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Xie Y 22

Showing records 1 to 22 | Display all abstracts from Xie Y

80522 Functional MRI reveals effects of high intraocular pressure on central nervous system in high-tension glaucoma patients
Wang Y
Acta Ophthalmologica 2019; 97: e341-e348
80997 Caffeic acid phenethyl ester attenuates nuclear factor‑κB‑mediated inflammatory responses in Müller cells and protects against retinal ganglion cell death
Jia Y
Molecular medicine reports 2019; 19: 4863-4871
81157 Spontaneous focal lamina cribrosa defect in glaucoma and its relationship with nonprogressive glaucomatous neuropathy
Sun YX
Chinese Journal of Ophthalmology 2019; 55: 338-346
80997 Caffeic acid phenethyl ester attenuates nuclear factor‑κB‑mediated inflammatory responses in Müller cells and protects against retinal ganglion cell death
Jiang S
Molecular medicine reports 2019; 19: 4863-4871
81157 Spontaneous focal lamina cribrosa defect in glaucoma and its relationship with nonprogressive glaucomatous neuropathy
Xie Y
Chinese Journal of Ophthalmology 2019; 55: 338-346
80522 Functional MRI reveals effects of high intraocular pressure on central nervous system in high-tension glaucoma patients
Lu W; Yan T
Acta Ophthalmologica 2019; 97: e341-e348
81157 Spontaneous focal lamina cribrosa defect in glaucoma and its relationship with nonprogressive glaucomatous neuropathy
Liu XX
Chinese Journal of Ophthalmology 2019; 55: 338-346
80997 Caffeic acid phenethyl ester attenuates nuclear factor‑κB‑mediated inflammatory responses in Müller cells and protects against retinal ganglion cell death
Chen C; Lu G
Molecular medicine reports 2019; 19: 4863-4871
80522 Functional MRI reveals effects of high intraocular pressure on central nervous system in high-tension glaucoma patients
Zhou J
Acta Ophthalmologica 2019; 97: e341-e348
81157 Spontaneous focal lamina cribrosa defect in glaucoma and its relationship with nonprogressive glaucomatous neuropathy
Guo YQ; Pang RQ
Chinese Journal of Ophthalmology 2019; 55: 338-346
80997 Caffeic acid phenethyl ester attenuates nuclear factor‑κB‑mediated inflammatory responses in Müller cells and protects against retinal ganglion cell death
Xie Y
Molecular medicine reports 2019; 19: 4863-4871
80522 Functional MRI reveals effects of high intraocular pressure on central nervous system in high-tension glaucoma patients
Xie Y; Yuan J
Acta Ophthalmologica 2019; 97: e341-e348
80997 Caffeic acid phenethyl ester attenuates nuclear factor‑κB‑mediated inflammatory responses in Müller cells and protects against retinal ganglion cell death
Sun X
Molecular medicine reports 2019; 19: 4863-4871
81157 Spontaneous focal lamina cribrosa defect in glaucoma and its relationship with nonprogressive glaucomatous neuropathy
Zhang X
Chinese Journal of Ophthalmology 2019; 55: 338-346
80997 Caffeic acid phenethyl ester attenuates nuclear factor‑κB‑mediated inflammatory responses in Müller cells and protects against retinal ganglion cell death
Huang L
Molecular medicine reports 2019; 19: 4863-4871
80522 Functional MRI reveals effects of high intraocular pressure on central nervous system in high-tension glaucoma patients
Liu G
Acta Ophthalmologica 2019; 97: e341-e348
81157 Spontaneous focal lamina cribrosa defect in glaucoma and its relationship with nonprogressive glaucomatous neuropathy
Cao K; Tian N
Chinese Journal of Ophthalmology 2019; 55: 338-346
80522 Functional MRI reveals effects of high intraocular pressure on central nervous system in high-tension glaucoma patients
Teng Y
Acta Ophthalmologica 2019; 97: e341-e348
81157 Spontaneous focal lamina cribrosa defect in glaucoma and its relationship with nonprogressive glaucomatous neuropathy
Wang HZ
Chinese Journal of Ophthalmology 2019; 55: 338-346
80522 Functional MRI reveals effects of high intraocular pressure on central nervous system in high-tension glaucoma patients
Han W; Chen D
Acta Ophthalmologica 2019; 97: e341-e348
81157 Spontaneous focal lamina cribrosa defect in glaucoma and its relationship with nonprogressive glaucomatous neuropathy
Zhang C; Wang NL
Chinese Journal of Ophthalmology 2019; 55: 338-346
80522 Functional MRI reveals effects of high intraocular pressure on central nervous system in high-tension glaucoma patients
Qiu J
Acta Ophthalmologica 2019; 97: e341-e348

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