Erler-Zimmer 3D Extremity Models (23)

Erler-Zimmer 3D extremity models are designed to support structured instruction of upper and lower limb anatomy across classroom, collegiate, and clinical learning environments. This collection includes detailed three-dimensional teaching models that illustrate bones, muscles, ligaments, and functional movement of arms, hands, legs, and feet. These models support clear demonstration, hands-on learning, and system-level study for anatomy and healthcare education.

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  • Forearm and hand - deep dissection
    Institutional List Price: $0.00
    Model#: EZ9
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    This 3D printed specimen of a left upper limb preserves a deep dissection from the distal humerus to the palmar surface of hand.

  • Deep upper limb and hand
    Institutional List Price: $0.00
    Model#: EZ8
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    This 3D print of a superficially dissected right upper limb specimen displays a mixture of the vascular, nervous and muscular anatomy of the distal arm, forearm and hand.

  • Forearm and hand - superficial and deep dissection
    Institutional List Price: $0.00
    Model#: EZ7
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    This 3D printed specimen preserves a mixed superficial and deep dissection of the anterior aspect of a right distal arm, forearm and hand.

  • Upper Limb - elbow, forearm and hand
    Institutional List Price: $0.00
    Model#: EZ6
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    This 3D-printed specimen displays a great deal of upper limb anatomy. In the distal arm and elbow/ cubital fossa region it shows the arrangement of the biceps tendon, brachial artery and median nerve arranged from...

  • Upper Limb
    Institutional List Price: $0.00
    Model#: EZ5
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    This 3D-printed specimen demonstrates the superficial anatomy of a left upper limb from the blade of the scapula to the hand. The skin and superficial and deep fascia has been removed from most of the...

  • Foot - Parasagittal cross-section
    Institutional List Price: $342.00
    Model#: EZ51
    $342.00
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    This 3D printed specimen provides a parasagittal cross-section through the medial aspect of the right distal tibia and foot, displaying the skeletal structures of the medial longitudinal arch of the foot and surrounding soft-tissue structures.

  • Lower limb G superficial dissection with male left pelvis
    Institutional List Price: $9,195.00
    Model#: EZ48
    $9,195.00
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    This 3D printed specimen combines the Lower limb G superficial dissection (Ref.no. MP1816) with the male left pelvis (Ref.no. MP1765).

  • Upper Limb Ligaments
    Institutional List Price: $1,494.00
    Model#: EZ11
    $1,494.00
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    This 3D printed specimen presents the entire upper limb skeleton and ligaments from the pectoral girdle to the hand.

Erler-Zimmer 3D Extremity Models for Limb Anatomy and Movement Study

Erler-Zimmer 3D extremity models are designed to support structured anatomical education focused on the upper and lower limbs. These models provide detailed representations of bones, joints, muscles, and connective structures, allowing learners to study movement, alignment, and functional anatomy with clarity.

Developed for academic and clinical training environments, these models help users explore how limb structures interact to support mobility, stability, and coordination across different regions of the body.

Designed for Functional and Structural Understanding of Limbs

Erler-Zimmer extremity models emphasize accurate anatomical positioning and joint articulation, enabling clear visualization of how bones and soft tissues work together. Their three-dimensional design supports both static study and movement-based analysis.

Key Features of Erler-Zimmer 3D Extremity Models

  • Detailed representation of upper and lower limb anatomy
  • Three-dimensional structure for spatial and functional understanding
  • Articulated joints to demonstrate movement and range of motion
  • Visualization of bones, ligaments, and muscle structures
  • Accurate anatomical proportions and alignment
  • Durable construction for repeated educational use

These features allow educators to demonstrate how limb structures function together while helping learners understand movement mechanics and anatomical relationships.

Built for Anatomy, Rehabilitation, and Clinical Education

Erler-Zimmer 3D extremity models are used in learning environments where limb structure and function are central to instruction. Their design supports both guided teaching and independent anatomical exploration.

Common Educational Applications

  • University anatomy and medical programs
  • Physical therapy and rehabilitation education
  • Sports science and kinesiology programs
  • Orthopedic and clinical training environments
  • Advanced biology and human movement studies

These models provide consistent support for teaching joint mechanics, structural alignment, and functional movement within the limbs.

Supporting Movement-Based and Functional Anatomy Learning

Erler-Zimmer 3D extremity models help learners understand how individual components of the limbs contribute to overall motion and stability. By presenting anatomy in a functional context, these models support deeper comprehension of coordination, load distribution, and biomechanical relationships.

Whether used for demonstration, structured coursework, or advanced study, Erler-Zimmer 3D extremity models provide reliable tools for teaching limb anatomy and movement in a clear and engaging way.

Erler-Zimmer 3D Extremity Models - FAQ

Answers to the procurement and technical questions lab coordinators ask most — manufacturer comparisons, replacement parts, lead times, bulk ordering, and model identification.

Erler-Zimmer 3D Extremity Models
They are designed to teach the structure and function of the arms and legs, including how joints move and how different anatomical components interact during motion.
Yes, many extremity models include articulated joints that allow demonstration of natural movement and range of motion.
Yes, they are commonly used in rehabilitation and therapy education to study movement patterns and structural alignment.
They typically focus on the upper limbs (shoulder, arm, hand) and lower limbs (hip, leg, foot).
Yes, they support learning about how forces, motion, and structure work together in human movement.
Yes, they are widely used in kinesiology and sports science to study performance, movement, and injury-related anatomy.
Some models include muscles and connective tissues, while others focus primarily on skeletal and joint anatomy.
Students and professionals in medical, therapy, sports science, and anatomy programs benefit from using these models to study limb function and structure.