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This is a high-precision 3D model of a Multipolar Neuron, engineered specifically for high-end visualization and additive manufacturing. The design features a unique reticular/lattice structure on the Soma and Myelin Sheath, which significantly reduces material usage while maintaining structural integrity—perfect for SLA, DLP, or high-detail FDM printing.
The model provides a clear, anatomical representation of neural signal transmission, showcasing the intricate connections between the dendrites and the axon terminals.Key Features3D Print Optimized: The internal lattice structure is designed to be self-supporting in many orientations and provides a modern, tech-biological aesthetic.
Anatomical Accuracy: Features all primary neural components: Soma (Cell Body), Dendrites, Nucleus, Axon, Myelin Sheath (Nodes of Ranvier), and Axon Terminals.
Clean Topology: Optimized mesh flow to ensure high-quality renders and error-free slicing for 3D printing.
Scalability: Designed to look impressive as a small desktop piece or a large-scale educational display.
Technical SpecificationsFile Formats: .STL (Ready to print), .OBJ, .FBX, .BLEND
Geometry: Manifold/Watertight mesh with no non-manifold edges.
Scale: Metric system; default size is optimized for desktop display but can be scaled 50%-500% without loss of detail.
Resolution: High-poly detail for smooth curves on dendrites and synaptic boutons.
Detailed Anatomical ComponentsSoma & Dendrites: Features a stylized lattice exterior that reveals the internal Nucleus.
Axon with Myelin Sheath: Segmented myelin sheath sections separated by clear Nodes of Ranvier to demonstrate signal saltatory conduction.
Axon Terminals: Fine-branching terminals ending in synaptic boutons (terminal buttons).
Ideal Use CasesNeurological Research: Physical tactile models for studying neural pathways.
Medical Education: Visual aids for neuroscience, biology, and medical students.
Museum & Exhibition: High-detail displays for science centers.
Medical VR/AR: Optimized for use in medical simulation software.
REVIEWS & COMMENTS
accuracy, and usability.
