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Your search keyword '"Daniszewski M"' showing total 38 results

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38 results on '"Daniszewski M"'

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1. A semi-automated pipeline for quantifying drusen-like deposits in human induced pluripotent stem cell-derived retinal pigment epithelium cells

2. Generation of a gene-corrected human isogenic iPSC line from an Alzheimer's disease iPSC line carrying the PSEN1 H163R mutation

3. Organelle mapping in dendrites of human iPSC-derived neurons reveals dynamic functional dendritic Golgi structures

4. AAV capsid bioengineering in primary human retina models

5. Transcriptomic and proteomic retinal pigment epithelium signatures of age-related macular degeneration

6. AAV2-mediated gene therapy for Bietti crystalline dystrophy provides functional CYP4V2 in multiple relevant cell models

7. Retinal ganglion cell-specific genetic regulation in primary open-angle glaucoma

9. Automation of Organoid Cultures: Current Protocols and Applications

10. Genetic variation affects morphological retinal phenotypes extracted from UK Biobank optical coherence tomography images

11. Genetic variation affects morphological retinal phenotypes extracted from UK Biobank optical coherence tomography images

12. Genetic variation affects morphological retinal phenotypes extracted from UK Biobank optical coherence tomography images (vol 17, e1009497, 2021)

13. Comparative performance of the BGI and Illumina sequencing technology for single-cell RNA-sequencing

14. Single-Cell Profiling Identifies Key Pathways Expressed by iPSCs Cultured in Different Commercial Media

15. Development of a Modular Automated System for Maintenance and Differentiation of Adherent Human Pluripotent Stem Cells

16. Generation of a human induced pluripotent stem cell line CERAi001-A-6 using episomal vectors

17. AAV-Mediated CRISPR/Cas Gene Editing of Retinal Cells In Vivo

18. Generation of a gene-corrected human isogenic iPSC line from an Alzheimer's disease iPSC line carrying the PSEN1 H163R mutation.

19. A semi-automated pipeline for quantifying drusen-like deposits in human induced pluripotent stem cell-derived retinal pigment epithelium cells.

20. AAV capsid bioengineering in primary human retina models.

21. Organelle mapping in dendrites of human iPSC-derived neurons reveals dynamic functional dendritic Golgi structures.

22. Transcriptomic and proteomic retinal pigment epithelium signatures of age-related macular degeneration.

23. AAV2-mediated gene therapy for Bietti crystalline dystrophy provides functional CYP4V2 in multiple relevant cell models.

24. Retinal ganglion cell-specific genetic regulation in primary open-angle glaucoma.

25. Culture Variabilities of Human iPSC-Derived Cerebral Organoids Are a Major Issue for the Modelling of Phenotypes Observed in Alzheimer's Disease.

26. Correction: Genetic variation affects morphological retinal phenotypes extracted from UK Biobank optical coherence tomography images.

27. Automation of Organoid Cultures: Current Protocols and Applications.

28. Genetic variation affects morphological retinal phenotypes extracted from UK Biobank optical coherence tomography images.

29. Generation of a gene-corrected human isogenic iPSC line from an Alzheimer's disease iPSC line carrying the London mutation in APP (V717I).

30. Comparative performance of the BGI and Illumina sequencing technology for single-cell RNA-sequencing.

31. Single-Cell Profiling Identifies Key Pathways Expressed by iPSCs Cultured in Different Commercial Media.

32. Automated Cell Culture Systems and Their Applications to Human Pluripotent Stem Cell Studies.

33. Role of lysophosphatidic acid in the retinal pigment epithelium and photoreceptors.

34. Transient MicroRNA Expression Enhances Myogenic Potential of Mouse Embryonic Stem Cells.

35. Single cell RNA sequencing of stem cell-derived retinal ganglion cells.

36. Development of a Modular Automated System for Maintenance and Differentiation of Adherent Human Pluripotent Stem Cells.

37. Generation of a human induced pluripotent stem cell line CERAi001-A-6 using episomal vectors.

38. AAV-Mediated CRISPR/Cas Gene Editing of Retinal Cells In Vivo.

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