Systemic immunosuppression promotes survival and integration of subretinally implanted human ESC-derived photoreceptor precursors in dogs is a research paper published in Stem Cell Reports (2022). On theSindex it has a DataRank of 0.596. It has been cited 52 times.
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Base Score Contribution
0.596
From this paper's citation signal
Citation Network Contribution
0
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This paper's DataRank is currently driven only by its base citation score. Citation network data was not refreshed for this result.
Learn more about DataRank methodology →National Institutes of Health
Grant: F30EY031230
National Institutes of Health
Grant: R01EY06855
National Institutes of Health
Grant: U24EY029890
Fighting Blindness Canada
Grant: RV1801
NEI NIH HHS
Grant: R01 EY006855
NEI NIH HHS
Grant: P30 EY001583
National Institutes of Health
Grant: 1F30EY031230-01
Toward enhancing organization and defining synaptic connectivity of transplanted human pluripotent stem cell-derived photoreceptor grafts
National Institutes of Health
Grant: 5R01EY006855-31
Models for Therapy of Hereditary Retinal Degeneration
National Institutes of Health
Grant: 5U24EY029890-03
Retinal disease models for translational photoreceptor replacement
Retina Research Foundation
University of Rochester
Wisconsin Alumni Research Foundation
Foundation Fighting Blindness
Research to Prevent Blindness
Influential Citations
1
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Additional file 1 of Soluble CX3CL1-expressing retinal pigment epithelium cells protect rod photoreceptors in a mouse model of retinitis pigmentosa
Additional file 1 of Soluble CX3CL1-expressing retinal pigment epithelium cells protect rod photoreceptors in a mouse model of retinitis pigmentosa
Additional file 2 of Soluble CX3CL1-expressing retinal pigment epithelium cells protect rod photoreceptors in a mouse model of retinitis pigmentosa
Additional file 2 of Soluble CX3CL1-expressing retinal pigment epithelium cells protect rod photoreceptors in a mouse model of retinitis pigmentosa
Additional file 3 of Soluble CX3CL1-expressing retinal pigment epithelium cells protect rod photoreceptors in a mouse model of retinitis pigmentosa
Additional file 3 of Soluble CX3CL1-expressing retinal pigment epithelium cells protect rod photoreceptors in a mouse model of retinitis pigmentosa
Additional file 4 of Soluble CX3CL1-expressing retinal pigment epithelium cells protect rod photoreceptors in a mouse model of retinitis pigmentosa
Additional file 4 of Soluble CX3CL1-expressing retinal pigment epithelium cells protect rod photoreceptors in a mouse model of retinitis pigmentosa
Additional file 5 of Soluble CX3CL1-expressing retinal pigment epithelium cells protect rod photoreceptors in a mouse model of retinitis pigmentosa
Additional file 5 of Soluble CX3CL1-expressing retinal pigment epithelium cells protect rod photoreceptors in a mouse model of retinitis pigmentosa
Additional file 6 of Soluble CX3CL1-expressing retinal pigment epithelium cells protect rod photoreceptors in a mouse model of retinitis pigmentosa
Additional file 6 of Soluble CX3CL1-expressing retinal pigment epithelium cells protect rod photoreceptors in a mouse model of retinitis pigmentosa
Additional file 7 of Soluble CX3CL1-expressing retinal pigment epithelium cells protect rod photoreceptors in a mouse model of retinitis pigmentosa
Additional file 7 of Soluble CX3CL1-expressing retinal pigment epithelium cells protect rod photoreceptors in a mouse model of retinitis pigmentosa
Additional file 8 of Soluble CX3CL1-expressing retinal pigment epithelium cells protect rod photoreceptors in a mouse model of retinitis pigmentosa
Additional file 8 of Soluble CX3CL1-expressing retinal pigment epithelium cells protect rod photoreceptors in a mouse model of retinitis pigmentosa