Search the complete LOINC database. Access official guidelines, notes, modifiers, and documentation requirements instantly.
Browse the official clinical repository for active LOINC classifications. Up to 50 codes are displayed per page.
| Code | Category / Specialty | Description |
|---|---|---|
| 9994-5 |
Laboratory
General
|
R wave amplitude in lead V4
|
| 99940-9 |
Laboratory
General
|
Pain medication in the past 4 weeks
|
| 99941-7 |
Laboratory
General
|
Withdrawn from or reduced dose of pain medication
|
| 99942-5 |
Laboratory
General
|
Change of physician responsible for pain treatment
|
| 99943-3 |
Laboratory
General
|
Frequency of pain related hospitalizations
|
| 99944-1 |
Laboratory
General
|
Number of surgical procedures for pain
|
| 99945-8 |
Laboratory
General
|
Number of pain related stays at treatment facility
|
| 99946-6 |
Laboratory
General
|
Total score [Mainz Pain Staging System]
|
| 99947-4 |
Laboratory
General
|
Entity Telecommunication type
|
| 99948-2 |
Laboratory
General
|
Entity Telecommunication panel
|
| 99949-0 |
Laboratory
General
|
Entity Telecommunication mode
|
| 9995-2 |
Laboratory
General
|
R wave amplitude in lead V5
|
| 99950-8 |
Laboratory
General
|
Entity State
|
| 99951-6 |
Laboratory
General
|
Entity Postal code
|
| 99952-4 |
Laboratory
General
|
Entity Address panel
|
| 99953-2 |
Laboratory
General
|
Entity Address
|
| 99954-0 |
Laboratory
General
|
Entity City
|
| 99955-7 |
Laboratory
General
|
Entity Country
|
| 99956-5 |
Laboratory
General
|
Entity Complete address
|
| 99957-3 |
Laboratory
General
|
Entity Address type
|
| 99958-1 |
Laboratory
General
|
Entity Address use
|
| 99959-9 |
Laboratory
General
|
Urothelial carcinoma gene expression score in Urine by Molecular genetics method
|
| 9996-0 |
Laboratory
General
|
R wave amplitude in lead V6
|
| 99960-7 |
Laboratory
General
|
ADAMTS13 gene full mutation analysis in Blood or Tissue by Sequencing
|
| 99961-5 |
Laboratory
General
|
Myeloproliferative neoplasm multigene analysis in Blood or Tissue by Molecular genetics method
|
| 99962-3 |
Laboratory
General
|
JAK2 gene exon 12 full mutation analysis in Blood or Tissue by Sequencing
|
| 99963-1 |
Laboratory
General
|
JAK2 gene exon 14 full mutation analysis in Blood or Tissue by Sequencing
|
| 99964-9 |
Laboratory
General
|
MPL gene exon 10 full mutation analysis in Blood or Tissue by Sequencing
|
| 99965-6 |
Laboratory
General
|
ASXL1 gene exon 13 full mutation analysis in Blood or Tissue by Sequencing
|
| 99966-4 |
Laboratory
General
|
KIT gene exon 17 full mutation analysis in Blood or Tissue by Sequencing
|
| 99967-2 |
Laboratory
General
|
Atypical hemolytic uremic syndrome multigene analysis in Blood or Tissue by Molecular genetics method
|
| 99968-0 |
Laboratory
General
|
Thrombotic microangiopathy multigene analysis in Blood or Tissue by Molecular genetics method
|
| 99969-8 |
Laboratory
General
|
PLG gene full mutation analysis in Blood or Tissue by Sequencing
|
| 9997-8 |
Laboratory
General
|
R wave axis
|
| 99970-6 |
Laboratory
General
|
Hereditary thrombocytopenia multigene analysis in Blood or Tissue by Molecular genetics method
|
| 99971-4 |
Laboratory
General
|
Hemophagocytic lymphohistiocytosis multigene analysis in Blood or Tissue by Molecular genetics method
|
| 99972-2 |
Laboratory
General
|
Hearing loss multigene analysis in Blood or Tissue by Molecular genetics method
|
| 99974-8 |
Laboratory
General
|
No risk of injury due to a thermal source
|
| 99975-5 |
Laboratory
General
|
No injury related to a chemical source
|
| 99976-3 |
Laboratory
General
|
No injury related to a radiation source
|
| 99977-1 |
Laboratory
General
|
No injury related to transfer AndOr transport during care
|
| 99978-9 |
Laboratory
General
|
No harm related to medications administered
|
| 99979-7 |
Laboratory
General
|
No injury related to unintended retained surgical item
|
| 9998-6 |
Laboratory
General
|
R wave duration in lead AVF
|
| 99980-5 |
Laboratory
General
|
Wound is healing or improved from baseline levels
|
| 99981-3 |
Laboratory
General
|
Culture and demographics incorporated into plan of care
|
| 99982-1 |
Laboratory
General
|
Care provided is consistent with established plan of care
|
| 99983-9 |
Laboratory
General
|
Patient's right to privacy is maintained
|
| 99984-7 |
Laboratory
General
|
Patient receives competent and ethical care within legal standards of practice
|
| 99985-4 |
Laboratory
General
|
Patient receives consistent and comparable care regardless of the setting
|
In the highly networked ecosystem of modern healthcare, clinical data is constantly moving. Blood is drawn in a primary care clinic, shipped to a centralized reference laboratory across the state, analyzed by a robotic chemical analyzer, and the results are transmitted back to the physician's Electronic Health Record (EHR). Logical Observation Identifiers Names and Codes (LOINC) is the universal linguistic standard that makes this massive, instantaneous data exchange possible.
Developed and maintained by the Regenstrief Institute, LOINC is the international standard for identifying health measurements, observations, and documents. For Health Information Management (HIM) professionals, laboratory informaticists, and clinical data scientists, understanding LOINC is essential for achieving true semantic interoperability. Without LOINC, a hospital's EHR would not know whether an incoming lab result of "120" represented a safe sodium level or a lethal glucose level.
The easiest way to understand LOINC is to think of it as a standardized "Question." When a physician orders a Hemoglobin A1c test, they are asking a question: "What is the concentration of Hemoglobin A1c in this patient's blood right now?" The LOINC code (4548-4) represents that specific question. The SNOMED CT code or numerical value that comes back from the laboratory represents the "Answer."
Before the widespread adoption of LOINC, every hospital laboratory and commercial reference lab (like Quest or LabCorp) used their own proprietary, local dictionary to identify tests.
Hospital A might use the local code "GLU_B" for a blood glucose test. Hospital B might use "S-GLUC," and LabCorp might use "00123." If a patient transferred from Hospital A to Hospital B, the receiving EHR had no way of knowing that "GLU_B" and "S-GLUC" were mathematically identical tests. The receiving physician would be forced to review a scanned PDF of the lab results, completely defeating the purpose of an electronic medical record. Clinical decision support systems (CDSS) could not trigger alerts for critical high glucose values because the software couldn't reliably identify which field contained the glucose data.
LOINC solved this problem by creating a universal taxonomy. By mapping all local, proprietary laboratory codes to a single, universally recognized LOINC code, data can flow seamlessly between disparate EHR platforms, government health agencies, and clinical registries.
A LOINC code itself is a simple identifier, typically consisting of three to seven digits followed by a hyphen and a single check digit (e.g., 4548-4). However, the true power of LOINC lies in the strict, six-part conceptual model that defines every single code. To generate a unique LOINC code, Regenstrief evaluates a test against these six independent axes:
Example Breakdown for LOINC 4548-4 (Hemoglobin A1c):
Component: Hemoglobin A1c/Hemoglobin.total
Property: Mass Fraction (MFr)
Time Aspect: Point in time (Pt)
System: Blood (Bld)
Scale: Quantitative (Qn)
Method: (Blank - method independent)
While originally designed strictly for laboratory tests (Chemistry, Hematology, Microbiology), the scope of LOINC has expanded massively to cover virtually every clinical observation made in healthcare.
This covers the traditional domain of pathology and laboratory medicine. It includes highly complex molecular genetics, toxicology, antibiotic susceptibility panels, and public health reporting (such as the massive rollout of SARS-CoV-2 LOINC codes during the COVID-19 pandemic).
This section encompasses clinical measurements and documents that are not generated by a physical fluid sample in a lab. It includes:
For Revenue Cycle Management (RCM) and billing professionals, a common point of confusion is the relationship between CPT codes (specifically the 80000 series Pathology and Laboratory codes) and LOINC codes.
CPT codes are for Financial Reimbursement: When a laboratory performs a Basic Metabolic Panel (BMP), the billing department submits CPT 80048 to the insurance company. CPT tells the payer what service was performed so they can cut a check.
LOINC codes are for Clinical Interoperability: When the robotic analyzer finishes the BMP, it generates HL7 messages for Glucose, Calcium, Sodium, Potassium, etc. Each of those individual results is tagged with a specific LOINC code. LOINC tells the receiving Electronic Health Record what the data actually means so the physician can safely treat the patient.
While LOINC is not placed on a CMS-1500 or UB-04 claim form, its accurate configuration within the Laboratory Information System (LIS) is a strict federal requirement. Under the Promoting Interoperability (Meaningful Use) mandates, hospitals must utilize LOINC codes when transmitting reportable lab results to public health agencies and when providing electronic access to patients via patient portals.
LOINC is the unsung hero of modern health informatics. It operates invisibly behind the scenes of every patient portal, every automated clinical alert, and every public health dashboard. By enforcing a rigid, 6-axis conceptual model, it brings mathematical order to the chaotic world of laboratory and clinical observations.
For the healthcare data professional, mastering the principles of LOINC mapping is essential. It requires a meticulous understanding of laboratory methodologies, units of measure, and HL7 messaging standards. When configured correctly, a robust LOINC architecture ensures that critical health data flows seamlessly across state and national borders, empowering physicians with the precise information they need to save lives, while simultaneously satisfying stringent federal interoperability mandates.
Welcome to the most comprehensive and lightning-fast LOINC code lookup tool available online. Whether you are a dedicated health information management (HIM) professional, a certified medical coder, a specialized biller, or a clinical data analyst, our advanced search engine allows you to instantly search LOINC codes and find highly accurate code descriptions in mere milliseconds. Navigating the complex world of healthcare terminology requires precision, and our platform is built to deliver exactly that.
Looking up medical codes can often be a frustrating and time-consuming experience, especially when relying on slow, clunky platforms or physical manuals that quickly become outdated. Our dedicated LOINC search directory elegantly bridges that gap. By utilizing our highly optimized, state-of-the-art database, you can effortlessly find LOINC code descriptions by simply typing a keyword, a specific diagnosis or procedure, an anatomical site, or the exact alphanumeric code itself. The results are rendered in real-time as you type, allowing you to completely bypass cumbersome PDF manuals and heavy physical coding books, streamlining your daily workflow.
To perform an accurate LOINC lookup, navigate to the intuitive search bar located at the top of this page. If you have a specific clinical term or abstract concept in mind, simply type the term into the search field. Our intelligent, NLP-driven algorithm will instantly scan the entire official database to populate a comprehensive list of matching LOINC codes and descriptions. Conversely, if you already possess the specific code and simply need to verify its validity or read the full tabular guidelines, you can type the identifier directly into the bar to instantly verify its official long-form description.
Our platform is meticulously engineered specifically for medical coders, billers, and clinical analysts who demand both speed and unwavering accuracy. When you search for LOINC codes on our website, you are guaranteed to receive the exact, official nomenclature published by the governing bodies. We provide the full tabular descriptions, ensuring that you understand the precise clinical nuances, including essential modifiers, bundling edits, and specific indicators required for clean claim submission and flawless clinical documentation.
In the incredibly fast-paced environment of medical auditing, clinical documentation improvement (CDI), and revenue cycle management (RCM), time literally equates to money. Slow, laggy search platforms cause unnecessary friction and contribute to coder burnout. That is exactly why our free LOINC lookup tool is aggressively engineered to return complex search results in under 120 milliseconds. We have heavily optimized our backend server architecture so that the moment you need to look up a LOINC code, the data is delivered instantaneously. This relentless focus on performance makes our platform the premier, go-to destination for anyone in the healthcare industry asking, "How do I find a LOINC code description quickly and reliably?"
We highly recommend that you bookmark this page as your daily, primary resource for all your LOINC code search needs. We are deeply committed to maintaining this robust, frequently updated database as a permanent, free public utility for the global healthcare data community. Start typing your query into the search bar above to experience the absolute fastest, most reliable medical code lookup available on the internet today. Say goodbye to endless scrolling, frustrating page loads, and outdated indexes. Let our powerful, instantaneous search engine do the heavy lifting for your clinical documentation and coding operations. Whether you are aggressively searching by an exact code, a partial clinical description, or a broad medical category, our advanced tool delivers the exact LOINC code information you need to ensure total compliance and financial accuracy.