Related Experiment Video
Updated: Feb 17, 2026

A Precision Medicine Tool for Measurement and Monitoring of Hemoglobin S in Sickle Cell Disease Patients Receiving Transfusion Therapy
The accuracy of hospital ICD-9-CM codes for determining Sickle Cell Disease genotype
Angela B Snyder1, Peter A Lane2, Mei Zhou3
1Georgia State University, Department of Public Management and Policy, Atlanta, GA and Georgia State University, Georgia Health Policy Center, Atlanta, GA, USA.
Insights
Sickle cell disease genotype coding in hospital discharge data is often inaccurate, particularly for Hemoglobin SC and Hemoglobin Sβ+ thalassemia. This miscoding can lead to a flawed understanding of sickle cell disease severity and impact research.
Area of Science:
- Hematology
- Medical Informatics
- Public Health
Background:
- Sickle cell disease (SCD) severity varies significantly among over 100,000 US individuals.
- SCD genotype is a key factor influencing disease severity, guiding clinical guidelines.
- Previous studies indicate caution is needed when using claims data for SCD genotype determination in healthcare quality research.
Purpose of the Study:
- To assess the accuracy of major sickle cell disease genotypes in hospital discharge data.
- To quantify the extent of miscoding for sickle cell anemia, Hemoglobin SC, and Hemoglobin Sβ+ thalassemia genotypes.
Main Methods:
- Identified individuals with SCD via newborn screening or specialty care centers.
- Compared confirmed SCD genotypes against diagnosis codes in hospital discharge data.
- Analyzed the accuracy, indeterminacy, and incorrectness of genotype coding.
Main Results:
- Correct genotype coding was found in 83% of sickle cell anemia, 23% of Hemoglobin SC, and 31% of Hemoglobin Sβ+ thalassemia hospitalizations.
- Incorrect coding was prevalent in 61% of Hemoglobin SC and 52% of Hemoglobin Sβ+ thalassemia hospitalizations.
- Coding accuracy was indeterminate in 11% (sickle cell anemia), 12% (Hemoglobin SC), and 7% (Hemoglobin Sβ+ thalassemia) of cases.
Conclusions:
- The use of ICD-9-CM codes from hospital discharge data for determining specific SCD genotypes is problematic.
- Research relying solely on administrative data for SCD genotype may lead to an incorrect understanding of the disease.
- Accurate genotype data is crucial for effective SCD management and research.
Abstract:
Sickle cell disease affects more than 100,000 individuals in the United States, among whom disease severity varies considerably. One factor that influences disease severity is the sickle cell disease genotype. For this reason, clinical prevention and treatment guidelines tend to differentiate between genotypes. However, previous research suggests caution when using a claimsbased determination of sickle cell disease genotype in healthcare quality studies. The objective of this study was to describe the extent of miscoding for the major sickle cell disease genotypes in hospital discharge data. Individuals with sickle cell disease were identified through newborn screening results or hemoglobinopathy specialty care centers, along with their sickle cell disease genotypes. These genotypes were compared to the diagnosis codes listed in hospital discharge data to assess the accuracy of the hospital codes in determining sickle cell disease genotype. Eighty-three percent (sickle cell anemia), 23% (Hemoglobin SC), and 31% (Hemoglobin Sβ+ thalassemia) of hospitalizations contained a diagnosis code that correctly reflected the individual's true sickle cell disease genotype. The accuracy of the sickle cell disease genotype coding was indeterminate in 11% (sickle cell anemia), 12% (Hemoglobin SC), and 7% (Hemoglobin Sβ+ thalassemia) and incorrect in 3% (sickle cell anemia), 61% (Hemoglobin SC), and 52% (Hemoglobin Sβ+ thalassemia) of the hospitalizations. The use of ICD-9-CM codes from hospital discharge data for determining specific sickle cell disease genotypes is problematic. Research based solely on these or other types of administrative data could lead to incorrect understanding of the disease.
Related Concept Videos
Multiple Allele Traits
Genome-wide Association Studies-GWAS
GWAS does not require the identification of the target gene involved in...
Karyotyping

