera. Methods: Donor dura mater...
4.
Zhu S, Xue A, Li H, Ye J, Pan A, Zheng J, et al.
Am J Transl Res
. 2022 Feb;
14(1):389-395.
PMID: 35173857
Objective: We aimed to evaluate anatomical and functional outcomes and determine posterior scleral contraction (PSC) timing in treating myopic traction maculopathy (MTM). Methods: This is a retrospective study of MTM...
5.
Zhao F, Chen W, Zhou H, Reinach P, Wang Y, Juo S, et al.
Front Genet
. 2022 Feb;
12:775797.
PMID: 35116054
Myopia is the most common cause of refractive error worldwide. High myopia is a severe type of myopia, which usually accompanies pathological changes in the fundus. To identify high myopia...
6.
Ye J, Wu Y, Zhu S, Dong L, Qu J, Lu F, et al.
Retina
. 2021 Jan;
41(9):1874-1882.
PMID: 33492081
Purpose: To evaluate efficacy of posterior scleral contraction for macular hole with retinal detachment in high myopia. Methods: Seventy-three macular hole with retinal detachment eyes were treated with posterior scleral...
7.
Zhao F, Li Q, Chen W, Zhu H, Zhou D, Reinach P, et al.
J Med Genet
. 2020 Dec;
59(1):88-100.
PMID: 33318135
Background: Myopia is the leading cause of refractive errors. As its pathogenesis is poorly understood, we determined if the retinal VIP-VIPR2 signalling pathway axis has a role in controlling signalling...
8.
Zhao F, Zhang D, Zhou Q, Zhao F, He M, Yang Z, et al.
EBioMedicine
. 2020 Jul;
57:102878.
PMID: 32652319
Background: Myopia is a good model for understanding the interaction between genetics and environmental stimuli. Here we dissect the biological processes affecting myopia progression. Methods: Human Genetic Analyses: (1) gene...
9.
Ye J, Wang M, Shen M, Huang S, Xue A, Lin J, et al.
Invest Ophthalmol Vis Sci
. 2020 Apr;
61(4):45.
PMID: 32343783
Purpose: The purpose of this study was to measure alterations of inner retinal microvascular density and outer retinal sublayer thicknesses in pathological myopia, and to correlate the measured parameters with...
10.
Liao N, Jiang H, Mao G, Li Y, Xue A, Lan Y, et al.
Am J Transl Res
. 2019 Sep;
11(8):5086-5095.
PMID: 31497224
It is controversial that retina and photoreceptors are involved in amblyopic development. Lack of imaging devices for quantitative assessment of photoreceptors in vivo impedes further investigation. In this study we...