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  2. Human skeletal changes due to bipedalism - Wikipedia

    en.wikipedia.org/wiki/Human_skeletal_changes_due...

    The foramen magnum is located inferiorly under the skull, which puts much of the weight of the head behind the spine. The flat human face helps to maintain balance on the occipital condyles . Because of this, the erect position of the head is possible without the prominent supraorbital ridges and the strong muscular attachments found in, for ...

  3. Facultative bipedalism - Wikipedia

    en.wikipedia.org/wiki/Facultative_bipedalism

    A chimpanzee standing on two legs. Apes in closed forest habitats (habitats enclosed by trees) are considered to be more bipedal than chimpanzees and baboons, both when they are standing stationary or moving bipedally. [2] The proportions of the foot in the gorilla are better adapted to

  4. Comparative foot morphology - Wikipedia

    en.wikipedia.org/wiki/Comparative_foot_morphology

    Skeletons of a human and an elephant. Comparative foot morphology involves comparing the form of distal limb structures of a variety of terrestrial vertebrates.Understanding the role that the foot plays for each type of organism must take account of the differences in body type, foot shape, arrangement of structures, loading conditions and other variables.

  5. Bipedalism - Wikipedia

    en.wikipedia.org/wiki/Bipedalism

    Likewise in humans, the quadriceps and hamstring muscles of the thigh are both so crucial to bipedal activities that each alone is much larger than the well-developed biceps of the arms. In addition to the leg muscles, the increased size of the gluteus maximus in humans is an important adaptation as it provides support and stability to the ...

  6. Foramen magnum - Wikipedia

    en.wikipedia.org/wiki/Foramen_magnum

    The anterior foramen magnum shifts the weight of the body more to the mammals' pelvis and femur, present in some primates, like great apes. With a posterior foramen magnum, the alignment and weight of the body falls more lateral under the head This allows for humans and other bipedal mammals to be able to walk on two limbs.

  7. Muscular evolution in humans - Wikipedia

    en.wikipedia.org/wiki/Muscular_evolution_in_humans

    The plantaris muscle in the foot which helped our ancestors grab and manipulate objects like chimps do, has adapted to its new evolutionary role appropriately, becoming so underdeveloped that it cannot grip or grab anything, the foot has grown more elongated as a result and now 9% of humans are born without it. Homo sapiens benefitted by ...

  8. List of anatomical variations - Wikipedia

    en.wikipedia.org/wiki/List_of_anatomical_variations

    Extensor carpi radialis tertius muscle - or extensor carpi radialis accessorius; Linburg-Comstock variation - or conjoint flexor pollicis longus and flexor digitorum profundus of the index; Sternalis muscle - or rectus thoracis; Psoas minor muscle; Palmaris profundus muscle; Pterygoideus proprius muscle; Styloauricularis muscle; Transversus ...

  9. List of foramina of the human body - Wikipedia

    en.wikipedia.org/wiki/List_of_foramina_of_the...

    Apical foramen, the opening at the tip of the root of a tooth; Foramen ovale (heart), an opening between the venous and arterial sides of the fetal heart; Foramen transversarium, one of a pair of openings in each cervical vertebra, in which the vertebral artery travels; Greater sciatic foramen, a major foramen of the pelvis