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Human Ankle Skeleton Model with Visible Tendons is a three-dimensional model of the ankle joint, showcasing detailed skeletal structure alongside accurately placed tendons for anatomical study.
This anatomical representation includes the tibia, fibula, talus, calcaneus, and other bones, accompanied by tendon groups that illustrate the foot’s complex connective network. The tendons are modeled with semi-transparent textures to reveal underlying bone alignment. Mounted on a clean display stand, this model is ideal for close-up inspection and demonstration in medical and academic contexts.
For orthopedic education, physiotherapy instruction, medical animation, sports science, podiatric training, anatomy visualization, injury prevention programs, digital human anatomy libraries, AR/VR applications in healthcare, and professional anatomical presentation.
Human Ankle Skeleton Model with Visible Tendons is a high quality, photo real 3d model that will enhance detail and realism to any of your rendering projects. The model has a fully textured, detailed design that allows for close-up renders, and was originally modeled in 3ds Max and rendered with V-Ray. Renders have no postprocessing!
Hope you like it!
Features:
- High quality polygonal model, has real dimensions. Easy to merge into your scene.
- Units: cm
- The model was created with the optimal number of polygons. (The Meshsmooth modifier is assigned to the original mesh. Easy to increase mesh resolution if necessary.)
- All the objects come with complete UVsAll textures and materials are included and mapped. (All colors can be easily modified.)
- All objects are logically named and grouped for ease of objects selection and scene management.
- No part-name confusion when importing several models into a scene.
- No cleaning up necessary (Model does not include any backgrounds or scenes used in preview images.) - just drop model into your scene.
- No special plugin needed to open scene.
- PBR Materials
Textures Formats:-6 png (4096x4096)-Dimensions 11,81 x 9,91 x H26,31cm
(c) 3d_molier International
REVIEWS & COMMENTS
accuracy, and usability.
