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Ding X 16

Showing records 1 to 16 | Display all abstracts from Ding X

110011 ATP-P2XR-mediated microglia senescence aggravates retinal ganglion cell injury in chronic ocular hypertension
Wei M
Journal of Neuroinflammation 2023; 20: 180
109497 Evaluation of Schlemm's canal with swept-source optical coherence tomography in primary angle-closure disease
Ding X
BMC Ophthalmology 2023; 23: 256
110011 ATP-P2XR-mediated microglia senescence aggravates retinal ganglion cell injury in chronic ocular hypertension
Zhang G
Journal of Neuroinflammation 2023; 20: 180
109497 Evaluation of Schlemm's canal with swept-source optical coherence tomography in primary angle-closure disease
Huang L
BMC Ophthalmology 2023; 23: 256
110011 ATP-P2XR-mediated microglia senescence aggravates retinal ganglion cell injury in chronic ocular hypertension
Huang Z
Journal of Neuroinflammation 2023; 20: 180
109497 Evaluation of Schlemm's canal with swept-source optical coherence tomography in primary angle-closure disease
Peng C; Xu L
BMC Ophthalmology 2023; 23: 256
110011 ATP-P2XR-mediated microglia senescence aggravates retinal ganglion cell injury in chronic ocular hypertension
Ding X
Journal of Neuroinflammation 2023; 20: 180
109497 Evaluation of Schlemm's canal with swept-source optical coherence tomography in primary angle-closure disease
Liu Y
BMC Ophthalmology 2023; 23: 256
110011 ATP-P2XR-mediated microglia senescence aggravates retinal ganglion cell injury in chronic ocular hypertension
Sun Q
Journal of Neuroinflammation 2023; 20: 180
109497 Evaluation of Schlemm's canal with swept-source optical coherence tomography in primary angle-closure disease
Yang Y
BMC Ophthalmology 2023; 23: 256
110011 ATP-P2XR-mediated microglia senescence aggravates retinal ganglion cell injury in chronic ocular hypertension
Zhang Y
Journal of Neuroinflammation 2023; 20: 180
109497 Evaluation of Schlemm's canal with swept-source optical coherence tomography in primary angle-closure disease
Wang N
BMC Ophthalmology 2023; 23: 256
110011 ATP-P2XR-mediated microglia senescence aggravates retinal ganglion cell injury in chronic ocular hypertension
Zhu R
Journal of Neuroinflammation 2023; 20: 180
109497 Evaluation of Schlemm's canal with swept-source optical coherence tomography in primary angle-closure disease
Gu M
BMC Ophthalmology 2023; 23: 256
110011 ATP-P2XR-mediated microglia senescence aggravates retinal ganglion cell injury in chronic ocular hypertension
Guan H; Ji M
Journal of Neuroinflammation 2023; 20: 180
109497 Evaluation of Schlemm's canal with swept-source optical coherence tomography in primary angle-closure disease
Sun C; Wu Y; Guo W
BMC Ophthalmology 2023; 23: 256

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