parsing-hl7v2-messages
GitHub解析HL7 v2.x消息,提取OBX-5和NTE-3中的临床文本,支持去标识化和分析。适用于从接口引擎或实验室系统接收数据时,需挖掘嵌入的笔记或结果文本的场景。
Trigger Scenarios
Install
npx skills add maziyarpanahi/openmed --skill parsing-hl7v2-messages -g -y
SKILL.md
Frontmatter
{
"name": "parsing-hl7v2-messages",
"license": "Apache-2.0",
"metadata": {
"pairs": "before",
"project": "OpenMed",
"version": "1.0",
"category": "data-ingestion"
},
"description": "Decodes pipe-delimited HL7 v2.x messages (ADT, ORU, MDM, ORM) into structured segments\/fields\/components and surfaces OBX-5 and NTE-3 free-text narrative for OpenMed. Use before OpenMed processing when ingesting HL7 v2 feeds from an interface engine, lab\/results system, or ADT stream and you need the embedded clinical note text de-identified and analyzed. Flatten OBX\/NTE text then call openmed.deidentify and openmed.analyze_text; segment-aware redaction is available via openmed.interop.hl7v2. Trigger keywords: HL7, HL7 v2, ADT, ORU, OBX, MSH, PID, pipe-delimited, interface engine, Mirth, lab results."
}
Parsing HL7 v2 Messages for OpenMed
HL7 v2.x is the workhorse of hospital interfacing — ADT (admit/discharge/ transfer), ORU (observation results), MDM (document management), and ORM (orders) messages flow continuously between EHR, lab, radiology, and ancillary systems. The clinical narrative you want for NLP is buried in OBX-5 (observation value) and NTE-3 (notes/comments) fields, wrapped in a pipe-and-caret encoding. This skill decodes that envelope and hands the free text to OpenMed.
When to use
- You receive HL7 v2 messages from an interface engine (Mirth/NextGen Connect, Rhapsody, Cloverleaf) and want to mine embedded note/result text.
- A lab feed (ORU^R01) carries impression/comment narrative in OBX/NTE.
- An MDM^T02 transcription message carries a full report in OBX-5.
- You need a de-identified, structured feed into
openmed.analyze_text.
HL7 v2 structure in one minute
A message is segments separated by \r (carriage return). Each segment is
3-letter-named, then fields split by |, components by ^,
repetitions by ~, sub-components by &, with \ as escape. The
encoding characters are declared in MSH-1 (the field separator) and
MSH-2 (^~\&). Field positions are one-based, and MSH is special:
MSH-1 is the separator, so MSH-2 is the first real field.
MSH|^~\&|LAB|HOSP|EHR|HOSP|20240302101500||ORU^R01|MSG0001|P|2.5
PID|1||MRN12345^^^HOSP^MR||DOE^JANE^Q||19700115|F|||1 FAKE ST^^SPRINGFIELD^IL^62704
OBR|1||ORD9|CBC^Complete Blood Count
OBX|1|TX|IMPRESSION||Mild leukocytosis; clinically correlate.||||||F
NTE|1||Patient reports fatigue x1 week. Dr. Smith notified.
Quick start
Parse the envelope and pull narrative from OBX-5 / NTE-3, then hand off:
import openmed
from openmed.interop.hl7v2 import parse_hl7v2
raw = open("results.hl7", encoding="utf-8").read()
msg = parse_hl7v2(raw) # -> HL7Message (segments preserved)
narrative_chunks = []
for seg in msg.segments:
if seg.name == "OBX":
# OBX-2 is the value type; OBX-5 is the observation value.
value_type = seg.get_field(2)
if value_type in {"TX", "FT", "CE", "ST"}:
narrative_chunks.append(seg.get_field(5) or "")
elif seg.name == "NTE":
narrative_chunks.append(seg.get_field(3) or "")
# Decode component delimiters into plain text before NLP.
flat = "\n".join(c.replace("^", " ").replace("&", " ") for c in narrative_chunks if c)
# Hand the narrative to OpenMed.
deid = openmed.deidentify(flat, method="replace", policy="hipaa_safe_harbor")
result = openmed.analyze_text(deid.text, output_format="dict")
HL7Segment.get_field(position) uses one-based HL7 positions and returns
None for absent fields. HL7Message.segment_names() lists segments in order.
Whole-message segment-aware de-identification
When you need to redact the entire message (structured PID/NK1/GT1 fields and OBX/NTE free text) while preserving HL7 framing, use the bundled redactor instead of hand-rolling it:
from openmed.interop.hl7v2 import redact_hl7v2
safe = redact_hl7v2("results.hl7") # path or message text
# PID-3 hashed, PID-5 name surrogated, PID-7 DOB date-shifted, OBX-5/NTE-3
# free text masked via openmed.deidentify — delimiters and segment order kept.
redact_hl7v2 applies DEFAULT_FIELD_MAP (PID, PD1, NK1, GT1, IN1/IN2, OBX,
NTE). Extend or override it with field_map={("ZPS", 4): {"action": "hash"}}
for site-specific Z-segments, and pass date_shift_days= for a fixed,
interval-preserving shift.
Workflow
- Frame-split safely. Real feeds use
\r,\r\n, or MLLP framing (\x0b…\x1c\r).parse_hl7v2auto-detects the segment separator; strip MLLP control bytes before parsing. - Read encoding from MSH — never assume
|^~\&. The adapter derives the delimiter set from MSH-1/MSH-2 (HL7V2Encoding.from_msh_segment). - Locate narrative. OBX-5 (gated by OBX-2 value type), NTE-3, and
report-bearing segments. Concatenate repetitions (
~) and components (^). - De-identify, then analyze with OpenMed.
- Rejoin results to the patient/encounter via PID-3 (patient id) and PV1-19 (visit number) — but redact those identifiers in anything you persist.
Hand-off to / from OpenMed
- To OpenMed: flattened OBX-5/NTE-3 text →
openmed.deidentify→openmed.analyze_text. - Adapter:
openmed.interop.hl7v2providesparse_hl7v2,redact_hl7v2,HL7Message,HL7Segment,HL7V2Encoding,HL7FieldRule, andDEFAULT_FIELD_MAPfor segment-aware de-id that preserves message framing. It is parse-and-redact only — not a conformance validator. - Re-link by id, not by PHI: carry PID-3/PV1-19 as keys, but store hashed
or surrogate values (the default
redact_hl7v2hashes PID-3).
Edge cases & gotchas
- MLLP wrapper. Messages off a TCP MLLP listener are framed with
\x0b(start) and\x1c\r(end). Strip these beforeparse_hl7v2. - Escape sequences.
\F\,\S\,\T\,\R\,\E\encode literal delimiters, and\.br\is a line break inside OBX text. Unescape before NLP. - Repeating OBX. A single result can span many OBX segments (one line each); reassemble in order before summarizing.
- Value types matter. Only treat OBX-5 as narrative when OBX-2 is a text
type (
TX,FT,ST,CE); numeric (NM) and coded-only values are not free text. The default redactor restricts free-text redaction toFT/TX. - Z-segments. Site-defined
Z*segments often carry extra PHI; add explicitfield_maprules — they are not in the default map. - Versions vary. v2.3 through v2.8 differ in field cardinality; resolve positions against MSH-12 (version id), don't hardcode across versions.
Standards & references
- HL7 v2 product overview: https://www.hl7.org/implement/standards/product_brief.cfm?product_id=185
- HL7 v2.5.1 message structures (ADT, ORU, MDM) — base reference: https://hl7-definition.caristix.com/v2/
- MLLP (Minimal Lower Layer Protocol) transport: https://www.hl7.org/documentcenter/public/wg/inm/mllp_transport_specification.PDF
- OBX/NTE segment definitions: https://hl7-definition.caristix.com/v2/HL7v2.5.1/Segments/OBX
Version History
- f213557 Current 2026-07-23 00:45


