Chris Mallac explains the etiology of sinus tarsi syndrome, and outlines diagnosis and management options for clinicians.
Sinus tarsi syndrome (STS) is a frequently misdiagnosed condition in which patients have pain over the lateral aspect of the ankle (the sinus tarsi region) with an ‘unstable’ sensation in the rearfoot. STS sufferers usually have a history of an inversion ankle injury, which may damage the usual lateral ankle ligaments, leading to chronic pain in and around the sinus tarsi weeks to months after the injury.
The sinus tarsi has been compared with the intercondylar fossa of the knee(1), and forms part of the subtalar joint complex. The sinus tarsi is the opening of the talocalcaneal sulcus, which is shaped like a long funnel. It has a large anterolateral opening, narrowing down to a smaller posteromedial opening. The anterior opening is found anterior and inferior to the lateral malleolus, while the posterior opening sits behind the sustentaculum tali below the medial malleolus. The inside of the sinus tarsi tunnel is filled with a host of numerous structures (see Figure 1). These include:
The main ligament is the ITCL. This is a wide and very strong ligament that originates from a broad attachment in the middle of the canal on the surface of the calcaneus and runs anteromedially to the deepest portion of the tarsal canal, where it inserts on the talus. The CL is a smaller band, which has its origin on the lateral calcaneus, just medial to the attachment of the extensor retinaculum of the foot, and passes medially through the centre of the canal as it inserts on the talus(2).
A recent study published described new findings on the anatomical relationship between the capsules and each ligamentous structure of the subtalar joint(3). It demonstrated (in a cadaveric study) that the tarsal canal and sinus consisted of three structured layers:
The tarsal canal ligaments maintain alignment between the talus and calcaneus and limit inversion. The main stabilising ligament of the lateral ankle is the calcaneofibular ligament. In addition, the ITCL is taut when the foot is supinated, and the CL helps resist hindfoot varus forces. With inversion trauma, the ligaments are usually injured in the following order: anterior talofibular ligament (ATFL), calcaneofibular ligament (CFL), CL, and ITCL. The more severe the injury, the more of these ligaments are injured. Thus, tarsal canal ligament injury never occurs as an isolated lesion with an inversion sprain; it will also be associated with damage to the ATFL and/or the CFL(1, 4).
The syndrome known as STS was first described by O’Connor in 1958(5) and the true incidence of STS is unknown. STS has been associated with ankle sprains that may also result in talocrural joint instability(1). Some key findings between the correlation of ankle sprain and STS include:
Due to the abundance of synovial tissue, the sinus tarsi is prone to synovitis and inflammation when injured. Injury to the sinus tarsi falls into three broad categories:
Because the pain usually presents months after an injury to the lateral ankle ligaments, STS is often misdiagnosed, and STS may often simply be confused with chronic ankle instability. Some of the features that may alert the practitioner that the patient has a STS include(1-5):
There is no definitive test for STS. However, stability of the subtalar joint may be assessed with medial and lateral subtalar joint glides performed by moving the calcaneus over a stabilised talus in the transverse plane, and with subtalar joint distraction (7, 10). One test has been described by Therman et al (1998), which aims to assess stability of the subtalar joint(12). This is performed as follows:
Reproduction of the athletes feeling of instability or giving way may be reproduced by having the athlete single leg stand on the affected side and perform rotating motions of the leg and foot, which also produces their symptoms. The definitive diagnosis is usually an injection of local anaesthetic into the sinus tarsi to eliminate pain with movement and testing(13).
Plain film X-ray does not provide a great deal of information regarding injury to the sinus tarsi. Radiographs of the subtalar joint are usually performed with Broden stress views, which are a series of oblique-lateral views performed with the ankle and foot placed in inverted and supinated positions.
Magnetic resonance imaging (MRI) is the best method to visualise the structure within the sinus tarsi, especially the ITCL and CL(11). The most distinct finding for individuals with STS is a bright signal seen on T2-weighted images found in the area for sinus tarsal adipose tissue; this represents an infiltration or replacement of this tissue with inflammatory cells and fibrotic tissue(14). The MRI findings may also show degenerative changes in the subtalar joint(15). However, the gold standard for any intra-articular injury, including injury to the sinus tarsi, is arthroscopic investigation(16):
Managing STS usually begins with conservative measures prior to surgical consideration. Treatment may include:
Subtalar joint glide: Position the patient in side lying with affected side down, Bend the knee to 100 degrees, placing the foot over the edge of the bed. Place a seatbelt looped around the lower thigh and around the midfoot and tighten the belt so that the ankle is locked into dorsiflexion. Place one hand under the fibula to protect the fibula from the edge of the bed while the other hand grasps the medial calcaneus and apply a gentle downward force to the calcaneus. This will glide the calcaneus laterally in relation to the talus.
Athletes who fail conservative management may need arthroscopic exploration and reconstruction of the subtalar joint in order to return to their athletic pursuits. The options available that have been described in the literature include:
Athletes who undergo ligamentous reconstructions are ususally immobilized for a 6-week period, followed by a rehabilitation program to regain normal ankle mobility, strength, and balance. Return to athletic activities usually begins at 4-6 months post-operatively(22). Common post-operative problems are transient loss of sensation of the lateral ankle and foot and persistent peroneal weakness(24).
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