
Dialysis Course
This Dialysis Course gives nephrology nurses, technicians, and allied health professionals a complete, clinically grounded education in hemodialysis, peritoneal dialysis, and continuous renal replacement therapy. You will build the technical skills and clinical judgment needed to deliver safe, effective dialysis care across inpatient and outpatient settings. Every module connects core physiology to hands-on practice so you can apply what you learn from day one.
What you will learn:
You will gain a grasp of kidney physiology, the pathophysiology of acute and chronic renal failure, and the principles of solute clearance and fluid removal across dialysis modalities. The course guides you through hemodialysis machine setup, water treatment, extracorporeal circuit assembly, and alarm troubleshooting. You’ll learn to assess and cannulate vascular access, manage anticoagulation, and handle intradialytic complications. Peritoneal dialysis covers catheter care, CAPD and APD techniques, and peritonitis management. CRRT modules teach operation and prescribing for unstable ICU patients. Additional training includes anemia and mineral‑bone disorder management, dose adjustments, and nutrition support. Supplementary material addresses infection control, home‑dialysis training, psychosocial care, and emerging AI‑driven prescription tools and wearable kidney devices.
How you study in a practical way Dialysis Course
How you practice Dialysis Course
For companies who want 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 • 41 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Kidney Function and Failure
Foundations of Kidney Function and Failure
Lesson 1 • Chronic Kidney Disease Progression
Traces CKD from early hyperfiltration to end-stage renal disease. Connects disease staging to the timing of dialysis initiation decisions.
Lesson 2 • Pathophysiology of Acute Kidney Injury
Defines AKI stages, causes, and cellular mechanisms of injury. Prepares learners to recognize when urgent renal replacement therapy is indicated.
Lesson 3 • Fluid, Electrolyte, and Acid-Base Disorders
Identifies imbalances common in renal failure and their clinical consequences. Provides the physiological rationale for dialysis prescription targets.
Lesson 4 • Renal Anatomy and Microstructure
Covers gross and microscopic kidney anatomy, including nephron components. Establishes the structural baseline needed to understand filtration dysfunction.
Lesson 5 • Normal Kidney Physiology
Explains filtration, reabsorption, secretion, and excretion processes. Links normal function to the consequences of its loss in disease.
Chapter 2HideHide detailsSee detailsPrinciples of Dialysis Therapy
Principles of Dialysis Therapy
Lesson 1 • Solute Transport Mechanisms
Explains diffusion, convection, and adsorption as the three solute removal pathways. Connects each mechanism to specific dialysis modality design.
Lesson 2 • Dialysate Composition and Function
Details the role of each dialysate component in correcting uremic chemistry. Explains how composition changes alter treatment outcomes.
Lesson 3 • Adequacy Metrics and Dose Quantification
Introduces Kt/V, URR, and equivalent renal clearance as dose measures. Connects measured adequacy to patient outcomes and prescription adjustments.
Lesson 4 • Dialysis Membranes and Filters
Compares low-flux, high-flux, and high-cutoff membranes by pore size and material. Guides selection of appropriate membrane for patient-specific clearance goals.
Lesson 5 • Ultrafiltration and Fluid Removal
Defines transmembrane pressure and osmotic forces driving fluid removal. Establishes the basis for calculating ultrafiltration goals in prescriptions.
Chapter 3HideHide detailsSee detailsHemodialysis: Equipment and Setup
Hemodialysis: Equipment and Setup
Lesson 1 • Water Treatment Systems
Explains reverse osmosis, deionization, and disinfection steps in water purification. Establishes why water quality directly affects patient safety.
Lesson 2 • Extracorporeal Circuit Assembly
Covers bloodline priming, dialyzer connection, and circuit integrity checks. Ensures learners can assemble circuits correctly before patient connection.
Lesson 3 • Machine Alarms and Troubleshooting
Categorizes common alarms by cause and required response. Builds systematic troubleshooting skills to minimize treatment interruptions.
Lesson 4 • Anticoagulation in Hemodialysis
Compares heparin, low-molecular-weight heparin, and heparin-free protocols. Guides selection and monitoring of anticoagulation for individual patient risk.
Lesson 5 • Hemodialysis Machine Architecture
Identifies blood-side and dialysate-side circuits and their monitoring systems. Provides the equipment literacy needed for safe machine operation.
Chapter 4HideHide detailsSee detailsVascular Access for Hemodialysis
Vascular Access for Hemodialysis
Lesson 1 • Cannulation Techniques and Rotation
Teaches rope-ladder, area, and buttonhole cannulation methods with needle selection. Correct technique reduces infiltration, aneurysm formation, and access damage.
Lesson 2 • Central Venous Catheters for Dialysis
Explains tunneled and non-tunneled catheter types, insertion sites, and care protocols. Highlights catheter-related risks and strategies to minimize infection.
Lesson 3 • Arteriovenous Grafts
Describes graft materials, configurations, and earlier cannulation timelines versus AVF. Addresses the higher complication profile requiring closer surveillance.
Lesson 4 • Access Surveillance and Monitoring
Introduces flow measurement, dynamic venous pressure, and imaging-based surveillance. Early detection of stenosis prevents thrombosis and access loss.
Lesson 5 • Arteriovenous Fistula Fundamentals
Covers AVF creation sites, maturation criteria, and physical examination findings. Establishes AVF as the preferred long-term access and its clinical indicators.
Chapter 5HideHide detailsSee detailsHemodialysis Treatment Delivery
Hemodialysis Treatment Delivery
Lesson 1 • Intradialytic Hypotension Management
Identifies causes, prevention strategies, and stepwise treatment of blood pressure drops. IDH is the most common acute complication and requires rapid response.
Lesson 2 • Pre-Treatment Patient Assessment
Covers weight, blood pressure, access, and symptom review before each session. Systematic pre-treatment assessment drives safe prescription implementation.
Lesson 3 • Other Acute Intradialytic Complications
Addresses muscle cramps, disequilibrium syndrome, air embolism, and hemolysis. Recognition and immediate response prevent serious patient harm.
Lesson 4 • Initiating and Monitoring Treatment
Details patient connection, blood flow ramp-up, and ongoing monitoring intervals. Consistent monitoring detects early complications before they escalate.
Lesson 5 • Treatment Termination and Post-Care
Covers blood return, needle removal, hemostasis, and post-treatment assessment. Proper termination prevents blood loss, infection, and access complications.
Chapter 6HideHide detailsSee detailsPeritoneal Dialysis Principles and Practice
Peritoneal Dialysis Principles and Practice
Lesson 1 • Continuous Ambulatory Peritoneal Dialysis
Teaches CAPD exchange procedure, dwell times, and fill volumes. Manual exchange technique must be aseptic to prevent peritonitis.
Lesson 2 • Automated Peritoneal Dialysis
Explains APD cycler operation, prescription parameters, and troubleshooting alarms. APD offers nocturnal therapy flexibility and higher clearance potential.
Lesson 3 • PD Complications and Peritonitis Management
Identifies peritonitis, catheter-related infections, hernias, and ultrafiltration failure. Early diagnosis and protocol-driven treatment preserve membrane and catheter function.
Lesson 4 • PD Catheter Placement and Care
Covers catheter types, surgical placement, break-in period, and exit-site care. Proper catheter management is the foundation of infection-free PD therapy.
Lesson 5 • Peritoneal Membrane Physiology
Explains the three-pore model, peritoneal transport types, and osmotic agents. Connects membrane characteristics to individualized PD prescription design.
Chapter 7HideHide detailsSee detailsContinuous Renal Replacement Therapy
Continuous Renal Replacement Therapy
Lesson 1 • CRRT Monitoring and Troubleshooting
Addresses filter clotting, pressure alarms, fluid balance errors, and electrolyte shifts. Proactive monitoring sustains filter life and patient hemodynamic stability.
Lesson 2 • CRRT Prescription and Dose Delivery
Defines effluent dose targets, replacement fluid composition, and delivered versus prescribed dose. Accurate dose delivery requires accounting for downtime and filter life.
Lesson 3 • Anticoagulation Strategies for CRRT
Compares regional citrate anticoagulation and systemic heparin for CRRT circuit patency. Citrate is preferred when bleeding risk is elevated.
Lesson 4 • CRRT Circuit Setup and Access
Covers large-bore catheter selection, circuit priming, and filter connection for CRRT. Correct setup prevents early clotting and treatment interruptions.
Lesson 5 • CRRT Modalities and Indications
Compares CVVH, CVVHD, CVVHDF, and SCUF by mechanism and clinical indication. Modality selection depends on solute targets and hemodynamic tolerance.
Chapter 8HideHide detailsSee detailsDialysis Prescription and Patient Management
Dialysis Prescription and Patient Management
Lesson 1 • Mineral and Bone Disorder Management
Addresses phosphate control, vitamin D therapy, and calcimimetic use in CKD-MBD. Uncontrolled mineral disorder drives vascular calcification and fracture risk.
Lesson 2 • Nutrition Assessment and Support
Evaluates protein-energy wasting, dietary intake, and nutritional supplementation needs. Malnutrition is a major mortality predictor in dialysis patients.
Lesson 3 • Individualized HD Prescription Design
Applies patient weight, residual function, and access flow to set HD parameters. Prescription is a dynamic document adjusted by adequacy data and clinical response.
Lesson 4 • Medication Management in Dialysis
Applies dialyzability principles to adjust drug dosing and timing around treatments. Incorrect dosing causes toxicity or therapeutic failure in this population.
Lesson 5 • Anemia Management in Dialysis Patients
Covers erythropoiesis-stimulating agents, iron supplementation, and hemoglobin targets. Anemia management reduces cardiovascular burden and improves quality of life.
Lesson 6 • Transition Planning and Modality Change
Guides decisions for modality switching, transplant referral, and conservative care. Timely planning prevents crisis-driven transitions and improves patient outcomes.
Your valid completion certificate
This course is for you:
Dialysis technician: seeking deeper clinical knowledge to advance confidently.
Nephrology nurse: wanting structured mastery of all three dialysis modalities.
ICU nurse: preparing to manage CRRT patients in a critical care unit.
Nursing student: entering a nephrology rotation and needing solid foundational preparation.
Medical assistant: transitioning into a dialysis unit role for the first time.
Renal dietitian: aiming to better understand treatment context for patient counseling.
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