Single Cell RNA-seq Study of Midbrain and Dopaminergic Neuron Development in Mouse, Human, and Stem Cells
In order to get a better molecular understanding of human midbrain development, this study defines cell types of the ventral midbrain in both human and mouse as well as stem cell-derived dopaminergic neuron preparations, and reveals the temporal dynamics of key lineages across development and the adult.
Provenance — who produced it, who reused it
Linked to 15 papers in the literature. Roles are inferred factual signals (who deposited the data vs who reused it), with counts — never a judgement about any author.
- Integrative single-cell analysis of transcriptional and epigenet... 2017 · 1,088 cites
- Genetic mapping of cell type specificity for complex traits 2019 · 384 cites
- Data denoising with transfer learning in single-cell transcripto... 2019 · 206 cites
- Widespread Transcriptional Scanning in the Testis Modulates Gene... 2020 · 197 cites
- Decomposing Cell Identity for Transfer Learning across Cellular... 2019 · 186 cites
- Single-Cell RNA-Seq of Mouse Dopaminergic Neurons Informs Candid... 2018 · 144 cites
- STAB: a spatio-temporal cell atlas of the human brain 2020 · 71 cites
8 further papers cite this accession but reuse could not be confirmed.
Deep data QC
metadata only · no data-level QC for this typeStandardized, field-standard QC computed by touching the data — every metric states how it was obtained
No quantitative QC rubric exists for this data type yet, so it is deliberately left unscored — this is an honest "not applicable", not a poor rating.
measured = computed from the data · extrapolated/reported = derived or from the repository · dq-1.0 · provisional — verify independently