Simulator of a premature newborn for emergency medical care


Simulator of a premature newborn for emergency medical care

SKU: M1189

Price: Upon Request

The simulator is a model of a 28-week premature newborn.

The simulator is designed to practice intubation, ventilation with bag-valve-mask, basic cardiopulmonary resuscitation, intraosseous access and intravenous procedures.

Functional features:

  • Measuring the ventilation and chest compression effectiveness.
  • Realistic airway with tongue, vocal cords, trachea, esophagus, easy to practice airway techniques.
  • Nasal intubation.
  • Oral intubation.
  • Liquid aspiration.
  • Performing ventilation exercises using a ventilator bag.
  • Simulation of cardiopulmonary resuscitation using two techniques: circular movements with two thumbs, alternative compression with fingers.
  • Bilateral lung expansion with realistic chest excursion.
  • Observation of peripheral and central cyanosis as well as healthy skin tone.
  • Observation of changes in skin color in response to trainee performance.
  • Change in color of the skin depending on the pre-selected condition.
  • The umbilical pulse appears by squeezing the bulb.
  • Practice of umbilical cord placement.
  • Injection arm.
  • Leg for intraosseous injections.

A tablet PC with software allows to:

  • Perform quality control of procedures.
  • Conduct CPR training sessions.
  • Monitors the quality of compressions and ventilation performed: depth of compression, volume of ventilation and volume of inhaled air.
  • Training mode with an included sound prompt for performed procedures.
  • Specify acceptable range values from the correct execution of procedures for users.
  • The software algorithm displays a time-bound graph of compressions and ventilations when performing exercises.
  • The software algorithm dynamically and clearly shows the correspondence of the performed procedure parameters to the previously specified range values.
  • The software algorithm displays the period of not performed artificial respiration on the simulator.
  • The software algorithm allows to set user names of simulator trainees, specifying performed task: chest compressions, artificial respiration.
  • The software algorithm displays the time that passed since lesson beginning and number of performed compressions and breaths.
  • User actions can be marked by the instructor at any time, time-bound and associated to the trainee’s name, with subsequent recording in the lesson log.
  • The software algorithm independently calculates the effectiveness of performed procedures based on the specified acceptable values of procedure parameters.
  • The software algorithm allows to save an unlimited number of recorded lesson results and event logs for demonstration to trainees on the monitor and their printing.

Equipment:

  1. Model of a premature newborn
  2. Tablet PC

Documentation:

  1. Product passport
  2. Manual

Material:

Polyurethane, silicone