Posterior Ankle Pain After Ankle Sprain: Bony and Soft Tissue Impingement and Flexor Hallucis Longus (FHL) Tenosynovitis

2021 ◽  
Vol 20 (1) ◽  
pp. 14-18
Author(s):  
Wen Chao ◽  
Wonyong Lee
2020 ◽  
Vol 14 (3) ◽  
pp. 260-263
Author(s):  
Guillermo Arrondo ◽  
Daniel Gómez ◽  
Germán Joannas ◽  
Xavier Martín-Oliva ◽  
Matías Iglesias ◽  
...  

Objective: Impingement syndromes are recognized as an important cause of chronic ankle pain, which results from the entrapment of an inflamed soft-tissue component between the osteophytes. The predominant site of occurrence is the anterolateral aspect of the ankle for soft-tissue impingement, and anteromedial aspect for bony impingement. Symptoms related to the physical impact of bone or soft-tissue pain often result in limited ankle range of motion. Methods: We conducted a retrospective study of 34 patients (34 ankles) with anteromedial bony impingement. All patients underwent arthroscopy, with a mean follow-up of 34 months. Results: All osteophytes were removed, and the ankle range of motion improved. The AOFAS score improved from 73 preoperatively to 95 postoperatively. Conclusion: The arthroscopic removal of the anteromedial osteophytes of the ankle had excellent functional results. It is an effective procedure that allows rapid patient recovery. Level of Evidence IV; Therapeutic Studies; Case Series.


2004 ◽  
pp. 322-325
Author(s):  
Daniel J. Gurley ◽  
Larry D. Field ◽  
Felix H. Savoie

2016 ◽  
Vol 33 (4) ◽  
pp. 503-520 ◽  
Author(s):  
Amber M. Shane ◽  
Christopher L. Reeves ◽  
Ryan Vazales ◽  
Zachary Farley

Author(s):  
Pedro Diniz ◽  
Duarte André Sousa ◽  
Jorge Pablo Batista ◽  
Nasef Abdelatif ◽  
Helder Pereira

The aim of this paper is to discuss anterior ankle impingement (AAI) regarding diagnosis, interventions, techniques and future perspectives. AAI is a pain syndrome due to soft tissue or bony impingement. Impingement caused by soft tissues is frequently found in the anterolateral compartment of the ankle, whereas impingement caused by bony spurs is generally located in the anteromedial compartment. Typical complaints are chronic ankle pain, limited dorsiflexion and swelling. The most important feature is recognisable tenderness on palpation, which helps distinguish this condition from an osteochondral lesion, which is characterised with deep ankle pain. Although the diagnosis is mainly based on clinical assessment, imaging is helpful for differential diagnosis and preoperative planning. Standard X-rays, using anteroposterior, lateral and an anteromedial oblique view for detecting bony spurs, are sufficient to make the diagnosis. CT can be used to accurately assess the extent and size of a bony spur. MRI is useful to evaluate soft tissue lesions and exclude concomitant pathology, like osteochondral lesions or stress fractures. Conservative treatment is the first-line treatment. In cases where conservative treatment has been unsuccessful, surgery may be indicated. Arthroscopic debridement is considered the gold standard to treat AAI. Rehabilitation protocol includes full weight-bearing and exercises to stimulate active dorsiflexion-plantar flexion and avoid stiffness.


2018 ◽  
Vol 3 (3) ◽  
pp. 2473011418S0020
Author(s):  
Cesar de Cesar Netto ◽  
Lauren Roberts ◽  
Alexandre Godoy Dos Santos ◽  
Jackson Staggers ◽  
Sung Lee ◽  
...  

Category: Trauma Introduction/Purpose: Fractures of the talar neck and body can be fixed with percutaneously placed screws directed from anterior to posterior or posterior to anterior. The latter has been found to be biomechanically and anatomically superior. Percutaneous pin and screw placement poses anatomic risks for posterolateral and posteromedial neurovascular and tendinous structures. The objective of this study was to enumerate the number of trials for proper placement of two parallel screws and to determine the injury rate to neurovascular and tendinous structures. Methods: Eleven fresh frozen cadaver limbs were used. 2.0 mm guide wires from the Stryker (Selzach, Switzerland) 5.0-mm headless cannulated set were percutaneously placed (under fluoroscopic guidance) into the distal posterolateral aspect of the ankle. All surgical procedures were performed by a fellowship-trained foot and ankle surgeon. Malpositioned pins were left intact to allow later assessment of soft tissue injury. The number of guide wires needed to achieve an acceptable positioning of the implant was noted. Acceptable positioning was defined as in line with the talar neck axis in both AP and lateral fluoroscopic views. After a layered dissection from the skin to the tibia, we evaluated neurovascular and tendinous injuries, and measured the shortest distance between the closest guide pin and the soft tissue structures, using a precision digital caliper. Results: The mean number of guide wires needed to achieve acceptable positioning for 2 parallel screws was 2.91 ± 0.70 (range, 2 - 5). The mean distances between the closest guide pin and the soft tissue structures of interest were: Achilles tendon, 0.53 ± 0.94 mm; flexor hallucis longus tendon, 6.62 ± 3.24 mm; peroneal tendons, 7.51 ± 2.92 mm; and posteromedial neurovascular bundle, 11.73 ± 3.48 mm. The sural bundle was injured in all the specimens, with 8/11 (72.7%) in direct contact with the guide pin and 3/11 (17.3%) having been transected. The peroneal tendons were transected in 1/11 (9%) of the specimens. The Achilles tendon was in contact with the guide pin in 6/11 (54.5%) specimens and transected in 2/11 (18.2%) specimens. Conclusion: The placement of posterior to anterior percutaneous screws for talar neck fixation is technically demanding and multiple guide pins are needed. Our cadaveric study showed that important tendinous and neurovascular structures are in close proximity with the guide pins and that the sural bundle was injured in 100% of the cases. We advise performing a formal small posterolateral approach for proper visualization and retraction of structures at risk. Regardless, adequate patient education about the high risk of injury from this procedure is crucial.


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