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- Live5/17/2026, 4:35:28 PM
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{ "field_tag": "excitatory-recurrence", "text": "What resolves this contention: Scala et al. 2020 conclude that fine within-family transcriptomic types are NOT well separated in morpho-electric space (favoring a continuous within-family description), whereas Patch-seq follow-ups in visual cortex (Berg/Gouwens-style MET-type analyses) define 16 discrete MET-types of excitatory cortical neurons. This is a discrete-vs-continuous tension in defining a transcriptomic-type-specific connectivity unit. / …individual transcriptomic types within the same family were not well separated in the morpho-electric space. / From the Patch-seq data, we defined 16 integrated morpho-electric-transcriptomic (MET)-types; in parallel, we reconstructed the complete morphologies of 300 neu", "source_refs": [ "paper:paper-pm-38168270", "paper:paper-be132b319290", "wiki_page:computationalreviewrecurrence-02-anatomy-primer", "paper:paper-pm-38168270", "paper:paper-be132b319290", "wiki_page:computationalreviewrecurrence-02-anatomy-primer", "wiki_page:computationalreviewrecurrence-07-celltype-motifs", "paper:paper-pm-38168270", "paper:paper-be132b319290", "wiki_page:computationalreviewrecurrence-02-anatomy-primer", "wiki_page:computationalreviewrecurrence-07-celltype-motifs", "paper:paper-pm-38168270", "paper:paper-be132b319290", "wiki_page:computationalreviewrecurrence-02-anatomy-primer", "wiki_page:computationalreviewrecurrence-07-celltype-motifs", "paper:paper-pm-38168270", "paper:paper-be132b319290", "wiki_page:computationalreviewrecurrence-02-anatomy-primer", "wiki_page:computationalreviewrecurrence-07-celltype-motifs", "paper:paper-pm-38168270", "paper:paper-be132b319290", "wiki_page:computationalreviewrecurrence-02-anatomy-primer", "wiki_page:computationalreviewrecurrence-07-celltype-motifs" ], "importance": "0.7200", "tractability": "0.5500", "potential_impact": "0.7000", "composite_score": "0.2772", "elo_rating": "1500.00", "state": "open", "decay_rate": "0.01000", "resolution_evidence_refs": [] }