
Haematology Laboratory Testing Course
Master every core skill in haematology laboratory testing, from FBC methodology and peripheral blood film analysis to coagulation assays and haemoglobinopathy diagnosis. This course delivers the technical depth and clinical reasoning that modern haematology laboratories demand. Build the competency to produce accurate results, recognise critical findings, and communicate them effectively to clinical teams.
What you will learn:
This course covers the full scope of haematology laboratory science, starting with blood cell physiology, specimen handling, and quality management. You will learn to operate automated analysers, perform manual differentials, and evaluate red and white blood cell morphology with diagnostic precision. Haemoglobin analysis methods including HPLC and electrophoresis are covered in detail alongside platelet assessment and coagulation pathway testing. Advanced topics include flow cytometry, bone marrow correlation, molecular diagnostics, and point-of-care testing. By the end, you will apply integrated, multi-parameter data to solve complex haematological cases with confidence.
How you study in practice Haematology Laboratory Testing Course
How you practise Haematology Laboratory Testing Course
For businesses looking to train their team
With Dedika for businesses, the course includes exercises and examples tailored to your own business and the way your company needs.
Course content
8 Chapters • 39 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Haematology Laboratory Science
Foundations of Haematology Laboratory Science
Lesson 1 • Specimen Collection and Handling
Teaches venepuncture technique, anticoagulant selection, and pre-analytical error prevention. Proper specimen integrity is the prerequisite for accurate haematology results.
Lesson 2 • Laboratory Equipment and Instrumentation Overview
Introduces microscopes, automated analysers, centrifuges, and pipettes used in haematology. Familiarity with equipment types prepares students for hands-on operation in later chapters.
Lesson 3 • Haematology Laboratory Safety Standards
Addresses bloodborne pathogen risks, personal protective equipment, and biohazard disposal. Compliance with universal precautions is mandatory before any bench work begins.
Lesson 4 • Blood Composition and Cellular Biology
Covers erythrocytes, leucocytes, and thrombocytes: structure, function, and lifespan. Provides the cellular basis needed to interpret all downstream test results.
Lesson 5 • Quality Management in the Haematology Laboratory
Introduces quality control concepts, calibration schedules, and accreditation requirements. Students connect QC principles to reliable patient result reporting.
Chapter 2HideHide detailsSee detailsFull Blood Count Methodology
Full Blood Count Methodology
Lesson 1 • Manual Cell Counting Techniques
Teaches haemocytometer use and manual differential counting as backup and verification methods. Manual skills validate automated data and support low-resource settings.
Lesson 2 • FBC Parameters and Reference Intervals
Defines each FBC parameter, its measurement principle, and age- and sex-specific reference ranges. Understanding normal values is essential for flagging abnormal results.
Lesson 3 • Automated Analyser Operation
Covers impedance, light-scatter, and fluorescence detection technologies used in modern FBC analysers. Correct operation ensures reproducible, high-throughput results.
Lesson 4 • Instrument Flags and Delta Checks
Explains morphology flags, suspect flags, and delta check criteria generated by analysers. Students learn to triage flagged results for manual film review.
Lesson 5 • FBC Result Reporting and Interpretation
Addresses critical value thresholds, result verification, and communication to clinical staff. Accurate reporting closes the loop between laboratory analysis and patient care.
Chapter 3HideHide detailsSee detailsPeripheral Blood Film Preparation and Staining
Peripheral Blood Film Preparation and Staining
Lesson 1 • Special Staining Methods
Introduces supravital stains, Prussian blue iron stain, and periodic acid-Schiff for targeted cell identification. Special stains extend diagnostic capability beyond routine Wright-Giemsa.
Lesson 2 • Slide Quality Assessment
Teaches criteria for acceptable film thickness, stain intensity, and monolayer zone identification. Rejecting poor-quality slides prevents misdiagnosis from preparation artefacts.
Lesson 3 • Blood Film Preparation Techniques
Covers wedge-push and coverslip methods, optimal blood volume, and angle control. Consistent technique produces a monolayer zone suitable for cell examination.
Lesson 4 • Wright-Giemsa Staining Protocol
Details stain composition, buffer pH, timing, and rinsing steps for Wright-Giemsa staining. Proper staining reveals nuclear and cytoplasmic detail critical for morphology.
Chapter 4HideHide detailsSee detailsRed Blood Cell Morphology and Disorders
Red Blood Cell Morphology and Disorders
Lesson 1 • Size and Colour Abnormalities
Covers microcytosis, macrocytosis, hypochromia, and hyperchromia with associated clinical causes. Size and colour changes are the first morphological clues to nutritional and haemolytic disorders.
Lesson 2 • Inclusions and Parasites in RBCs
Covers Howell-Jolly bodies, Pappenheimer bodies, basophilic stippling, and intraerythrocytic parasites. Inclusion recognition guides urgent clinical decisions and infection management.
Lesson 3 • Shape Abnormalities and Poikilocytosis
Identifies sickle cells, target cells, schistocytes, elliptocytes, and acanthocytes with their diagnostic significance. Each shape variant points to specific underlying pathophysiology.
Lesson 4 • Anaemia Classification and Correlation
Applies RBC indices and morphology to classify anaemias as microcytic, normocytic, or macrocytic. Students construct a systematic approach to anaemia workup using laboratory data.
Lesson 5 • Normal RBC Morphology
Establishes normal erythrocyte size, shape, colour, and distribution as the baseline for abnormality recognition. Accurate normal recognition is the prerequisite for pathology identification.
Chapter 5HideHide detailsSee detailsWhite Blood Cell Morphology and Disorders
White Blood Cell Morphology and Disorders
Lesson 1 • Leucocytosis and Leucopenia Evaluation
Analyses causes of elevated and decreased WBC counts, including infection, drug effects, and bone marrow suppression. Students apply differential patterns to narrow clinical diagnoses.
Lesson 2 • Reactive and Toxic Changes
Covers toxic granulation, Döhle bodies, vacuolisation, and reactive lymphocytes associated with infection and inflammation. These changes alert clinicians to systemic stress responses.
Lesson 3 • Leucocyte Inclusions and Anomalies
Identifies Auer rods, Pelger-Huët anomaly, Chédiak-Higashi granules, and May-Hegglin bodies. Recognising these findings distinguishes hereditary anomalies from acquired malignant changes.
Lesson 4 • Blast Identification and Leukaemia Screening
Teaches blast morphology, blast percentage reporting, and criteria for urgent physician notification. Early blast recognition is critical for timely leukaemia diagnosis and treatment.
Lesson 5 • Normal Leucocyte Morphology
Describes nuclear and cytoplasmic features of neutrophils, lymphocytes, monocytes, eosinophils, and basophils. Mastery of normal morphology is required before pathological variants are introduced.
Chapter 6HideHide detailsSee detailsHaemoglobin Analysis and Haemoglobinopathies
Haemoglobin Analysis and Haemoglobinopathies
Lesson 1 • Haemoglobin Structure and Variants
Reviews normal haemoglobin types, globin chain composition, and the genetic basis of structural variants. This structural knowledge underpins interpretation of all haemoglobin separation methods.
Lesson 2 • Haemoglobin Electrophoresis Methods
Covers alkaline and acid cellulose acetate electrophoresis principles, migration patterns, and band identification. Electrophoresis remains the reference method for haemoglobin variant separation.
Lesson 3 • Sickle Cell and Solubility Testing
Teaches sodium dithionite solubility test principles, limitations, and confirmatory testing requirements. Solubility testing screens for HbS but cannot distinguish trait from disease.
Lesson 4 • HPLC for Haemoglobin Analysis
Explains cation-exchange HPLC chromatogram interpretation, retention times, and percentage quantification. HPLC provides high-resolution separation and is the preferred neonatal screening method.
Lesson 5 • Thalassaemia Laboratory Diagnosis
Identifies alpha and beta thalassaemia patterns using FBC indices, HbA2 quantification, and molecular correlation. Thalassaemia diagnosis requires integrating multiple laboratory parameters.
Chapter 7HideHide detailsSee detailsPlatelet Assessment and Coagulation Testing
Platelet Assessment and Coagulation Testing
Lesson 1 • Platelet Morphology and Estimation
Covers normal platelet size, granularity, and film estimation methods to verify automated counts. Morphological assessment detects giant platelets, clumping, and satellitism artefacts.
Lesson 2 • Coagulation Pathway Fundamentals
Reviews intrinsic, extrinsic, and common coagulation pathways and their laboratory correlates. Pathway knowledge is the foundation for interpreting PT, aPTT, and mixing studies.
Lesson 3 • Activated Partial Thromboplastin Time
Covers aPTT principle, heparin monitoring, and mixing study interpretation for factor deficiency versus inhibitor. aPTT results direct heparin dosing and haemophilia workup.
Lesson 4 • Fibrinogen, D-Dimer, and Thrombin Time
Addresses fibrinogen quantification, D-dimer assay principles, and thrombin time for DIC and fibrinolysis evaluation. These tests complete the coagulation panel for complex bleeding disorders.
Lesson 5 • Prothrombin Time and INR Testing
Explains PT methodology, INR calculation, and therapeutic monitoring applications. Accurate PT/INR results guide anticoagulation therapy decisions in clinical practice.
Chapter 8HideHide detailsSee detailsAdvanced Haematology Testing and Interpretation
Advanced Haematology Testing and Interpretation
Lesson 1 • Flow Cytometry Principles and Applications
Covers light-scatter parameters, fluorochrome-conjugated antibody panels, and gating strategies for leukaemia immunophenotyping. Flow cytometry extends morphological findings to definitive lineage assignment.
Lesson 2 • Bone Marrow Aspirate Correlation
Teaches bone marrow cellularity assessment, differential counting, and correlation with peripheral blood findings. Marrow evaluation confirms or expands diagnoses suggested by peripheral film.
Lesson 3 • Integrated Case Interpretation
Applies FBC, morphology, coagulation, and immunophenotyping data to solve complex haematology cases. Students develop systematic diagnostic reasoning across all core testing domains.
Lesson 4 • Thrombophilia and Hypercoagulability Testing
Addresses protein C, protein S, antithrombin, and factor V Leiden testing for thrombotic risk assessment. Correct test timing and anticoagulant interference avoidance are critical for accuracy.
Lesson 5 • Specialized Coagulation Assays
Covers factor activity assays, von Willebrand factor testing, and platelet aggregation studies for bleeding disorder workup. These assays localise defects within the haemostatic system.
Your valid completion certificate
This course is for you:
Medical laboratory technician: seeking to deepen haematology-specific diagnostic skills.
Recent MLT or MLS graduate: building confidence before first haematology bench assignment.
Phlebotomist: expanding scope toward laboratory analysis and result interpretation roles.
Nursing professional: wanting to understand haematology results ordered for their patients.
Career changer entering healthcare: pursuing a laboratory science pathway from another field.
Experienced lab generalist: filling gaps before sitting a haematology specialty certification exam.
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