Intestinal Villi Animation 3D Model – High Poly PBR Asset, FBX, OBJ
Anatomy

Intestinal Villi Animation 3D Model – High Poly PBR Asset, FBX, OBJ

$58.8

File Formats

Native Format

.c4d
Default | 24 • 9.93 MB

Exchange Formats

.obj.autodesk fbx.stereolithography.alembic.marmoset toolbag.3d studio

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

Animated Textures Materials Plugins Used

Unwrapped UVs

Unknown

Download information

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

Description

Discover the intricate beauty of the digestive system with our Intestinal Villi Animation 3D Model. This high-quality, animated asset is expertly crafted to enhance your medical visualizations and educational projects.

Featuring a polygon mesh with a vertex count of 231056 and a polygon count of 461764, this model is designed with precision. It is fully UV unwrapped with no N-gons or unsupported objects, ensuring a seamless integration into your projects. The PBR textures included guarantee a realistic look and feel, making it ideal for both animations and static renders.

  • File Formats: Binary FBX, OBJ, STL, 3DS, C4D
  • Geometry: Manifold geometry, No N-gons, No faceted geometry
  • Textures & Materials: PBR textures, Assigned materials, Square textures
  • Poly Count: 461764
  • Vertex Count: 231056

This asset is perfect for game developers, animators, and educators looking to illustrate the complexities of the human digestive system. With its realistic rendering capabilities, it serves as an excellent resource for both digital art and scientific presentations.

Download now to elevate your project with this stunning asset!

Tags

cavitycharacterdigestiveintestinallacteallaminalumenmedicalmicrosciencesystem