One of the causes of nervous system degeneration is an excess of glutamate released upon several diseases. Glutamate analogs, like N-methyl-DL-aspartate (NMDA) and kainic acid (KA), have been shown to induce experimental retinal neurotoxicity. Previous results have shown that NMDA/KA neurotoxicity induces significant changes in the full field electroretinogram response, a thinning on the inner retinal layers, and retinal ganglion cell death. However, not all types of retinal neurons experience the same degree of injury in response to the excitotoxic stimulus. The goal of the present work is to address the effect of intraocular injection of different doses of NMDA/KA on the structure and function of several types of retinal cells and their f...
High intraocular pressure (IOP)-induced ischemia is a model for retinal neurodegeneration that recap...
Intravitreal NMDA injection has been shown to induce the excitotoxic loss of retinal cells. The reti...
High intraocular pressure (IOP)-induced ischemia is a model for retinal neurodegeneration that recap...
One of the causes of nervous system degeneration is an excess of glutamate released upon several dis...
Combined administration of N-Methyl-D-Aspartate (NMDA) and kainic acid (KA) on the inner retina was ...
Loss of retinal ganglion cells (RGCs) is a hallmark of many ophthalmic diseases including glaucoma, ...
Loss of retinal ganglion cells (RGCs) is a hallmark of many ophthalmic diseases including glaucoma, ...
Purpose: Due to the heterogeneous sensitivity of the different retinal neurons to glutamate agonists...
To study neuronal excitotoxicity induced by subretinal injection of glutamate analogues.We injected ...
AIM: To explore the more suitable concentration of glutamate or N-methyl-D-aspartic acid (NMDA) for ...
High intraocular pressure (IOP)-induced ischemia is a model for retinal neurodegeneration that recap...
Intravitreal NMDA injection has been shown to induce the excitotoxic loss of retinal cells. The reti...
Intravitreal NMDA injection has been shown to induce the excitotoxic loss of retinal cells. The reti...
Intravitreal NMDA injection has been shown to induce the excitotoxic loss of retinal cells. The reti...
Intravitreal NMDA injection has been shown to induce the excitotoxic loss of retinal cells. The reti...
High intraocular pressure (IOP)-induced ischemia is a model for retinal neurodegeneration that recap...
Intravitreal NMDA injection has been shown to induce the excitotoxic loss of retinal cells. The reti...
High intraocular pressure (IOP)-induced ischemia is a model for retinal neurodegeneration that recap...
One of the causes of nervous system degeneration is an excess of glutamate released upon several dis...
Combined administration of N-Methyl-D-Aspartate (NMDA) and kainic acid (KA) on the inner retina was ...
Loss of retinal ganglion cells (RGCs) is a hallmark of many ophthalmic diseases including glaucoma, ...
Loss of retinal ganglion cells (RGCs) is a hallmark of many ophthalmic diseases including glaucoma, ...
Purpose: Due to the heterogeneous sensitivity of the different retinal neurons to glutamate agonists...
To study neuronal excitotoxicity induced by subretinal injection of glutamate analogues.We injected ...
AIM: To explore the more suitable concentration of glutamate or N-methyl-D-aspartic acid (NMDA) for ...
High intraocular pressure (IOP)-induced ischemia is a model for retinal neurodegeneration that recap...
Intravitreal NMDA injection has been shown to induce the excitotoxic loss of retinal cells. The reti...
Intravitreal NMDA injection has been shown to induce the excitotoxic loss of retinal cells. The reti...
Intravitreal NMDA injection has been shown to induce the excitotoxic loss of retinal cells. The reti...
Intravitreal NMDA injection has been shown to induce the excitotoxic loss of retinal cells. The reti...
High intraocular pressure (IOP)-induced ischemia is a model for retinal neurodegeneration that recap...
Intravitreal NMDA injection has been shown to induce the excitotoxic loss of retinal cells. The reti...
High intraocular pressure (IOP)-induced ischemia is a model for retinal neurodegeneration that recap...