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  2. ZygoteBody - Wikipedia

    en.wikipedia.org/wiki/ZygoteBody

    ZygoteBody, formerly Google Body, is a web application by Zygote Media Group that renders manipulable 3D anatomical models of the human body. Several layers, from muscle tissues down to blood vessels, can be removed or made transparent to allow better study of individual body parts. Most of the body parts are labelled and are searchable.

  3. Skeletal animation - Wikipedia

    en.wikipedia.org/wiki/Skeletal_animation

    Virtual anatomy properties such as weight of limbs, muscle reaction, bone strength, and joint constraints may be added for realistic bouncing, buckling, fracture, and tumbling effects. Some popular software packages within which rigs may be created include Blender , Autodesk Maya , SideFX Houdini , Autodesk 3ds Max , Maxon Cinema 4D , Unreal ...

  4. MakeHuman - Wikipedia

    en.wikipedia.org/wiki/MakeHuman

    MakeHuman is a free and open source 3D computer graphics middleware designed for the prototyping of photorealistic humanoids. It is developed by a community of programmers, artists, and academics interested in 3D character modeling .

  5. T-pose - Wikipedia

    en.wikipedia.org/wiki/T-pose

    Example of a T-posing model in MakeHuman software.. In computer animation, a T-pose is a default posing for a humanoid 3D model's skeleton before it is animated. [1] It is called so because of its shape: the straight legs and arms of a humanoid model combine to form a capital letter T.

  6. Anatomography - Wikipedia

    en.wikipedia.org/wiki/Anatomography

    The Anatomography website is maintained by the DBCLS (Database Center for Life Science) non-profit research institute located at the University of Tokyo. Anatomical diagrams generated by Anatomography, and 3D polygon data used on the website (called BodyParts3D), are freely available under the Creative Commons Attribution-ShareAlike license.

  7. Study of animal locomotion - Wikipedia

    en.wikipedia.org/wiki/Study_of_animal_locomotion

    These skeletal models can be built using a variety of 3D modeling programs, such as Blender and Opensim Creator. After the skeletal model is built, the next step is to accurately define the attachment points of muscle to the rigid bodies. This assignment is crucial for the rigid bodies to be articulated in a naturalistic way.