Stiff Elbow Release (Arthrolysis) Impormasyon In-depth Pahintulot

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

Si Dr Kieran Hirpara, isang upper-limb surgeon sa Mater Private Hospital Rockhampton, ay nagsisimula sa mga opsyon na hindi gaanong invasive na angkop sa iyong kondisyon. Ang mga pasyente ay karaniwang nirerefer sa aming klinika ng kanilang GP; kung iminungkahi ng isang physiotherapist na magpatingin sa amin, kakailanganin mo pa rin ng referral mula sa iyong GP upang maging eligible para sa Medicare rebate. Sa iyong appointment, kumukuha kami ng history, sinusuri ang iyong siko at nagsasaayos ng imaging kung kinakailangan. Ang matigas na siko ay madalas na bumubuti sa paglipas ng panahon at paggamit, kaya karaniwan naming sinusubukan muna ang non-operative care. Maaaring kabilang dito ang physiotherapy, splinting o mga injection sa loob ng 6 hanggang 12 linggo. Isinasaalang-alang ang surgery kapag ang pamamaraang iyon ay hindi nagbigay ng sapat na pagbuti.

Ang stiff elbow release, tinatawag ding arthrolysis, ay isang operasyon na nagpapalaya sa mga mahigpit at peklat na tissue sa paligid ng iyong siko upang ang joint ay makagalaw muli. Iminumungkahi namin ito kapag ang paninigas ay naglilimita pa rin sa iyo pagkatapos ng non-operative treatment. Pinaka-epektibo ito kapag ang surface ng joint ay makinis pa at nasa normal na hugis. Ang layunin ay isang pangmatagalang pagbuti sa paggalaw at pagbawas ng sakit, upang ang mga pang-araw-araw na gawain ay maging mas madali.

Bago ang operasyon

Kapag nakaplano na ang operasyon, may ilang mga praktikal na bagay na dapat ayusin. Sasabihan kayo kung kailan dapat huminto sa pagkain at pag-inom: ito ay pitong oras bago ang inyong operasyon. Humihingi kami ng pitong oras sa halip na anim upang kung sakaling mauna ang listahan sa theatre, maaari kayong mapabilis. Sasabihan kayo ng inyong surgeon kung alin sa inyong mga nakasanayang gamot ang dapat itigil at kailan, at dapat kayong magdala ng kumpletong listahan ng mga ito. Mag-ayos ng taong maghahatid sa inyo pauwi pagkatapos. Magsuot ng maluwag at komportableng damit sa araw na iyon. Palaging kumukuha ng mga X-ray upang planuhin ang operasyon, at maaaring gumamit ng CT scan kung ang paninigas ay kinasasangkutan ng buto. Kung mayroon kayong iba pang kondisyong medikal, maaaring kailanganin ninyo 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. Makikipagkita ka sa anaesthetist doon. 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, pupunta ka sa ward o uuwi na, depende sa procedure at sa iyong paggaling.

Ano ang kinapapalooban ng operasyon

Mayroong higit sa isang paraan upang i-release ang isang naninigas na siko, at pipiliin ng iyong surgeon ang approach na angkop para sa iyong siko. Ang ilang release ay ginagawa sa pamamagitan ng keyhole surgery, gamit ang ilang maliliit na hiwa at isang manipis na camera. Ang iba naman ay ginagawa sa pamamagitan ng isa o dalawang open cut, kung minsan ay may habang 3 hanggang 5 cm, sa panloob o panlabas na bahagi ng siko. Para sa mga napakaninigas na siko, maaaring gumamit ng hiwa sa likod ng siko upang maabot ang magkabilang panig.

Kapag nasa loob na, palalayain ng iyong surgeon ang masikip na capsule, na siyang sleeve ng tissue sa paligid ng joint. Ang mga bone spur na humaharang sa paggalaw ay tatapyasin, at anumang maluwag na fragment ng buto o cartilage na lumulutang sa joint ay tatanggalin. Kung ang isang nerve sa panloob na bahagi ng siko ay naiipit ng scar tissue, maaari itong palayain mula sa tunnel na iyon ng tissue, o ilipat sa isang bagong posisyon kung saan hindi ito mababanat. Kung ang joint surface mismo ay malubhang gasgas na, may mga iba pang opsyon, gaya ng paglalagay ng soft tissue sa buto o pagpapalit ng joint surfaces ng mga bahaging metal at plastic. Kung minsan, isang hinged frame ang ikinakabit sa siko upang panatilihin ang joint sa isang magandang posisyon habang ito ay gumagaling.

Sa huli, ang mga hiwa ay sasara gamit ang mga tahi at tatakpan ng dressing. Pananatilihin mo ang dressing na iyon sa loob ng humigit-kumulang 10 araw, gaya ng inilarawan sa recovery section.

Pagkatapos ng operasyon

Magigising ka sa recovery area, pagkatapos ay ililipat ka sa ward. Susuriin ng mga nurse ang iyong siko, ang iyong kamay, at kung ano ang iyong nararamdaman. Bibigyan ka ng pain relief ayon sa iyong pangangailangan; sabihan ang mga nurse kung hindi komportable ang iyong siko. Ang iyong siko ay babalutin ng malambot na dressing, at maaari kang umuwi na ang iyong braso ay nasa sling para sa iyong komportable. Maaari ka nang bumangon sa kama at gumalaw agad pagkatapos, at tutulungan ka ng mga nurse sa unang pagkakataon. Ang iyong kamay, pulso, at balikat ay maaaring gumalaw nang malaya habang nagpapagaling ang iyong siko. Dapat may kasama ka sa unang 24 oras pagkatapos mong umuwi. Sasabihin sa iyo ng iyong team kung uuwi ka sa araw ring iyon o mananatili ng isang gabi sa ospital. Pananatilihin namin ang dressing sa loob ng humigit-kumulang 10 araw; pakiusap huwag itong tatanggalin bago ang panahong iyon maliban kung sinabi namin sa iyo. Papalitan o tatanggalin namin ito kapag nakita ka namin.

Paggaling

Ang iyong siko ay magiging masakit at mamamaga sa mga unang araw at linggo. Normal ito pagkatapos ng isang release. Ang pagpapahinga, pagpapanatiling nakataas ng iyong kamay, at pag-inom ng iyong pain relief ayon sa nireseta ay magpapagaan sa discomfort. Ang pamamaga ay unti-unting huhupa, at habang nangyayari ito, ang siko ay karaniwang nararamdamang hindi na gaanong masikip.

Uuwi ka na ang iyong braso ay nasa sling para sa iyong comfort. Maaari mo itong itigil sa paggamit kapag hindi na ito nakakatulong. Ang iyong kamay, pulso, at balikat ay dapat manatiling malayang gumagalaw mula sa simula. Ang hand therapy pagkatapos ng operasyon ay kasama si Ruby Doolan sa Extend Rehabilitation. Gagabayan ka ni Ruby sa iyong mga ehersisyo at gagawa ng anumang splint na iyong kakailanganin. Ang mga ehersisyo ang pangunahing bahagi ng iyong paggaling, at ang paggawa sa mga ito ayon sa itinuro ay mas mahalaga kaysa sa anupaman. Pananatilihin mo ang dressing sa loob ng humigit-kumulang 10 araw, at papalitan o tatanggalin namin ito kapag nakita ka namin.

Ang mga pang-araw-araw na gawain ay babalik sa mga yugto. Sa simula, kakailanganin mo ng tulong sa pagluluto, pagbibihis, at pagdadala ng mga bagay. Habang bumabalik ang paggalaw at humuhupa ang pamamaga, mas marami ka nang magagawa gamit ang inoperahang braso. Kapag binigyan ka na ng clearance ng iyong surgeon na magmaneho, maaari ka nang bumalik sa kalsada; ang aming gabay sa driving after upper-limb surgery ay nagpapaliwanag ng mga panuntunang naaangkop, kabilang ang hindi pagmamaneho habang ang iyong braso ay nasa sling at ang hindi pag-inom ng matatapang na pain medication.

Ang paggaling ay nag-iiba sa bawat tao. Maaaring magkaiba ang iyong timeline, at gagabayan ka ng iyong surgeon at therapist sa prosesong ito.

Ano ang maaaring maging problema

Karamihan sa mga pasyente ay nagiging 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.

Habang mas matagal na naninigas ang siko, mas mataas ang posibilidad ng mga problema pagkatapos ng release. Kung matagal nang naninigas ang iyong siko, tatalakayin ito ng iyong surgeon sa iyo bago ka magdesisyon.

Isang bagay na napapansin ng ilang tao pagkatapos ay ang bagong pangingilig, pamamanhid, o panghihina sa kalingkingan at ring finger. Nagmumula ito sa nerve sa panloob na bahagi ng siko. Hindi laging posible na mahulaan kung sino ang makakaranas nito. Kung mapansin mo ang mga pakiramdam na ito, banggitin ito sa iyong susunod na review, o tumawag sa klinika kung bigla itong lumitaw.

Ang ilang mga siko na dating napinsala ay may mas mataas na tsansa ng malalim na impeksyon pagkatapos. Bantayan ang sugat para sa pamumula na kumakalat mula rito, init, tumitinding pamamaga, o malalim at tumitibok na sakit na hindi nawawala sa mga simpleng painkiller. Maaari kang makaramdam ng lagnat o pangkalahatang panghihina. Kung makakita ka ng alinman sa mga senyales na ito, tumawag agad sa klinika, o pumunta sa emergency department kung ito ay after hours.

Kung ang iyong operasyon ay kinapapalooban ng isang hinged frame na ikinakabit sa siko, may ilang karagdagang bagay na dapat malaman. Ang frame ay nagdaragdag sa pagkawala ng dugo habang nag-oopera, sa oras sa theatre, at sa oras sa ospital. Mayroon din itong maliit na tsansa na ang joint ay lumuwag o maging unstable. Ipapaliwanag ng iyong surgeon kung ano ang ibig sabihin nito para sa iyong pananatili at paggaling.

Kung nagkaroon ka na ng mga operasyon sa sikong ito noon, mas mataas muli ang tsansa ng malalim na impeksyon. Ganoon din kapag ang operasyon mismo ay mas kumplikado. Titimbangin ng iyong surgeon ang lahat ng ito kasama ka bago ang operasyon.

Ang mga matagal nang pinsala sa siko ay maaari ring magbago sa paraan ng paggana ng joint. Ang peklat sa balat, mga butong gumaling nang wala sa pwesto, sirang cartilage, sobrang buto, maluwag o masikip na ligaments, naipit na mga nerve, at peklat sa kalamnan ay maaaring lahat makapagbago sa paggalaw ng siko. Hahanapin ito ng iyong surgeon kapag pinaplano ang iyong operasyon.

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

Kailan dapat tumawag sa amin

Tumawag sa amin kung mapansin ang lagnat, pagkalat ng pamumula sa paligid ng sugat, paglabas ng likido mula sa sugat, o pananakit na patuloy na lumalala. Pumunta sa emergency kung may biglaang matinding sakit, pamamaga o sakit sa binti (calf), o kahirapan sa paghinga. Tumawag sa amin agad kung ang iyong kamay o mga daliri ay namamanhid o namumutla, o kung hindi mo maigalaw ang iyong braso. Kung ang pangingilig o pamamanhid sa kalingkingan at ring finger ay biglaang dumating, tumawag sa klinika sa halip na maghintay para sa iyong susunod na review.

Higit pang detalye

Advanced reading: the deeper science (optional)

Ang seksyong ito ay higit pa sa kailangan mo para sa iyong sariling mga desisyon sa paggamot. Ang pag-release ng isang matigas na siko ay sulit sa karagdagang pagbabasa dahil ang ebidensya ay tumuturo sa isang hindi pangkaraniwang bagay: ang pagpipilian na karaniwang itinatanong ng mga pasyente, keyhole o open, ay tila hindi gaanong mahalaga kaysa sa kung gaano karaming operasyon ang ginawa, at ang tunay na kalaban ng operasyon ay ang mismong proseso na nagdulot ng paninigas sa simula pa lamang.

Hindi ang open o arthroscopic ang mahalagang katanungan

Isang systematic review at meta-analysis ng 4,311 na pasyenteng may post-traumatic elbow stiffness ang naghambing sa open at arthroscopic arthrolysis at natuklasang ang pangkalahatang resulta ay comparable [1]. Ang konklusyon nito ay ang kadalubhasaan ng surgeon at ang partikular na kondisyon ng pasyente ay mas mahahalagang konsiderasyon kaysa sa mismong teknika [1].

Isa itong hindi pangkaraniwang direktang pahayag para sa isang systematic review, at nararapat itong tanggapin nang literal. Ito ay isang operasyong teknikal na mapanghamon na isinasagawa malapit sa tatlong pangunahing nerve sa isang joint na ang kapasidad ay nabawasan na dahil sa contracture na ginagamot. Ang pagiging pamilyar sa approach ay mas may malaking papel kaysa sa mismong approach.

Mas kaunting operasyon, mas kaunting problema

Isang naunang systematic review ng 798 na pasyente ang nakarating sa isang konklusyon na nananatiling totoo: ang bilang ng mga komplikasyon ay tila tumataas kasabay ng lawak ng surgical procedure, at ang payong kasunod nito ay gamutin sa paraang hindi gaanong invasive hangga't maaari [2]. Binigyan ng mga may-akda ang rekomendasyong iyon ng katamtamang grado, ang literatura ay hindi sapat na matibay para sa isang matatag na statistical conclusion, ngunit ang direksyon ay pare-pareho.

Ito ang tensyon sa sentro ng operasyon. Ang isang mas kumpletong release ay nagbibigay ng mas maraming motion sa operating table, ngunit nagreresulta sa mas maraming soft-tissue trauma, mas maraming pagdurugo sa joint, at mas maraming inflammatory stimulus, na mga raw materials para sa pagbabalik ng stiffness.

Heterotopic ossification ang dapat iwasan

Ang heterotopic ossification, kung saan nabubuo ang buto sa soft tissue na dapat ay nananatiling flexible, ay ang mekanismo kung saan muling tumitigas ang isang released elbow. Ang prophylaxis gamit ang mga anti-inflammatory ay standard, bagaman mas manipis ang ebidensya kaysa sa praktis.

Isang meta-analysis ng 622 na pasyente na naghahambing ng COX-2 selective laban sa nonselective anti-inflammatories pagkatapos ng elbow trauma surgery ang nakatuklas na parehong epektibong nagbabawas ng panganib ng heterotopic ossification, habang ang mga indibidwal na head-to-head comparison ay hindi nagpakita ng statistically significant na pagkakaiba sa pagitan nila, at ang pangkalahatang power ng ebidensya ay mababa [3]. Kaya: ang prophylaxis ay tila kapaki-pakinabang, ang pagpili ng agent ay hindi malinaw na may malaking epekto, at ang katiyakan ay limitado.

Nakatutulong ang konteksto upang itakda ang mga ekspektasyon. Pagkatapos ng total elbow arthroplasty, ang heterotopic ossification ay isang hindi karaniwang komplikasyon, at kung saan ito nabubuo, karamihan sa mga pasyente ay asymptomatic at hindi nangangailangan ng operasyon para rito, hanggang sa punto na ang routine prophylaxis pagkatapos ng operasyong iyon ay hindi sinusuportahan ng literatura [4]. Ang panganib ay hindi uniporme sa lahat ng elbow surgery; ito ay nakatuon sa trauma at sa mga extensive release.

Isang interbensyon na hindi nagbibigay ng inaasahang resulta

Binabawasan ng tranexamic acid ang pagdurugo sa maraming operasyong orthopaedic, at ang pagbabawas ng pagdurugo sa isang bagong palayang siko ay tila dapat magbawas ng paninigas. Isang meta-analysis sa 660 na pasyente ang nakatuklas na ang tranexamic acid ay maaaring talagang magbawas ng volume ng pagdurugo habang isinasagawa ang open elbow arthrolysis, ngunit hindi nito naapektuhan ang pinal na range of motion o pain scores [5].

Isa itong malinaw na halimbawa ng isang plausible mechanism na nabigong magsalin tungo sa outcome na mahalaga sa sinuman, at isang paalala na ang "mas kaunting pagdurugo" ay isang surrogate, hindi isang resulta.

Ano talaga ang nagtatakda ng iyong outcome

Walang anumang bahagi sa literaturang ito ang nagmumungkahi ng isang technical shortcut. Ang mga consistent na signal ay dapat na ang operasyon ay hindi mas malaki kaysa sa kinakailangan, na ang prophylaxis laban sa heterotopic ossification ay sulit gawin, at ang motion na nakuha sa theatre ay mapapanatili lamang sa pamamagitan ng rehabilitasyong susunod. Ang siko ay hindi pangkaraniwang madaling tumigas; ang mga buwan pagkatapos ng release ay kasinghalaga rin ng mismong release.

Mga Sanggunian

[1] Khorram R, Ghayyad K, Vafadar R, Borazjani R, Nezameslami A, Huffman GR, et al. Surgical treatments of post-traumatic elbow stiffness: a systematic review and meta-analysis. J Shoulder Elbow Surg. 2026;35(1):387-407. https://doi.org/10.1016/j.jse.2025.05.004

[2] Kodde IF, van Rijn J, van den Bekerom MP, Eygendaal D. Surgical treatment of post-traumatic elbow stiffness: a systematic review. J Shoulder Elbow Surg. 2013;22(4):574-80. https://doi.org/10.1016/j.jse.2012.11.010

[3] Ahmad A, Khorram R, Ghayyad K, Amin V, Kachooei AR, Huffman GR, et al. Postoperative nonsteroidal anti-inflammatory drug prophylaxis for elbow heterotopic ossification: a systematic review and meta-analysis comparing COX-2 selective and nonselective inhibitors. JSES Rev Rep Tech. 2026;6(2):100628. https://doi.org/10.1016/j.xrrt.2025.100628

[4] Liu EY, Hildebrand A, Horner NS, Athwal GS, Khan M, Alolabi B. Heterotopic ossification after total elbow arthroplasty: a systematic review. J Shoulder Elbow Surg. 2019;28(3):587-95. https://doi.org/10.1016/j.jse.2018.10.003

[5] Nejat MH, Khayami A, Daliri M, Ebrahimzadeh MH, Sadeghi M, Moradi A. Does tranexamic acid diminish hemorrhage and pain in open elbow arthrolysis? A systematic review and meta-analysis. BMC Musculoskelet Disord. 2023;24(1). https://doi.org/10.1186/s12891-023-06835-7


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.

Overview

  • In the setting of failed nonsurgical treatment of the stiff elbow, surgical release can yield sustained improvement of range of motion and patient quality of life [1].
  • Treatment choices for elbow stiffness must consider non-surgical management and various surgical options including arthroscopic or open capsular release, arthroplasty, and elbow replacement [2].
  • Arthroscopic capsular release of the elbow is effective for restoring a functional arc of motion in the short term in most patients with extrinsic contractures [3].
  • Arthroscopic elbow contracture release can improve function and range of motion, though outcomes may vary based on preoperative patient characteristics [4].
  • Current literature provides state-of-the-art guidance on the management regarding prevention, evaluation, and treatment of elbow stiffness [5].
  • Patients with stiff elbows who underwent arthroscopic arthrolysis achieved satisfactory clinical outcomes very early postoperatively [7].
  • Current treatment options for post-traumatic elbow stiffness range from conservative to surgical, with varying rates of success, invasiveness, and complications [8].
  • A multinational initiative provides the first comprehensive clinical practice guideline for open arthrolysis in adult posttraumatic elbow stiffness [9].
  • A subset of pediatric patients with persistent stiffness following medial epicondyle fractures may benefit from additional interventions, including intensive therapy, transposition of the ulnar nerve, and open capsular release [13].
  • In most cases, the current use of arthroscopy by experienced surgeons will produce results superior to those of open release given the proper indications [14].
  • The use of a hinged external fixator in open arthrolysis for posttraumatic elbow stiffness may result in short-term improvements in flexion-extension range of motion [16].
  • The use of a hinged external fixator in open arthrolysis for posttraumatic elbow stiffness is accompanied by increased blood loss, longer operative time, extended hospitalization, and higher costs [16].
  • The dual mediolateral mini-open technique allows for a safe and effective release of stiff elbows through small incisions of 3–5 cm in length [18].

Anatomy & Pathophysiology

Bony Anatomy

  • The elbow is a trocho-ginglymoid joint consisting of medial and lateral articulations that provide bony stability [28].
  • The medial articulation involves the trochlea and the ulna within the greater sigmoid notch, forming the ulnohumeral hinged portion [28].
  • The ulnohumeral articulation features highly congruent anatomy through almost 180° of articular contact, except for a bare area of the greater sigmoid notch devoid of cartilage [28].
  • The coronoid process has medial and lateral facets that buttress the trochlea anteriorly [28].
  • The sublime tubercle is located just distal and medial to the coronoid and serves as the attachment site for the anterior bundle of the medial ulnar collateral ligament [28].
  • The lateral articulation involves the capitellum and radial head, forming the radiocapitellar joint [28].
  • The radius is held in close approximation to the ulna at the proximal radioulnar joint by the annular ligament [28].
  • The radial head is a concave elliptical structure covered with articular cartilage along the radiocapitellar joint and approximately 270° of the articular margin [28].
  • The distal humeral articulation is angled 30° from the longitudinal axis [28].
  • The axis of rotation is angulated 5° to 7° in the coronal plane relative to the epicondylar axis, with the medial side more distal than the lateral side [28].
  • The ulna medially bends approximately 8° at 8 cm from the tip of the olecranon [28].
  • The articulation to the tip of the coronoid is approximately 30° from the long axis of the ulna in the sagittal plane [28].

Ligaments and Soft Tissue

  • Elbow stability is determined by primary stabilizers (ulnohumeral articulation, MUCL, LUCL complex) and secondary stabilizers (radiocapitellar articulation, common flexor tendon, common extensor tendon, joint capsule) [25].
  • The medial ulnar collateral ligament is the primary valgus stabilizer of the elbow [29].
  • The anterior bundle of the medial ulnar collateral ligament is the most important component for stability [29].
  • The posterior bundle of the medial ulnar collateral ligament becomes taut at flexion beyond 120 degrees [29].
  • The lateral ulnar collateral ligament serves as the posterolateral stabilizer of the elbow [29].
  • Osborne’s ligament stabilizes the ulnar nerve in the cubital tunnel [29].
  • The ligament of Struthers is a variant anatomy arising from the supracondylar process to attach to the medial epicondyle and is a potential site of median nerve compression [29].
  • The joint capsule allows maximum distension at approximately 70 to 80 degrees of flexion [29].
  • The anterior capsule attaches at a point approximately 6 mm distal to the tip of the coronoid [29].
  • Tensile forces are present at the medial elbow, while compressive forces are present at the lateral elbow [29].

Muscles

  • The brachialis is the strongest elbow flexor and attaches to the coronoid 11 mm distal to the tip [29].
  • The biceps brachii inserts at the ulnar margin of the radial tuberosity and acts as a powerful supinator of the forearm [29].
  • The triceps brachii is the primary elbow extensor and inserts on the olecranon process [29].
  • The mobile wad consists of the brachioradialis, extensor carpi radialis longus, and extensor carpi radialis brevis [29].
  • The flexor-pronator mass includes the pronator teres, flexor carpi radialis, palmaris longus, flexor carpi ulnaris, and flexor digitorum superficialis [29].

Pathophysiology and Functional Range

  • The normal elbow has a range of motion from 0° to 140° from extension to flexion [25].
  • The normal elbow has a range of motion of 75° in pronation and 85° in supination [25].
  • A functional arc of motion for the elbow is 100° for flexion and extension [25].
  • A functional arc of motion for the elbow is 100° for forearm rotation [25].
  • Successful intervention for a stiff elbow depends on the quality of the joint and the extent of soft tissue damage [11].
  • The functional arc of motion serves as a frame of reference rather than an absolute goal for stiff elbow treatment [11].
  • Treatment of the stiff elbow requires a thorough understanding of normal anatomy and etiological factors to develop effective strategies [10].

Classification

  • The S.T.I.F. classification system highlights the aetiology of elbow stiffness [51].
  • The S.T.I.F. classification system provides a framework to better understand the natural history of elbow stiffness [51].
  • The S.T.I.F. classification system provides a framework to direct surgical management of elbow stiffness [51].
  • The S.T.I.F. classification system provides a framework to predict clinical outcomes for elbow stiffness [51].
  • Influencing factors must be taken into consideration for proper surgical indication and prognosis when using the S.T.I.F. classification system [51].
  • The S.T.I.F. classification system is beneficial for research because identifying homogenous patterns of stiffness allows for more appropriate comparison between different treatment options [51].
  • Based on the S.T.I.F. classification system, a treatment algorithm can be proposed that includes the severity of the disorders as a guide to surgical treatment [51].
  • Based on the S.T.I.F. classification system, a treatment algorithm can be proposed that includes the severity of the disorders as a guide to the preferred operative approach (open or scope) [51].
  • The prevalent types of stiffness identified by the S.T.I.F. classification system could be applied in the future to Artificial Intelligence to help in diagnosing the cause of elbow stiffness [51].

Clinical Presentation

  • Elbow stiffness is a challenging problem with no ideal management solution [6].
  • Elbow contracture is challenging to treat, and therefore prevention is of paramount importance [17].
  • Restoration of joint motion in the posttraumatic stiff elbow can be a difficult, time-consuming, and costly challenge [15].
  • Successful intervention for stiff elbow depends on the quality of the joint and the extent of soft tissue damage [11].
  • The functional arc of motion serves as a frame of reference rather than an absolute goal for stiff elbow intervention [11].
  • Conservative treatment is indicated for patients that have elbow stiffness due to heterotopic ossification for less than six months [22].
  • Current non-surgical treatment measures for elbow stiffness due to heterotopic ossification include physical therapy and manipulation under anesthesia in order to restore the range of motion of the involved joint [22].
  • Non-surgical options for heterotopic ossification have limited effects and can be used mainly in cases that cause a small limitation of range of motion [22].
  • Surgical options are necessary if nonoperative management fails to restore the elbow function and range of motion after 6 months in patients with heterotopic ossification [22].
  • Surgical excision of ectopic bone and contracture release, if present, are the most common surgical options in elbow heterotopic ossification management [22].
  • Arthroscopic elbow contracture release can improve function and range of motion, although outcomes may vary based on preoperative patient characteristics [4].
  • Although both open and arthroscopic techniques may produce satisfactory results, the current use of arthroscopy by experienced surgeons will produce results superior to those of open release given the proper indications [14].
  • Operative management of pediatric elbow contractures is effective [23].
  • Patients undergoing operative management of elbow stiffness secondary to heterotopic ossification maintained substantial reductions in pain, improvement in elbow range of motion, and increased overall elbow function [12].
  • Treatment of bony encasement of the ulnar nerve secondary to heterotopic ossification of the elbow leads to superior range of motion, improved or resolved ulnar neuropathy, and good to excellent long-term functional outcomes [24].
  • Delayed-onset anterior interosseous nerve palsy can develop one week after open elbow contracture release, likely due to a stretch injury [26].

Investigations

History and Physical Examination

  • The history for elbow stiffness evaluation includes the duration of the contracture, initial injury, previous surgical procedures, trials of splinting/therapy/injections, surgical complications, and patient work/life demands [34].
  • Physical examination must assess the function of the shoulder, wrist, and hand [34].
  • The soft tissue surrounding the elbow should be examined for previous skin incisions, grafts, eschar, or infection [34].
  • Active and passive flexion, extension, supination, and pronation should be evaluated using a goniometer for accurate measurement [34].
  • The contralateral elbow should be examined for comparison during range of motion assessment [34].
  • If the elbow has less than 90° to 100° of flexion, the posterior bundle of the medial collateral ligament is contracted and must be released to restore flexion [34].
  • Pain assessment during the mid-arc or at terminal ends of motion helps distinguish intrinsic disease from contracture, as mid-arc pain is more common with intrinsic disease and may not improve with contracture release alone [34].
  • The ulnar nerve is of utmost importance in the neurovascular examination due to its anatomic proximity to the elbow [34].
  • Electromyography and nerve conduction velocity studies should be performed if there is any question about neurologic dysfunction [34].
  • An assessment for ulnar nerve subluxation should be performed, as subluxation is a relative contraindication for arthroscopic procedures due to the risk of iatrogenic nerve injury [34].
  • The surgeon must verify if the ulnar nerve has been transposed if there is a history of prior surgical procedures [34].
  • Successful intervention for stiff elbow depends on the quality of the joint and the extent of soft tissue damage, with the functional arc of motion serving as a frame of reference rather than an absolute goal [11].

Imaging

  • Radiographs should always be obtained for the evaluation of elbow stiffness [34].
  • Standard radiographic views include AP, lateral, and oblique views, with serial radiography used as follow-up when heterotopic ossification is present [34].
  • Primary bony landmarks assessed on radiographs include the ulnohumeral joint, coronoid process, radial head, capitellum, radiocapitellar joint, olecranon tip, coronoid/olecranon fossae, and trochlear ridge [34].
  • CT is helpful for assessing malunion architecture and the location and pattern of osteophytes or loose bodies [34].
  • Three-dimensional CT is used to check for heterotopic ossification [34].
  • CT is not necessary when the stiffness is entirely soft-tissue related, but is beneficial if any joint incongruity or abnormal bony anatomy is present [34].
  • MRI can be used to evaluate ligaments and tendons but is rarely indicated for elbow stiffness [34].
  • The normal elbow has a range of motion from 0° to 140° from extension to flexion and 75° and 85° in pronation and supination respectively [25].
  • A functional arc in each plane is 100° for flexion and extension and forearm rotation [25].
  • Elbow stability is determined by primary stabilizers (ulnohumeral articulation, MUCL, LUCL) and secondary stabilizers (radiocapitellar articulation, common flexor tendon, common extensor tendon, joint capsule) [25].

Treatment

General Principles and Indications

  • Elbow stiffness is a challenging problem with no ideal management solution; however, functional improvements can be achieved with both nonsurgical and surgical strategies [6].

Arthroscopic Release

  • Arthroscopic elbow contracture release can improve function and range of motion; however, outcomes may vary based on preoperative patient characteristics [4].
  • Although both open and arthroscopic techniques may produce satisfactory results, the authors believe that in most cases the current use of arthroscopy by experienced surgeons will produce results superior to those of open release given the proper indications [14].
  • Additional peripheral nerve block combined with a postoperative nerve block catheter in arthroscopic arthrolysis in cases of elbow stiffness may be an opportunity to enhance postoperative outcomes by achieving better functional ROM, perhaps through reduced postoperative pain [48].

Open Release and Techniques

  • This multinational initiative provides the first comprehensive clinical practice guideline for open arthrolysis in adult posttraumatic elbow stiffness [9].
  • The use of a hinged external fixator in open arthrolysis for posttraumatic elbow stiffness may result in short-term improvements in flexion-extension range of motion but is accompanied by increased blood loss, longer operative time, extended hospitalization, and higher costs [16].
  • The most common reason for a failed contracture release is a failure on the part of the surgeon to abandon an orthodox method in favor of a less assured technique or to use a single anatomic approach to the joint when the potential gain in motion is not achieved at the time of surgery [40].
  • The operative contracture release requires a progressive, adaptive surgical approach, and the surgeon must safely increase the exposure in order to excise the offending fibrosis on nearly all aspects of the joint, anteroposterior and mediolateral [40].
  • If an uncomplicated, simple dislocation has caused a 30-degree flexion contracture, arthroscopic capsular excision may be sufficient [40].
  • The best care for a given patient with a contracture is the most minimal necessary surgery, including minimal anatomic exposure, and rehabilitation to achieve the desired result [40].
  • A patient with a range of 40 to 105 degrees and heterotopic ossification will usually require exposure of the capsule for complete excision from both the medial and lateral approaches but not necessarily hinged fixation [40].
  • In a circumstance with more massive heterotopic ossification, hinged external fixation may be necessary to stabilize the elbow postoperatively and permit immediate motion with intermittent passive stretch [40].
  • The surgeon should be prepared to extend the exposure or approach the joint from an additional direction if full passive motion is not achieved on the operating table [40].
  • In older patients with suspected cartilage damage or avascular bone, total elbow replacement should be available and discussed before surgery [40].

Outcomes and Complications

  • Overall, patients maintained substantial reductions in pain, improvement in elbow range of motion, and increased overall elbow function after operative management of elbow stiffness secondary to heterotopic ossification [12].
  • The gain in range of motion for open arthrolysis was 51° [19].
  • The gain in range of motion for arthroscopic arthrolysis was 40° [19].
  • The gain in range of motion for open arthrolysis with external fixation was 88° [19].
  • The gain in range of motion for open arthrolysis with distraction arthroplasty was 56° [19].
  • The average percentage of complications for open arthrolysis was 23% [19].
  • The average percentage of complications for arthroscopic arthrolysis was 5% [19].
  • The average percentage of complications for open arthrolysis with external fixation was 73% [19].
  • The average percentage of complications for open arthrolysis with distraction arthroplasty was 58% [19].

Complications

  • The use of a hinged external fixator in open arthrolysis is accompanied by increased blood loss [16].
  • The use of a hinged external fixator in open arthrolysis is accompanied by longer operative time [16].
  • The use of a hinged external fixator in open arthrolysis is accompanied by extended hospitalization [16].
  • The use of a hinged external fixator in open arthrolysis is accompanied by higher costs [16].
  • Current treatment options for post-traumatic elbow stiffness have varying rates of complications [8].

Recovery

  • Surgical release of the stiff elbow can yield sustained improvement of range of motion and patient quality of life in the setting of failed nonsurgical treatment [1].
  • Arthroscopic capsular release is effective for restoring a functional arc of motion in the short term in most patients with extrinsic contractures [3].
  • Functional improvements can be achieved with both nonsurgical and surgical strategies for elbow stiffness [6].
  • Treatment for bony encasement of the ulnar nerve secondary to heterotopic ossification of the elbow leads to superior range of motion, improved or resolved ulnar neuropathy, and good to excellent long-term functional outcomes [24].

Key Evidence

  • [L5] In the setting of failed nonsurgical treatment of the stiff elbow, surgical release can yield sustained improvement of ROM and patient quality of life. [1] (10.5435/jaaos-d-14-00051)
  • [L5] Treatment choices must consider non-surgical management and various surgical options including arthroscopic or open capsular release, arthroplasty, and elbow replacement. [2] (10.1016/j.jisako.2023.10.009)
  • [L5] Arthroscopic capsular release of the elbow is effective for restoring a functional arc of motion in the short term in most patients with extrinsic contractures. [3] (10.5435/00124635-201105000-00004)
  • [L4] Arthroscopic elbow contracture release can improve function and range of motion; however, outcomes may vary based on preoperative patient characteristics. [4] (10.1016/j.jseint.2026.101621)
  • [L4] This paper reviews the current literature and provides state-of-the-art guidance on the management regarding prevention, evaluation, and treatment of elbow stiffness. [5] (10.1530/eor-23-0039)
  • [L4] Elbow stiffness is a challenging problem with no ideal management solution; however, functional improvements can be achieved with both nonsurgical and surgical strategies, and recent advancements in biology and pathology may lead to future breakthroughs in prevention and treatment. [6] (10.1016/j.jhsa.2013.06.007)
  • [L1] Patients with stiff elbows who underwent arthroscopic arthrolysis achieved satisfactory clinical outcomes very early postoperatively. [7] (10.1016/j.jse.2024.06.009)
  • [L5] Current treatment options for post-traumatic elbow stiffness range from conservative to surgical, with varying rates of success, invasiveness, and complications. [8] (10.1177/1758573218793903)
  • [L5] This multinational initiative provides the first comprehensive clinical practice guideline for open arthrolysis in adult posttraumatic elbow stiffness. [9] (10.1016/j.jse.2025.07.015)
  • [L5] Treatment of the stiff elbow requires a thorough understanding of normal anatomy and etiological factors to develop effective strategies. [10] (10.1016/j.jisako.2023.10.006)
  • [L5] Successful intervention for stiff elbow depends on the quality of the joint and the extent of soft tissue damage, with the functional arc of motion serving as a frame of reference rather than an absolute goal. [11] (10.1016/j.jisako.2023.09.002)
  • [L4] Overall, patients maintained substantial reductions in pain, improvement in elbow range of motion, and increased overall elbow function. [12] (10.1016/j.jse.2024.11.019)
  • [L4] A subset of pediatric patients with persistent stiffness following medial epicondyle fractures may benefit from additional interventions, including intensive therapy, transposition of the ulnar nerve, and open capsular release. [13] (10.1016/j.jhsg.2023.07.002)
  • [L5] Although both open and arthroscopic techniques may produce satisfactory results, the authors believe that in most cases the current use of arthroscopy by experienced surgeons will produce results superior to those of open release given the proper indications. [14] (10.1016/j.jse.2010.11.029)
  • [L4] Restoration of joint motion in the posttraumatic stiff elbow can be a difficult, time-consuming, and costly challenge. [15] (10.1016/j.jhsa.2007.09.015)
  • [L3] The use of a hinged external fixator in open arthrolysis for posttraumatic elbow stiffness may result in short-term improvements in flexion-extension range of motion but is accompanied by increased blood loss, longer operative time, extended hospitalization, and higher costs. [16] (10.1186/s12891-024-08167-6)
  • [L5] Elbow contracture is challenging to treat, and therefore prevention is of paramount importance. [17] (10.1016/j.jhsa.2009.02.020)
  • [L4] The dual mediolateral mini-open technique allows for a safe and effective release of stiff elbows through small incisions of 3–5 cm in length. [18] (10.1186/s13018-025-06288-9)
  • [L4] [19] (10.1016/j.jse.2012.11.010)
  • [L4] [22] (10.3390/life13122358)
  • [L1] Operative management of pediatric elbow contractures is effective. [23] (10.1016/j.jhsa.2024.01.010)
  • [L4] This treatment approach leads to superior range of motion, improved or resolved ulnar neuropathy, and good to excellent long-term functional outcomes. [24] (10.1016/j.jse.2023.12.003)
  • [Case_report] The authors describe a case of delayed-onset anterior interosseous nerve palsy developing one week after open elbow contracture release, likely due to a stretch injury. [26] (10.5397/cise.2022.00899)
  • [L3] Additional peripheral nerve block combined with a postoperative nerve block catheter in arthroscopic arthrolysis in cases of elbow stiffness may be an opportunity to enhance postoperative outcomes by achieving better functional ROM, perhaps through reduced postoperative pain. [48] (10.1016/j.jseint.2024.10.009)
  • [L5] [51] (10.1016/j.jisako.2023.10.011)

References

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[2] Elbow stiffness: Arthritis and heterotopic ossification. Journal of ISAKOS. 2024. DOI: 10.1016/j.jisako.2023.10.009

[3] Arthroscopic Management of the Stiff Elbow. American Academy of Orthopaedic Surgeon. 2011. DOI: 10.5435/00124635-201105000-00004

[4] Preoperative risk factors associated with patient outcomes following arthroscopic elbow contracture release. JSES International. 2026. DOI: 10.1016/j.jseint.2026.101621

[5] Management of the stiff elbow: a literature review. EFORT Open Reviews. 2023. DOI: 10.1530/eor-23-0039

[6] Prevention and Treatment of Elbow Stiffness: A 5-Year Update. The Journal of Hand Surgery. 2013. DOI: 10.1016/j.jhsa.2013.06.007

[7] Does tranexamic acid reduce elbow swelling and improve early function following arthroscopic arthrolysis? A double-blind randomized controlled trial. Journal of Shoulder and Elbow Surgery. 2024. DOI: 10.1016/j.jse.2024.06.009

[8] Post-traumatic elbow stiffness: Pathogenesis and current treatments. Shoulder & Elbow. 2018. DOI: 10.1177/1758573218793903

[9] Clinical guideline on the open arthrolysis for post-traumatic elbow stiffness in adult patients. Journal of Shoulder and Elbow Surgery. 2026. DOI: 10.1016/j.jse.2025.07.015

[10] The examination and treatment of soft tissue contracture of the elbow. Journal of ISAKOS. 2024. DOI: 10.1016/j.jisako.2023.10.006

[11] Elbow stiffness: Interview with professor Bernard Morrey. Journal of ISAKOS. 2024. DOI: 10.1016/j.jisako.2023.09.002

[12] Assessing long-term outcomes after operative management of elbow stiffness secondary to heterotopic ossification. Journal of Shoulder and Elbow Surgery. 2025. DOI: 10.1016/j.jse.2024.11.019

[13] Outcomes of Therapy and Ulnar Nerve Transposition for Elbow Stiffness After Pediatric Medial Epicondyle Fractures. Journal of Hand Surgery Global Online. 2023. DOI: 10.1016/j.jhsg.2023.07.002

[14] Arthroscopic management of the post-traumatic stiff elbow. Journal of Shoulder and Elbow Surgery. 2011. DOI: 10.1016/j.jse.2010.11.029

[15] The Posttraumatic Stiff Elbow: A Review of the Literature. The Journal of Hand Surgery. 2007. DOI: 10.1016/j.jhsa.2007.09.015

[16] Comparative study of open elbow arthrolysis with and without hinge external fixation for the treatment of post-traumatic elbow stiffness. BMC Musculoskeletal Disorders. 2024. DOI: 10.1186/s12891-024-08167-6

[17] Prevention and Treatment of Elbow Stiffness. The Journal of Hand Surgery. 2009. DOI: 10.1016/j.jhsa.2009.02.020

[18] Dual mediolateral mini-open technique for the release of elbow contracture. Journal of Orthopaedic Surgery and Research. 2025. DOI: 10.1186/s13018-025-06288-9

[19] Surgical treatment of post-traumatic elbow stiffness: a systematic review. Journal of Shoulder and Elbow Surgery. 2013. DOI: 10.1016/j.jse.2012.11.010

[22] Heterotopic Ossification around the Elbow Revisited. Life. 2023. DOI: 10.3390/life13122358

[23] Clinical Outcomes Following Surgical Management of Post-Traumatic Elbow Contractures in the Pediatric Age Group: A Meta-Analysis and Systematic Review. The Journal of Hand Surgery. 2025. DOI: 10.1016/j.jhsa.2024.01.010

[24] Bony encasement of the ulnar nerve secondary to heterotopic ossification of the elbow: an evaluation of long-term outcomes. Journal of Shoulder and Elbow Surgery. 2024. DOI: 10.1016/j.jse.2023.12.003

[25] Orthopaedic Knowledge Update 13 Ebook Without Multimedia. Anatomy, Biomechanics, Physical Examination, and Imaging of the Elbow > Summary and Conclusions.

[26] Anterior interosseous nerve palsy in the early postoperative period after open capsular release for elbow stiffness: a case report. Clinics in Shoulder and Elbow. 2023. DOI: 10.5397/cise.2022.00899

[28] Orthopaedic Knowledge Update 13 Ebook Without Multimedia. Anatomy, Biomechanics, Physical Examination, and Imaging of the Elbow > Anatomy > Bony Anatomy.

[29] Miller S Review Of Orthopaedics. SECTION 16 PATELLAR TRACKING IN TOTAL KNEE ARTHROPLASTY > TABLE 2.3 Shoulder Spaces.

[34] Aaos Comprehensive Orthopaedic Review 3. Elbow Stiffness* > IV. Evaluation.

[40] Green S Operative Hand Surgery. Classifying the Contracture and Matching the Operative Plan.

[48] A comparative analysis of short-term results in range of motion following arthroscopic arthrolysis with vs. without peripheral nerve block in cases of elbow stiffness. JSES International. 2025. DOI: 10.1016/j.jseint.2024.10.009

[51] Classification of elbow stiffness. Journal of ISAKOS. 2024. DOI: 10.1016/j.jisako.2023.10.011