DESCRIPTION

This Intestinal Microvilli and Bacteria Animated Model is a high-quality scientific visualization designed for medical presentations, biology education, research explanation videos, and cinematic microbiology scenes. The model accurately represents intestinal microvilli surfaces, surrounding bacterial colonies, and includes smooth animation that clearly illustrates micro-scale interactions inside the human gut.

Key Features

  • Scientifically Accurate DesignDetailed representation of microvilli structure, epithelial patterns, and bacterial distribution based on real biological references.High-Quality AnimationIncludes pre-built animated sequences such as:
  • Bacterial movement
  • Microvilli dynamic motion
  • Cellular surface interactionOptimized for RenderingClean topology and optimized materials ensure high-quality results for medical-grade visuals, scientific films, and educational content.Realistic Shading & TexturesProcedural and hand-painted textures replicate the microenvironment inside the intestine with biological accuracy.Flexible Workflow CompatibilityExport formats allow use in: Blender, Maya, Cinema 4D, 3ds Max, Unity, Unreal, and other 3D pipelines.

What’s Included

  • Intestinal microvilli model
  • Bacteria models (multiple clusters)
  • Pre-made animation sequences
  • Texture maps (if applicable)
  • Source file + export formats

Ideal Use Cases

  • Medical animation studios
  • Biology education and training
  • Scientific documentaries
  • Research presentations
  • Microbiology visualization
  • Explainer videos on digestion and gut health

File formats include:

  • BLEND
  • FBX
  • GLB

Model Specs:Polygon count: 331,758Vertex count: **332,046**Texture resolution: 2048*2048

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Intestinal Microvilli Animated 3D model

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Native file format
BLEND
Size: 46.5 MB
Renderer: Cycles | 4.3
Exchange formats
FBX
Autodesk FBX<br />File Size: 81.8 MB
GLTF
glTF<br />File Size: 3.33 MB
PNG
PNG<br />File Size: 27.7 MB
EXR
EXR<br />File Size: 27.7 MB
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3D Features
Animated
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Rigged
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Low-poly
PBR
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331758 polygons
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/ 332046 vertices
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