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Brand: LABGO
Labgo Functional Elbow Joint Model Human Skeleton Anatomical Flexible Ligaments Professional Demonstrations
SKU: TB-LA-75758
Estimated Delivery By: Sep 1 - Sep 3 




MRP : ₹2989 ₹2299
23% OFF!
Estimated Delivery By: Sep 1 - Sep 3 
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& Refund
& Refund

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₹2299 (Including GST)
MRP : ₹2989
23% OFF!
Get Extra ₹34 OFF on Prepaid Orders
QTY :
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1
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Short Description
Anatomical life-size replica
Built securely over a rugged
Built securely over a rugged
Country of origin: India
Specifications
- Brand: LABGO
- Material Type: High-Grade Plastic / PVC
- Item Weight: 600 g
- Mounting Base: Included (Square Stand)
Description
The Labgo Functional Elbow Joint Model Human Skeleton Anatomical is a high-quality product designed to meet professional standards. Built with absolute precision and close attention to detail, this anatomical replica is engineered for reliability and efficiency in various educational and medical applications. The model features a detailed structural depiction of the distal humerus, proximal radius, and proximal ulna bone configurations joined together by flexible, resilient artificial ligaments. To ensure lasting durability under conditions of frequent handling, it is mounted securely upon a heavy, user-friendly square white base plate, making it an indispensable asset for medical students, healthcare practitioners, and biology laboratories.
Features
:- Professional Precision: Built with meticulous attention to detail to ensure realistic anatomical accuracy of the human elbow.
- Flexible Ligaments: Outfitted with flexible connective bands pinned securely to allow basic joint articulation and movement tracking.
- Stable Mounting Platform: Comes pre-installed on a rugged, flat square display base designed to optimize desktop presentation.
Applications
:- Professional anatomy lectures, skeletal identification, and structural demonstrations in medical schools and universities.
- Orthopedic patient education and condition walkthroughs in clinical consulting rooms and physical therapy environments.
- Hands-on laboratory exploration of hinge joint biomechanics and complex connective tissue configurations.
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