Arthur | MedVision Pediatric Patient Simulator
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Arthur | MedVision Pediatric Patient Simulator

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Arthur represents a 5-8 year old boy that simulates a wide range of conditions. 

From a healthy talking child to being unresponsive with no vital signs, Arthur provides meaningful learning experiences through his extensive range of features.

When caring for a young child, communication skills are as critical as the technical skills required to manage pediatric emergencies.

Arthur has been designed to support those working in child health to effectively communicate, assess, diagnose and treat young patients in a diverse range of critical scenarios and in a variety of clinical settings.

  • Realistic airway
  • Real mechanical ventilator compatibility
  • Real devices can be used for ECG, pulse monitoring, defibrillation
  • and BP monitoring
  • Cricothyrotomy, needle decompression of tension pneumothorax
  • CPR with comprehensive performance assessment


Bringing pediatric patient care to a whole new level

Innovations for life

Essential is a 5-8 year old pediatric patient simulator developed and produced by Medvision, created, to bring pediatric patient care to a whole new level. We took the best from our LEONARDO simulator and carefully carried it to Arthur, resulting in Arthur’s conformity to all pediatric care requirements and standards.

  • Interactive eyes
  • Realistic airways
  • Real medical ventilator compatibility
  • Real devices for ECG and pulse monitoring, defibrillation, noninvasive BP monitoring
  • Cricothyrotomy, needle decompression of tension pneumothorax
  • CPR with elaborate performance assessment (multiple parameters)

Basic physical examination

Pulse palpation
SpO2 monitoring
Independent pupillary light reflex

Arthur will assess all of your actions during resuscitation and then provide detailed feedback.
Powerful and intuitive, a perfect symbiosis of hardware and software: access our ever-expanding library of clinical cases or create your own.

Realistic chest compressions

depth, frequency, hands placement assessment, ventilation volume and a detailed activity log.

Automatic drug, injected volume and speed recognition

Intravenous injections
Intraosseous injections

Orotracheal intubation

Anatomically accurate landmarks
Intubation procedure
Use real instruments
  • Spontaneous breathing
  • Realistic unilateral chest rise and fall
  • Manageable respiratory rate
  • Highly realistic respiratory airways
  • Mechanical ventilation, real and virtual
  • BVM
  • Normal and pathological lung sounds
  • Pulse oximetry and plethysmograhy (optional on the bedside monitor)
  • Various respiratory complications
  • Left and right lungs can be open or closed for ventilation

Interactive eyes

With pupillary light reflex, programmable blinking and pupil size for any of your simulation scenarios


  • Realistic airways
  • Supraglottic airway device support
  • Orotracheal and nasotracheal intubation
  • Laryngeal mask airway insertion
  • Intubation sensor
  • Pulmonary aspiration
  • Cricoid pressure
  • Positive pressure ventilation
  • Dynamic airway resistance
  • Neck hyperextension
  • Airways obstruction
  • Esophageal Intubation
  • Feeding tube insertion
  • BVM
  • Cyanosis and acrocyanosis
  • Chest rise and fall
  • Bilateral lung resistance
  • Tracheotomy
  • Spontaneous breathing
  • Respiratory rate is synchronized with vital parameters on the bedside monitor
  • Programmable respiratory patterns
  • Mechanical ventilation (A/C, SIMV, CPAP, PCV, PSV, NIPPV)
  • PEEP (up to 20cm H2O)
  • Airways synced to the respiratory rate
  • Variable compliance
  • Variable bronchi resistance
  • Needle decompression with realistic feedback
  • Real sensors for EtCO2 (Optional)
  • High-fidelity heart, lung, and bowel sounds
  • Korotkoff sounds auscultation while monitoring blood pressure
  • Programmable bilateral chest rise and fall, synced with breathing
  • Convulsions
  • Programmable blinking
  • Programmable pupils
  • Rich library of ECG rhythms
  • HR0-320
  • Real ECG electrodes
  • Anatomically accurate landmarks for chest compression performance point finding
  • Chest compression
  • Defibrillation, cardioversion and cardiac pacing using real devices
  • Correct paddle placement
  • Defibrillation in manual and automatic modes
  • Successful compressions are registered and affect the HR and ECG
  • Training defibrillation, cardioversion and cardiac pacing support
  • Cyanosis
  • Variable pulse strength with activity log
  • Realistic chest compressions
  • Automatic activity log, displaying all user actions
  • Depth, frequency, hands placement assessment and log
  • Ventilation volume
  • Manual configuration of CPR protocols
  • Printable detailed CPR assessment
  • intravenous injections with automatic drugs recognition (preinstalled catheter)
  • intraosseous access (tibia, bilateral)
  • Vocal sounds
  • Speech (preloaded phrases or instructor’s microphone)
  • Pre-installed themes, scenarios, programs
  • Realistic bone structure, palpable ribs, and many more

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