Infant Bone Marrow Puncture Training Model with Tibial Access Simulation
Product Specification Sheet
Infant Bone Marrow Puncture Training Model with Tibial Access Simulation
Model Number: MT-L65B
The Infant Bone Marrow Puncture Training Model is a specialized simulator designed to train healthcare professionals in pediatric bone marrow aspiration techniques. It replicates infant tibial anatomy and provides realistic needle penetration feedback for accurate practice. Ideal for medical colleges, hospitals, and training institutes, this model enhances procedural precision and confidence. Manufactured by Micro Technologies, it ensures durability, realism, and effective hands-on training for pediatric care.
Product Specification
The Infant Bone Marrow Puncture Training Model is an advanced medical simulation tool developed to provide realistic training in pediatric bone marrow puncture procedures. It accurately replicates the tibial structure of an infant, allowing learners to perform bone marrow aspiration with high precision and anatomical accuracy.
This Infant Bone Marrow Puncture Training Model offers a realistic tactile experience, including a noticeable sensation when the needle penetrates the bone surface and access point. It also simulates the outflow of bone marrow fluid, helping users confirm correct needle placement during training. The model supports four-side puncture of the tibial rod, enabling comprehensive practice from multiple angles.
Manufactured by Micro Technologies, the model is constructed using high-quality materials that allow repeated use and recovery of puncture sites. The Infant Bone Marrow Puncture Training Model is widely used in medical colleges, pediatric training programs, and healthcare institutions to enhance clinical skills, improve accuracy, and build confidence in performing bone marrow procedures safely.
Features
- Realistic infant tibial structure for accurate training
- Supports bone marrow puncture and aspiration practice
- Provides tactile feedback during needle penetration
- Simulates bone marrow fluid outflow
- Allows four-side puncture on tibial rod
- Self-recovering puncture surface for repeated use
- Durable construction for long-term training
Benefits
- Enhances accuracy in pediatric bone marrow procedures
- Provides realistic hands-on clinical experience
- Improves confidence in performing puncture techniques
- Supports safe and controlled training environment
- Ideal for medical and pediatric education programs
Product Specifications
| Specification | Details |
|---|---|
| Product Name | Infant Bone Marrow Puncture Training Model |
| Model No. | MT-L65B |
| Type | Pediatric Bone Marrow Puncture Simulator |
| Material | Medical Grade Simulation Material |
| Size / Model | Infant Tibial Model |
| Usage | Medical, Nursing & Clinical Training |
FAQs
What is the purpose of an infant bone marrow puncture model?
This model is designed to train healthcare professionals in performing bone marrow aspiration procedures in infants. It allows users to practice safely in a simulated environment, helping them understand correct techniques and improve accuracy before performing procedures on real patients.
How realistic is the needle penetration experience?
The model provides a realistic tactile sensation when the needle penetrates the tibial bone structure. It also simulates the outflow of bone marrow fluid, giving users a clear indication of correct needle placement and enhancing the training experience.
Can multiple punctures be performed on this model?
Yes, the model supports puncture from four different sides of the tibial rod and features a self-recovering surface. This allows repeated use without significant wear, making it ideal for institutional training.
Is this model suitable for pediatric training programs?
Yes, this model is specifically designed for pediatric training and is widely used in medical colleges and healthcare institutions. It helps learners develop essential skills required for safe and accurate bone marrow procedures in infants.
Why Choose Our Products
- Manufactured with high-quality, durable materials
- Designed for accurate and realistic medical simulation
- Suitable for long-term institutional use
- Easy to use and maintain
