
Surgical nurse in red uniform smiling 138 Low-poly 3D model
cgtrader
This is a 3D scanned model created using photogrammetry techniques in our custom-built 3D scanner, equipped with Canon 200D cameras. The model is a true-to-life representation of an adult woman of Caucasian appearance, dressed in a uniform as a surgical doctor. The pose is casual and relaxed, making it perfect for use in architectural visualizations, background characters, product presentations, and more. This detailed model is ready for immediate use in architectural visualizations, and can be further refined and sculpted in ZBrush. Technical Details: * Digital double scan model * Decimated model with 100k triangles * Sufficiently clean * PBR textures (8K diffuse, normal, specular maps) * Non-overlapping UV map The download package includes a Cinema 4D project file with Redshift shaders, as well as OBJ and FBX files compatible with 3ds Max, Maya, Unreal Engine, Unity, and Blender. All textures are included in the Tex folder within the main archive. Bonus: The package also includes a high-poly (.ztl tool) clean and retopologized model, automatically processed via ZRemesher in zBrush. This allows for easy editing and customization of the purchased product. About Us: We're a passionate photogrammetry studio based in Kyiv, dedicated to creating 3D models that exceed expectations. We offer full-body scanning, VFX and gaming 3D scanning, post-production services including model clean-up and rigging, hair and clothes reconstruction, deep PBR texturing, and expression-ready blending. We love transforming ideas into high-quality animation-ready 3D models with PBR texture sets. Stay tuned for more scans released every week! 3D Everything
With this file you will be able to print Surgical nurse in red uniform smiling 138 Low-poly 3D model with your 3D printer. Click on the button and save the file on your computer to work, edit or customize your design. You can also find more 3D designs for printers on Surgical nurse in red uniform smiling 138 Low-poly 3D model.