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Materials for "Neuron ID dataset facilitates neuronal annotation for whole-brain activity imaging of C. elegans"

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https://figshare.com/articles/dataset/Materials_for_Neuron_ID_dataset_facilitates_neuronal_annotation_for_whole-brain_activity_imaging_of_C_elegans_/8341088
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This dataset is materials for a paper entitled "Neuron ID dataset facilitates neuronal annotation for whole-brain activity imaging of C. elegans"https://bmcbiol.biomedcentral.com/articles/10.1186/s12915-020-0745-2 (Preprint on bioRxiv: https://www.biorxiv.org/content/10.1101/698241v2) This dataset includes following materials: Additional file 0: Dataset S1 (zip): Neuron ID dataset (contains positions and expression patterns) and corresponding static 3D images. Additional file 1: Table S1 (xlsx): Summary of neuron ID dataset including expression patterns of the promoters. Additional file 2: Figure S1 (pdf): Correction of posture of the worms. Additional file 3: Figure S2 (pdf): Performance and robustness of the posture correction. Additional file 4: Table S2 (xlsx): Summary statistics for Additional file 3: Figure S2. Additional file 5: Figure S3 (pdf): Movements of the cells during time-lapse imaging. Additional file 6: Table S3 (xlsx): Summary statistics for Additional file 5: Figure S3. Additional file 7: Figure S4 (pdf): Overlay plot of cell positions for all worms Additional file 8: Figure S5 (pdf): Specific-cell-centered landscape. Additional file 9: Figure S6 (pdf): Less varying neuron pairs. Additional file 10: Figure S7 (pdf): Position of posterior pharyngeal bulb affects cell positions Additional file 11: Table S4 (xlsx): Summary statistics for Additional file 10: Figure S7. Additional file 12: Figure S8 (pdf): Stability and sparseness of expression pattern. Additional file 13: Table S5 (xlsx): Evaluation result of promoter combinations. Additional file 14: Figure S9 (pdf): An example fluorescent image of JN3039 strain and annotated cell names. Additional file 15 (zip): Dataset S2: Positions of nuclei and expression patterns of landmark fluorescence in the whole-brain imaging strains as the test data for automatic annotation and corresponding static 3D images. Additional file 16: Figure S10 (pdf): Health of 4D strains. Additional file 17: Table S6 (xlsx): Summary statistics for Additional file 16: Figure S10. Additional file 18: Figure S11 (pdf): Comparison of the synthetic atlas and the neuron ID dataset Additional file 19: Figure S12 (pdf): Variation of relative position of cell pairs Additional file 20: Figure S13 (pdf): Error rate of each bipartite matching and majority voting. Additional file 21: Figure S14 (pdf): Relationship between error rate of automatic annotation for JN3039 and detected count in the neuron ID dataset Additional file 22: Figure S15 (pdf): Error rates of the automatic annotation method for the animals in a microfluidic chip Additional file 23: Dataset S3 (zip): A tutorial for semi-automatic annotation using our software. Additional file 24: Figure S16 (pdf): Correct ratio of automatic annotation and its improvement by manual annotation Additional file 25: Figure S17 (pdf): Most valuable cells for improving accuracy of automatic annotation Additional file 26: Note S1 (docx): Optimization of parameters for atlas generation Additional file 27: Dataset S4 (zip): Sequences of the promoters in Table 1. Additional file 28: Dataset S5 (zip): All codes for the GUI RoiEdit3D and analysis pipeline to make figures.
创建时间:
2020-01-27
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