Related Experiment Video
Updated: Jan 10, 2026

Detection of Residual Donor Erythroid Progenitor Cells after Hematopoietic Stem Cell Transplantation for Patients with Hemoglobinopathies
Published on: September 6, 2017
Predicting the Double Heterozygotes of HbE and α-Thalassemia-1 (Southeast Asian Type) Using RapidMiner-Generated
Thanusak Tatu1, Saitarn Klasamut1, Hathaikan Sorntham2
1Research & Equipment Center and Department of Hematology, Clinical Microscopy and Parasitology, Faculty of Medical Technology, Nation University, Amphore Muang, Thailand.
Abstract:
Double heterozygotes of HbE and α-Thalassemia-1 (Southeast Asian type) ((βA/βE, - -SEA/αα) can result in severe thalassemia conditions, such as HbE/β-thalassemia (βE/βT)) and Hb Bart's hydrops fetalis syndrome (- -SEA/- -SEA). Identification of these double heterozygotes is crucial for preventing births affected by Hb Bart's hydrops fetalis syndrome. The most accurate method for detecting HbE/SEA-α-Thalassemia-1 double heterozygotes is PCR-based analysis, which is complex and costly. This study aimed to develop a hematologic algorithm for predicting double heterozygotes of HbE/SEA-α-Thalassemia-1. A retrospective analysis was conducted on 471 datasets of red blood cell indices and HbE levels collected from hospitals in Northern Thailand. Data analysis and algorithm development were performed using statistical tools and RapidMiner software. The prevalence of HbE/SEA-α-Thalassemia-1 double heterozygotes was 12.1%. Significant differences were found in HbE levels, MCV, MCH, and RBC count between single HbE heterozygotes and HbE/SEA-α-Thalassemia-1 double heterozygotes. The predictive algorithm, named the 'Nation SEAE Algorithm,' was established as follows: HbE ≤ 20.5%; RBC > 4.55 × 106/µL; and MCV ≤ 70.5 fL. This algorithm demonstrated 40% sensitivity (95% CI: 30.3-50.3), 100% specificity (95% CI: 96.4-100), 100% positive predictive value (95% CI: 96.4-100), 95.6% negative predictive value (95% CI: 90.0-98.9), a negative likelihood ratio of 0.6 (95% CI: 0.3-1.2), an infinite positive likelihood ratio, 95.7% accuracy (95% CI: 90.1-98.9), and an area under the ROC curve of 0.99 (95% CI: 0.97-1.00) for identifying HbE/SEA-α-Thalassemia-1 double heterozygotes. Therefore, the 'Nation SEAE Algorithm' is a valuable clinical tool to support accurate identification of the double heterozygotes of HbE and SEA-α thalassemia 1.
More Related Videos
08:07Personalized Peptide Arrays for Detection of HLA Alloantibodies in Organ Transplantation
Published on: September 6, 2017
08:04Identification and Classification of Position-specific GABAA Receptor Subunit Missense Variants for Their Role In Hippocampal Pyramidal Neurons
Published on: June 6, 2025
Related Concept Videos
Multiple Allele Traits
Blood Types
ABO blood group
ABO antigens are glycoproteins encoded by genes present on...
Genetic Lingo
Blood Typing
Antigens are protein molecules that reside on the surface of red blood cells (RBCs). The ABO and Rh blood typing systems target...