Climbing fiber multi-innervation of mouse Purkinje dendrites with arborization common to human
Data files
Jul 25, 2023 version files 41.01 MB
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001_004_000_Cell_Branch_Distances.csv
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001_004_000_Cell_Split_Distances.csv
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001_004_000_Whisker_Stim_Cell_Branch_output.csv
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001_004_000_Whisker_Stim_output.csv
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001_005_000_Cell_Branch_Distances.csv
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001_005_000_Cell_Split_Distances.csv
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001_005_000_Whisker_Stim_Cell_Branch_output.csv
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001_005_000_Whisker_Stim_output.csv
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001_031_000_Cell_Branch_Distances.csv
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001_031_000_Cell_Split_Distances.csv
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001_031_000_Whisker_Stim_Cell_Branch_output.csv
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001_031_000_Whisker_Stim_output.csv
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002_007_007_Cell_Branch_Distances.csv
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002_007_007_Cell_Split_Distances.csv
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002_007_007_Whisker_Stim_Cell_Branch_output.csv
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002_007_007_Whisker_Stim_output.csv
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003_030_000_Multisensory_Output_data.csv
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003_030_000_Multisensory_Regression_Output.csv
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003_031_000_Cell_Branch_Distances.csv
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003_031_000_Cell_Split_Distances.csv
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003_031_000_Whisker_Stim_Cell_Branch_output.csv
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003_031_000_Whisker_Stim_output.csv
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004_007_000_Multisensory_Output_data.csv
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004_007_000_Multisensory_Regression_Output.csv
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004_008_000_Multisensory_Output_data.csv
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004_008_000_Multisensory_Regression_Output.csv
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004_010_000_Cell_Branch_Distances.csv
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004_010_000_Cell_Split_Distances.csv
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004_010_000_Whisker_Stim_Cell_Branch_output.csv
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004_010_000_Whisker_Stim_output.csv
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004_016_000_Multisensory_Output_data.csv
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004_016_000_Multisensory_Regression_Output.csv
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004_017_000_Cell_Branch_Distances.csv
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004_017_000_Cell_Split_Distances.csv
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004_017_000_Multisensory_Output_data.csv
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004_017_000_Multisensory_Regression_Output.csv
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004_017_000_Whisker_Stim_Cell_Branch_output.csv
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004_017_000_Whisker_Stim_output.csv
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004_019_000_Multisensory_Output_data.csv
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004_019_000_Multisensory_Regression_Output.csv
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004_026_000_Multisensory_Output_data.csv
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004_026_000_Multisensory_Regression_Output.csv
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004_029_001_Multisensory_Output_data.csv
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004_029_001_Multisensory_Regression_Output.csv
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005_004_000_Cell_Branch_Distances.csv
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005_004_000_Cell_Split_Distances.csv
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005_004_000_Whisker_Stim_Cell_Branch_output.csv
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005_004_000_Whisker_Stim_output.csv
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005_010_000_Multisensory_Output_data.csv
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005_010_000_Multisensory_Regression_Output.csv
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005_011_000_Multisensory_Output_data.csv
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005_011_000_Multisensory_Regression_Output.csv
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005_012_000_Cell_Branch_Distances.csv
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005_012_000_Cell_Split_Distances.csv
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005_012_000_Whisker_Stim_Cell_Branch_output.csv
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005_012_000_Whisker_Stim_output.csv
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005_024_000_Spontaneous_Output_data.csv
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005_024_000_Spontaneous_Regression_Output.csv
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008_001_000_Spontaneous_Output_data.csv
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008_001_000_Spontaneous_Regression_Output.csv
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008_001_006_Spontaneous_Output_data.csv
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008_001_006_Spontaneous_Regression_Output.csv
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009_025_000_Multisensory_Output_data.csv
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009_025_000_Multisensory_Regression_Output.csv
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009_027_000_Multisensory_Output_data.csv
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009_027_000_Multisensory_Regression_Output.csv
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010_004_000_Spontaneous_Output_data.csv
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010_004_000_Spontaneous_Regression_Output.csv
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010_020_000_Multisensory_Output_data.csv
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010_020_000_Multisensory_Regression_Output.csv
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010_022_000_Multisensory_Output_data.csv
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010_022_000_Multisensory_Regression_Output.csv
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010_024_000_Multisensory_Output_data.csv
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010_024_000_Multisensory_Regression_Output.csv
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010_026_000_Spontaneous_Output_data.csv
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010_026_000_Spontaneous_Regression_Output.csv
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010_124_000_Spontaneous_Output_data.csv
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010_124_000_Spontaneous_Regression_Output.csv
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010_224_000_Spontaneous_Output_data.csv
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010_224_000_Spontaneous_Regression_Output.csv
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011_002_000_Multisensory_Output_data.csv
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011_002_000_Multisensory_Regression_Output.csv
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011_009_000_Whisker_Stim_output.csv
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011_017_000_Whisker_Stim_output.csv
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011_019_000_Cell_Branch_Distances.csv
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011_019_000_Cell_Split_Distances.csv
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011_019_000_Whisker_Stim_Cell_Branch_output.csv
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011_019_000_Whisker_Stim_output.csv
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011_019_011_Cell_Branch_Distances.csv
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011_019_011_Cell_Split_Distances.csv
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011_019_011_Whisker_Stim_Cell_Branch_output.csv
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011_019_011_Whisker_Stim_output.csv
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011_023_000_Cell_Branch_Distances.csv
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011_023_000_Cell_Split_Distances.csv
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011_023_000_Whisker_Stim_Cell_Branch_output.csv
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011_023_000_Whisker_Stim_output.csv
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012_002_001_Cell_Branch_Distances.csv
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012_002_001_Cell_Split_Distances.csv
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012_002_001_Whisker_Stim_Cell_Branch_output.csv
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012_002_001_Whisker_Stim_output.csv
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H2_CombinedDorsalHemi_output.xlsx
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H2_CombinedVentralHemi_output.xlsx
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H3_CombinedDorsalHemi_output.xlsx
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H3_CombinedVentralHemi_output.xlsx
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H4_CombinedHemi_output.xlsx
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Human_zebrin_monoclonal.xlsx
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Manually_Curated_Spontaneous_Data.xlsx
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Mse1_CombinedHemi_output.xlsx
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Mse1_zebrincount.xlsx
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Mse2_CombinedHemi_output.xlsx
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Mse3_CombinedHemi_output.xlsx
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PC_CF_Metaanalysis.xlsx
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README.md
Abstract
Canonically, each Purkinje cell in the adult cerebellum receives only one climbing fiber from the inferior olive. Underlying current theories of cerebellar function is the notion that this highly conserved one-to-one relationship renders Purkinje dendrites into a single computational compartment. However, we show that multiple primary dendrites are a near-universal morphological feature in humans. Using tract-tracing, immunolabeling, and in vitro electrophysiology, we demonstrate in mice that ~25% of mature polydendritic cells receive more than one climbing fiber input. Two-photon calcium imaging in vivo reveals that separate dendrites can exhibit distinct response properties to sensory stimulation, indicating some polydendritic cells integrate functionally independent climbing fiber receptive fields. These findings reveal that Purkinje cells are morphologically and functionally more diverse than previously thought.
Usage notes
Data sets are in excel spreadsheet or CSV formats. R markdown code to analyze each dataset is provided.