高级婴儿ACLS训练模拟器-智能儿科应急响应系统

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Update time : 2025-11-10

Advanced Infant ACLS Training Simulator – Intelligent Pediatric Emergency Response System

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Introducing the JY/ACLS1500 Infant Advanced Life Support (ACLS) Training System

Prepare the next generation of healthcare professionals with the JY/ACLS1500, a high-fidelity, AI-powered infant emergency simulation system designed for realistic, comprehensive Advanced Cardiovascular Life Support (ACLS) training. Built with cutting-edge technology and developed for use in academic and clinical environments, this system enables instructors and students to simulate critical pediatric emergencies with precision and adaptability.


Key Features & Functional Capabilities

 Intelligent Human-Machine Interaction:
The manikin simulates authentic emergency symptoms—such as pupil response, cardiac rhythm, arterial pulses, respiratory sounds, and more—responding dynamically to clinical interventions like CPR, defibrillation, intubation, and drug therapy.

 Custom Case Creation:
Instructors can develop personalized training scenarios using the built-in emergency script editor, replicating real-world pediatric cases to test students' clinical decision-making and hands-on skills.

 Real-Time Monitoring & Feedback:
The system supports LAN-based instructor-student communication, offering instant feedback, performance analytics, and correctional guidance during live training sessions.


Core System Functions

✔ Airway & Breathing Management

  • Realistic airway anatomy for oral/nasal intubation

  • Audible feedback and visualization for correct/incorrect intubation

  • Simulated spontaneous breathing patterns

  • Gastric tube insertion with auscultation validation

✔ Cardiac & Circulatory Response

  • ECG monitoring with rhythm simulation

  • Manual & automatic defibrillation (up to 360J)

  • Pacemaker compatibility

  • AED simulation with voice prompts and rhythm analysis

  • Heart & lung auscultation synchronized with vitals

✔ CPR Performance Tracking

  • Supports mouth-to-mouth, BVM ventilation, and CPR protocols

  • Real-time metrics: ventilation rate, compression depth/frequency, and ratio

  • Immediate visual and data feedback on CPR quality

✔ Intravenous & Intraosseous Access

  • IV injection sites on scalp, upper limbs, and lower limbs

  • Simulated intraosseous infusion via tibia with realistic bone marrow feedback

✔ Additional Training Features

  • Blood pressure training

  • Cyanosis simulation (central/peripheral/mixed)

  • Hiccup, noise, and vital sign variation based on user input

  • PETCO2 monitoring for confirming intubation success and resuscitation effectiveness


Who Should Use This System?

The JY/ACLS1500 is suitable for a wide range of users in medical education and clinical training, including:

  • Medical interns, residents, and postgraduate students

  • Emergency and pediatric physicians

  • ICU and battlefield medics

  • Anesthesiologists and nurses

  • Clinical instructors and examiners


Applicable Fields

This infant emergency training simulator is ideal for use in:

  • Internal medicine (respiratory, cardiology, neurology)

  • Emergency medicine & critical care

  • Pharmacology & anesthesia

  • Military field medicine

  • Nursing & paramedical education

  • Skill assessments, licensing exams, and public emergency education


What’s Included – Standard Configuration

 Hardware Components:

  • Intelligent neonatal manikin

  • BP training module (JY/S7G)

  • ECG generator & defibrillation converter

  • Airway management tools (laryngoscope, ET tubes)

  • Simulated AED unit

  • Manual resuscitator, stethoscope, infusion kits

  • Medical-grade air compressor

  • Instructor control terminal

 Software Package:

  • Instructor & student LAN-based software (V2.0)

  • Emergency case editor (ACLS script software V2.0)


Conclusion

The JY/ACLS1500 Infant ACLS Training System empowers institutions to deliver standardized, realistic, and dynamic pediatric emergency response training. Whether you're training the next generation of ER doctors or conducting simulation-based assessments, this system provides the versatility and realism needed to enhance medical competence and improve infant patient outcomes.


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