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
950 B
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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
206.33 KB
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001_005_000_Cell_Branch_Distances.csv
474 B
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001_005_000_Cell_Split_Distances.csv
1.03 KB
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001_005_000_Whisker_Stim_Cell_Branch_output.csv
209.42 KB
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001_005_000_Whisker_Stim_output.csv
107.65 KB
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001_031_000_Cell_Branch_Distances.csv
667 B
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001_031_000_Cell_Split_Distances.csv
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001_031_000_Whisker_Stim_Cell_Branch_output.csv
228.97 KB
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001_031_000_Whisker_Stim_output.csv
108.25 KB
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002_007_007_Cell_Branch_Distances.csv
314 B
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002_007_007_Cell_Split_Distances.csv
646 B
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002_007_007_Whisker_Stim_Cell_Branch_output.csv
126.16 KB
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002_007_007_Whisker_Stim_output.csv
44.74 KB
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003_030_000_Multisensory_Output_data.csv
1.37 MB
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003_030_000_Multisensory_Regression_Output.csv
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003_031_000_Cell_Branch_Distances.csv
534 B
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003_031_000_Cell_Split_Distances.csv
846 B
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003_031_000_Whisker_Stim_Cell_Branch_output.csv
173.57 KB
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003_031_000_Whisker_Stim_output.csv
49.74 KB
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004_007_000_Multisensory_Output_data.csv
1.37 MB
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004_007_000_Multisensory_Regression_Output.csv
1.21 KB
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004_008_000_Multisensory_Output_data.csv
4.11 MB
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004_008_000_Multisensory_Regression_Output.csv
3.60 KB
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004_010_000_Cell_Branch_Distances.csv
476 B
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004_010_000_Cell_Split_Distances.csv
966 B
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004_010_000_Whisker_Stim_Cell_Branch_output.csv
154.86 KB
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004_010_000_Whisker_Stim_output.csv
59.80 KB
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004_016_000_Multisensory_Output_data.csv
3.88 MB
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004_016_000_Multisensory_Regression_Output.csv
3.23 KB
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004_017_000_Cell_Branch_Distances.csv
637 B
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004_017_000_Cell_Split_Distances.csv
1.30 KB
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004_017_000_Multisensory_Output_data.csv
3.47 MB
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004_017_000_Multisensory_Regression_Output.csv
3.20 KB
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004_017_000_Whisker_Stim_Cell_Branch_output.csv
237.80 KB
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004_017_000_Whisker_Stim_output.csv
64.03 KB
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004_019_000_Multisensory_Output_data.csv
1.39 MB
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004_019_000_Multisensory_Regression_Output.csv
1.20 KB
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004_026_000_Multisensory_Output_data.csv
2.15 MB
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004_026_000_Multisensory_Regression_Output.csv
2.01 KB
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004_029_001_Multisensory_Output_data.csv
2.25 MB
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004_029_001_Multisensory_Regression_Output.csv
2.01 KB
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005_004_000_Cell_Branch_Distances.csv
634 B
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005_004_000_Cell_Split_Distances.csv
884 B
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005_004_000_Whisker_Stim_Cell_Branch_output.csv
170.79 KB
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005_004_000_Whisker_Stim_output.csv
51.93 KB
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005_010_000_Multisensory_Output_data.csv
476.65 KB
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005_010_000_Multisensory_Regression_Output.csv
404 B
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005_011_000_Multisensory_Output_data.csv
2.19 MB
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005_011_000_Multisensory_Regression_Output.csv
2.01 KB
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005_012_000_Cell_Branch_Distances.csv
158 B
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005_012_000_Cell_Split_Distances.csv
394 B
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005_012_000_Whisker_Stim_Cell_Branch_output.csv
50.29 KB
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005_012_000_Whisker_Stim_output.csv
19.80 KB
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005_024_000_Spontaneous_Output_data.csv
118.14 KB
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005_024_000_Spontaneous_Regression_Output.csv
794 B
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008_001_000_Spontaneous_Output_data.csv
82.49 KB
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008_001_000_Spontaneous_Regression_Output.csv
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008_001_006_Spontaneous_Output_data.csv
106.21 KB
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008_001_006_Spontaneous_Regression_Output.csv
3.04 KB
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009_025_000_Multisensory_Output_data.csv
2.73 MB
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009_025_000_Multisensory_Regression_Output.csv
2.40 KB
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009_027_000_Multisensory_Output_data.csv
950.08 KB
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009_027_000_Multisensory_Regression_Output.csv
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010_004_000_Spontaneous_Output_data.csv
293.14 KB
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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
2.33 MB
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010_022_000_Multisensory_Regression_Output.csv
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010_024_000_Multisensory_Output_data.csv
2.97 MB
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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
339.27 KB
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010_124_000_Spontaneous_Regression_Output.csv
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010_224_000_Spontaneous_Output_data.csv
618.41 KB
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010_224_000_Spontaneous_Regression_Output.csv
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011_002_000_Multisensory_Output_data.csv
462.22 KB
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011_002_000_Multisensory_Regression_Output.csv
396 B
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011_009_000_Whisker_Stim_output.csv
102.48 KB
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011_017_000_Whisker_Stim_output.csv
69.34 KB
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011_019_000_Cell_Branch_Distances.csv
127 B
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011_019_000_Cell_Split_Distances.csv
353 B
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011_019_000_Whisker_Stim_Cell_Branch_output.csv
24.31 KB
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011_019_000_Whisker_Stim_output.csv
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011_019_011_Cell_Branch_Distances.csv
602 B
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011_019_011_Cell_Split_Distances.csv
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011_019_011_Whisker_Stim_Cell_Branch_output.csv
84 KB
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011_019_011_Whisker_Stim_output.csv
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011_023_000_Cell_Branch_Distances.csv
221 B
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011_023_000_Cell_Split_Distances.csv
483 B
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011_023_000_Whisker_Stim_Cell_Branch_output.csv
57.19 KB
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011_023_000_Whisker_Stim_output.csv
65.70 KB
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012_002_001_Cell_Branch_Distances.csv
222 B
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012_002_001_Cell_Split_Distances.csv
428 B
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012_002_001_Whisker_Stim_Cell_Branch_output.csv
72.30 KB
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012_002_001_Whisker_Stim_output.csv
144.64 KB
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H2_CombinedDorsalHemi_output.xlsx
104.29 KB
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H2_CombinedVentralHemi_output.xlsx
60.33 KB
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H3_CombinedDorsalHemi_output.xlsx
66.97 KB
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H3_CombinedVentralHemi_output.xlsx
48.70 KB
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H4_CombinedHemi_output.xlsx
75.77 KB
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Human_zebrin_monoclonal.xlsx
47.09 KB
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Manually_Curated_Spontaneous_Data.xlsx
227.64 KB
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Mse1_CombinedHemi_output.xlsx
34.42 KB
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Mse1_zebrincount.xlsx
17.04 KB
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Mse2_CombinedHemi_output.xlsx
28.96 KB
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Mse3_CombinedHemi_output.xlsx
30.26 KB
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PC_CF_Metaanalysis.xlsx
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README.md
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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.