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PubMed · 3374640

[The sprained ankle].

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B van Linge. 1988-04-09. [The sprained ankle].. https://pubmed.ncbi.nlm.nih.gov/3374640/

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The effect of an ankle brace on the 3-dimensional kinematics and tibio-talar contact condition for lateral ankle sprains.

Ten fresh-frozen cadaveric ankles were studied to investigate the effect of an ankle brace (Air-Stirrup) on the three-dimensional (3-D) motion and contact-pressure distribution of the talo-tibial joint with lateral ligamentous injury. Three-dimensional motion and contact-pressure distribution were simultaneously measured under dynamic conditions employing a direct linear-transformation technique and a dynamic-pressure sensor, respectively. Inversion increased significantly upon severing of the anterior talo-fibular (ATF) ligament and calcaneo-fibular (CF) ligaments; however, restoration to the intact level was observed following application of the ankle brace. Internal rotation also increased upon severing of the lateral ligaments in the plantar flexion; however, this difference was not altered by using the ankle brace. The contact area on the articular surface of the talus shifted from posterior to anterior between plantar flexion and dorsal flexion; additionally, a high pressure area was evident in the medial aspect of the talus following severing of the lateral ligaments. Upon application of the ankle brace, however, no significant changes were apparent in the contact condition. The results of this study suggest that stabilization against inversion is the major function of braces in terms of protection of ankle sprains. Ankle sprains, however, often occur in combinations of inversion, plantar flexion and internal rotation; therefore, restriction of plantar flexion and internal rotation may also be an important function of the ankle brace.

Ankle Injuries↗

[Pilon tibiale fractures].

In the AO classification, the distal tibia is 43 and A type injuries are extra-articular, B type partial articular and C type involve the whole of the articular surface with complete separation of the joint from the diaphysis. The term pilon fracture should be confined to B(3) and C type fractures. The injury mechanism of pilon fractures will vary from a simple fall to a high energy road traffic accident, leading to increasing fracture comminution and greater soft tissue injury with more open fractures. Plain radiographs and CT-scans are diagnostic prerequisites. A spanning external fixator, with or without fixing the fibula, is the initial method of choice. The goal is to span the zone of injury with the fixator, to align the limb, to reduce the articular surface through very limited approaches, and to minimize complications related to treatment to maintain length and provisionally align the fracture. When soft tissue swelling has subsided definitive stabilization is performed. Bone grafting of defects is rarely necessary.

Ankle Injuries↗