Female dancer 17 Low-poly  3D model

Female dancer 17 Low-poly 3D model

cgtrader

This is a 3D scanned model crafted using the photogrammetry technique on our custom-built 3D scanner, equipped with multiple Canon 200D cameras. The scan was refined through Reality Capture and retopologized automatically via ZRemesher within Zbrush. A true human size and highly detailed model of a sporty, beautiful young woman with Caucasian features is showcased in this asset. Captured in a casual pose, the model perfectly suits a wide range of architectural visualizations, including sport grounds, gyms, beaches, and more. This product is ready for immediate use in architectural visualizations and can be further rendered and detailed sculpted within Zbrush. Key technical specifications include: Digital double scan model Low-poly model Fully quad topology Sufficiently clean mesh Ready for subdivision 8K texture color map Non-overlapping UV map The downloadable package contains an OBJ file compatible with various software platforms, including 3ds Max, Maya, Cinema 4D, Unreal Engine, Unity, Blender, and more. Bonus: included in this package is a high-poly (ZTL tool) version of the raw 3D scanned model in ZBrush, allowing for detailed editing of the purchased product. About Us: We are an experienced photogrammetry studio based in Kyiv, passionate about creating high-quality 3D assets. Our expertise encompasses full body scanning, 3D scanning for VFX and Gaming, post-production services like clean-up, rigging, hair and clothes reconstruction, deep PBR texturing, expressions for blending, and character creation from scratch. Follow us to stay updated on our latest releases, with new scans released every week. Explore the world of 3D assets!

Download Model from cgtrader

With this file you will be able to print Female dancer 17 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 Female dancer 17 Low-poly 3D model.