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AI Humanoid Simulation Robot for Neonatal Emergency Resuscitation | China Suppliers & Factory Solutions

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    AI-Powered Humanoid Simulation Robot for Neonatal Emergency Resuscitation

    AI-Powered Humanoid Simulation Robot for Neonatal Emergency Resuscitation

    System Composition

    The model integrates various high-precision intelligent sensors capable of capturing and recording operational data in real time, providing detailed evidence for skill assessment and teaching feedback.

    Simulator Parameters

    • Body Length <58 cm
    • Head Circumference <37 cm
    • Weight approx. 3 kg
    • Material Medical-grade silicone

    Functions

    01

    Chest Compression Training Structure

    02

    Realistic Airway Ventilation Structure

    03

    Endotracheal Intubation Training Structure

    04

    Posture Detection Structure

    05

    Breathing and Pulse Feedback System

    06

    Pupil State Simulation

    07

    Cyanosis Simulation

    08

    Spontaneous Breathing and Pulse Simulation

    09

    Muscle Tone Response Assessment

    Frequently Asked Questions (FAQ)

    What are the physical dimensions and weight of the neonatal simulator?

    The simulator has a body length of less than 58 cm, a head circumference of less than 37 cm, and weighs approximately 3 kg, closely mimicking a real newborn.

    What material is the neonatal emergency simulation robot made of?

    The simulator is constructed from high-quality medical-grade silicone to provide a realistic feel and durability during training sessions.

    How does the system track and assess training performance?

    It integrates high-precision intelligent sensors that capture and record operational data in real time, offering detailed evidence for skill assessment and teaching feedback.

    Does the simulator support advanced airway management training?

    Yes, it features a realistic airway ventilation structure and an endotracheal intubation training structure to facilitate advanced resuscitation training.

    What physiological states can the simulator replicate?

    The robot can simulate pupil state, cyanosis, spontaneous breathing, pulse feedback, and muscle tone response to provide a dynamic and realistic clinical scenario.