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Fusão subtalar

Updated Sep 2026
Illustration: foot

Esta página foi traduzida automaticamente e ainda não foi verificada por um médico. A versão em inglês é a versão oficial.

Por que esta cirurgia foi recomendada

A fusão subtalar é uma opção quando a própria articulação é a causa da dor. A articulação subtalar fica abaixo do tornozelo e permite que o pé se incline e gire em terrenos irregulares. A fusão, também chamada de artrodese, consiste em unir os ossos dessa articulação para que não haja mais atrito entre eles. Uma vez que os ossos se consolidem numa única peça sólida, o movimento doloroso cessa.

Normalmente indicamos esta cirurgia para casos de artrite crônica após fratura do calcanhar, para pé chato doloroso decorrente de má formação articular ou para um calcanhar que se consolidou numa posição inadequada. Como se trata frequentemente de um problema de longa data, iniciamos o tratamento com medidas não cirúrgicas, como modificação das atividades físicas, fisioterapia, imobilização com talas ou uso de órteses; a cirurgia é considerada apenas quando essas medidas não produzem melhora suficiente. O objetivo é obter um pé estável e sem dor, permitindo que você volte a caminhar e ficar em pé confortavelmente.

Antes da operação

Para planejar a sua cirurgia, solicitamos exames de imagem do seu pé. Eles podem incluir radiografias com carga, nas quais você fica em pé enquanto as imagens são tiradas; às vezes também um tomografia computadorizada, que mostra os ossos em grande detalhe, ou uma ressonância magnética, que revela os tecidos moles, como tendões e ligamentos. Nossa equipe lhe dará instruções sobre o jejum: não deve ingerir alimentos nem líquidos nas sete horas anteriores à cirurgia. Pedimos sete horas em vez de seis para que a operação possa ser antecipada caso a agenda cirúrgica permita. Interrompa o uso de determinados medicamentos apenas se nós orientarmos; traga uma lista por escrito de todos os medicamentos que toma, incluindo comprimidos e remédios naturais. Use roupas largas e confortáveis e providencie alguém para levá-lo para casa, pois não poderá dirigir após a cirurgia. Caso tenha outras condições médicas, talvez seja necessário realizar exames de sangue ou uma consulta com o anestesista, o médico responsável pela aplicação da anestesia.

No dia da cirurgia

Você chega à unidade de admissão cirúrgica do hospital, onde será registrado e preparado para a sala de operações. Conhecerá o anestesista, o médico responsável por aplicar a anestesia. Esta cirurgia é realizada sob anestesia geral. Às vezes, um bloqueio nervoso regional é adicionado para alívio da dor pós-operatória; o anestesista conversará com você sobre isso no próprio dia. Em seguida, você é levado para a sala de operações, onde a cirurgia é realizada.

Você acorda na área de recuperação, onde enfermeiros cuidam de você enquanto a anestesia vai passando. Assim que seu estado se estabilizar, você será encaminhado para um quarto ou liberado para ir para casa, dependendo do tipo de procedimento e da evolução da recuperação. Algumas cirurgias de fusão subtalar são feitas como procedimentos ambulatoriais, portanto talvez você não precise passar a noite no hospital. Nossa equipe informará a você o que esperar da sua cirurgia.

Como é realizada a operação

A fusão subtalar consiste em unir os ossos da articulação subtalar para que cicatrizem como uma única peça sólida. Para isso, o cirurgião remove o restante da cartilagem lisa das superfícies articulares, ou seja, o tecido desgastado que tem causado dor. Em seguida, os ossos são mantidos juntos por meio de parafusos enquanto cicatrizam. Às vezes, é colocado entre eles um enxerto ósseo – material ósseo adicional que auxilia na união das duas superfícies.

Existem mais de uma maneira de acessar a articulação. Algumas cirurgias utilizam um único corte no lado externo do pé; outras empregam cirurgia minimamente invasiva, na qual o cirurgião atua através de dois ou três pequenos cortes, em vez de uma incisão maior. A escolha depende do seu pé, dos exames de imagem e da possibilidade de posicionar a articulação em uma posição adequada. Caso a articulação do tornozelo também esteja desgastada, a operação pode ser estendida para unir também o tornozelo e o osso do calcanhar, utilizando uma barra que passa pelo tornozelo até o calcanhar.

O cirurgião explicará qual abordagem é mais indicada para você antes de você assinar o termo de consentimento.

Após a operação

Você acorda na sala de recuperação, onde as enfermeiras ficam de olho em você enquanto o efeito da anestesia passa. Seu pé ficará coberto por curativos, e fornecemos analgésicos para mantê-lo confortável. Uma enfermeira verificará o ferimento, a circulação e como você está se sentindo antes de permitir que você se levante. A maioria das pessoas dá alguns passos com a ajuda de uma andador ou muletas no mesmo dia, sob a supervisão da nossa equipe. Como a anestesia pode deixá-lo sonolento e instável, por favor, providencie alguém para ficar com você nas primeiras 24 horas. Sua equipe informará se você poderá ir para casa no mesmo dia ou se precisará ficar uma noite no hospital. Deixamos o curativo por cerca de 10 dias; por favor, não o retire antes disso, a menos que lhe seja indicado. Trocamos ou retiramos o curativo quando o examinarmos.

Recuperação

Nos primeiros dias e semanas, o seu pé ficará dolorido e inchado. Isso é normal. O repouso, manter o pé elevado e os analgésicos que lhe prescrevemos ajudarão a aliviar o desconforto. O inchaço geralmente diminui gradualmente, e a dor cede à medida que os ossos começam a se unir.

Inicialmente, você não poderá colocar todo o peso no pé. Usará muletas ou uma andador para se locomover, e o pé ficará protegido por uma tala ou bota enquanto os ossos cicatrizam. O fisioterapeuta orientará você em exercícios simples para manter o restante da perna forte e a circulação ativa. Você poderá andar pela casa, preparar refeições e subir escadas com cuidado, mas precisará de ajuda com algumas tarefas diárias no início. Dormir com o pé elevado sobre travesseiros ajuda a reduzir o inchaço e torna as noites mais confortáveis.

O primeiro grande marco é quando vamos avaliá-lo e constatarmos que as feridas cicatrizaram. À medida que a recuperação avança, você passará das muletas para caminhar com o pé, primeiro com apoio e depois sem. Assim que os ossos se unirem completamente e o cirurgião considerar que a cicatrização foi adequada, você poderá aumentar gradualmente suas atividades. Caminhar distâncias maiores, retornar ao trabalho e voltar aos esportes acontecem em etapas, à medida que sua força e confiança retornam.

A recuperação varia de pessoa para pessoa. Seu cronograma pode ser diferente, e o cirurgião e o fisioterapeuta o guiarão em cada etapa.

O que pode dar errado

A maioria dos pacientes tem um bom resultado, mas, ocasionalmente, podem surgir problemas. O seu cirurgião e a equipe o monitoram de perto para detectar qualquer questão precocemente.

A principal preocupação após essa cirurgia é a ferida. Fique atento a vermelhidão que se espalha a partir do corte, a vazamento de líquido ou pus, ou a pele que parece quente ao toque e apresenta aparência inflamada. Uma dor profunda e latejante que não melhora com analgésicos comuns também é um sinal de alerta. Caso note algum desses sintomas, ligue imediatamente para a clínica, em vez de aguardar a próxima consulta.

Às vezes, os ossos não se unem conforme o planejado; isso é chamado de não-união. Você pode sentir um ruído de atrito ou estalos no pé, ou ainda dor que persiste meses após a cirurgia, em vez de desaparecer. Mencione isso na sua consulta de acompanhamento para que possamos solicitar exames de imagem e discutir os próximos passos.

Se a sua cirurgia também uniu o osso do tornozelo ao do calcanhar, a barra metálica ou os parafusos podem, ocasionalmente, causar irritação ou fratura óssea ao redor deles. Isso geralmente se manifesta como dor nova, alteração na sensação do pé ao caminhar, ou um estalo repentino seguido de dificuldade para colocar peso na perna. Se isso acontecer, entre em contato com a clínica imediatamente.

Em alguns casos, especialmente com determinadas formas do pé e lesões prévias, a pele e os tecidos moles ao redor do calcanhar podem ser mais frágeis. O seu cirurgião escolhe o método cirúrgico — ou seja, onde serão feitos os cortes — levando isso em conta, para favorecer uma cicatrização adequada da ferida. Se você tiver dúvidas sobre a aparência da ferida nas primeiras semanas, queremos saber disso.

Em um pequeno número de casos complexos, particularmente quando o pé apresenta deformidade grave ou dificuldade de cicatrização, pode ser necessária outra cirurgia para resolver o problema. O seu cirurgião conversará com você sobre isso previamente, caso se aplique ao seu caso.

A tabela de complicações nesta página lista as taxas típicas, caso você queira informações mais detalhadas.

Quando nos contatar

A maioria dos problemas aparece nas primeiras semanas, e o tratamento precoce facilita sua resolução. Contate-nos caso desenvolva febre, caso a vermelhidão ao redor do ferimento se espalhe ou caso líquido ou pus vazem dele. Contate-nos também se sentir dor intensa e súbita que os analgésicos comuns não aliviam. Procure atendimento de emergência se houver inchaço ou dor na panturrilha, ou dificuldade para respirar, pois esses podem ser sinais de coágulo sanguíneo. Procure atendimento de emergência se o pé ficar dormente, frio ou se você não conseguir mover os dedos. Em caso de dúvida, ligue para a clínica. Preferimos ouvir sobre uma preocupação pequena a deixar que algo grave passe despercebido.


Evidence & references

This is the clinical evidence summary written for health professionals. It is technical, and it lists the research this page was built from. You do not need to read it to understand your treatment or to make a decision about it.

Anatomy & Pathophysiology

Bony Anatomy

  • The ankle joint includes the tibia, talus, and fibula [2].
  • The talar dome is biconcave with a central talar sulcus [2].
  • The radius of curvature of the talar dome is greater laterally [2].
  • The talus features an anterior calcaneal surface, a posterior calcaneal surface, and a middle calcaneal surface [7].
  • The talus features an articular surface for the navicular and an articular surface for the calcaneonavicular ligament [7].
  • The talus features a groove for the flexor hallucis longus tendon [7].
  • The talus features a medial tubercle and a lateral tubercle [7].
  • The talus features an articular surface for the medial malleolus and an articular surface for the lateral malleolus [7].
  • The talus features an articular surface with the distal end of the tibia [7].
  • The talus features a sulcus tali [7].
  • The foot bones include the talus, navicular, cuneiform bones, cuboid, first metatarsal bone, fifth metatarsal bone, and calcaneus [10].
  • The foot possesses a transverse arch [10].

Ligaments

  • The deltoid ligament is composed of two layers [7].
  • The superficial layer of the deltoid ligament includes the tibionavicular and tibiocalcaneal ligaments [7].
  • The superficial layer of the deltoid ligament crosses both the ankle and subtalar joints [7].
  • The deep layer of the deltoid ligament includes the anterior and posterior tibiotalar ligaments [7].
  • The deep layer of the deltoid ligament crosses only the ankle joint [7].
  • The lateral fibular ligaments include the anterior talofibular ligament (ATFL), calcaneofibular ligament (CFL), and posterior talofibular ligament (PTFL) [7].
  • The ATFL is the weakest of the lateral ligaments and is intracapsular [7].
  • The ATFL is most commonly injured with a lateral ankle sprain [7].
  • The CFL crosses both the ankle and the subtalar joint [7].
  • Plantar flexion tightens the ATFL [7].
  • Inversion with neutral flexion tightens the CFL [7].
  • The interosseous talocalcaneal ligament is also known as the cervical ligament [10].
  • The interosseous talocalcaneal ligament attaches proximally to the talus and distally to the calcaneus [10].
  • The calcaneocuboid/calcaneonavicular ligament is also known as the bifurcate ligament [10].
  • The bifurcate ligament attaches proximally to the calcaneus and distally to the cuboid and navicular [10].
  • The calcaneocuboid-metatarsal ligament is also known as the long plantar ligament [10].
  • The long plantar ligament attaches proximally to the calcaneus and distally to the cuboid and first to fifth metatarsals [10].
  • The plantar calcaneocuboid ligament is also known as the short plantar ligament [10].
  • The short plantar ligament attaches proximally to the calcaneus and distally to the cuboid [10].
  • The plantar calcaneonavicular ligament is also known as the spring ligament [10].
  • The spring ligament attaches proximally to the sustentaculum tali and distally to the navicular [10].
  • The tarsometatarsal ligament is also known as the Lisfranc ligament [10].
  • The Lisfranc ligament attaches proximally to the medial cuneiform and distally to the base of the second metatarsal [10].
  • The tibionavicular ligament attaches proximally to the medial malleolus and distally to the navicular tuberosity [10].
  • The tibionavicular ligament limits talar external rotation [10].
  • The tibiocalcaneal ligament attaches proximally to the medial malleolus and distally to the sustentaculum tali [10].
  • The tibiocalcaneal ligament limits hindfoot eversion [10].
  • The anterior tibiotalar ligament attaches proximally to the medial malleolus and distally to the medial surface of the talus [10].
  • The anterior tibiotalar ligament limits lateral displacement of the talus and external rotation [10].
  • The posterior tibiotalar ligament attaches proximally to the medial malleolus and distally to the inner side of the talus [10].
  • The posterior tibiotalar ligament limits lateral displacement [10].
  • The anterior talofibular ligament attaches proximally to the lateral malleolus and distally transversely to the talus anteriorly [10].
  • The anterior talofibular ligament limits inversion in plantar flexion [10].
  • The calcaneofibular ligament attaches proximally to the lateral malleolus and distally obliquely to the calcaneus posteriorly [10].
  • The calcaneofibular ligament limits inversion in neutral or dorsiflexion [10].
  • The posterior talofibular ligament attaches proximally to the lateral malleolus and distally transversely to the talus posteriorly [10].
  • The posterior talofibular ligament limits posterior talus displacement and external rotation [10].

Neurovascular Anatomy

  • The tarsal tunnel is a fibroosseous tunnel within the posteromedial ankle and hindfoot [3].
  • The tibial nerve, posterior tibial artery, accompanying veins, posterior tibial tendon, flexor digitorum longus, and flexor hallucis longus tendons pass through the tarsal tunnel into the foot [3].
  • The flexor retinaculum acts as the roof of the tarsal tunnel [3].
  • The flexor retinaculum extends from the medial malleolus to the medial side of the calcaneal tuberosity [3].
  • The medial distal tibia, talus, and calcaneus make up the floor of the tarsal tunnel [3].
  • Septa projecting from the fibrous roof to the calcaneus separate the posterior tibial, flexor digitorum longus, and flexor hallucis longus tendons [3].
  • The tibial nerve divides into three terminal branches before reaching the foot: the medial calcaneal nerve (MCN), lateral plantar nerve (LPN), and medial plantar nerve (MPN) [3].
  • The tibial nerve typically branches within the tarsal tunnel just proximal and deep to the upper edge of the abductor hallucis muscle [3].
  • The MCN branches first from the tibial nerve and travels posteriorly to the subcutaneous tissue [3].
  • The LPN passes under the abductor hallucis, over the medial fascia of the quadratus plantae, deep to the plantar fascia, and under the heel to the flexor digitorum brevis [3].
  • The LPN terminates in the fourth web space and supplies a branch to the third web space [3].
  • The LPN supplies motor branches to the intrinsic muscles [3].
  • The MPN innervates the abductor hallucis and continues under the abductor and plantar fascia to form common digital nerves [3].
  • The common digital nerves from the MPN terminate in the first, second, and third web spaces [3].
  • The MPN supplies motor branches to the interossei and lumbricals [3].
  • The dorsalis pedis artery is a continuation of the anterior tibial artery that passes deep under the inferior extensor retinaculum [4].
  • As the dorsalis pedis artery passes anterior to the ankle joint, it lies between the tendons of the extensor hallucis longus medially and the extensor digitorum longus laterally [4].
  • The deep peroneal nerve lies immediately lateral to the dorsalis pedis artery [4].
  • The dorsalis pedis artery gives off medial and lateral tarsal arteries as it passes over the tarsal bones [4].
  • The arcuate artery arises from the dorsalis pedis artery in the region of the bases of the metatarsals and passes laterally [4].
  • The second, third, and fourth dorsal metatarsal arteries arise from the arcuate artery [4].
  • The first dorsal metatarsal artery is the continuation of the dorsalis pedis artery [4].
  • The first dorsal metatarsal artery runs distally on the dorsal surface of the first dorsal interosseous muscle [4].
  • The deep plantar, or communicating, artery leaves the dorsalis pedis at the base of the first metatarsal [4].
  • The deep plantar artery passes toward the plantar surface of the foot between the heads of the first dorsal interosseous muscle [4].
  • The deep plantar artery communicates with the lateral plantar artery to complete the plantar arterial arch [4].
  • The first dorsal metatarsal artery may lie superficial to or within the substance of the first dorsal interosseous muscle in 78% to 88% of feet [4].
  • The first dorsal metatarsal artery may lie plantar to the first metatarsal in 12% to 22% of feet [4].
  • The diameter of the dorsalis pedis artery may range from 1.8 to 3 mm [4].
  • The venous drainage from the dorsum of the toes and foot flows into the dorsal venous arches, feeding the greater and lesser saphenous systems [4].
  • The dorsal surfaces of the toes and foot receive sensory innervation through branches of the superficial peroneal nerve [4].
  • The first web space is innervated by the deep peroneal nerve [4].
  • The plantar surface of the foot is innervated by the digital branches of the medial plantar nerve [4].

Muscular Anatomy

  • The major tendons crossing the anterior ankle joint, from lateral to medial, are peroneus tertius, extensor digitorum longus (EDL), extensor hallucis longus (EHL), and tibialis anterior [10].
  • The major tendons crossing the medial ankle joint are tibialis posterior, flexor digitorum longus, and flexor hallucis longus [10].
  • The major tendons crossing the lateral ankle joint are the peroneal tendons, with peroneus longus superficial and peroneus brevis deep [10].
  • The peroneus longus inserts on the plantar aspect of the medial cuneiform and base of the first metatarsal [10].
  • The peroneus longus tendon is located posterior and lateral to the peroneus brevis tendon behind the fibula [10].
  • The peroneus brevis has a low-lying muscle belly compared to the peroneus longus [10].
  • The peroneus brevis inserts on the lateral aspect of the base of the fifth metatarsal [10].
  • At the level of the peroneal tubercle, the peroneus brevis lies dorsal to the peroneus longus [10].
  • The Achilles tendon has a maximum anteroposterior dimension of 8 mm on MRI [10].
  • The extensor digitorum brevis (EDB) is the only dorsal intrinsic muscle of the foot [10].
  • The EDB is innervated by the lateral terminal branch of the deep peroneal nerve [10].
  • Plantar heel spurs originate in the flexor digitorum brevis [10].
  • The flexor digitorum brevis is innervated by the medial plantar nerve [10].
  • Lumbrical muscles are located plantar to the transverse metatarsal ligament [10].
  • Interosseous tendons are located dorsal to the transverse metatarsal ligament [10].
  • The tibialis anterior originates from the lateral tibia and inserts on the medial cuneiform and first metatarsal [7].
  • The tibialis anterior acts to dorsiflex and invert the foot [7].
  • The tibialis anterior is innervated by the deep peroneal nerve (L4) [7].
  • The extensor hallucis longus originates from the midfibula and inserts on the distal phalanx of the great toe [7].
  • The extensor hallucis longus acts to dorsiflex and extend the great toe [7].
  • The extensor hallucis longus is innervated by the deep peroneal nerve (L5) [7].
  • The extensor digitorum longus originates from the tibial condyle and fibula and inserts on the middle and distal phalanges of the toes [7].
  • The extensor digitorum longus acts to dorsiflex and extend the toes [7].
  • The extensor digitorum longus is innervated by the deep peroneal nerve (L5) [7].
  • The peroneus tertius originates from the fibula and extensor digitorum longus tendon and inserts on the fifth metatarsal [7].
  • The peroneus tertius acts to evert, dorsiflex, and abduct the foot [7].
  • The peroneus tertius is innervated by the deep peroneal nerve (S1) [7].
  • The peroneus longus originates from the proximal fibula and inserts on the medial cuneiform and first metatarsal [7].
  • The peroneus longus acts to evert, plantar flex, and abduct the foot [7].
  • The peroneus longus is innervated by the superficial peroneal nerve (S1) [7].
  • The peroneus brevis originates from the distal fibula and inserts on the tuberosity of the fifth metatarsal [7].
  • The peroneus brevis acts to evert the foot [7].
  • The peroneus brevis is innervated by the superficial peroneal nerve (S1) [7].
  • The gastrocnemius originates from the posterior medial and lateral femoral condyles and inserts on the calcaneus [7].
  • The gastrocnemius acts to plantar flex the foot [7].
  • The gastrocnemius is innervated by the tibial nerve (S1) [7].
  • The soleus originates from the fibula and tibia and inserts on the calcaneus [7].
  • The soleus acts to plantar flex the foot [7].
  • The soleus is innervated by the tibial nerve (S1) [7].
  • The plantaris originates from the lateral femoral condyle and inserts on the calcaneus [7].
  • The plantaris acts to plantar flex the foot [7].
  • The plantaris is innervated by the tibial nerve (S1) [7].
  • The popliteus originates from the lateral femoral condyle and fibular head and inserts on the proximal tibia [7].
  • The popliteus acts to flex and internally rotate the knee [7].
  • The popliteus is innervated by the tibial nerve (L5, S1) [7].
  • The flexor hallucis longus originates from the fibula and inserts on the distal phalanx of the great toe [7].
  • The flexor hallucis longus acts to plantar flex the great toe [7].
  • The flexor hallucis longus is innervated by the tibial nerve (S1) [7].
  • The flexor digitorum longus originates from the tibia and inserts on the distal phalanges of the second to fifth toes [7].
  • The flexor digitorum longus acts to plantar flex the toes and foot [7].
  • The flexor digitorum longus is innervated by the tibial nerve (S1, S2) [7].
  • The tibialis posterior originates from the tibia, fibula, and interosseous membrane and inserts on the navicular and medial cuneiform [7].
  • The tibialis posterior acts to invert and plantar flex the foot [7].
  • The tibialis posterior is innervated by the tibial nerve (L4, L5) [7].

Pathophysiology

  • Cavus foot is defined as a foot with an abnormally high arch [1].
  • Cavus foot frequently accompanies hindfoot varus deformity, known as cavovarus foot [1].
  • Cavovarus foot may be associated with clawing of the toes and demonstrable weakness of ankle or foot muscles [1].
  • Calluses beneath the metatarsal heads and heel skin are common in cavus foot [1].
  • Hindfoot varus in individuals with a cavovarus deformity is nonstructural if it can be corrected with the "block test" [1].
  • Anterior ankle pain is one of the most common symptoms of cavus foot [1].
  • Anterior ankle pain in cavus foot is sometimes associated with toe walking [1].
  • In cavus foot, the forefoot is severely plantar flexed on the hindfoot, requiring marked ankle dorsiflexion to compensate [1].
  • When cavus deformity becomes too severe, ankle dorsiflexion is blocked, leading to anterior ankle impingement and pain [1].
  • The inability to dorsiflex further in severe cavus foot compromises forefoot clearance, eventually allowing only the metatarsals to contact the floor [1].
  • This condition can be misinterpreted as an ankle plantarflexion contracture, potentially leading to unnecessary heel cord release [1].
  • The cause of cavus foot is usually muscle imbalance in a growing foot [1].
  • Cavus foot is rarely found in early childhood but is fairly frequent after 8–10 years of age [1].

Clinical Presentation

  • Patients with tarsal coalitions often present with a symptomatic flatfoot [22].
  • Pain associated with tarsal coalitions is typically located in the sinus tarsi or along the medial longitudinal arch [22].
  • Limited subtalar motion may present as difficulty with movement on uneven ground [22].
  • Limited subtalar motion may present as frequent ankle sprains [22].

Investigations

Radiographic Evaluation

  • Weight-bearing radiographs are required for the evaluation of pes cavus [21].
  • An increased Meary angle is defined as the long axis of the talus intersecting the long axis of the first metatarsal dorsally on the lateral view of the foot, with a normal value of 0° to 5° [21].
  • An increased calcaneal pitch is defined as the intersection of a line running along the undersurface of the calcaneus and the floor, where a pitch greater than 30° indicates a calcaneocavus foot [21].
  • Medial and lateral oblique projections allow better assessment of the subtalar joint [17].
  • The calcaneum is usually X-rayed in axial and lateral views [17].
  • Weight-bearing X-rays are helpful in showing the coronal relationship of heel to tibia in stance [17].
  • Stress X-rays complement clinical tests for ankle stability and can be carried out under general anaesthesia if stress manoeuvres are painful [17].

Advanced Imaging

  • Computed tomography (CT) scans are important in assessing fractures and for congenital bony coalitions [17].
  • Radio-isotope scanning is excellent for localizing areas of abnormal blood flow or bone remodelling activity, which suggest the presence of covert infection [17].
  • Magnetic resonance imaging (MRI) and ultrasound are used to demonstrate soft-tissue problems, such as tendon and ligament injuries [17].
  • MRI and ultrasound can be used to diagnose joint effusions and bone infections [17].
  • MRI of the spine is indicated with unilateral involvement in pes cavus [21].
  • Diagnosis of cavus foot requires a thorough search for the underlying cause and may require neurologic consultation, spinal MRI, and electromyographic (EMG) studies [1].

Clinical Examination

  • Hindfoot flexibility is assessed by placing a 1-inch block under the lateral border of the foot (Coleman block test) [21].
  • A neurologic examination and a family history are essential for the evaluation of pes cavus [21].
  • Unilateral involvement suggests a focal diagnosis, such as spinal cord anomaly or nerve injury [21].
  • Bilateral involvement and a positive family history are common with Charcot-Marie-Tooth disease [21].
  • The physical examination of the foot and lower extremity begins with the patient standing to note deformities of the toes, such as clawing, a long second ray, or swelling around joints [18].
  • The plantar aspect of the foot is carefully evaluated for evidence of callus formation [18].
  • The metatarsal heads are palpated individually to assess for generalized plantar fat pad atrophy, a prominent fibular condyle, synovitis, or possibly a transfer lesion beneath a metatarsal head resulting from previous forefoot surgery [18].

References

[1] A Lange Medical Book Current Diagnosis Treatment In Orthopedics Fifth Edition. 10Pediatric Orthopedic Surgery > 4. Cavus Foot.

[2] Aaos Comprehensive Orthopaedic Review 3. Anatomy and Biomechanics of the Foot and Ankle > I. Anatomy.

[3] Campbell S Operative Orthopaedics 4 Volume Set. COMBINED HAMMER TOE AND MALLET TOE DEFORMITY WITH ASSOCIATED DOUBLE CORNS > TARSAL TUNNEL SYNDROME.

[4] Campbell S Operative Orthopaedics 4 Volume Set. RESULTS OF SUTURE OF THE SCIATIC NERVE > NEUROVASCULAR ANATOMY.

[7] Miller S Review Of Orthopaedics. SECTION 16 PATELLAR TRACKING IN TOTAL KNEE ARTHROPLASTY > 2. Arthrology.

[10] Miller S Review Of Orthopaedics. SECTION 16 PATELLAR TRACKING IN TOTAL KNEE ARTHROPLASTY > 2. Arthrology > 3. Muscles.

[17] Apley And Solomon S Concise System Of Orthopaedics And Trauma. CONGENITAL ABNORMALITIES.

[18] A Lange Medical Book Current Diagnosis Treatment In Orthopedics Fifth Edition. 8Foot and Ankle Surgery > METATARSALGIA.

[21] Aaos Comprehensive Orthopaedic Review 3. Pediatric Foot Conditions > Pes Cavus.

[22] Aaos Comprehensive Orthopaedic Review 3. Pediatric Foot Conditions > Tarsal Coalition.

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