Human Muscular System 3D Model – Realistic Low-Poly Anatomy, FBX, OBJ, Blender
Anatomy

Human Muscular System 3D Model – Realistic Low-Poly Anatomy, FBX, OBJ, Blender

$18

File Formats

Formats

.blend.fbx.textures

Features

File & scene

Binary FBX No unsupported objects

Geometry

No N-gons No faceted geometry Manifold geometry Polygon mesh

Textures & material

PBR textures No embed textures Square textures Power of 2 texture sizes Assigned materials

UVs & naming

No UV overlaps UV unwrapped model Allowed characters

3D Features

Rigged Low-poly PBR Textures Materials UV Mapping

Unwrapped UVs

Non-overlapping

Download information

After purchase, you will receive an email within several hours with a download link to access your files.

Description

Explore the intricacies of the human body with our Human Muscular System 3D Model, expertly crafted for educational and medical visualization. This anatomically accurate low-poly model captures every major muscle group, making it an essential resource for anatomy studies and medical animations.

The model features realistic muscle structures and is designed with clean topology, ensuring a smooth experience in any application. Whether you are creating educational content, conducting research, or developing VR/AR experiences, this 3D asset is a must-have for professionals in the medical and educational fields.

  • File Formats: Binary FBX, OBJ, Blender
  • Geometry: No N-gons, manifold geometry, clean topology
  • Textures: PBR textures, power of 2 sizes, properly assigned materials
  • UV Mapping: Non-overlapping UVs, fully unwrapped
  • Rigged: Yes, perfect for animations
  • Low-poly design, optimized for performance

This model is ideal for educators, animators, and researchers looking to enhance their projects with a detailed representation of the muscular system. Its versatility makes it suitable for games, animations, and educational content.

Download now and bring your projects to life with this high-quality 3D model.

Tags

anatomicalbodycharactereducationhumanmedicalmusclesmuscularrealisticscienceskeletalstructuresystemtissuevisualization