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Data from computer simulation of neutral drift among limbal epithelial stem cells of mosaic mice

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dc.contributor BBSRC - Biotechnology and Biological Sciences Research Council
dc.contributor West, John D
dc.creator West, John D
dc.creator Mort, Richard L
dc.creator Hill, Robert E
dc.creator Morley, Steven D
dc.creator Collinson, J Martin
dc.date 2018-05-04T16:54:42Z
dc.date 2018-05-18
dc.identifier West, John D; Mort, Richard L; Hill, Robert E; Morley, Steven D; Collinson, J Martin. (2018). Data from computer simulation of neutral drift among limbal epithelial stem cells of mosaic mice, [dataset]. University of Edinburgh. Edinburgh Medical School. https://doi.org/10.7488/ds/2345.
dc.identifier https://hdl.handle.net/10283/3073
dc.identifier https://doi.org/10.7488/ds/2345
dc.description It was previously shown that limbal epithelial stem cells (LESCs) around the periphery of the cornea maintain radial sectors of the corneal epithelium but that radial stripe numbers declined with age in mosaic mice. Originally, these results were interpreted as progressive, age-related loss or irreversible inactivation of some clones of LESCs. We used computer simulations to show that these results could also be explained by stochastic replacement of LESCs by neighbouring LESCs, leading to neutral drift of LESC populations. This was shown to reduce the number of coherent clones of LESCs and hence would coarsen the mosaic pattern in the corneal epithelium without reducing the absolute number of LESCs. Simulations also showed that corrected stripe numbers declined more slowly when LESCs were grouped, non-randomly and that mosaicism was rarely lost unless simulated LESC numbers were unrealistically low. The data comprise the source code for the simulation program and data from 154 sets of simulations (20 simulations per set) grouped into parts 1-9. Data from simulations comprise PNG images and raw data (CSV files) of individual simulations plus Excel workbooks with summaries of numerical data. There are also word and pdf versions of a 'Read-me' file, which provides some explanatory notes about the data, and a file, which explains some abbreviations and the file structure.
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dc.language eng
dc.publisher University of Edinburgh. Edinburgh Medical School
dc.relation https://doi.org/10.1016/j.scr.2018.05.003
dc.relation "Computer simulation of neutral drift among limbal epithelial stem cells of mosaic mice" West JD, Mort RL, Hill RE, Morley SD and Collinson JM. (2018) Stem Cell Research 30, 1-11. https://doi.org/10.1016/j.scr.2018.05.003
dc.rights Creative Commons Attribution 4.0 International Public License
dc.subject Computer simulation
dc.subject Stem cell loss
dc.subject Stem cell replacement
dc.subject Stem cell neutral drift
dc.subject Limbal epithelial stem cell
dc.subject Corneal epithelium
dc.subject Loss of mosaicism
dc.subject Biological Sciences::Cell Biology
dc.title Data from computer simulation of neutral drift among limbal epithelial stem cells of mosaic mice
dc.type dataset


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Files Size Format View
CloneSim_Abbreviations and file structure.docx 109.7Kb application/vnd.openxmlformats-officedocument.wordprocessingml.document View/Open
CloneSim_Abbreviations and file structure.pdf 86.71Kb application/pdf View/Open
CloneSim Data_Part 1_Sets 1-12.zip 14.66Mb application/zip View/Open
CloneSim Data_Part 2_Sets 13-36.zip 53.94Mb application/zip View/Open
CloneSim Data_Part 3_Sets 37-63.zip 54.36Mb application/zip View/Open
CloneSim Data_Part 4_Sets 64-75.zip 31.21Mb application/zip View/Open
CloneSim Data_Part 5_Sets 76-95.zip 52.71Mb application/zip View/Open
CloneSim Data_Part 6_Sets 96-122.zip 59.66Mb application/zip View/Open
CloneSim Data_Part 7_Sets 123-138.zip 33.92Mb application/zip View/Open
CloneSim Data_Part 8_Sets 139-142.zip 5.585Mb application/zip View/Open
CloneSim Data_Part 9_Sets 143-154.zip 37.02Mb application/zip View/Open
clonesim-master.zip 249.2Kb application/zip View/Open
Read Me_Neutral drift simulations.docx 423.4Kb application/vnd.openxmlformats-officedocument.wordprocessingml.document View/Open
Read Me_Neutral drift simulations.pdf 279.6Kb application/pdf View/Open

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