Nicholas Marsh-Armstrong
Affiliations: | Johns Hopkins University School of Medicine, Baltimore, MD, United States |
Website:
http://marsharmstrong-lab.kennedykrieger.org/index.htmlGoogle:
"Nicholas Marsh-Armstrong"Mean distance: 14.34 (cluster 11) | S | N | B | C | P |
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Publications
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Fague L, Liu YA, Marsh-Armstrong N. (2021) The basic science of optic nerve regeneration. Annals of Translational Medicine. 9: 1276 |
Miesfeld JB, Ghiasvand NM, Marsh-Armstrong B, et al. (2020) The remote enhancer provides transcriptional robustness during retinal ganglion cell development. Proceedings of the National Academy of Sciences of the United States of America |
Das A, Bell CM, Berlinicke CA, et al. (2020) Programmed switch in the mitochondrial degradation pathways during human retinal ganglion cell differentiation from stem cells is critical for RGC survival. Redox Biology. 101465 |
Yazdanyar A, Zhang P, Dolf C, et al. (2019) Effects of intravitreal injection of human CD34 bone marrow stem cells in a murine model of diabetic retinopathy. Experimental Eye Research. 107865 |
Williams PA, Marsh-Armstrong N, Howell GR, et al. (2017) Neuroinflammation in glaucoma: A new opportunity. Experimental Eye Research |
Miraucourt LS, Tsui J, Gobert D, et al. (2016) Endocannabinoid signaling enhances visual responses through modulation of intracellular chloride levels in retinal ganglion cells. Elife. 5 |
Whitworth GB, Misaghi BC, Rosenthal DM, et al. (2016) Translational profiling of retinal ganglion cell optic nerve regeneration in Xenopus laevis. Developmental Biology |
Miraucourt LS, Tsui J, Gobert D, et al. (2016) Author response: Endocannabinoid signaling enhances visual responses through modulation of intracellular chloride levels in retinal ganglion cells Elife |
Sluch VM, Davis CO, Ranganathan V, et al. (2015) Differentiation of human ESCs to retinal ganglion cells using a CRISPR engineered reporter cell line. Scientific Reports. 5: 16595 |
Mills EA, Davis CH, Bushong EA, et al. (2015) Astrocytes phagocytose focal dystrophies from shortening myelin segments in the optic nerve of Xenopus laevis at metamorphosis. Proceedings of the National Academy of Sciences of the United States of America. 112: 10509-14 |