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  1. 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.

  2. 18 Οκτ 2021 · The tremendous weight-bearing forces transmitted through the 4 digits of the horse are accommodated within physiologic norms because of the highly refined and specialized gross, microscopic, and functional anatomy of the equine foot. This article provides an overview of foot anatomy and physiology.

  3. 18 Ιουν 2016 · 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-phalangeal joint; the SDFT and the SL.

  4. 1 Απρ 1989 · Support is rendered to each cartilage by four ligaments from the cartilage to (1) the proximal phalanx, (2) the middle phalanx, (3) the distal phalanx, and (4) the digital extensor tendon (see Fig. 7).

  5. 1 Απρ 2002 · Tendon and ligament injuries can occur to horses in all disciplines–even a lightly used trail horse. Once a tendon injury occurs, there often is a lengthy recuperation.

  6. This article traces the characteristics, origin, distribution, and function of alternative lateral horse gaits, i.e., intermediate speed lateral-sequence gaits.

  7. 6 Νοε 2019 · In this installment, we focus on the relationships between muscles, the tendons of muscles, and yellow ligaments. In his Atlas of Equine Anatomy for example, veterinarian Chris Pasquini correctly labels the suspensory apparatus found in the legs of horses as “interosseous (suspensory lig.)”.

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