Bakit iminungkahi ang operasyong ito¶
Ang mga scan tulad ng MRI ay mahusay sa pagkumpirma ng napunit na anterior cruciate ligament, ang strap ng tissue sa loob ng tuhod na pumipigil sa shin bone na dumulas nang masyadong malayo pasulong.
Ang anterior cruciate ligament ay hindi kayang pagalingin ang sarili, kaya muling binubuo ito ng isang reconstruction gamit ang isang bagong piraso ng tendon. Karaniwan naming inaalok ang operasyong ito sa mga taong bata o aktibo, o sa mga nakakaranas ng pag-give way ng tuhod. Ang gamutan ay iniangkop sa iyong edad, antas ng aktibidad, kung gaano kawala sa balanse (unstable) ang pakiramdam ng iyong tuhod at anumang iba pang mga pinsala. Maraming tao ang unang sumusubok ng physiotherapy upang maibalik ang paggalaw at mapalakas ang kalamnan ng hita, at sinusundan ito ng surgery kapag hindi ito nagbigay ng sapat na pagbuti. Ang layunin ay isang tuhod na pakiramdam ay matatag, upang makagalaw ka at manatiling aktibo nang hindi ito nag-give way.
Bago ang operasyon¶
Sa mga linggo bago ang operasyon, makikipagtulungan ka sa isang physiotherapist upang lubos na maiunat at maibaluktot ang tuhod at mapalakas ang mga kalamnan sa hita. Ang paggawa nito muna ay nagpapadali sa paggaling pagkatapos ng operasyon. Sasailalim ka rin sa mga scan upang makatulong sa pagpaplano ng operasyon, gaya ng X-ray o MRI. Sa araw ng operasyon, huminto sa pagkain at pag-inom pitong oras bago ito; humihingi kami ng mas mahabang oras kaysa sa standard na anim na oras upang maaaring mapabilis ang iyong operasyon kung maaga ang takbo ng listahan. Sasabihin sa iyo ng iyong surgeon kung aling mga gamot ang dapat itigil muna. Mag-ayos ng taong maghahatid sa iyo pauwi, at magdala ng listahan ng iyong mga kasalukuyang gamot. Magsuot ng maluwag at komportableng damit. 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. Makikilala mo ang anaesthetist, ang doktor na magpapatulog sa iyo at titiyak na komportable ka habang isinasagawa ang operasyon. Ang operasyong ito ay ginagawa sa ilalim ng general anaesthetic. Minsan ay nagdaragdag ng regional nerve block para sa pagpapaginhawa 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. Pagkatapos nito, magigising ka sa recovery area, kung saan babantayan ka ng mga nurse habang nawawala ang bisa ng anaesthetic. Kapag stable ka na, maaaring ilipat ka sa ward o uuwi ka sa araw ring iyon, depende sa procedure at kung paano ang iyong paggaling.
Ano ang kinapapalooban ng operasyon¶
Ang isang reconstruction ay pinapalitan ang napunit na ligament ng isang bagong piraso ng tendon, na tinatawag na graft. Ang graft ay maaaring magmula sa iyong sariling katawan, kadalasan mula sa harap ng tuhod o mula sa mga hamstring tendon sa likod ng hita, o mula sa donor tissue. Pipiliin ng iyong surgeon ang graft na angkop sa iyong tuhod, sa iyong edad, at sa mga aktibidad na nais mong balikan.
Ang operasyon ay ginagawa sa pamamagitan ng maliliit na hiwa sa paligid ng tuhod gamit ang isang manipis na camera na tinatawag na arthroscope, na nagpapahintulot sa iyong surgeon na makita ang loob ng joint. Kinukumpirma ang napunit na ligament at sinusuri ang tuhod para sa anumang iba pang pinsala, gaya ng napunit na cartilage. May mga maliliit na tunnel na binubutas sa shin bone at thigh bone, at ang bagong graft ay ipinapasok sa mga ito upang mailagay ito kung saan dating naroon ang lumang ligament. Ang graft ay pagkatapos na itatali o ititigil sa pwesto gamit ang mga screw o button habang ito ay gumagaling sa buto.
Ang mga hiwa ay isasara gamit ang mga tahi at tatakpan ng dressing. Uuwi ka na may mga nakasulat na instruksyon sa pag-aalaga ng mga sugat.
Ang ilang mga punit ay maaaring kumpunihin (repaired) sa halip na muling buuin (rebuilt), ngunit ito ay angkop lamang sa maliit na grupo ng mga pasyente, karaniwan kung saan ang ligament ay malinis na napunit mula sa buto at maganda ang kalidad ng tissue. Sasabihin sa iyo ng iyong surgeon kung ang repair ay isang opsyon para sa iyo.
Pagkatapos ng operasyon¶
Pagkagising mo mula sa anaesthetic, ikaw ay nasa recovery area, at kapag stable ka na, ililipat ka sa ward o maaari ka nang umuwi. Sasabihin sa iyo ng iyong team kung uuwi ka sa araw ding iyon o mananatili ng isang gabi sa ospital. Pananatilihin ng mga nurse na komportable ka at bibigyan ka ng pain relief kung kinakailangan. Ang iyong tuhod ay magkakaroon ng dressing sa mga sugat, at maaaring mayroon kang support bandage sa halip na brace. Karamihan sa mga tao ay tumatayo at humahakbang nang kaunti gamit ang frame o crutches sa araw ng operasyon, sa tulong ng isang physiotherapist. Mangyaring mag-ayos ng isang tao na sasama sa iyo sa unang 24 oras pagkauwi mo sa bahay. Iniiwan namin ang dressing sa loob ng humigit-kumulang 10 araw; mangyaring huwag itong tanggalin bago ang panahong iyon maliban kung sinabi namin sa iyo. Papalitan o tatanggalin namin ito kapag nakita ka namin.
Paggaling¶
Ang mga unang araw ay nakatuon sa ginhawa at banayad na paggalaw. Ang iyong tuhod ay magiging masakit at namamagâ, at maaaring makaramdam ng init. Ang pahinga, ice, at ang pain relief na inireseta ng iyong team ay nakatutulong. Panatilihing nakataas ang binti kapag ikaw ay nakaupo o nakahiga. Ang pamamaga ay karaniwang nasa pinakamataas na antas sa unang ilang araw, pagkatapos ay unti-unting huhupa sa mga sumunod na linggo.
Makikipagkita ka sa isang physiotherapist agad pagkatapos ng operasyon, at patuloy kang makikipagtulungan sa kanila habang gumagaling ang iyong tuhod. Ang mga maagang ehersisyo ay nakatuon sa ganap na pagtuwid ng tuhod, pagbaluktot nito nang kaunti pa bawat araw, at muling pag-activate ng mga kalamnan sa hita. Ang paglalakad ay magsisimula gamit ang mga crutches o frame, at maglalagay ka ng bigat sa binti ayon sa payo ng iyong physiotherapist. Maaaring gumamit ka ng support bandage sa halip na brace. Magagawa mo na ang karamihan sa mga bagay sa bahay kapag naramdaman mong matatag ka na: pag-ikot sa bahay, paghahanda ng pagkain, at maingat na pag-akyat at pagbaba ng hagdan. Iwasan ang pagpihit, pag-pivot, o pagluhod hanggang sa maging handa na ang iyong tuhod.
Habang humuhupa ang pamamaga at bumabalik ang paggalaw, nagiging mas mahirap ang mga ehersisyo. Palalakasin mo ang mga kalamnan sa hita at magsasanay ng balanse at kontrol. Ang mga huling yugto ay inihahanda ka para sa mga aktibidad na nais mong balikan, tulad ng pagtakbo, pagtalon, o pagpapalit ng direksyon. Ang ilang tao ay kumukumpleto rin ng isang structured return-to-sport program bilang karagdagan sa normal na physiotherapy bago sila payagang maglaro ng sports nang walang paghihigpit.
Ang paggaling ay nag-iiba sa bawat tao. Maaaring magkaiba ang iyong timeline, at gagabayan ka ng iyong surgeon at physiotherapist sa bawat yugto.
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 maagapan ang anumang isyu.
Paninigas ng tuhod. Ang ilang tao ay nagkakaroon ng paninigas na naglilimita sa kung gaano kalayo ang pagbaluktot o pagtuwid ng tuhod. Maaaring mapansin ninyo na ang tuhod ay tila naka-lock o hindi lubos na naitutuwid, kahit pilitin. Ang paggawa ng inyong mga exercise at ang pagbabalik ng buong paggalaw bago ang operasyon ay nagpapababa sa panganib na ito. Sabihan ang inyong physiotherapist o tawagan ang klinika kung hindi naitutuwid ang tuhod.
Impeksyon. Hindi ito karaniwan, ngunit magbantay sa malalim at pumupulsong sakit na hindi nawawala sa simpleng painkiller, pamumula na kumakalat mula sa sugat, o pakiramdam na nilalagnat at hindi mabuti ang pakiramdam. Ang tuhod ay maaaring uminit, mamaga, at maging napakasensitibo sa haplos. Kung mapansin ang alinman sa mga senyales na ito, tawagan agad ang klinika o pumunta sa emergency department. Ang impeksyon ay ginagamot sa pamamagitan ng washout ng joint at antibiotics, at madalas ay maaaring manatili ang graft sa pwesto nito.
Muling pagkapunit ng bagong ligament. Ang graft ay maaaring mapunit, gaya ng nangyari sa orihinal na ligament. Karaniwan itong nangyayari kapag may pagpihit o pagkahulog, at ang pakiramdam ay tila muling bumibigay ang tuhod, na madalas ay may kasamang pamamaga. Kung mangyari ito, makipag-ugnayan sa klinika. Posible ang pangalawang operasyon upang muling buuin ang ligament, bagaman ang paggaling pagkatapos ng operasyong iyon ay karaniwang mas mabagal at ang mga resulta ay hindi kasing-predictable gaya ng unang pagkakataon.
Pagkapunit ng ligament sa kabilang tuhod. Ang ligament sa inyong kabilang tuhod ay maaari ring mapunit, lalo na sa mga kabataang bumabalik sa sports. Ang paglaan ng sapat na oras sa return-to-sport program bago bumalik ay nagpoprotekta sa parehong tuhod.
Sakit sa harap ng tuhod. Kung ang graft ay kinuha mula sa harap ng tuhod, ang bahaging iyon ay maaaring manatiling masakit, lalo na kapag lumuluhod, at ang kalamnan ng hita ay maaaring mas mabagal bumalik ang lakas. Banggitin ito sa inyong review kung ito ay naglilimita sa inyo.
Ang complications table 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 mas gusto naming malaman ang mga ito nang mas maaga kaysa huli na. Tumawag sa amin kung ikaw ay may lagnat, kung ang balat sa paligid ng sugat ay nagiging mas mapula o nagsisimulang maglabas ng likido, o kung ang tuhod ay nagiging mainit, namamagâ at lalong sumasakit. Pumunta sa emergency kung ikaw ay may biglaang matinding sakit, pamamaga sa iyong binti (calf), o kahirapan sa paghinga, dahil ang mga ito ay maaaring senyales ng blood clot. Pumunta rin sa emergency kung ang iyong binti ay namamanhid, malamig ang pakiramdam o nagbabago ang kulay, o kung hindi mo ito maigalaw.
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¶
Epidemiology & Risk Factors¶
- ACL injury accounts for between 40% and 50% of all knee ligament injuries [6, 7].
- Female athletes have a two to eight times higher risk of ACL tear than male athletes [6, 7].
- The increased risk in female athletes is thought to occur because women have different landing biomechanics, specifically greater total valgus knee loading in landing and landing more erectly [6, 7].
- Female athletes have increased quadriceps-to-hamstring strength, which causes greater anterior shear [6, 7].
- Proposed additional risk factors for ACL injury include smaller notches, smaller ligaments (reduced area in cross section), greater generalized ligament laxity, increased knee laxity, and absence of the COL5A1 gene [6, 7].
- Skiing, soccer, basketball, and football are the highest-risk sports for ACL injury [6, 7].
Mechanism & Biomechanics¶
- The mechanism of ACL injury is typically a valgus load with internal tibial rotation and anterior tibial translation while the knee is in almost full extension [6, 7].
- The in situ force of the ACL is highest at 30 degrees of flexion in response to anterior tibial load [6, 7].
- The anteromedial bundle of the ACL provides anterior restraint and is evaluated by Lachman and anterior drawer tests [6, 7].
- The posterolateral bundle of the ACL provides rotatory restraint and is evaluated by the pivot shift test [6, 7].
Associated Injuries¶
- Associated injuries are common with ACL tears [6, 7].
- Acute lateral meniscal tears are more common than acute medial tears, whereas medial tears occur more often with chronic ACL deficiency [6, 7].
- MCL injuries occur in approximately 25% of cases and are typically treated nonoperatively [6, 7].
- PLC injuries occur in approximately 10% of cases [6, 7].
- Lack of recognition of a PLC injury has been cited as a common cause of ACL reconstruction failure [6, 7].
- Chronic ACL deficiency is associated with higher incidences of both complex meniscal tears not amenable to repair and chondral injury [6, 7].
Pathophysiology & Long-term Outcomes¶
- Currently there is no high-level evidence to suggest that ACL reconstruction reduces the risk of development of arthritis [6, 7].
- Chondral and meniscal injuries that occur at the time of initial ACL rupture have been demonstrated to be the main predictors of arthritic change [6, 7].
- The most common reasons for failure to return to play or sport after ACL reconstruction are pain and fear of reinjury [6, 7].
- Primary repair of ACL tears is not currently recommended because myofibroblasts “coat” the ends of the ACL stumps, making primary healing unlikely [1, 2].
- Arthrofibrosis is the most common complication following ACL reconstruction and often occurs with reconstruction for acute ACL tears [1, 2].
- The risk of arthrofibrosis is minimized by the achievement of full range of motion prior to surgery [1, 2].
- In skeletally immature patients, the most common complications after ACL reconstruction include arthrofibrosis, growth disturbance, and secondary injury of the same or the contralateral ACL [3].
- An overall incidence of arthrofibrosis of 8.3% was reported in a cohort of 902 young patients (average age = 15 years) treated with ACL reconstruction [3].
- Risk factors for arthrofibrosis in young patients include female sex, older age, the use of bone–patellar tendon–bone autograft, and concomitant meniscal repair [3].
- Growth arrest can occur after ACL reconstruction in skeletally immature patients despite efforts to avoid this complication [3].
- Clinically important growth disturbances, including tibial recurvatum and genu valgum, have been reported after transphyseal ACL reconstruction using physeal-respecting techniques [3].
- Focal physeal bone bridges were noted in five knees in a review of 43 patients who underwent transphyseal ACL reconstruction using soft-tissue graft, although no patient had resultant limb deformity [3].
- Growth disturbance has been reported with physeal-sparing techniques, with one patient in a series of all-epiphyseal ACL reconstructions developing clinically significant growth arrest [3].
- The incidence of second ACL injury in young athletes (average age = 17 years) within 2 years of the index surgery is more than five times greater than that of healthy control athletes [3].
- Nearly 30% of young athletes sustained a second ACL injury within 24 months of return to sports, with approximately one-third of the injuries occurring in the ipsilateral knee and two-thirds in the contralateral knee [3].
- Patients younger than 20 years at the time of ACL reconstruction had a 29% chance of sustaining a second ACL injury (either knee) within 5 years of the index surgery [3].
- In a cohort of 85 patients younger than 18 years, 32% sustained a second ACL injury, with later return to sport being protective against new ACL injury [3].
- Athletes younger than 25 years who return to sports had a secondary rate of ACL injury (ipsilateral or contralateral knee) of 23% [3].
Clinical Evaluation¶
- Young athletes with ACL tears frequently report the sudden onset of knee pain that may be accompanied by a popping sensation after a noncontact, twisting-type injury [4].
- Difficulty bearing weight and hemarthrosis are commonly present in acute ACL tears [4].
- Clinical tests for ACL deficiency include the Lachman, anterior drawer, and pivot shift tests [4].
- Results of clinical tests for ACL deficiency should be compared with similar tests performed on the contralateral, unaffected knee, particularly in young, anxious patients [4].
- The presence of associated meniscal injuries may be established by evaluating for tenderness of the joint line and decreased passive knee motion [4].
- Injuries of the collateral ligaments may be evaluated by varus and valgus stress testing of the knee performed at 0° and 30° of flexion [4].
- MRI of the knee has a sensitivity of 95% and specificity of 88% for confirming an ACL tear [4].
- MRI is helpful for elucidating additional injuries and assessing physeal patency in skeletally immature patients [4].
- A bone age study is generally performed for skeletally immature patients to estimate the amount of remaining skeletal growth before surgical treatment [4].
- Standing hip-to-ankle alignment radiographs may be obtained to evaluate for preexisting angular deformity or limb-length discrepancy before surgical intervention [4].
Clinical Presentation¶
History and Symptoms¶
- Young athletes with ACL tears frequently report the sudden onset of knee pain after a noncontact, twisting-type injury [4].
- The onset of knee pain in young athletes with ACL tears may be accompanied by a popping sensation [4].
- Difficulty bearing weight is commonly present in young athletes with ACL tears [4].
- Hemarthrosis is commonly present in young athletes with ACL tears [4].
Physical Examination¶
- Initial evaluation includes inspecting the soft tissues of the affected limb [4].
- Initial evaluation includes performing passive motion of the ipsilateral hip, knee, and ankle [4].
- Initial evaluation includes carefully palpating the entire affected limb [4].
- Initial evaluation includes assessing neurovascular status [4].
- Clinical tests for ACL deficiency include the Lachman test [4].
- Clinical tests for ACL deficiency include the anterior drawer test [4].
- Clinical tests for ACL deficiency include the pivot shift test [4].
- Clinical tests for ACL deficiency may be difficult to perform and/or interpret in a young, anxious patient [4].
- Results of clinical tests for ACL deficiency should be compared with similar tests performed on the contralateral, unaffected knee [4].
- Clinical tests for ACL deficiency may need to be repeated in a young, anxious patient [4].
- The presence of associated meniscal injuries may be established by evaluating for tenderness of the joint line [4].
- Decreased passive knee motion may indicate a meniscal injury with displacement [4].
- The dial test can be performed to evaluate the posterolateral corner of the knee [4].
- The posterior drawer test can be performed to evaluate the posterior cruciate ligament [4].
- Limb alignment and lengths are assessed clinically if ACL injury is suspected in a skeletally immature patient [4].
- The patient’s degree of physiologic maturity may be gauged by use of Tanner staging of sexual maturation in skeletally immature patients [4].
Imaging¶
- Orthogonal radiographs of the affected knee should be obtained [4].
- Additional radiographs should be obtained as suggested by the physical examination findings [4].
- MRI of the knee has a 95% sensitivity for confirming an ACL tear [4].
- MRI of the knee has an 88% specificity for confirming an ACL tear [4].
- MRI of the knee is helpful for elucidating additional injuries [4].
- MRI of the knee is helpful for assessing physeal patency [4].
- A bone age study is generally performed for skeletally immature patients before surgical treatment to estimate the amount of remaining skeletal growth [4].
- A bone age study consists of a PA radiograph of the left hand compared with the Greulich and Pyle atlas of normal standards [4].
- Standing hip-to-ankle alignment radiographs may be obtained to evaluate for preexisting angular deformity before surgical intervention [4].
- Standing hip-to-ankle alignment radiographs may be obtained to evaluate for limb-length discrepancy of the lower limbs before surgical intervention [4].
Investigations¶
- In young, anxious patients, results of clinical tests for ACL deficiency should be compared with similar tests performed on the contralateral, unaffected knee and may need to be repeated [4].
- If ACL injury in a skeletally immature patient is suspected, limb alignment and lengths are assessed clinically [4].
- The patient’s degree of physiologic maturity may be gauged by use of Tanner staging of sexual maturation [4].
- Orthogonal radiographs of the affected knee should be obtained, with additional radiographs obtained as suggested by the physical examination findings [4].
- MRI of the knee is helpful for elucidating additional injuries and assessing physeal patency [4].
- Before surgical treatment, a bone age study (a PA radiograph of the left hand compared with the Greulich and Pyle atlas) is generally performed for skeletally immature patients to estimate the amount of remaining skeletal growth [4].
- Standing hip-to-ankle alignment radiographs may be obtained to evaluate for preexisting angular deformity or limb-length discrepancy of the lower limbs before surgical intervention [4].
- A thorough workup of failed ACL reconstruction should include acquiring prior imaging and considering all causes of graft failure, including technical issues, unrecognized concomitant ligament injuries, coronal or sagittal malalignment, biological failure of graft incorporation, and other patient-related issues [1].
Treatment¶
Non-Operative Management¶
- Initial management of ACL injury consists of physical therapy to restore motion [1].
- Immobilization is avoided in the initial management of ACL injury [1].
- Full range of motion (ROM) and good quadriceps control should be achieved prior to surgery [1].
- Treatment should be individualized based on age, activity level, instability, associated injuries, and other medical factors [1].
Surgical Technique¶
- Primary repair of ACL tears is not currently recommended [1].
- Myofibroblasts "coat" the ends of the ACL stumps, making primary healing unlikely [1].
- Single-bundle reconstruction is the most commonly performed ACL reconstruction technique [1].
- There is currently no difference in patient-reported outcomes between single-bundle and double-bundle ACL reconstruction techniques [1].
- Independent femoral tunnel drilling techniques focus on placing a more horizontal femoral tunnel (10- or 2-o’clock position) to center the graft in the middle of the femoral ACL footprint [1].
- A more horizontal graft position may reduce rotational instability [1].
- Graft selection for ACL reconstruction depends on patient factors and surgeon preference [1].
- Common graft choices for ACL reconstruction include bone–patellar tendon–bone (BPTB) autograft, four-strand hamstring autograft, quadriceps tendon autograft, and allograft [1].
- BPTB autograft demonstrates faster incorporation into bone tunnels than hamstring autograft [1].
- BPTB autograft is often the graft of choice for patients who desire an early return to sports activity [1].
- Several studies have demonstrated a higher incidence of arthritis associated with the use of BPTB autograft than with hamstring autograft 5 to 7 years after ACL reconstruction [1].
- BPTB autograft harvest carries the risk of anterior knee pain, pain with kneeling, loss of extension, and poorer recovery of quadriceps strength [1].
- Hamstring autograft is similar in strength to the native ACL but is less stiff [1].
- Hamstring autograft harvest carries the risk of weakness of knee flexion and internal rotation, along with injury to branches of the saphenous nerve [1].
- Both BPTB and quadriceps tendon with bone block grafts carry the risk of patellar fracture [1].
- Use of allograft with ACL reconstruction in younger, more active patients is associated with a higher rate of rerupture [1].
- Chemically processed and irradiated allografts have demonstrated higher rates of failure than fresh frozen allografts [1].
- Allografts have been demonstrated to incorporate into bone tunnels more slowly than autografts [1].
- Use of allograft includes infection risk with Clostridium species, hepatitis, and human immunodeficiency virus (HIV), although rates are low at 1:1.6 million [1].
- Preimplantation culture of allografts is not widely recommended [1].
Postoperative Rehabilitation¶
- Most postoperative rehabilitation protocols encourage early motion with an emphasis on extension and weight bearing [1].
- Exercises that do not endanger the ACL graft are dominated by the hamstrings, such as isometric hamstrings [1].
- Exercises that do not endanger the ACL graft involve active knee ROM between 35 and 90 degrees of flexion [1].
- Closed kinetic chain rehabilitation and compressive loading are emphasized because they allow physiologic cocontraction of the muscles around the knee [1].
- Open kinetic chain extension exercises, particularly with the knee near full extension, place increased stress on the reconstructed ACL and should be avoided for the first 6 weeks [1].
- No difference in outcome has been found between accelerated and nonaccelerated rehabilitation programs [1].
- Postoperative bracing has not proved beneficial after ACL reconstruction except in downhill skiers [1].
- Early progressive eccentric exercise has yielded good initial results in terms of muscle size and function after ACL reconstruction [1].
Complications¶
- The most common technical error leading to graft failure is tunnel malposition [1].
- Vertical graft placement results in decreased rotational stability [1].
- Anterior placement of the femoral tunnel results in flexion loss [1].
- Arthrofibrosis is the most common complication following ACL reconstruction [1].
- Arthrofibrosis often occurs with reconstruction for acute ACL tears [1].
- The risk of arthrofibrosis is minimized by the achievement of full ROM prior to surgery [1].
- Aberrant hardware placement, defined as interference screw divergence of >30 degrees for femoral tunnels or >15 degrees for tibial tunnels, can result in complications [1].
- Infection occurs in less than 1% of ACL reconstruction cases [1].
- Irrigation and débridement with graft retention are successful in up to 85% of post-ACL reconstruction infection cases [1].
Revision ACL Reconstruction¶
- Causes of graft failure in revision ACL reconstruction include technical issues, unrecognized concomitant ligament injuries, coronal or sagittal malalignment, biological failure of graft incorporation, and other patient-related issues [1].
- A thorough workup of failed ACL reconstruction should include acquiring prior records [1].
Complications¶
General Complications¶
- Graft failure is a complication of ACL reconstruction [1].
- Irrigation and débridement with graft retention are successful in up to 85% of infected ACL reconstruction cases [1].
Skeletally Immune Patients¶
- The most common complications occurring after ACL reconstruction in skeletally immature patients include arthrofibrosis, growth disturbance, and secondary injury of the same or the contralateral ACL [3].
- In a retrospective case series of 902 young patients (average age 15 years) treated with ACL reconstruction, the overall incidence of arthrofibrosis was 8.3% [3].
- Female sex, older age, the use of bone–patellar tendon–bone autograft, and concomitant meniscal repair are additional risk factors for arthrofibrosis in skeletally immature patients [3].
- Growth arrest can occur after ACL reconstruction in skeletally immature patients despite the use of physeal-respecting techniques [3].
- In a case series of four patients (average age 14.2 years) who underwent transphyseal ACL reconstruction using physeal-respecting techniques, clinically important growth disturbances including tibial recurvatum and genu valgum developed [3].
- In a retrospective review of 43 patients (average age 14.8 years) who underwent transphyseal ACL reconstruction using soft-tissue graft, focal physeal bone bridges were noted in five knees, although no patient had resultant limb deformity [3].
- Growth disturbance has been reported with physeal-sparing techniques, including one patient in a series of all-epiphyseal ACL reconstructions who developed clinically significant growth arrest [3].
- In a 2014 cohort study of young athletes (average age 17 years), nearly 30% sustained a second ACL injury within 24 months of return to sports [3].
- In the same 2014 cohort study, approximately one-third of second ACL injuries occurred in the ipsilateral knee and two-thirds in the contralateral knee [3].
- In a 2014 case-control study, patients younger than 20 years at the time of ACL reconstruction had a 29% chance of sustaining a second ACL injury within 5 years of the index surgery [3].
- In a cohort of 85 patients younger than 18 years who underwent primary ACL reconstruction with autograft, 32% sustained a second ACL injury [3].
- A systematic review and meta-analysis found that athletes younger than 25 years who return to sports had a secondary rate of ACL injury (ipsilateral or contralateral knee) of 23% [3].
References¶
[1] Miller S Review Of Orthopaedics. SECTION 16 PATELLAR TRACKING IN TOTAL KNEE ARTHROPLASTY > 1. ACL injury > Treatment.
[2] Miller S Review Of Orthopaedics. 1. ACL injury > Treatment.
[3] Orthopaedic Knowledge Update. Ligamentous Knee Injuries > ACL Injuries > Complications.
[4] Orthopaedic Knowledge Update. Ligamentous Knee Injuries > ACL Injuries > Evaluation.
[6] Miller S Review Of Orthopaedics. SECTION 16 PATELLAR TRACKING IN TOTAL KNEE ARTHROPLASTY > 1. ACL injury > Introduction.
[7] Miller S Review Of Orthopaedics. 1. ACL injury > Introduction.
