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Patients › Ankle

Arthroscopy ng bukung-bukong

Updated Sep 2026
Illustration: ankle

Ang pahinang ito ay isinalin ng makina at hindi pa nasusuri ng isang doktor. Ang bersyong Ingles ang siyang opisyal.

Bakit iminungkahi ang operasyong ito

Ang ankle arthroscopy ay isang keyhole surgery na gumagamit ng maliit na camera upang makita ang loob at gamutin ang iyong ankle joint.

Para sa mga matagal nang problema, karaniwan naming sinusubukan muna ang non-operative care, gaya ng pagbabago sa iyong mga aktibidad, physiotherapy, splinting o mga injection. Isinasaalang-alang ang operasyon kapag ang mga hakbang na ito ay hindi nagbigay ng sapat na pagbuti. Para sa ilang acute injuries, maaaring irekomenda agad ang operasyon.

Ang operasyong ito ay karaniwang inaalok sa mga taong mas bata sa 50 taon, at mas madalas sa mga kababaihan. Maaari itong imungkahi sa iyo kung mayroon kang patuloy na pananakit ng bukung-bukong pagkatapos ng isa o higit pang mga sprain, pakiramdam na bumibigay ang iyong bukung-bukong, o isang diagnosis gaya ng soft-tissue pinching sa harap ng bukung-bukong, pinsala sa cartilage, o isang matagal nang ligament injury. Pinapayagan kami ng camera na makita ang mga problema sa ligament at cartilage sa loob ng joint na maaaring hindi makita sa mga scan, at gamutin ang mga ito sa parehong pagkakataon. Ang pangunahing layunin ay maibsan ang iyong pananakit at maibalik ang stability upang makagalaw ka at makabuhat ng timbang nang may kumpiyansa.

Bago ang operasyon

Bibigyan ka ng iyong surgeon ng malinaw na mga tagubilin tungkol sa paghahanda para sa operasyon. Kakailanganin mong itigil ang pagkain at pag-inom pitong oras bago ang iyong operasyon. Humihingi kami ng pitong oras sa halip na anim upang ang iyong operasyon ay maaaring mauna kung maagang matapos ang theatre list. Maaari ka ring hilinging itigil muna ang ilan sa iyong mga regular na gamot bago ang operasyon; sasabihin sa iyo ng iyong surgeon kung alin sa mga ito at kung gaano katagal. Mag-ayos ng taong maghahatid sa iyo pauwi pagkatapos, dahil hindi mo kayang magmaneho nang mag-isa. Magdala ng nakasulat na listahan ng lahat ng iyong iniinom, kabilang ang mga tablet, injection, at supplement. Magsuot ng maluwag at komportableng damit sa araw na iyon. Kung mayroon kang iba pang kondisyong medikal, maaaring kailanganin mo ng mga blood test o pagsusuri kasama ang anaesthetist.

Sa araw ng operasyon

Darating ka sa surgical admissions unit ng ospital, kung saan ka ire-rehistro at ihahanda para sa theatre. Pagkatapos ay makikipagkita ka sa anaesthetist, ang doktor na mamamahala sa iyong anaesthetic. Ang operasyong ito ay ginagawa sa ilalim ng general anaesthetic. Minsan ay nagdaragdag ng regional nerve block para sa pagbawas ng sakit pagkatapos ng operasyon; tatalakayin ito ng anaesthetist sa iyo sa araw na iyon. Pagkatapos ay dadalhin ka sa operating theatre, kung saan isasagawa ang operasyon.

Magigising ka sa recovery area, kung saan babantayan ka ng mga nurse habang nawawala ang bisa ng anaesthetic. Kapag stable ka na, ililipat ka sa ward o uuwi sa araw ding iyon, depende sa procedure at kung paano ang iyong paggaling. Kung ang iyong operasyon ay sa iyong kanang bukung-bukong, kailangan mong iwasan ang pagmamaneho sa loob ng dalawang linggo. Mag-ayos ng taong maghahatid sa iyo pauwi, dahil hindi mo kayang imaneho ang iyong sarili.

Ano ang kinapapalooban ng operasyon

Ang ankle arthroscopy ay isang keyhole surgery. Ang iyong surgeon ay gagawa ng dalawa o tatlong maliliit na hiwa, na tinatawag na mga portal, sa paligid ng iyong bukung-bukong. Isang manipis na camera ang ipapasok sa isang portal, at maliliit na instrumento ang ipapasok sa iba pa. Binibigyang-daan ng camera ang iyong surgeon na makita ang buong joint sa isang screen at magtrabaho sa loob nito nang hindi binubuksan nang malaki ang bukung-bukong.

Ang susunod na mangyayari ay depende sa problemang ginagamot. Maaaring tanggalin ng iyong surgeon ang mga bone spur, scar tissue o inflamed tissue na kumikipit sa harap o likod ng iyong bukung-bukong. Ang mga maluwag na piraso ng cartilage o buto ay maaaring alisin. Ang sirang cartilage ay maaaring pakinisin. Kung ang isang ligament sa labas ng iyong bukung-bukong ay maluwag o punit, maaari itong higpitan o kumpunihin sa pamamagitan ng parehong maliliit na hiwa, na kung minsan ay pinapanatili gamit ang maliliit na anchor na inilalagay sa buto. Kung ang joint ay malubhang gasgas, ang mga gasgas na surface ay maaaring ihanda upang ang buto ay maghilom nang magkasama, isang gamutan na tinatawag na fusion, na pinapanatili gamit ang mga screw.

Ang maliliit na hiwa ay isasara gamit ang mga tahi at tatakpan ng dressing. Dahil maliliit ang mga hiwa, mas kaunti ang gambala sa tissue sa paligid ng joint kumpara sa open surgery.

Kung ginagawa ito kasabay ng fracture repair, gagamitin ng iyong surgeon ang camera upang suriin ang bali sa loob ng joint at upang matukoy ang pinsala sa cartilage o ligament na maaaring hindi makita sa mga scan, bago ang buto ay i-fix gamit ang mga plate o screw.

Pagkatapos ng operasyon

Magigising ka sa recovery ward, kung saan babantayan ka ng mga nurse habang nawawala ang bisa ng anaesthetic. Sasabihin sa iyo ng iyong team kung uuwi ka na sa araw na iyon o mananatili ng isang gabi sa ospital. Dapat may kasama ka sa unang 24 oras. Bibigyan ka ng pain relief upang mapanatili kang komportable, at ang iyong bukung-bukong (ankle) ay babalutin ng dressing. Pananatilihin namin ang dressing sa loob ng humigit-kumulang 10 araw; pakiusap na huwag itong tanggalin bago ang panahong iyon maliban kung sinabi namin sa iyo. Papalitan o tatanggalin namin ito kapag nakita ka namin. Karamihan sa mga tao ay nagsisimulang gumalaw at maglagay ng bigat sa bukung-bukong agad pagkatapos, base sa planong ibibigay sa iyo ng iyong team.

Paggaling

Sa unang ilang araw, ang iyong bukung-bukong ay magiging masakit at mamamaga, at ito ay normal. Magpahinga nang nakataas ang iyong paa sa itaas ng antas ng iyong puso upang makatulong sa paghupa ng pamamaga. Ang simpleng gamot sa sakit, ice pack na nakabalot sa tuwalya, at banayad na paggalaw ayon sa itinuro ay magpapagaan sa discomfort. Ang pamamaga ay karaniwang nasa pinakamataas na antas sa simula at pagkatapos ay unti-unting mawawala.

Karamihan sa mga tao ay nagsisimulang gumalaw at maglagay ng bigat sa bukung-bukong agad pagkatapos ng operasyon, sinusunod ang planong ibibigay sa iyo ng iyong team. Gagabayan ka ng iyong physiotherapist sa mga ehersisyo upang maibalik ang paggalaw at lakas. Pananatilihin mo ang dressing sa loob ng humigit-kumulang 10 araw, at susuriin namin ang mga sugat kapag nakita ka namin. Sa bahay, panatilihing nakataas ang bukung-bukong kapag nagpapahinga, maglakad ng maiikling distansya ayon sa payo, at iwasan ang pagtayo nang matagal hanggang sa sabihin ng iyong team ang kabaligtaran.

Ang paggaling ay nangyayari sa mga yugto. Kapag humupa na ang pamamaga at bumalik na ang paggalaw, ang mga pang-araw-araw na gawain tulad ng paglalakad sa loob ng bahay at pag-akyat sa hagdan ay magiging mas madali. Kapag nasiyahan na ang iyong surgeon sa paraan ng paggaling ng bukung-bukong, papayagan ka nang maglagay ng buong bigat dito at unti-unting dagdagan ang iyong aktibidad. Ang sports at mas mabibigat na trabaho ay unti-unting ibabalik, kapag ang iyong lakas at balanse ay nagbalik na at sumang-ayon ang iyong physiotherapist at surgeon na handa ka na.

Ang bawat tao ay gumagaling sa magkakaibang bilis, kaya ang iyong timeline ay maaaring naiiba sa iba. Gagabayan ka ng iyong surgeon at physiotherapist sa bawat yugto at sasabihin sa iyo kung ano ang aasahan sa susunod.

Ano ang maaaring maging problema

Karamihan sa mga pasyente ay gumagaling nang maayos, ngunit paminsan-minsan ay maaaring magkaroon ng mga problema. Binabantayan kayo nang maigi ng inyong surgeon at ng team upang maagang matukoy ang anumang isyu.

Ang mga nerve at blood vessel ay dumadaan malapit sa mga maliliit na hiwa na ginagamit para sa operasyong ito. Kung ang isang nerve ay na-irita, maaari kayong makaramdam ng paghapdi, pangingilig, o mga bahaging manhid sa paligid ng bukung-bukong (ankle) o sa itaas ng paa. Kadalasan itong nawawala nang kusa sa paglipas ng panahon, ngunit ipaalam ito sa amin sa inyong susunod na review. Kung ang isang maliit na blood vessel ay naapektuhan, maaari kayong makapansin ng hindi pangkaraniwang pasa o pamamaga na tumitibok malapit sa isa sa mga hiwa. Tumawag sa klinika kung mangyari ito.

Ang mga instrumento ay gumagana sa loob ng joint, at ang makinis na ibabaw ng joint ay maaaring magasgas paminsan-minsan habang isinasagawa ang operasyon. Karamihan dito ay mababaw lamang at hindi nagdudulot ng permanenteng problema. Kung makaramdam kayo ng bagong pag-click o pag-grinding sa inyong bukung-bukong pagkatapos nito, banggitin ito sa inyong review.

Ang impeksyon ay hindi karaniwan ngunit nangangailangan ng mabilis na atensyon. Bantayan ang pamumula na kumakalat mula sa sugat, likido o nana na lumalabas dito, sugat na hindi nagsasara, o lagnat. Kung makakita kayo ng alinman sa mga ito, tumawag sa klinika sa mismong araw na iyon. Ang ilang impeksyon ay nangangailangan ng maliit na karagdagang procedure upang malinis ang mga ito.

Kung ang inyong ligament ay kinumpuni o muling binuo, ang mga maliliit na buhol (knots) o anchors na ginamit upang hawakan ito ay maaaring makairita paminsan-minsan sa balat sa labas ng inyong bukung-bukong. Maaari kayong makaramdam ng isang bahaging maselan (tender spot) o pagkiskis sa ilalim ng balat. Kadalasan itong mild, ngunit banggitin ito sa inyong review.

Bihira, ang isang blood clot ay maaaring mabuo sa malalalim na ugat (deep veins) ng binti. Ang biglaang pamamaga at pagiging maselan ng calf, lalo na sa isang panig, ay nangangailangan ng urgent review. Pumunta sa emergency department kung mangyari ito.

Pagkatapos ng operasyon sa ankle fracture, ang ilang tao ay nangangailangan ng karagdagang operasyon sa kalaunan. Kung mayroon kayong sakit na patuloy na lumalala sa halip na humuhupa, o isang malalim at tumitibok na sakit (throbbing pain) na hindi nawawala sa simpleng painkillers, makipag-ugnayan agad sa klinika.

Ang table ng mga komplikasyon sa pahinang ito ay naglilista ng mga tipikal na rate kung nais ninyo ang mga detalye.

Kailan dapat tumawag sa amin

Karamihan sa mga problema ay lumalabas nang maaga, at ang mabilis na pagkilos ay nagpapadali sa pag-aayos ng mga ito. Tumawag sa amin kung ikaw ay may lagnat, pamumula na kumakalat mula sa sugat, likido o nana na lumalabas mula sa hiwa, o pananakit na patuloy na lumalala sa halip na humupa. Pumunta sa emergency department kung ikaw ay may biglaang matinding sakit, pamamaga at pananakit (tenderness) sa iyong binti (calf), kahirapan sa paghinga, bagong pamamanhid sa iyong paa, o hindi mo maigalaw ang iyong bukung-bukong (ankle). Magtiwala sa iyong kutob: kung may nararamdamang mali, makipag-ugnayan sa amin.


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 mortise is formed by the tibial plafond, medial malleolus, and lateral malleolus [20].
  • The ankle mortise articulates with the dome of the talar body [20].
  • The talar dome is wider anteriorly and narrower posteriorly [20].
  • The ankle mortise widens 1 to 1.5 mm during motion from plantar flexion to dorsiflexion [20].
  • Medial and superior clear spaces appear wider with the foot in plantar flexion [20].
  • The ankle joint is responsible for most sagittal plane motion of the foot and ankle [20].
  • Ankle range of motion includes 23 to 48 degrees of plantar flexion [20].
  • Ankle range of motion includes 10 to 23 degrees of dorsiflexion [20].
  • The distal fibula has a convex medial surface that articulates with the concave incisura fibularis of the distal lateral tibia [20].
  • The fibula rotates approximately 2 degrees within the incisura during ankle motion and ambulation [20].
  • Ankle dorsiflexion results in external rotation and proximal translation of the fibula [20].
  • The talocrural angle is approximately 83 degrees and should be symmetrical with the contralateral ankle [26].
  • The medial clear space should be less than 5 mm and no more than 2 mm greater than the tibiotalar clear space [26].
  • The tibiofibular clear space, measured 10 mm above the joint line, is relatively constant with rotation [26].
  • The tibiofibular overlap, measured 10 mm above the joint line, is highly variable dependent on rotation [26].
  • The "ball sign" on an AP view is an unbroken curve connecting the recess in the distal tip of the fibula and the lateral process of the talus when the fibula is out to length [26].
  • Absence of the ball sign indicates a short and malreduced fibula [26].
  • The size of the medial clear space more than doubles depending upon the rotational position of the limb [26].
  • There is a significant increase in medial clear space with ankle plantarflexion [26].

Ligamentous Anatomy

  • The lateral ankle ligaments function as restraints to varus and inversion forces at the ankle [20].
  • The anterior talofibular ligament (ATFL) originates from the anteroinferior aspect of the lateral malleolus, 1 cm proximal to its tip, and extends to the lateral aspect of the talar neck [20].
  • The calcaneofibular ligament (CFL) extends from the tip of the lateral malleolus to the lateral aspect of the calcaneus [20].
  • The posterior talofibular ligament (PTFL) extends from the posterior lateral malleolus to the posterolateral talus [20].
  • The ATFL is the weakest ankle ligament [20].
  • The PTFL is the strongest ankle ligament [20].
  • The distal tibiofibular joint (ankle syndesmosis) and fibula provide stability against lateral talar translation [20].
  • The deltoid ligament complex is the primary ankle stabilizer during stance [20].
  • The deep deltoid ligament extends from the apex of the medial malleolus to the medial talar body [20].
  • The deep deltoid ligament functions primarily to resist lateral talar translation and external rotation [20].
  • The posterior deep deltoid is the most important component of the deep deltoid ligament [20].
  • The superficial deltoid ligament extends from the distal medial malleolus to the navicular bone, sustentaculum tali of calcaneus, medial talus, and spring ligament [20].
  • The superficial deltoid ligament functions primarily to resist valgus and eversion ankle forces [20].
  • The deltoid ligament consists of superficial and deep layers, with the deep portion organized into anterior and posterior deep tibiotalar ligaments [23].
  • The deep posterior tibiotalar ligament is the strongest component of the deltoid complex [23].
  • The deep deltoid ligament has the highest load to failure at 713.8 N ± 69.3 compared with the lateral collateral ligaments [23].
  • The dominant mode of failure for the deep deltoid ligament is an intrasubstance rupture near its talar insertion [23].
  • The dominant mode of failure for the superficial deltoid ligament is at its insertion on the anterior malleolus [23].
  • The deltoid ligament has a rich vascular supply from the medial tarsal artery, posterior tibial artery, and tibialis anterior artery [23].
  • Valgus tilting of the talus within the mortise requires complete rupture of both the superficial and deep deltoid ligaments [23].

Neurovascular Anatomy

  • The superficial peroneal nerve penetrates the deep fascia and lies subcutaneously 8 to 10 cm proximal to the tip of the lateral malleolus, anterior to the subcutaneous border of the fibula shaft [22].
  • The deep peroneal nerve accompanies the anterior tibial artery between the tendons of the anterior tibial and extensor digitorum longus muscles [22].
  • The deep peroneal nerve usually lies just lateral to the anterior tibial artery [22].
  • The saphenous nerve is located just medial or posterior to the saphenous vein in a slightly deeper plane 3 to 5 cm proximal to the tip of the medial malleolus [22].
  • The intermediate dorsal cutaneous branch of the superficial peroneal nerve is at greatest risk of injury during placement of the anterolateral portal [11].
  • The sural nerve and lesser saphenous vein are at greatest risk of injury during placement of the posterolateral portal [11].
  • The tibial nerve and posterior tibial artery and veins are at greatest risk of injury during placement of the posteromedial portal [11].
  • An accessory incision for lateral ligament repair should not surpass 22 mm distance from the lateral malleolus in the anterior direction to avoid damaging the superficial peroneal nerve [25].

Pathophysiology

  • More than 75% of ankle ligament injuries involve the lateral ligament complex, particularly the ATFL and CFL [15].
  • Medial ligament injuries are usually seen in association with a fracture or joint injury [15].
  • Syndesmosis disruption occurs in up to 11% of all ankle injuries [11].
  • In rotational ankle fractures, 30% to 39% have a concomitant syndesmotic injury [11].
  • Osteochondral defects and other chondral injuries may be present in 57 to 90% of patients with ankle fractures [11].
  • Concomitant intra-articular injuries have been reported in up to 80% of patients with ankle fractures [17].
  • Osteochondral lesions were present in 26% of Weber B fractures, 24% of Weber C fractures, and 20% of isolated medial malleolar fractures [17].
  • Chondral lesions were identified in 78% of patients with acute ankle fracture, with talar dome chondral lesions present in 43% [17].
  • Patients with complete syndesmosis disruption and instability were more likely to have chondral injury [17].
  • Patients younger than 30 were less likely to have a chondral injury following acute ankle fracture [17].
  • Anterolateral soft-tissue impingement is a common cause of chronic ankle pain after one or more lateral ankle sprains [11].
  • Anterolateral soft-tissue impingement can occur with or without associated lateral ankle instability [11].
  • The ankle joint synovial lining can become inflamed, resulting in generalized hypertrophic synovitis [31].
  • Inflammatory arthropathies that cause diffuse ankle swelling and pain include rheumatoid arthritis, psoriatic arthritis, infection, and gout [31].
  • Pigmented villonodular synovitis and synovial chondromatosis are processes that result in complex diffuse synovitis [31].
  • Overuse and trauma can cause generalized inflammation of the ankle joint synovium [31].
  • Injury to the ankle syndesmosis can result in persistent pain and dysfunction secondary to syndesmotic impingement [11].
  • Anterior bony impingement is present in 12% of patients with chronic ankle instability [9].

Clinical Presentation

Acute Lateral Ankle Instability

  • Acute lateral ankle instability is classified into three grades based on the severity of ligamentous disruption [47].
  • Grade I acute lateral ankle instability involves no ligament disruption, minimal swelling/ecchymosis/tenderness, and no pain with weight bearing [47].
  • Grade II acute lateral ankle instability involves ligament stretch without rupture, moderate swelling/ecchymosis/tenderness, and mild pain with weight bearing [47].
  • Grade III acute lateral ankle instability involves complete ligament rupture, severe swelling/ecchymosis/tenderness, and severe pain with weight bearing [47].
  • The history of an acute lateral ankle instability typically suggests an inversion injury [47].
  • Physical examination for acute lateral ankle instability reveals localized tenderness, swelling, and ecchymosis over the anterior talofibular ligament and/or the calcaneofibular ligament [47].
  • The anterior drawer test may demonstrate anterior talar subluxation in acute lateral ankle instability [47].
  • Plantar flexion of the ankle during the anterior drawer test isolates the anterior talofibular ligament [47].
  • Neutral plantar and dorsiflexion of the ankle during the anterior drawer test isolates the calcaneofibular ligament [47].
  • Standard radiographs for acute lateral ankle instability should include weight-bearing mortise and lateral views [47].
  • Radiographs of the foot should be obtained if tenderness exists around the anterior calcaneus or fifth metatarsal [47].
  • The presence of lateral or medial osteophytes on radiographs suggests chronic recurrent laxity [47].
  • Radiographs should rule out fractures of the lateral process of the talus, anterior process of the calcaneus, and base of the fifth metatarsal [47].
  • A positive talar tilt test on stress radiographs is defined as more than 3° of tilt compared with the opposite side or 10° of tilt overall [47].
  • A positive anterior drawer test on stress radiographs is defined as 3 mm greater translation compared with the opposite side, or an absolute value of 10 mm [47].
  • MRI and magnetic resonance arthrography can show ligamentous disruption or attenuation but provide no distinct advantage over physical examination for acute lateral ankle instability [47].
  • MRI is most useful when investigating other pathology such as peroneal tear, occult fractures, osteochondral lesions of the talus, bone bruising, tarsal coalition, or impingement lesions [47].
  • MRI should be considered if pain persists for 8 weeks following an ankle sprain [47].
  • Osteochondritis dissecans lesions are associated with acute lateral ankle instability in 15% to 25% of cases [47].
  • Loose bodies are associated with acute lateral ankle instability in 20% of cases [47].
  • Peroneal pathology is associated with acute lateral ankle instability in less than 25% of cases [47].
  • More than 75% of ankle ligament injuries involve the lateral ligament complex, particularly the anterior talofibular ligament and calcaneofibular ligament [15].
  • In an anterior talofibular ligament sprain, tenderness is maximal just distal and slightly anterior to the lateral malleolus [15].
  • The slightest attempt at passive inversion of the ankle is extremely painful in an anterior talofibular ligament sprain [15].
  • Stability assessment in the acute phase of an ankle ligament injury is not possible [15].
  • The Ottawa ankle rules guide the need for X-ray in ankle ligament injuries [15].
  • Anteroposterior, lateral, and mortise views of the ankle should be obtained for imaging ankle ligament injuries [15].
  • Weight-bearing views are useful in helping determine stability in ankle ligament injuries [15].
  • CT and MRI may be needed to fully characterize an injury or in those with persistent pain, swelling, instability, and impaired function over 6 weeks or longer [15].
  • Ankle sprains represent the most common reason for missed athletic participation in adolescent athletes [32].
  • The classic low ankle sprain is defined as a sprain resulting in injury to the lateral ligamentous structures of the ankle below the level of the distal tibiofibular syndesmosis [32].
  • Low ankle sprains are typically inversion injuries [32].
  • Excessive inversion of the plantarflexed foot leads to injury to the anterior talofibular ligament [32].
  • Excessive inversion of the dorsiflexed foot causes injury to the calcaneofibular ligament and, less commonly, the posterior talofibular ligament [32].
  • Acute low ankle sprains typically manifest by a large amount of lateral ankle swelling, pain with weight bearing, and pain in the lateral ankle [32].
  • Physical examination for acute low ankle sprains characteristically shows focal tenderness to palpation over the involved lateral ankle ligamentous structures [32].
  • Pain with resisted eversion of the foot is a sign of peroneal tendon injury during the inversion episode [32].
  • The anterior drawer test may be positive in patients with a history of numerous ankle sprains [32].
  • The anterior drawer test involves anterior translation of the slightly plantarflexed foot [32].
  • Excessive anterior translation in the anterior drawer test represents chronic laxity of the injured anterior talofibular ligament [32].
  • Inversion stress testing of the neutral foot may demonstrate increased laxity in the setting of an attritional calcaneofibular ligament [32].
  • The Ottawa Ankle Rules are a reliable tool for determining when radiography is necessary in the evaluation of an acute ankle sprain [32].
  • A fracture is suspected under the Ottawa Ankle Rules when there is difficulty with weight bearing, tenderness to palpation over the medial or lateral malleolus, tenderness over the navicular, or tenderness over the base of the fifth metatarsal [32].
  • Weight-bearing AP, lateral, and mortise views are recommended when radiographs are necessary for an acute ankle sprain [32].
  • Varus stress views can be used to evaluate for excessive talar tilt in the setting of anterior talofibular ligament laxity [32].
  • External rotation stress views should be obtained to rule out a syndesmotic injury [32].
  • MRI is rarely warranted for acute ankle sprains except in the setting of prolonged pain or instability [32].
  • MRI is performed to evaluate for associated injuries such as peroneal tendon pathology, talar osteochondral lesions, fractures of the anterior calcaneal process, or fractures of the lateral talar process [32].
  • As many as 42% of lateral process talar fractures are initially misdiagnosed as ankle sprains [32].
  • Talar body and neck fractures can occasionally be overlooked in low-energy trauma patients thought to have minor ankle injuries [32].
  • Patients with ankle sprains often recall a twisting mechanism, typically inversion [42].
  • Injury to branches of the superficial peroneal nerve can cause numbness over the dorsal midfoot following an ankle sprain [42].
  • Direct trauma to the area may cause injury, herniation, and subsequent entrapment of the superficial peroneal nerve [42].
  • Patients with ankle sprains may develop complex regional pain syndrome [42].
  • Complex regional pain syndrome is characterized by dysfunction in motor, sensory, and autonomic nerve systems [42].
  • Pain in complex regional pain syndrome is out of proportion to findings on exam [42].
  • Swelling, ecchymosis, and pain with weight bearing are common in ankle sprains [42].
  • Assessment for recurrent instability requires evaluation for hindfoot varus [42].
  • Patients should be questioned about symptoms of a loose body or osteochondral injury, such as locking or catching [42].
  • AP, mortise, and lateral x-rays of the ankle are obtained for radiographic evaluation of ankle sprains [42].
  • Weight-bearing x-ray is preferable if the patient can tolerate it [42].
  • Foot x-rays should be obtained for any pain on examination, especially at the base of the fifth metatarsal or anterior process of calcaneus, to rule out fracture [42].
  • Radiographs should be evaluated for lateral process of the talus fracture, anterior process fracture, osteochondral defects, and mortise or syndesmosis instability [42].
  • CT scanning is considered for evaluation of a suspected or identified lateral process fracture [42].
  • MRI is typically reserved for patients with continued pain despite weeks of conservative treatment or concern about a loose body or osteochondral defect [42].
  • MRI may demonstrate attenuation or tear of the lateral ligamentous structures [42].
  • Bone bruising is common in severe sprains and may result in longer time to pain-free activity and return to sports [42].

Anterolateral Soft-Tissue Impingement

  • Anterolateral soft-tissue impingement is a common cause of chronic pain after one or more lateral ankle sprains [38].
  • Anterolateral soft-tissue impingement is characterized by hypertrophic synovium, inflamed/enlarged capsular tissues, and scarring [38].
  • Anterolateral soft-tissue impingement occurs with or without associated lateral ankle instability [38].
  • The most common site of anterolateral soft-tissue impingement is at the superior portion of the anterior talofibular ligament [38].
  • Anterolateral soft-tissue impingement also occurs along the distal portion of the anterior-inferior tibiofibular ligament [38].
  • Patients with anterolateral soft-tissue impingement typically report a history of persistent anterolateral ankle pain with activity [38].
  • Physical examination for anterolateral soft-tissue impingement notes well-localized tenderness at the anterolateral ankle joint [38].
  • A physical examination test specific for anterolateral soft-tissue impingement involves reproduction of pain with plantar flexion of the ankle, followed by thumb pressure at the anterolateral ankle joint, and dorsiflexion of the ankle [38].
  • The physical examination test for anterolateral soft-tissue impingement has been reported to be reproducible and accurate [38].
  • Diagnosis of anterolateral soft-tissue impingement is based primarily on the history and physical examination [38].
  • Conventional MRI has a reported sensitivity and specificity of less than 50% for anterolateral soft-tissue impingement of the ankle [38].
  • Clinical examination has a reported sensitivity of 94% and specificity of 75% for anterolateral soft-tissue impingement [38].
  • A tibiotalar joint injection with anesthetic and/or steroid can aid in differentiating between intra- and extra-articular pathology contributing to impingement symptoms [38].
  • Anterolateral soft-tissue impingement has been noted to occur with or without associated lateral ankle instability [11].

Acute Traumatic Ankle Injuries

  • The benchmark for assessment of syndesmotic instability is an intraoperative stress test including the Cotton test or external rotation stress test [11].
  • Osteochondral defects can oftentimes be identified on plain radiographs [11].
  • MRI is the best imaging study to evaluate the size, location, and presence of instability of osteochondral defects [11].
  • Ankle arthroscopy has the highest sensitivity and specificity for diagnosing syndesmotic injuries missed on plain and stress view radiographs [11].
  • Arthroscopic diagnosis of syndesmotic instability includes disruption of the deep portion of the posterior tibiofibular ligament [11].
  • Arthroscopic diagnosis of syndesmotic instability includes rupture of the interosseous ligament with a syndesmotic gap greater than 2 mm [11].
  • Arthroscopic diagnosis of syndesmotic instability includes a fracture of the posterolateral portion of the tibial plafond [11].
  • Assessment of an ankle fracture requires a detailed history, a thorough physical examination, and radiographic imaging [34].
  • High-energy mechanisms in ankle fractures indicate the likelihood of additional soft tissue complications, compartment syndrome, complex pilon fracture, or other associated injuries [34].
  • Diabetes indicates an increased likelihood of wound complications owing to immunologic and vascular impairment [34].
  • Poorly controlled diabetics are at risk of peripheral neuropathy, which may influence postoperative weight-bearing decisions [34].
  • A history of smoking, alcohol abuse, and psychiatric illness increases the likelihood of complications in ankle fractures [34].
  • Clinical examination for ankle fractures begins with inspection for deformity, bruising, blistering, skin integrity, and color [34].
  • Palpation of the limb starts at the fibular head and progresses sequentially down the lateral aspect of the leg to the lateral malleolus and adjacent soft tissues [34].
  • Palpation moves medially across the ankle joint to the medial malleolus and its adjacent soft tissue structures [34].
  • Palpation of the skeleton of the foot excludes commonly associated or missed injuries such as fractures of the metatarsals or lateral talar process, or disruption of the midtarsal articulation [34].
  • Palpation of the Achilles tendon and the Simmonds or Thompson's test exclude rupture of this structure [34].
  • A distal neurovascular assessment includes assessment of temperature and capillary refill [34].
  • Skin marking of palpable dorsalis pedis and posterior tibial arterial pulsations at presentation is helpful in later assessment if the condition of the limb deteriorates [34].
  • The Ottawa ankle rules provide assistance in determining the need for x-ray in ankle fractures [34].
  • The Ottawa ankle rules offer a highly sensitive and cost-effective method of identifying patients with ankle injuries most likely to have sustained a fracture [34].
  • Pain exists near one or both of the malleoli plus one or more of the following: age >55 years old, inability to bear weight, or bone tenderness over the posterior edge or the tip of either malleolus [34].
  • Ankle arthroscopy at the time of open reduction and internal fixation for ankle fractures aids in fracture reduction [11].
  • Ankle arthroscopy at the time of open reduction and internal fixation allows for diagnosis of syndesmotic instability [11].
  • Ankle arthroscopy at the time of open reduction and internal fixation allows for identification and treatment of chondral injuries, osteochondral defects, and loose bodies without significant soft-tissue dissection [11].
  • Concurrent ankle arthroscopy at the time of open reduction and internal fixation provides better visualization and less disruption to surrounding soft tissues to view fracture reduction as well as intra-articular pathology [11].

General Ankle Injuries

  • Injuries and disorders of the foot and ankle are common among athletes and active individuals [7].
  • Both lateral and medial ankle sprains are the most common injuries, but other subtle injuries will often occur [7].
  • Clinicians must be vigilant and perform a thorough history and physical examination for foot and ankle injuries [7].
  • The use of advanced imaging is often helpful in diagnosis when combined with a thorough clinical examination [7].
  • Many foot and ankle conditions can be managed nonsurgically, although surgical treatment is sometimes indicated [7].
  • Ankle sprains represent one of the most common athletic injuries [7].
  • Good evidence from high-level studies is available to guide management and treatment decision making for ankle sprains [7].
  • Osteochondral lesions of the ankle respond poorly to nonsurgical treatment [7].
  • The causes and locations of ankle impingement are numerous, and both open and arthroscopic procedures are used [7].
  • Plantar fasciitis can be mimicked by calcaneal stress fracture or tarsal tunnel syndrome [7].
  • Anatomic reduction is the most important factor in achieving a good outcome after a Lisfranc injury [7].
  • A high index of suspicion should be maintained to diagnose a high-risk stress fracture of the foot or ankle [7].
  • A prolonged recovery and delayed union or nonunion are common after high-risk stress fractures of the foot or ankle [7].

Investigations

Imaging Modalities

  • MRI is useful in evaluating for associated pathology to the peroneal tendons or talar articular surface in patients with chronic lateral ankle instability [28].
  • MRI confirms the abnormal appearance of affected ligaments, which may be thickened or indistinct, but does not help determine functional instability [28].
  • MRI can show osteophytes in anterior ankle impingement but is not very sensitive for soft-tissue impingement [30].
  • MR arthrography or contrast-enhanced, fat-suppressed, three-dimensional (3D), fast-gradient recalled acquisition in the steady state with radiofrequency spoiling (CE 3D-FSPGR) MRI is more sensitive and specific for soft-tissue impingement than standard MRI but is less practical [30].
  • In one study of anterior ankle impingement, 58% of patients had an associated diagnosis on MRI, which changed the surgical plan in 33% of cases [30].
  • Anteromedial radiographic views are often helpful for visualizing osteophytes in anterior ankle impingement when lateral radiographs do not show them [30].
  • Oblique radiographs have diagnostic value for the anterior ankle impingement syndrome [1, 16].
  • Stress radiographs can be used to confirm instability in chronic lateral ankle instability, including a lateral radiograph obtained during the anterior drawer test and a mortise radiograph during the talar tilt test [28].
  • Ultrasonographic examination has been used to evaluate the deltoid ligament in bimalleolar equivalent fractures [27].
  • Preoperative computed tomography scans have a role in operative planning for malleolar ankle fractures [27].
  • Axial CT imaging is used to evaluate normal tibiofibular relationships at the syndesmosis [27].
  • MRI lacks additional diagnostic value for stability assessment of the ankle mortise in supination-external rotation-type ankle fractures [27].
  • MR arthrography has been used for anatomic correlation of tibiofibular syndesmotic ligaments in cadavers [6].
  • 3-Tesla magnetic resonance imaging is used for evaluation of posterior tibial tendon dysfunction with relevance to clinical staging [6].
  • MRI features are described for osteochondral lesions of the talus [6].
  • MRI has been used for the diagnosis of ligamentous and chondral pathology in the ankle [6].
  • MRI and stress radiography have been used in the evaluation of chronic lateral ankle instability [6].
  • MRI is used in pre-operative evaluation of the anterior talofibular ligament in chronic ankle instability [6].
  • Associations between MRI findings and symptoms have been studied in patients with chronic ankle sprain [6].
  • CT and MR imaging are used for the evaluation of the postoperative ankle and foot [6].
  • Magnetic resonance imaging is used for the diagnosis of plantar plate injury with reference to intraoperative findings [6].
  • Musculotendinous magnetic resonance imaging of the ankle is a subject of technical review [6].
  • Magnetic resonance imaging is used for the evaluation of sports injuries involving the ankle [6].
  • Imaging evaluation of traumatic ligamentous injuries of the ankle and foot is a subject of radiologic review [6].
  • Technical considerations and best practices for MR imaging of the foot and ankle have been established [6].

Arthroscopic Diagnostic Findings

  • Arthroscopy is used for the diagnosis of full-thickness talar cartilage lesions in the setting of acute ankle fractures [16].
  • Arthroscopy is used for the quantification of syndesmotic instability in a cadaveric model [16].
  • Arthroscopy is used for the diagnosis of distal tibiofibular syndesmosis disruption in acute ankle fracture, with comparisons made to radiologic diagnoses [1, 16].
  • Arthroscopy is used for the diagnosis of a tear of the tibiofibular syndesmosis [1].
  • Arthroscopy is used for the assessment of occult intra-articular injury in acute ankle fractures [1].
  • Arthroscopy is used for the diagnosis and treatment of combined intra-articular disorders in acute distal fibular fractures [1].
  • Arthroscopic findings are associated with the unstable ankle [1].
  • Arthroscopic findings in chronic lateral ankle instability include focal chondral lesions that may influence the results of ligament reconstruction [1].
  • Articular lesions in ankles with lateral ligament injury have been characterized by arthroscopic study [1].
  • Arthroscopy is used for the visualization of the tibial plafond during posterior malleolar fracture fixation [1].
  • Arthroscopy is used for the diagnosis of anterolateral ankle impingement, with comparisons made to magnetic resonance imaging and clinical examination [1, 16].
  • Anterolateral impingement of the ankle has been evaluated using MR imaging for effectiveness [1].
  • Anterolateral ankle impingement has been assessed using MR arthrography of the anterolateral recess [1].
  • Soft tissue impingement syndrome of the ankle has been evaluated for diagnostic efficacy of MRI and clinical results after arthroscopic treatment [1].
  • MRI evaluation of anterolateral soft tissue impingement of the ankle has been described [4, 6].

Clinical Examination and Diagnostic Procedures

  • Careful physical examination and diagnostic injection can help to pinpoint the diagnosis of anterior ankle impingement [30].
  • The use of intraarticular injections for diagnosis has been questioned due to potential cytotoxicity to chondrocytes, although these concerns are based on in-vitro studies with no substantiating clinical evidence [30].
  • Anterior drawer testing and talar tilt stress are performed to evaluate competency of the anterior talofibular ligament and calcaneofibular ligament, respectively [28].
  • Patients with chronic lateral ankle instability should be assessed for evidence of global ligamentous laxity and weight-bearing hindfoot alignment [28].
  • AP, mortise, and lateral weight-bearing radiographs of the ankle are performed in the evaluation of chronic lateral ankle instability [28].
  • Clinicians must be vigilant and perform a thorough history and physical examination for foot and ankle injuries, as advanced imaging is often helpful when combined with clinical examination [7].

Treatment

Ankle Fractures

  • A meta-analysis by Lee et al. found that functional outcomes were better after arthroscopically assisted open reduction and internal fixation than conventional open reduction in patients with ankle fractures [17].
  • Concomitant intraarticular injuries, such as syndesmotic disruption, ligament injury, and osteochondral lesions, have been reported in up to 80% of patients with ankle fractures [17].
  • Chan et al. found that osteochondral lesions were present in 26% of Weber B fractures, 24% of Weber C fractures, and 20% of isolated medial malleolar fractures [17].
  • Da Cunha et al. identified chondral lesions in 78% of 116 patients with acute ankle fracture and talar dome chondral lesions in 43% [17].
  • Patients with complete syndesmosis disruption and instability were more likely to have a chondral injury than those without [17].
  • Patients younger than 30 were less likely to have a chondral injury [17].
  • Arthroscopic evaluation of the joint before fixation of an ankle fracture has been found to be more sensitive than MRI and stress radiographs of the syndesmosis in detecting instability [17].
  • A cadaver study showed that stress radiographs were inadequate in distinguishing between an intact ligament and a single disrupted ligament, whereas arthroscopy better demonstrated an isolated ligament disruption [17].
  • Gonzalez et al. found fair-quality evidence for the use of ankle arthroscopy in detecting intraarticular injuries, but insufficient evidence for improvement of functional outcome, reduction in complication rates, or operative time [17].
  • Fuchs et al. found no statistically significant improvement in patients with unstable ankle fractures who had concomitant ankle arthroscopy, but also found no increased complications [17].
  • The average operative time for concomitant ankle arthroscopy during fracture fixation was increased by only 15 minutes [17].
  • There is a grade I (incomplete) recommendation for supplementing ankle fracture fixation with arthroscopy [17].
  • Wagener et al. achieved primary reduction in six of seven patients with talar neck fractures using arthroscopy, with one patient requiring removal of a fracture fragment through a small arthrotomy [17].
  • In the study by Wagener et al., six of seven patients were pain free and excellent functional outcomes were achieved in five patients [17].
  • Two patients in the Wagener et al. study had restricted ankle motion, and a reduction in subtalar motion was noted in all patients [17].
  • In patients with chronic syndesmosis injuries, arthroscopic debridement of the associated intraarticular pathologic process can be done without screw fixation if there is no lateral displacement of the talus [17].
  • Patients with chronic widening of the syndesmosis can benefit from arthroscopic debridement and percutaneous placement of screws across the syndesmosis after reduction [17].
  • Arthroscopic diagnosis of syndesmotic instability includes disruption of the deep portion of the posterior tibiofibular ligament, rupture of the interosseous ligament with a syndesmotic gap > 2 mm, or a fracture of the posterolateral portion of the tibial plafond [11].
  • Concurrent ankle arthroscopy at the time of open reduction and internal fixation provides better visualization and less disruption to surrounding soft tissues to view fracture reduction and intra-articular pathology [11].

Ankle Instability

  • Arthroscopy is recommended before open lateral ankle ligament surgery because concomitant intraarticular pathologic processes are often associated with chronic ankle instability [9].
  • Yasui et al. found that ankle arthroscopy did not decrease the rate of reoperations required after ankle ligament reconstruction, but there was a lower rate of ankle arthrodesis as a second procedure and lower complications in patients who had arthroscopy [9].
  • Lopes et al. reported significant improvements in AOFAS and Karlsson scores at a mean 10-month follow-up in 286 patients undergoing arthroscopic ligament repair or reconstruction for chronic ankle instability [9].
  • Neurologic complications occurred in 10% of patients in the Lopes et al. series, involving transient dysesthesia and neuroma [9].
  • Cutaneous complications and infection occurred in 4.2% of patients in the Lopes et al. series that required surgical revision [9].
  • The rate of cutaneous complications in the Lopes et al. series was at least half that of open surgery [9].
  • Li et al. found no significant differences between arthroscopic and open repair of the talofibular ligament in AOFAS score, Karlsson Ankle Functional Score, and Tegner activity score in 60 patients [9].
  • Two systematic reviews and one study of 119 patients showed complication rates between 11.5% and 18% for arthroscopic ligament repair or reconstruction [9].
  • Two-stage arthroscopy was associated with significantly higher complication rates compared with single-stage arthroscopy [9].
  • Higher complications were noted with suture anchor fixation (29%) compared with suture fixation (9%) in the study by Araoye et al. [9].
  • A cadaver study showed no difference in the strength of the repair with open or arthroscopic Broström techniques [9].
  • A systematic review of level IV studies found that all patients had subjective improvement of instability with arthroscopic Broström techniques, but there was a 17% complication rate [9].
  • Entrapment of the peroneus tertius, extensor tendons, and the superficial peroneal nerve can occur when tying sutures for the anterior talofibular ligament [9].
  • Yeo et al. found no significant differences in outcome scores, anterior talar translation, or talar tilt between an open modified Broström procedure and an all-inside arthroscopic modified Broström in 48 patients [9].
  • Yeo et al. found that the arthroscopic modified Broström procedure was successful regardless of whether generalized ligamentous laxity was present [9].
  • A study by Rigby and Cottom of 62 patients showed similar findings to Yeo et al. and noted the added advantage of earlier bearing in arthroscopically treated patients [9].
  • There is a grade C (poor evidence) recommendation for thermal capsular shrinkage to treat ankle instability due to sparse evidence in the orthopaedic literature [9].

Impingement

  • Excellent or good results can be expected approximately 75% of the time with arthroscopic removal of anterior ankle bone spurs and scar/synovitis when joint-space narrowing is not present [11].
  • Treatment for posterior ankle impingement including os trigonum syndrome, a prominent posterior talar process, or posterior process fracture can be effectively treated via posterior ankle arthroscopy [11].
  • A physical examination test specific for anterolateral soft-tissue impingement involves reproduction of the pain with plantar flexion of the ankle, followed by thumb pressure at the anterolateral ankle joint, and dorsiflexion of the ankle [11].

Arthrodesis

  • Ankle arthrodesis has been performed through open, mini-open, and arthroscopically assisted approaches with generally favorable union rates [40].
  • One study reported on 101 ankles in 97 patients who underwent arthroscopic ankle arthrodesis on average 86 months prior and demonstrated that 95% of the ankles achieved fusion with the primary procedure [40].
  • There are no data to support one approach over another for ankle arthrodesis, so the approach should be at the discretion of the surgeon based on previous incisions/wounds and any hardware removal needed [40].
  • A comparison study found that the nonunion rate was 15.4% for compression screws alone versus 7.7% when anterior plate augmentation was used, though these rates were not significantly different [40].
  • Factors that seem to improve results in ankle arthrodesis include arthroscopic or mini-incision technique, the use of more than two screws or an adjunct plate (or fibular strut), and a diagnosis of primary osteoarthritis [45].
  • With modern techniques, attention to detail, and management of concurrent medical conditions, fusion rates of better than 90% should be expected in standard, uncomplicated ankle arthrodesis [45].
  • Thevendran et al. noted fair evidence (grade B) to advocate the use of internal fixation and evolving grade B evidence suggesting that minimally invasive techniques may be equivalent to open procedures in selected patients [45].
  • Fourman et al. found that more patients with rhBMP-2 had fusion (93%) than did those without rhBMP-2 (53%) in 82 patients with comorbidities who required complex ankle arthrodesis [45].
  • Saltzman et al. reported that the use of pulsed electronic magnetic field devices with immobilization and limited weight bearing was successful in only five of 19 delayed unions of foot and ankle arthrodeses [45].
  • Better results have been reported with revision arthrodesis for nonunion, with 75% to 94% successful fusion [45].

Arthritis and Debridement

  • Arthroscopic or open debridement of the arthritic ankle can be effective in the overall management plan but must be used judiciously and with realistic expectations of the outcome [33].
  • Efficacy has been shown in several studies for the removal of anterior impingement osteophytes from the tibia and/or talus [33].
  • Patients with mechanical locking of the ankle from a demonstrable loose body may benefit from arthroscopic management [33].
  • Debridement of more advanced arthritic ankles likely provides only short-term relief and is not recommended in most cases [33].
  • Increased motion following removal of impinging osteophytes in a joint with irregular arthritic surfaces may lead to different or increased pain postoperatively [33].
  • Aggressive removal of osteophytes may lead to anterior extrusion of the talus postoperatively [33].
  • Arthroscopic or open debridement can be done in combination with other procedures such as osteotomy and distraction arthroplasty [33].
  • Periarticular osteotomies of the tibia, fibula, or hindfoot are reasonable approaches to the management of localized arthritis of the ankle [33].
  • The goal of realignment osteotomies is to unload the more arthritic portion of the joint and provide a more anatomic mechanical axis to the ankle to redistribute joint contact forces and loads [33].
  • Realignment surgery can delay the need for arthrodesis or arthroplasty in younger patients [33].
  • Chondral loss primarily in the medial or lateral gutter of the ankle with minimal involvement of the superior surface of the talus, especially with supramalleolar deformity, seems best suited for realignment osteotomy [33].
  • Ahn et al. reported improvements in AOFAS scores, VAS scores, and medial-distal tibial angle in 18 patients with medial ankle osteoarthritis and mortise widening after opening wedge distal osteotomy without fibular osteotomy [33].
  • Excellent clinical results were obtained in ankles with more than 7 degrees of talar tilt and good results in an ankle with 11 degrees of tilt in the Ahn et al. study [33].

Septic Arthritis and Arthrofibrosis

  • In one series of 78 infected joints that included five ankles, there was a 91% cure rate with arthroscopic treatment for septic arthritis [9].
  • In another series of 89 infected joints, three of which were ankles, there were 61% good/excellent, 20% satisfactory, and 19% poor functional outcomes [9].
  • There is a grade C (poor evidence) recommendation for the use of arthroscopy for the treatment of septic arthritis of the ankle [9].
  • There are only small series (level IV studies) on the use of arthroscopy to treat arthrofibrosis of the ankle, most of which report promising results [9].
  • There is a grade C (poor evidence) recommendation for the use of ankle arthroscopy in the treatment of arthrofibrosis [9].

Complications

  • Complications of arthroscopic ankle surgery using small joint instruments and contemporary noninvasive distraction techniques occur in about 5% to 7% of patients [11].
  • The most common complication of arthroscopic ankle surgery is neurologic injury, occurring in approximately 80% of complications [11].
  • Approximately half of the neurologic injuries involve the intermediate dorsal cutaneous branch of the superficial peroneal nerve [11].
  • A synovial cutaneous fistula is a more common complication with ankle arthroscopy than with arthroscopy of other joints [11].
  • The structure at greatest risk of injury during placement of the anterolateral portal is the intermediate dorsal cutaneous branch of the superficial peroneal nerve [11].
  • The structures at greatest risk of injury during placement of the posterolateral portal are the sural nerve and the lesser saphenous vein [11].
  • The structures at greatest risk of injury during placement of the posteromedial portal during posterior ankle arthroscopy are the tibial nerve and posterior tibial artery and veins [11].
  • Pseudoaneurysm of the anterior tibial artery has been reported after ankle arthroscopy and treated with ultrasound-guided compression therapy [2].
  • Pseudoaneurysm of the dorsalis pedis artery has been reported after ankle arthroscopy [2].
  • Leg anterior compartment syndrome has been reported following ankle arthroscopy after Maisonneuve fracture [2].
  • Iatrogenic articular cartilage injuries have been reported during ankle arthroscopy [2].
  • Risk of infection after intra-articular steroid injection at the time of ankle arthroscopy has been evaluated in a Medicare population [2].
  • Postoperative complications of posterior ankle and hindfoot arthroscopy have been documented [2].
  • Complications associated with foot and ankle arthroscopy have been reviewed [2].
  • Incidence of and risk factors for venous thromboembolism after foot and ankle surgery have been studied [2].
  • Efficacy of arthroscopic treatment for resolving infection in septic arthritis of native joints has been evaluated [2].
  • Complications after ankle and hindfoot arthroscopy have been reviewed [2].
  • Complications in ankle arthroscopy have been reviewed [2].
  • Complications of ankle arthroscopy utilizing a contemporary noninvasive distraction technique have been reviewed [2].
  • Pseudoaneurysm following ankle arthroscopy has been the subject of a systematic review of case series [2].

Complications

General and Neurological

  • Neurological complications of ankle arthroscopy have been reported [1].
  • Neurologic complications occurred in 10% of patients undergoing arthroscopic ligament repair or reconstruction for chronic ankle instability, manifesting as transient dysesthesia and neuroma [9].
  • Entrapment of the peroneus tertius, extensor tendons, and the superficial peroneal nerve can occur when tying sutures for the anterior talofibular ligament during arthroscopic repair [9].

Vascular

  • Pseudoaneurysm of the anterior tibial artery after ankle arthroscopy has been reported [2].
  • Pseudoaneurysm of the dorsalis pedis artery after ankle arthroscopy has been reported [2].
  • A systematic review of case series regarding pseudoaneurysm following ankle arthroscopy has been published [2].

Soft Tissue and Compartment

  • Leg anterior compartment syndrome following ankle arthroscopy after Maisonneuve fracture has been reported [2].
  • Cutaneous complications occurred in 4.2% of patients undergoing arthroscopic ligament repair or reconstruction for chronic ankle instability, with some requiring surgical revision [9].
  • The rate of cutaneous complications in arthroscopic ligament repair or reconstruction was at least half that of open surgery [9].

Infection

  • Infection occurred in 4.2% of patients undergoing arthroscopic ligament repair or reconstruction for chronic ankle instability, with some requiring surgical revision [9].
  • The risk of infection after intra-articular steroid injection at the time of ankle arthroscopy in a Medicare population has been evaluated [2].

Iatrogenic and Technical

  • Iatrogenic articular cartilage injuries during ankle arthroscopy have been reported [2].
  • Complications associated with foot and ankle arthroscopy have been described [2].
  • Complications after ankle and hindfoot arthroscopy have been described [2].
  • Postoperative complications of posterior ankle and hindfoot arthroscopy have been described [2].
  • Complications of ankle arthroscopy utilizing a contemporary noninvasive distraction technique have been described [2].

Ligament Reconstruction Specifics

  • Complication rates for arthroscopic ligament repair or reconstruction range between 11.5% and 18% [9].
  • Two-stage arthroscopy is associated with significantly higher complication rates compared with single-stage arthroscopy [9].
  • Higher complications are noted with suture anchor fixation (29%) compared with suture fixation (9%) in arthroscopic ligament repair or reconstruction [9].
  • A 17% complication rate was observed in a systematic review of level IV studies for arthroscopic Broström techniques [9].

Arthrodesis Specifics

  • Complications following arthroscopic ankle arthrodesis have been reported [1].
  • The incidence of nonunion after isolated arthroscopic ankle arthrodesis has been reported [8].
  • Risk factors for failure of arthroscopic ankle fusion have been analyzed in a series of 52 ankles [12].

References

[1] Campbell S Operative Orthopaedics 4 Volume Set. ARTHROSCOPIC EXAMINATION AND DEBRIDEMENT OF THE ANKLE JOINT > ANKLE ARTHROSCOPY.

[2] Campbell S Operative Orthopaedics 4 Volume Set. ARTHROSCOPIC EXAMINATION AND DEBRIDEMENT OF THE ANKLE JOINT > COMPLICATIONS.

[4] Campbell S Operative Orthopaedics 4 Volume Set. ARTHROSCOPIC EXAMINATION AND DEBRIDEMENT OF THE ANKLE JOINT > IMPINGEMENT.

[6] Campbell S Operative Orthopaedics 4 Volume Set. REFERENCES > FOOT AND ANKLE.

[7] Orthopaedic Knowledge Update Sports Medicine 6. Ankle and Foot Injuries and Other Disorders > Summary.

[8] Campbell S Operative Orthopaedics 4 Volume Set. Reported Outcomes of Ankle Arthroplasty Compared With Ankle Arthrodesis > ADJACENT JOINT PAIN AND ARTHRITIS > REFERENCES.

[9] Campbell S Operative Orthopaedics 4 Volume Set. ARTHROSCOPIC EXAMINATION AND DEBRIDEMENT OF THE ANKLE JOINT > ANKLE INSTABILITY.

[11] Aaos Comprehensive Orthopaedic Review 3. Arthroscopy of the Ankle > VII. Acute Traumatic Ankle Injuries.

[12] Campbell S Operative Orthopaedics 4 Volume Set. ARTHROSCOPIC EXAMINATION AND DEBRIDEMENT OF THE ANKLE JOINT > ARTHRODESIS.

[15] Apley And Solomon S Concise System Of Orthopaedics And Trauma. INJURIES OF THE ANKLE.

[16] Aaos Comprehensive Orthopaedic Review 3. Arthroscopy of the Ankle > VII. Acute Traumatic Ankle Injuries > Bibliography.

[17] Campbell S Operative Orthopaedics 4 Volume Set. ARTHROSCOPIC EXAMINATION AND DEBRIDEMENT OF THE ANKLE JOINT > ANKLE FRACTURES.

[20] Miller S Review Of Orthopaedics. BIOMECHANICS OF THE FOOT AND ANKLE.

[22] Campbell S Operative Orthopaedics 4 Volume Set. MULTIPLE Z-PLASTY RELEASE OF A CONGENITAL RING > ANKLE BLOCK.

[23] Orthopaedic Knowledge Update Sports Medicine 6. Ankle and Foot Injuries and Other Disorders > Ankle Sprains > Medial Ankle Injury.

[25] Orthopaedic Knowledge Update 13 Ebook Without Multimedia. Foot and Ankle Anatomy and Biomechanics > Annotated References.

[26] Rockwood And Green S Fractures In Adults. 59: Patellar Fractures and Dislocations and Extensor Mechanism Injuries > Imaging and Other Diagnostic Studies for Ankle Fractures > Radiography.

[27] Orthopaedic Knowledge Update Trauma. Ankle Fractures > Annotated References.

[28] Orthopaedic Knowledge Update 13 Ebook Without Multimedia. Foot and Ankle Reconstruction > Chronic Ankle Instability.

[30] Campbell S Operative Orthopaedics 4 Volume Set. ARTHROSCOPIC EXAMINATION AND DEBRIDEMENT OF THE ANKLE JOINT > ANKLE IMPINGEMENT SYNDROMES.

[31] Aaos Comprehensive Orthopaedic Review 3. Arthroscopy of the Ankle > II. Synovitis.

[32] Orthopaedic Knowledge Update. Ankle Injuries* > Low Ankle Sprain.

[33] Campbell S Operative Orthopaedics 4 Volume Set. Reported Outcomes of Ankle Arthroplasty Compared With Ankle Arthrodesis > OPERATIVE TREATMENT.

[34] Rockwood And Green S Fractures In Adults. 59: Patellar Fractures and Dislocations and Extensor Mechanism Injuries > Clinical Assessment of Ankle Fractures.

[38] Aaos Comprehensive Orthopaedic Review 3. Arthroscopy of the Ankle > III. Anterolateral Soft-­Tissue Impingement.

[40] Orthopaedic Knowledge Update 13 Ebook Without Multimedia. Degenerative Conditions and Osteonecrosis of the Foot and Ankle > Ankle > Arthrodesis.

[42] Miller S Review Of Orthopaedics. SECTION 16 PATELLAR TRACKING IN TOTAL KNEE ARTHROPLASTY > ANKLE SPRAINS.

[45] Campbell S Operative Orthopaedics 4 Volume Set. Reported Outcomes of Ankle Arthroplasty Compared With Ankle Arthrodesis > COMPLICATIONS.

[47] Aaos Comprehensive Orthopaedic Review 3. Acute and Chronic Injuries of the Ankle > II. Acute Lateral Ankle Instability.

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Considerations for licensors: Our public licenses are intended for use by those authorized to give the public permission to use material in ways otherwise restricted by copyright and certain other rights. Our licenses are irrevocable. Licensors should read and understand the terms and conditions of the license they choose before applying it. Licensors should also secure all rights necessary before applying our licenses so that the public can reuse the material as expected. Licensors should clearly mark any material not subject to the license. This includes other CC- licensed material, or material used under an exception or limitation to copyright. More considerations for licensors: wiki.creativecommons.org/Considerations_for_licensors

Considerations for the public: By using one of our public licenses, a licensor grants the public permission to use the licensed material under specified terms and conditions. If the licensor's permission is not necessary for any reason--for example, because of any applicable exception or limitation to copyright--then that use is not regulated by the license. Our licenses grant only permissions under copyright and certain other rights that a licensor has authority to grant. Use of the licensed material may still be restricted for other reasons, including because others have copyright or other rights in the material. A licensor may make special requests, such as asking that all changes be marked or described. Although not required by our licenses, you are encouraged to respect those requests where reasonable. More considerations for the public: wiki.creativecommons.org/Considerations_for_licensees


Creative Commons Attribution-NonCommercial 4.0 International Public License

By exercising the Licensed Rights (defined below), You accept and agree to be bound by the terms and conditions of this Creative Commons Attribution-NonCommercial 4.0 International Public License ("Public License"). To the extent this Public License may be interpreted as a contract, You are granted the Licensed Rights in consideration of Your acceptance of these terms and conditions, and the Licensor grants You such rights in consideration of benefits the Licensor receives from making the Licensed Material available under these terms and conditions.

Section 1 -- Definitions.

a. Adapted Material means material subject to Copyright and Similar Rights that is derived from or based upon the Licensed Material and in which the Licensed Material is translated, altered, arranged, transformed, or otherwise modified in a manner requiring permission under the Copyright and Similar Rights held by the Licensor. For purposes of this Public License, where the Licensed Material is a musical work, performance, or sound recording, Adapted Material is always produced where the Licensed Material is synched in timed relation with a moving image.

b. Adapter's License means the license You apply to Your Copyright and Similar Rights in Your contributions to Adapted Material in accordance with the terms and conditions of this Public License.

c. Copyright and Similar Rights means copyright and/or similar rights closely related to copyright including, without limitation, performance, broadcast, sound recording, and Sui Generis Database Rights, without regard to how the rights are labeled or categorized. For purposes of this Public License, the rights specified in Section 2(b)(1)-(2) are not Copyright and Similar Rights.

d. Effective Technological Measures means those measures that, in the absence of proper authority, may not be circumvented under laws fulfilling obligations under Article 11 of the WIPO Copyright Treaty adopted on December 20, 1996, and/or similar international agreements.

e. Exceptions and Limitations means fair use, fair dealing, and/or any other exception or limitation to Copyright and Similar Rights that applies to Your use of the Licensed Material.

f. Licensed Material means the artistic or literary work, database, or other material to which the Licensor applied this Public License.

g. Licensed Rights means the rights granted to You subject to the terms and conditions of this Public License, which are limited to all Copyright and Similar Rights that apply to Your use of the Licensed Material and that the Licensor has authority to license.

h. Licensor means the individual(s) or entity(ies) granting rights under this Public License.

i. NonCommercial means not primarily intended for or directed towards commercial advantage or monetary compensation. For purposes of this Public License, the exchange of the Licensed Material for other material subject to Copyright and Similar Rights by digital file-sharing or similar means is NonCommercial provided there is no payment of monetary compensation in connection with the exchange.

j. Share means to provide material to the public by any means or process that requires permission under the Licensed Rights, such as reproduction, public display, public performance, distribution, dissemination, communication, or importation, and to make material available to the public including in ways that members of the public may access the material from a place and at a time individually chosen by them.

k. Sui Generis Database Rights means rights other than copyright resulting from Directive 96/9/EC of the European Parliament and of the Council of 11 March 1996 on the legal protection of databases, as amended and/or succeeded, as well as other essentially equivalent rights anywhere in the world.

l. You means the individual or entity exercising the Licensed Rights under this Public License. Your has a corresponding meaning.

Section 2 -- Scope.

a. License grant.

1. Subject to the terms and conditions of this Public License, the Licensor hereby grants You a worldwide, royalty-free, non-sublicensable, non-exclusive, irrevocable license to exercise the Licensed Rights in the Licensed Material to:

a. reproduce and Share the Licensed Material, in whole or in part, for NonCommercial purposes only; and

b. produce, reproduce, and Share Adapted Material for NonCommercial purposes only.

2. Exceptions and Limitations. For the avoidance of doubt, where Exceptions and Limitations apply to Your use, this Public License does not apply, and You do not need to comply with its terms and conditions.

3. Term. The term of this Public License is specified in Section 6(a).

4. Media and formats; technical modifications allowed. The Licensor authorizes You to exercise the Licensed Rights in all media and formats whether now known or hereafter created, and to make technical modifications necessary to do so. The Licensor waives and/or agrees not to assert any right or authority to forbid You from making technical modifications necessary to exercise the Licensed Rights, including technical modifications necessary to circumvent Effective Technological Measures. For purposes of this Public License, simply making modifications authorized by this Section 2(a) (4) never produces Adapted Material.

5. Downstream recipients.

a. Offer from the Licensor -- Licensed Material. Every recipient of the Licensed Material automatically receives an offer from the Licensor to exercise the Licensed Rights under the terms and conditions of this Public License.

b. No downstream restrictions. You may not offer or impose any additional or different terms or conditions on, or apply any Effective Technological Measures to, the Licensed Material if doing so restricts exercise of the Licensed Rights by any recipient of the Licensed Material.

6. No endorsement. Nothing in this Public License constitutes or may be construed as permission to assert or imply that You are, or that Your use of the Licensed Material is, connected with, or sponsored, endorsed, or granted official status by, the Licensor or others designated to receive attribution as provided in Section 3(a)(1)(A)(i).

b. Other rights.

1. Moral rights, such as the right of integrity, are not licensed under this Public License, nor are publicity, privacy, and/or other similar personality rights; however, to the extent possible, the Licensor waives and/or agrees not to assert any such rights held by the Licensor to the limited extent necessary to allow You to exercise the Licensed Rights, but not otherwise.

2. Patent and trademark rights are not licensed under this Public License.

3. To the extent possible, the Licensor waives any right to collect royalties from You for the exercise of the Licensed Rights, whether directly or through a collecting society under any voluntary or waivable statutory or compulsory licensing scheme. In all other cases the Licensor expressly reserves any right to collect such royalties, including when the Licensed Material is used other than for NonCommercial purposes.

Section 3 -- License Conditions.

Your exercise of the Licensed Rights is expressly made subject to the following conditions.

a. Attribution.

1. If You Share the Licensed Material (including in modified form), You must:

a. retain the following if it is supplied by the Licensor with the Licensed Material:

i. identification of the creator(s) of the Licensed Material and any others designated to receive attribution, in any reasonable manner requested by the Licensor (including by pseudonym if designated);

ii. a copyright notice;

iii. a notice that refers to this Public License;

iv. a notice that refers to the disclaimer of warranties;

v. a URI or hyperlink to the Licensed Material to the extent reasonably practicable;

b. indicate if You modified the Licensed Material and retain an indication of any previous modifications; and

c. indicate the Licensed Material is licensed under this Public License, and include the text of, or the URI or hyperlink to, this Public License.

2. You may satisfy the conditions in Section 3(a)(1) in any reasonable manner based on the medium, means, and context in which You Share the Licensed Material. For example, it may be reasonable to satisfy the conditions by providing a URI or hyperlink to a resource that includes the required information.

3. If requested by the Licensor, You must remove any of the information required by Section 3(a)(1)(A) to the extent reasonably practicable.

4. If You Share Adapted Material You produce, the Adapter's License You apply must not prevent recipients of the Adapted Material from complying with this Public License.

Section 4 -- Sui Generis Database Rights.

Where the Licensed Rights include Sui Generis Database Rights that apply to Your use of the Licensed Material:

a. for the avoidance of doubt, Section 2(a)(1) grants You the right to extract, reuse, reproduce, and Share all or a substantial portion of the contents of the database for NonCommercial purposes only;

b. if You include all or a substantial portion of the database contents in a database in which You have Sui Generis Database Rights, then the database in which You have Sui Generis Database Rights (but not its individual contents) is Adapted Material; and

c. You must comply with the conditions in Section 3(a) if You Share all or a substantial portion of the contents of the database.

For the avoidance of doubt, this Section 4 supplements and does not replace Your obligations under this Public License where the Licensed Rights include other Copyright and Similar Rights.

Section 5 -- Disclaimer of Warranties and Limitation of Liability.

a. UNLESS OTHERWISE SEPARATELY UNDERTAKEN BY THE LICENSOR, TO THE EXTENT POSSIBLE, THE LICENSOR OFFERS THE LICENSED MATERIAL AS-IS AND AS-AVAILABLE, AND MAKES NO REPRESENTATIONS OR WARRANTIES OF ANY KIND CONCERNING THE LICENSED MATERIAL, WHETHER EXPRESS, IMPLIED, STATUTORY, OR OTHER. THIS INCLUDES, WITHOUT LIMITATION, WARRANTIES OF TITLE, MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE, NON-INFRINGEMENT, ABSENCE OF LATENT OR OTHER DEFECTS, ACCURACY, OR THE PRESENCE OR ABSENCE OF ERRORS, WHETHER OR NOT KNOWN OR DISCOVERABLE. WHERE DISCLAIMERS OF WARRANTIES ARE NOT ALLOWED IN FULL OR IN PART, THIS DISCLAIMER MAY NOT APPLY TO YOU.

b. TO THE EXTENT POSSIBLE, IN NO EVENT WILL THE LICENSOR BE LIABLE TO YOU ON ANY LEGAL THEORY (INCLUDING, WITHOUT LIMITATION, NEGLIGENCE) OR OTHERWISE FOR ANY DIRECT, SPECIAL, INDIRECT, INCIDENTAL, CONSEQUENTIAL, PUNITIVE, EXEMPLARY, OR OTHER LOSSES, COSTS, EXPENSES, OR DAMAGES ARISING OUT OF THIS PUBLIC LICENSE OR USE OF THE LICENSED MATERIAL, EVEN IF THE LICENSOR HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH LOSSES, COSTS, EXPENSES, OR DAMAGES. WHERE A LIMITATION OF LIABILITY IS NOT ALLOWED IN FULL OR IN PART, THIS LIMITATION MAY NOT APPLY TO YOU.

c. The disclaimer of warranties and limitation of liability provided above shall be interpreted in a manner that, to the extent possible, most closely approximates an absolute disclaimer and waiver of all liability.

Section 6 -- Term and Termination.

a. This Public License applies for the term of the Copyright and Similar Rights licensed here. However, if You fail to comply with this Public License, then Your rights under this Public License terminate automatically.

b. Where Your right to use the Licensed Material has terminated under Section 6(a), it reinstates:

1. automatically as of the date the violation is cured, provided it is cured within 30 days of Your discovery of the violation; or

2. upon express reinstatement by the Licensor.

For the avoidance of doubt, this Section 6(b) does not affect any right the Licensor may have to seek remedies for Your violations of this Public License.

c. For the avoidance of doubt, the Licensor may also offer the Licensed Material under separate terms or conditions or stop distributing the Licensed Material at any time; however, doing so will not terminate this Public License.

d. Sections 1, 5, 6, 7, and 8 survive termination of this Public License.

Section 7 -- Other Terms and Conditions.

a. The Licensor shall not be bound by any additional or different terms or conditions communicated by You unless expressly agreed.

b. Any arrangements, understandings, or agreements regarding the Licensed Material not stated herein are separate from and independent of the terms and conditions of this Public License.

Section 8 -- Interpretation.

a. For the avoidance of doubt, this Public License does not, and shall not be interpreted to, reduce, limit, restrict, or impose conditions on any use of the Licensed Material that could lawfully be made without permission under this Public License.

b. To the extent possible, if any provision of this Public License is deemed unenforceable, it shall be automatically reformed to the minimum extent necessary to make it enforceable. If the provision cannot be reformed, it shall be severed from this Public License without affecting the enforceability of the remaining terms and conditions.

c. No term or condition of this Public License will be waived and no failure to comply consented to unless expressly agreed to by the Licensor.

d. Nothing in this Public License constitutes or may be interpreted as a limitation upon, or waiver of, any privileges and immunities that apply to the Licensor or You, including from the legal processes of any jurisdiction or authority.


Creative Commons is not a party to its public licenses. Notwithstanding, Creative Commons may elect to apply one of its public licenses to material it publishes and in those instances will be considered the “Licensor.” The text of the Creative Commons public licenses is dedicated to the public domain under the CC0 Public Domain Dedication. Except for the limited purpose of indicating that material is shared under a Creative Commons public license or as otherwise permitted by the Creative Commons policies published at creativecommons.org/policies, Creative Commons does not authorize the use of the trademark "Creative Commons" or any other trademark or logo of Creative Commons without its prior written consent including, without limitation, in connection with any unauthorized modifications to any of its public licenses or any other arrangements, understandings, or agreements concerning use of licensed material. For the avoidance of doubt, this paragraph does not form part of the public licenses.

Creative Commons may be contacted at creativecommons.org.