Advance Your Surgical Expertise with the Mini Modular in Small Animal Orthopaedics
An optional add-on to the Soft Tissue Surgery Programme and your pathway to the GPCert (Orthopaedics)
Take your clinical capability to the next level with our Mini Modular in Orthopaedics, designed for vets who want to confidently diagnose, manage, and treat orthopaedic cases in everyday practice. This structured pathway blends three in-depth online modules with three hands-on practical training days, giving you an ideal balance of theoretical knowledge, clinical reasoning, and real-world surgical application. Whether your goal is to expand your surgical caseload, enhance your diagnostic confidence, or progress toward the GPCert Small Animal Orthopaedics, this programme provides the skills and experience to get you there. Across the online modules, you'll build a strong foundation in orthopaedic examination, imaging, trauma assessment, fracture biology, fixation principles, and evidence-based treatment planning. These concepts are then brought to life during intensive practical sessions, where you will perform full orthopaedic and neurological exams, arthrocentesis, fracture classification, screw and wire techniques, plate and intramedullary pin fixation, plate-rod constructs, tension band repairs, bone graft harvesting, coaptation, pelvic approaches, and post-operative radiograph evaluation.
Together, this blended format delivers a comprehensive, practice-ready route to advanced orthopaedic competence and seamless progression onto the full GPCert Orthopaedic programme.
Who Is This For?
This modular is ideal for:
- Vets enrolled in the Soft Tissue Surgery Programme who want to broaden their surgical scope
- General practitioners seeking confidence in orthopaedic case management
- Vets preparing for the GPCert (Orthopaedics)
- Clinicians looking to increase surgical revenue and improve patient outcomes
Your Pathway to GPCert Orthopaedics
Completion of this mini modular provides a structured progression to continue on with the GPCert Orthopaedics.
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Programme details
Module Summary
01 - Foundations of Small Animal Orthopaedic Surgery
Conduct systematic client interviews by formulating focused clinical questions to obtain a comprehensive orthopaedic history, including onset, progression, trauma, and behavioural indicators.
Perform and interpret a systematic musculoskeletal examination in dogs and cats, including static postural assessment, dynamic gait analysis, joint range of motion, and palpation of joints and long bones, to localise pathology and assess severity.
Differentiate orthopaedic from neurological causes of lameness by analysing neurological examination findings and evaluating cases where neurological deficits may mimic or underlie orthopaedic disease.
Formulate differential diagnoses and select appropriate diagnostic tests for orthopaedic cases, justifying choices such as laboratory tests, arthrocentesis, and imaging modalities based on clinical findings and financial considerations.
Select, apply, and evaluate imaging modalities by choosing appropriate techniques (radiography, ultrasound, CT, MRI), acquiring diagnostic-quality orthopaedic radiographs, identifying positioning errors, and comparing the diagnostic accuracy and limitations of imaging options.
Provide contextualised, team-based orthopaedic care by developing diagnostic and treatment plans that balance clinical effectiveness, patient factors, and owner constraints, and by collaborating effectively with veterinary nurses and allied professionals to deliver patient-centred care.
02 - Musculoskeletal Trauma — Principles & Complications
1. Assess, prioritise, and stabilise fracture patients by applying appropriate analgesia, initial stabilisation techniques, and management strategies for complex injuries such as pelvic trauma, including decisions between conservative and surgical intervention.
2. Explain fracture biology and biomechanics by describing direct and indirect bone healing, the influence of mechanical forces, stress and strain, and patient age, and by evaluating how biological and mechanical factors interact to influence fracture healing outcomes.
3. Classify fractures and plan definitive treatment by applying appropriate fracture terminology, the Fracture Patient Assessment System (FPAS), and AO principles to guide fixation strategies, stability selection, and imaging choices for surgical planning.
4. Manage challenging fracture cases and complications by applying principles of bone grafting, diagnosing and treating open fractures, delayed unions, non-unions, osteomyelitis, malunions, and fracture disease, and implementing evidence-based prevention strategies.
5. Evaluate fracture repair and progression of healing by interpreting post-operative radiographs using the 4 A’s framework, assessing radiographic signs of bone healing, determining implant stability and readiness for weight-bearing, and making informed decisions regarding implant removal.
6. Apply supportive therapies and contextualised care in fracture management by selecting and applying appropriate bandaging, splinting, casting, and orthotic devices, developing post-operative care and rehabilitation plans, and collaborating effectively with the veterinary team and allied professionals while balancing patient and owner factors.
03 - Internal & External Fixation
Differentiate between direct and indirect fracture reduction techniques by explaining their indications and contraindications, particularly the balance between anatomical reduction and preservation of fracture biology.
Identify and select appropriate equipment for internal fracture fixation, including instrumentation required to facilitate fracture reduction and stabilisation.
Apply principles of intramedullary pin fixation by describing indications, limitations, and biomechanical function, selecting appropriate pin size based on medullary canal diameter, and explaining specific techniques such as the dowel pin method for metacarpal and metatarsal fractures.
Evaluate and apply combined fixation techniques using intramedullary pins with adjunct methods by explaining the advantages and limitations of combining pins with cerclage wires and plates, and developing guidelines for safe application including pin selection, wire spacing, and tensioning.
Select and apply bone screws appropriately by differentiating between screw types (cortical, cancellous, self-tapping and non-self-tapping), explaining the functions of positional, lag, and plate screws, and selecting correct screw sizes and instrumentation for insertion.
Plan and apply plate fixation strategies by explaining the biomechanical principles of dynamic compression plates (DCP), limited contact DCP (LC-DCP), and locking compression plates (LCP), selecting appropriate plate size and mode (compression, neutralisation, bridging), and outlining application steps.
Design and evaluate external skeletal fixation (ESF) systems by selecting appropriate components, planning linear ESF application to the radius and tibia, identifying safe pin placement corridors, and evaluating indications, contraindications, advantages, and limitations.
Develop aftercare plans and deliver contextualised, team-based fracture management by designing ESF aftercare protocols, balancing clinical recommendations with patient and owner factors, and collaborating effectively with the veterinary team and allied professionals to ensure patient-centred care.
04 - Practical Block 1 - Foundation Skills/Fracture Patient Assessment Score and introduction to internal fixation (Day 1)
Practical Learning Outcomes
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Perform a complete orthopaedic and neurological examination to differentiate orthopaedic and neurological lameness
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Perform arthrocentesis and interpret synovial fluid findings (shoulder, elbow, carpus)
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Classify fractures and apply fracture patient assessment score (FPAS) to guide fracture planning
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Apply lag screws, positional screws, and cerclage wires correctly using bone models
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Demonstrate correct orthopaedic instrumentation handling and theatre workflow
05 - Practical Block 1 - Fracture Patient Assessment Score/Fracture Planning/ Internal Fixation (Day 2)
Practical Learning Outcomes
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Use templating software to plan fracture fixation
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Apply dynamic compression plates (DCP) to a radial fracture
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Place an intramedullary pin appropriately in the femur, tibia and humerus
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Perform plate–rod fixation for comminuted femoral fractures
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Evaluate post-operative radiographs of radius and ulna fracture repairs, plate rod fracture repair
Qualifications
Pricing
£4,500.00
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