| name | dismech-terms |
| description | Select, add, validate, review, or repair ontology bindings and derived term caches in dismech. Use when changing term IDs, canonical labels, preferred_term values, enum meaning mappings, phenotype, cell-type, biological-process, disease, anatomy, exposure, or treatment annotations; choosing an OAK adapter; resolving label or dynamic-enum failures; handling ECTO/XCO terms; or diagnosing cache integrity and ordering problems.
|
Curate Ontology Terms
Follow the session-wide ontology and cache contract in CLAUDE.md. Use this
workflow for each concrete term decision.
Core workflow
1. Inspect the field and its range
Read the relevant slot or class in src/dismech/schema/dismech.yaml. Determine:
- which descriptor or term field owns the binding;
- which ontology prefixes the schema permits;
- whether the field is constrained by a dynamic enum and
reachable_from;
- whether a dedicated qualifier or category slot already captures part of the
intended meaning.
Do not infer validity from similar-looking entries alone. Nearby entries are
useful examples, but the schema and ontology remain authoritative.
2. Choose the validator's ontology source
Check conf/oak_config.yaml before looking up a term. Automated validation uses
the adapter configured there and is cache-first.
For prefixes configured with OLS, use OLS for a lightweight search or a local
SQLite build when definitions, relationships, or -O obo output are needed:
uv run runoak -i ols:hp search "cognitive impairment"
uv run runoak -i ols:hp info HP:0002014
uv run runoak -i sqlite:obo:hp info HP:0002014 -O obo
-O obo is not implemented by OLS adapters. A local inspection adapter may
differ from the configured validation adapter, so never mechanically replace
one with the other.
ECTO and XCO are pinned local exceptions. Read
Exposure-term decisions before selecting or
changing those bindings.
3. Search, inspect, and choose
Search broadly enough to find synonyms, then inspect candidate definitions and
ancestry:
uv run runoak -i ols:cl search "regulatory T cell"
uv run runoak -i sqlite:obo:cl info CL:0000815 -O obo
uv run runoak -i sqlite:obo:cl ancestors CL:0000815 -p i
Choose the most specific term that accurately represents the curated claim.
Do not choose a narrow term merely because it is available. If only a broad
ontology term fits, bind that term and use preferred_term for justified
human-readable specificity.
3b. A term suggested by a deep-research report is a lead, not a binding
Reports in research/ suggest CURIEs because the templates ask them to, and
they get them wrong in ways that look clean: the CMTX report in
#9729 offered
MONDO:0010674 (Hunter syndrome) for Charcot-Marie-Tooth X-linked, with 26/26
of its citations verified.
Since deep-research-client 0.2.11 those suggestions are checked as the report
is generated. Read the report's ## Term Validation section, or its
term_validation: frontmatter, before lifting any CURIE out of it — and add the
section to an older report with just validate-research-terms <report>.
Two things the section does not settle, which is the whole of step 3 above:
- whether the term is reachable from the slot's dynamic-enum root, and
- whether it is the right term for the claim, as opposed to a real term named
consistently.
It does flag a near-miss when the report names one — the same CMTX report
writes "areflexia" beside HP:0001265, which HPO calls Hyporeflexia
(Areflexia is HP:0001284). Read those entries as granularity findings, not
as paraphrase.
Gene CURIEs are skipped by default there (HGNC uppercase does not resolve in
sqlite:obo:hgnc, and ols: resolves it to an unrelated term), so verify those
yourself. See
docs/deep-research-term-validation.md.
4. Write the descriptor correctly
Keep canonical and display labels distinct:
cell_types:
- preferred_term: CD4+ regulatory T cell
term:
id: CL:0000815
label: regulatory T cell
term.id is the ontology CURIE.
term.label exactly matches the canonical ontology label.
preferred_term is the display label and may preserve clinically or
biologically useful nuance not represented by the ontology.
Prefer the canonical label as preferred_term when no extra nuance is needed.
Use lowercase hgnc: for HGNC gene CURIEs in this repository.
For common clinical post-composition, follow Descriptor Qualifier Slots in
CLAUDE.md; do not recreate temporality, course, severity, or onset in a generic
qualifiers list. Follow the root treatment and gain/loss-of-function sections
for those schema-modeling decisions.
5. Validate immediately
just validate-terms kb/disorders/YourDisease.yaml
Also run the normal schema validation and the final batched disorder validation
required by CLAUDE.md. Treat just validate-terms as authoritative for the
configured ontology source and the current cache state.
Interpret failures
Label mismatch
Confirm the identifier against the configured ontology, then update
term.label to the canonical label. Do not change preferred_term unless the
human-facing wording is also wrong.
XCO terms flagged Not4Curation
RGD keeps XCO terms for hierarchy that it does not want annotated with, and
marks them with a related synonym reading Not4Curation — a synonym, not an
obsoletion axiom. Such a term exists, has a matching label, and is reachable
from XCO:0000000 (the XCO root among the ExposureTerm enum's source_nodes;
ExO:0000002 is the ECTO one), so just validate-terms passes it. Twenty-four XCO terms
carry the marker, and three of them (XCO:0000294 estrogen/estrogen analog,
XCO:0000950 anticonvulsant, XCO:0000561 antidepressant) got into the #8430
tranches before a reviewer noticed (#8472).
just check-not4curation gates this in just qc and CI, so you do not have to
remember — but if you are choosing an XCO term by hand, check it first, because
the flagged ones are exactly the broad drug-class terms an exposure binding
reaches for:
just check-not4curation --list-flagged --prefix XCO
uv run runoak -i sqlite:obo:xco info XCO:0000294
All three found so far had proper ECTO equivalents (XCO:0000294 →
ECTO:9000010 exposure to estrogens), so a flag is a prompt to look in ECTO
rather than a dead end.
Specificity Guidelines
Identifier not found
Check the prefix, numeric identifier, obsolescence, and configured adapter. A
term found in a newer or different ontology service may still be unavailable to
the validator. Select a term visible to the configured source or deliberately
update the pinned source through the repository's maintenance workflow.
Dynamic-enum failure
Term existence and enum membership are different checks. A valid ontology term
may fall outside the field's allowed ancestor closure. Inspect the field's
dynamic enum and its reachable_from root rather than adding the CURIE directly
to cache/enums/*.csv.
Use the full OAK-backed audit only when refreshing or investigating membership:
just check-enum-cache
Normal validation uses the faster offline structural check.
Cache integrity or ordering failure
Never type a replacement label, timestamp, or membership row. Read
Term-cache recovery, remove only the corrupt
derived row when required, re-derive it through validation, and normalize with
the sanctioned command.
Common binding patterns
Phenotype
phenotype_term:
preferred_term: Seizure
term:
id: HP:0001250
label: Seizure
Biological process
biological_processes:
- preferred_term: transforming growth factor beta receptor signaling
term:
id: GO:0007179
label: transforming growth factor beta receptor signaling pathway
modifier: INCREASED
Disease mapping and coverage
For MONDO coverage and epic-checklist synchronization, the primary
disease_term and has_subtypes terms count as curated. A term under
mappings.mondo_mappings counts only with skos:exactMatch or
skos:narrowMatch; broad, close, and related matches remain cross-references.
Specialized guidance
- Read Exposure-term decisions for ECTO/XCO
adapter constraints and the smoking-versus-cigarette and
alcohol-consumption-versus-ethanol binding rules.
- Read Term-cache recovery when an integrity,
ordering, duplicate, malformed-row, or suspicious-label problem appears.