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  1. 6 Ιουν 2023 · Observations from this present study demonstrate a similar mechanically dependent passive interaction between the head, neck and forelimb of foetal foal cadavers, which correlates with synchronous head, neck and forelimb movement patterns observed in the live horse at a walk.

  2. 8 Ιουν 2016 · In the equine distal limb, the suspensory ligament and SDF tendon are primarily responsible for storing and releasing elastic energy. They are subject to high tendon strains as the limb is loaded during stance, especially at the trot.

  3. 18 Ιουν 2016 · Functional characteristics of tendon. Tendon and ligaments transmit forces to move the equine skeleton, or for support of the distal limb in the case of the digital flexor tendons, or, as ligaments, to maintain joint integrity. At heel strike, the loads rise the quickest in the soft tissue structures primarily supporting the metacarpo ...

  4. 18 Οκτ 2021 · Evaluation of tachykinins and their receptors to determine sensory innervation in the dorsal hoof wall and insertion of the distal sesamoidean impar ligament and deep digital flexor tendon on the distal phalanx in healthy feet of horses

  5. 8 Ιουλ 2016 · Tendons and ligaments. Horses can attain high speeds largely because specific tendons and ligaments store and return elastic strain energy as the foot is set down and then lifted. This, effectively, halves muscular work during galloping.

  6. 28 Ιουλ 2016 · The dorsally oriented MT heads in the human forefoot are thought to increase the dorsiflexion range of motion (ROM) at the MTPJs 18, 19 by providing more dorsal articular surface area on...

  7. The forefoot is designed to receive significant force. It plays a major role in maintaining the body position and balance in standing and during ambulation. Like the two other parts of the unit, the forefoot is composed of muscles, tendons, ligaments, several bones, and joints.

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