Subacromial Decompression Impormasyon Pahintulot
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. Ang isang clinic assessment, kabilang ang iyong history, isang pagsusuri at imaging kung kinakailangan, ang nagtatakda ng diagnosis.
Ang subacromial decompression ay isang operasyon na naglilinis ng espasyo sa ilalim ng outer edge ng shoulder blade kung saan ang mga tendon ng rotator cuff ay maaaring maipit at magdulot ng sakit. Karaniwan namin itong inaalok kapag nakakaranas ka ng sakit sa ilang partikular na paggalaw, gaya ng pag-angat ng iyong braso, at ang sakit na iyon ay hindi nawala sa pamamagitan ng non-operative care gaya ng pagbabago sa aktibidad, physiotherapy o hand therapy. Isinasaalang-alang ang surgery kapag ang mga hakbang na iyon ay hindi nagbigay ng sapat na pagbuti. Kapag ang operasyon ay ginawa sa tamang mga dahilan, na may maingat na pagpili, ito ay epektibo para sa maraming tao: ito ay epektibo sa 70% hanggang 75% ng mga kaso. Ang pangunahing layunin ay pagaanin ang iyong sakit at tulungan ang iyong balikat na gumana nang mas mabuti sa pang-araw-araw na buhay.
Bago ang operasyon
Bago ang iyong operasyon, kumpirmado namin ang plano gamit ang imaging tulad ng X-ray, MRI (isang scan na nagpapakita ng mga soft tissue tulad ng mga tendon) o ultrasound. Karamihan sa mga pasyente ay hindi nangangailangan ng iba pang pagsusuri. Kung mayroon kang iba pang kondisyong medikal, maaaring kailanganin mo ng mga blood test o pagsusuri kasama ang anaesthetist (ang espesyalista na nagbibigay ng iyong anaesthetic). Kakailanganin mong itigil ang pagkain at pag-inom pitong oras bago ang operasyon. Humihiling kami ng pitong oras sa halip na ang karaniwang anim upang maaari kang mauna kung maagang matapos ang listahan sa theatre. Magdala ng listahan ng iyong mga kasalukuyang gamot, dahil ang ilan ay maaaring kailangang itigil muna bago ang operasyon. Mag-ayos ng taong maghahatid sa iyo pauwi pagkatapos. Magsuot ng maluwag at komportableng damit na madaling hubarin.
Sa araw ng operasyon
Darating kayo sa surgical admissions unit ng ospital, kung saan kayo ay i-che-check in at ihahanda para sa theatre. Pagkatapos ay makikipagkita kayo sa anaesthetist. Ang operasyong ito ay ginagawa sa ilalim ng general anaesthetic na pinagsama sa isang regional nerve block. Makikipagkita ang anaesthetist sa inyo bago ang operasyon at ipapaliwanag sa inyo ang dalawang bahaging ito.
Pagkatapos ay dadalhin kayo sa operating theatre, kung saan isasagawa ang operasyon. Pagkatapos nito, magigising kayo sa recovery area, kung saan babantayan kayo ng mga nurse habang nawawala ang bisa ng anaesthetic. Kapag stable na kayo, maaaring pumunta kayo sa ward o uuwi na, depende sa procedure at sa inyong paggaling.
Ano ang kinapapalooban ng operasyon
Ito ay isang keyhole operation. Ang iyong surgeon ay gagawa ng ilang maliliit na hiwa sa paligid ng iyong balikat, kabilang ang isa sa likuran, at magtatrabaho sa pamamagitan ng mga ito gamit ang isang maliit na camera at manipis na mga instrumento. Ang camera ay nagpapahintulot sa iyong surgeon na makita ang loob ng balikat nang hindi nangangailangan ng isang malaking bukas.
Kapag nasa loob na, lilinisin ng iyong surgeon ang espasyo sa ilalim ng panlabas na gilid ng shoulder blade. Nangangahulugan ito ng pagtanggal ng namamagang cushioning sac na naroon, na maaaring maging sanhi ng sakit. Papakinisin din ng iyong surgeon ang anumang mga bony lump sa ilalim ng buto sa itaas ng mga tendon. Ang mga bukol na ito ay maaaring kumiskis sa mga tendon kapag itinataas mo ang iyong braso at nag-aambag sa pagkipit (pinching) na inilarawan kanina.
Ang mga hiwa ay sasara gamit ang mga tahi. Isang dressing ang ilalagay sa ibabaw, at pananatilihin mo ang dressing na iyon sa loob ng humigit-kumulang 10 araw.
Pagkatapos ng operasyon
Karamihan sa mga pasyente ay nananatili ng isang gabi sa ospital pagkatapos ng operasyong ito, bagaman ang ilan ay nakakauwi sa mismong araw. Magigising ka sa recovery area, pagkatapos ay ililipat ka sa ward. Maaaring makaramdam ng hapdi at bigat sa iyong balikat habang nawawala ang bisa ng nerve block, at bibigyan ka ng nursing team ng pain relief upang mapanatili kang komportable. Ang iyong braso ay ilalagay sa isang simpleng sling para sa iyong kaginhawaan; tinatanggal ito para sa paghuhugas at para sa iyong mga ehersisyo. Susuriin ng isang nurse ang iyong sugat, ang paggalaw ng iyong kamay, at ang iyong sirkulasyon bago ka umuwi. Iniiwan 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. Mangyaring mag-ayos ng isang tao na sasama o mag-aalaga sa iyo sa unang 24 oras.
Paggaling
Sa mga unang araw pagkatapos ng operasyon, makakaramdam ka ng pananakit at bigat sa iyong balikat, at ang balat sa paligid ng maliliit na hiwa ay maaaring magmukhang pasa at namamagâ. Unti-unti itong huhupa. Ang mga gamot sa pananakit ay magpapanatili sa iyong komportable habang nangyayari ito, at nakatutulong din ang pagpapanatili ng iyong braso sa sling sa pagitan ng mga ehersisyo. Ang pagpapahinga na may mga unan sa ilalim ng iyong braso ay maaaring makatulong upang mas madaling makatulog.
Ang iyong braso ay nakapahinga sa isang simpleng sling para sa iyong komportable. Tinatanggal ito para sa paghuhugas at para sa iyong mga ehersisyo. Gagabayan ka ng iyong physiotherapist sa mga paggalaw upang maiwasan ang paninigas ng balikat. Magsisimula ka sa banayad at ginagabayang paggalaw, at dadami ang mga ehersisyo habang humuhupa ang sakit at bumabalik ang paggalaw. Ang mga pang-araw-araw na gawain tulad ng pagbibihis at pagkain ay unti-unting babalik depende sa kakayahan ng iyong balikat.
Kapag humupa na ang pamamaga at bumuti na ang iyong paggalaw, ang mga magagaan na pang-araw-araw na aktibidad ay magmumukhang mas natural. Kapag pinayagan ka na ng iyong surgeon na magmaneho, karaniwan ay sa six-week review, maaari ka nang bumalik sa pagmamaneho; tingnan ang Driving after upper-limb surgery. Ang pagbabalik sa trabaho ay depende sa kung ano ang saklaw ng iyong trabaho, at tatalakayin ito ng iyong surgeon sa iyong review.
Ang paggaling ay nag-iiba sa bawat tao. Maaaring magkaiba ang iyong timeline, at gagabayan ka ng iyong surgeon at physiotherapist sa bawat hakbang.
Ano ang maaaring maging problema
Karamihan sa mga pasyente ay nagiging maayos, ngunit paminsan-minsan ay maaaring magkaroon ng mga problema. Binabantayan ka nang maigi ng iyong surgeon at ng team upang maagapan ang anumang isyu.
Ang subacromial decompression ay may maliit na panganib ng mga malalang pinsala. Kung ang iyong balikat ay mas sumasakit sa halip na mabawasan, o ang sakit ay nararamdamang malalim at tumitibok (throbbing) at hindi nawawala sa mga simpleng painkiller, makipag-ugnayan sa klinika sa halip na hintayin itong lumipas.
Maaaring mabuo ang isang blood clot sa isang malaking ugat malapit sa balikat pagkatapos ng shoulder tendon repair surgery. Sa mga bihirang kaso, ang clot na ito ay maaaring pumunta sa mga baga. Bantayan ang biglaang pagkapos ng hininga, pananakit ng dibdib, o mabilis na tibok ng puso. Ang mga ito ay nangangailangan ng agarang atensyon, kaya pumunta sa emergency department o tumawag ng ambulansya.
Kung nagkaroon ka na ng operasyong ito noon at kalaunan ay nangailangan ng ibang operasyon sa balikat, gaya ng joint replacement, ang naunang operasyon ay maaaring makaapekto sa kung paano haharapin ng buto sa itaas ng balikat ang bagong joint. Ang buto ay maaaring magkaroon ng maliliit na bali (breaks) sa ilalim ng strain. Mapapansin mo ang sakit sa itaas ng balikat na lumalala kasabay ng aktibidad. Kung mangyari ito pagkatapos ng anumang operasyon sa hinaharap, agad itong ipaalam sa iyong surgeon.
Ang mga pain pump ay minsan ginagamit pagkatapos ng operasyong ito upang maghatid ng pamanhid na gamot sa balikat. Ang paggamit nito ay hindi napatunayang nakapagbabago sa kung paano nagpapagaling ang mga pasyente, pagbabalik sa trabaho, o sa kanilang pinal na resulta nang hindi bababa sa dalawang taon pagkatapos ng operasyon. Kung inaalok ka nito at may mga katanungan, banggitin ang mga ito bago ang iyong operasyon.
Bantayan ang iyong sugat at ang balat sa paligid nito habang nakalagay ang dressing sa loob ng humigit-kumulang 10 araw. Kung mapansin mo ang pamumula na kumakalat mula sa sugat, may likidong tumatagas sa dressing, o nakararamdam ka ng lagnat, tumawag sa klinika. Huwag tanggalin ang dressing nang mag-isa; kami ang magpapalit o magtatanggal nito kapag nakita ka namin.
Ipaalam ang anumang hindi pangkaraniwan sa iyong mga review appointment, kahit na tila maliit na bagay lamang ito. Ang maagang pag-uulat ay nagpapadali sa pamamahala ng mga problema.
Ang table ng mga komplikasyon sa pahinang ito ay naglilista ng mga tipikal na rate kung nais mo ang mga detalye.
Kailan dapat tumawag sa amin
Tumawag sa amin kung nakararamdam kayo ng lagnat, kung ang balat sa paligid ng inyong sugat ay namumula at kumakalat, o kung may likidong lumalabas sa dressing. Tumawag sa amin kung ang sakit sa inyong balikat ay patuloy na lumalala sa halip na humupa. Pumunta sa emergency kung bigla kayong nahihirapang huminga, may pananakit ng dibdib o mabilis na tibok ng puso, o kung ang isa sa inyong mga binti (calf) ay namamagâ at maselan kapag hinahawakan. Pumunta sa emergency kung mawalan kayo ng pakiramdam sa inyong braso o kamay, o kung hindi niyo ito maigalaw. Kapag nag-aalinlangan, tumawag sa klinika.
Saan maaaring magbasa nang higit pa tungkol sa kondisyon
Ang pahinang ito ay tungkol sa operasyon mismo. Ang kondisyong ginagamot nito, kabilang ang kung ano ang ipinapakita ng ebidensya tungkol sa kung kailan nakatutulong ang operasyon at kung kailan hindi, ay tinalakay nang mas detalyado sa pahinang Subacromial Impingement and Bursitis.
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 appropriately selected patients, in-office needle arthroscopy of the shoulder with subacromial decompression can be performed by a simple technique [1].
- Further studies and clinical trials are needed to evaluate functional results of biplanar acromioplasty [2].
- Computer image-guided precise acromioplasty provides an alternative approach to reduce a large critical shoulder angle to the desired range, especially for patients with rotator cuff tears combined with preoperative CSA greater than 35 degrees [3].
- Despite Clinical Practice Guidelines recommending the nonroutine use of acromioplasty, surgeons continue to perform acromioplasty with rotator cuff repair in most of the cases throughout all subcategorizations analyzed [4].
- The arthroscopic technique described for acromioclavicular joint cysts allows for a minimally invasive, reproducible, and reliable approach for AC cyst decompression [5].
Anatomy & Pathophysiology
Bony Anatomy
- The acromion has three ossification centers: the metacromion (base), the mesoacromion (middle), and the preacromion (tip) [11].
- Failure of fusion of the acromial ossification centers results in os acromiale [11].
- The classification of acromial morphology as flat, curved, or hooked is challenged by poor interobserver reliability [11].
- The relationship between acromial anatomy and rotator cuff disease remains controversial [11].
- The scapula is attached to the axial skeleton by the acromioclavicular (AC) and sternoclavicular (SC) joints [10].
- The scapular spine is an osseous ridge that separates the supraspinatus and infraspinatus fossae [11].
- The glenoid is a convex structure of shallow depth shaped like an inverted pear [8].
- The glenoid averages 5° of retroversion in relation to the axis of the scapular body [11].
- The subchondral bone of the glenoid is relatively flat, and the articular concavity is augmented by cartilage and a circumferential labrum [11].
- The humeral head is spherical with a diameter of 37 to 57 mm [8].
- The most superior portion of the articular surface of the humeral head averages 8 mm above the greater tuberosity [8].
- The humeral version averages 29.8 degrees, with a range of 10 to 55 degrees [8].
- The humeral head is inclined approximately 130 degrees with respect to the humeral shaft [8].
- The neck-shaft angle measures an average of 135 degrees [9].
- The humeral head is retroverted an average of 30 degrees [9].
- The proximal humerus receives its blood supply from the anterior and posterior humeral circumflex branches from the third division of the axillary artery [8].
- The anterior humeral circumflex artery provides vascular inflow to the humeral head by way of its terminal anterolateral branch known as the artery of Laing (also known as the arcuate artery) [8].
- The ascending branch of the anterior humeral circumflex artery courses parallel to the lateral aspect of the long head biceps tendon and enters the humeral head at the interface of the bicipital groove and greater tuberosity [8].
- Injury to the arcuate artery may result in osteonecrosis of the humeral head [8].
- Additional extraosseous collateral branches can permit humeral head perfusion despite complete ligation of the arcuate artery [8].
- The greater tuberosity serves as the attachment site for the supraspinatus, infraspinatus, and teres minor tendons of the rotator cuff [8].
- The lesser tuberosity serves as the attachment site for the subscapularis tendon [8].
- The bicipital groove lies between the greater tuberosity and lesser tuberosity and serves as a pathway for the long head of the biceps [8].
- The distal aspect of the bicipital groove is internally rotated with respect to the proximal portion [8].
- The anatomic neck of the proximal humerus is located at the junction of the articular surface and the tuberosities [8].
- The surgical neck represents an indistinct region (metadiaphyseal junction) below the tuberosities but above the humeral shaft [8].
- Fractures involving the anatomic neck are prognostically worse than fractures involving other regions of the proximal humerus with respect to the potential disruption of the vascular supply to the humeral head and subsequent development of avascular necrosis [8].
- The scapula is separated from the chest wall by thin gliding fibro-fatty tissue, allowing its smooth excursion over the chest wall [10].
- The distribution of bony mass in the scapula is highly uneven, with the highest concentration in the glenoid, the scapular neck (including the base of the coracoid process), and the lateral border of the scapular body [10].
- Two bony pillars extend between the glenoid and the scapular body to transmit compressive forces from the glenoid fossa [10].
- The lateral pillar connects the inferior border of the glenoid with the inferior angle [10].
- The spinal pillar arises from the central part of the glenoid and continues medially to become part of the base of the scapular spine [10].
- The weakest bone in the scapula is located primarily in the central part of the biomechanical body, specifically in the infraspinous fossa [10].
- The weakest area of the circumference of the biomechanical body of the scapula is the connection of the scapular spine and the medial border of the scapula, known as the spinomedial angle [10].
Ligaments and Soft Tissue Structures
- The acromion, the coracoacromial ligament, and the coracoid process form the coracoacromial arch [8].
- The coracoacromial arch is a rigid bony-ligamentous structure that imparts stability to the shoulder girdle [8].
- The rotator cuff, subacromial bursa, and subdeltoid bursa pass underneath the coracoacromial arch [8].
- The superior shoulder suspensory complex (SSSC) provides a stable connection between the scapula and the axial skeleton [11].
- The SSSC is composed of the glenoid, the coracoid process, the coracoclavicular ligaments, the distal clavicle, the AC joint, and the acromion [11].
- The superior strut of the SSSC comprises the middle clavicle [11].
- The inferior strut of the SSSC comprises the lateral scapular border/spine of the scapula [11].
- The coracoclavicular ligaments (conoid: medial; trapezoid: lateral) are the primary stabilizers to superior (vertical) translation of the distal clavicle [11].
- The superior and posterior AC ligaments are the primary stabilizers to anterior and posterior (horizontal) translation of the clavicle [11].
- The glenoid labrum provides concavity and up to 50% of marginal glenoid socket depth [11].
- The rotator interval is defined medially by the base of the coracoid, superiorly by the supraspinatus tendon, and inferiorly by the subscapularis tendon [11].
- The rotator interval contains the coracohumeral (CH) ligament, the superior glenohumeral ligament (SGHL), and the intra-articular portion of the long head of the biceps tendon [11].
- Laxity of the rotator interval results in inferior laxity (the sulcus sign) [11].
- Contracture of the rotator interval is seen with adhesive capsulitis [11].
- The CH ligament restricts external rotation in adduction and is a static restraint to inferior and posterior translation in adduction and external rotation [11].
- The SGHL is a primary static restraint against anterior translation with the arm at the side [11].
- With the CH ligament, the SGHL forms a pulley that provides restraint against medial subluxation of the long head of the biceps tendon [11].
- The middle glenohumeral ligament (MGHL) is a primary static restraint against anterior translation with the arm in external rotation and 45° of abduction [11].
- The anterior band of the inferior glenohumeral ligament (AB-IGHL) is a primary static restraint against anterior-inferior dislocation of the glenohumeral joint in 90° of abduction and external rotation [11].
- The posterior band of the IGHL (PB-IGHL) is a primary static restraint against posterior-inferior translation in internal rotation and adduction [11].
- The superior transverse scapular ligament arises from the medial base of the coracoid overlying the suprascapular notch [11].
- The suprascapular artery runs superior to the superior transverse scapular ligament, and the nerve runs deep to the ligament [11].
- Entrapment of the suprascapular nerve at the superior transverse scapular ligament causes denervation of both the supraspinatus and the infraspinatus [11].
- The spinoglenoid ligament overlies the suprascapular nerve at the spinoglenoid notch [11].
- Entrapment, traction, or compression of the suprascapular nerve at the spinoglenoid notch causes denervation of the infraspinatus [11].
Bursae
- The subacromial bursa has clinical importance in the shoulder region [12].
- The subscapular bursa lies between the subscapularis tendon and the neck of the scapula [12].
- The subscapular bursa communicates with the joint cavity between the superior and middle glenohumeral ligaments [12].
- The subscapular bursa protects the tendon of the subscapularis at the point where it passes under the base of the coracoid process and over the neck of the scapula [12].
- The subscapular bursa is linked to the coracoid process by a suspensory ligament [12].
- In 28% of specimens dissected by Colas and colleagues, the subscapular bursae merged with the subcoracoid bursae, forming a unique wide bursa in this region [12].
- The subscapular bursa often houses loose bodies in the shoulder [12].
- The subscapular bursa is a region in which synovitis of the shoulder may be most intense, where small fringes, or villi, can project into the joint cavity [12].
- A soft tissue sheath consistently covers the long head of the biceps tendon to the level of the proximal margin of the pectoralis major tendon and contributes to the roof of the bicipital tunnel [12].
- The fibro-osseous bicipital tunnel consists of three distinct anatomic zones [12].
- Zone 1 of the bicipital tunnel represents the traditional bony bicipital groove beginning at the articular margin and ending at the distal margin of the subscapularis tendon [12].
- Zone 2 of the bicipital tunnel extends from the distal margin of the subscapularis tendon to the proximal margin of the pectoralis major tendon and represents a "no man's land" because it is not viewable from arthroscopy above or from subpectoral exposure below [12].
- Zone 3 of the bicipital tunnel is distal to the proximal margin of the pectoralis major tendon and represents the subpectoral region [12].
Pathophysiology and Biomechanics
- Stability and function of the glenohumeral joint is provided by the interaction of structures that promote a near global range of motion and purposeful function [8].
- External loads transferred to the shoulder girdle are initially offset by joint surface anatomy, joint volume, atmospheric pressure, and joint fluid cohesion and adhesion [8].
- Moderate and large loads are counterbalanced by the deltoid and rotator cuff and by the capsulolabral and bone structures, respectively [8].
- Proximal humeral fractures alter complex interactions in the shoulder girdle, resulting in pain, decreased range of motion and stiffness, and disability [8].
- Displaced proximal humeral fractures can impede normal movement of the rotator cuff, subacromial bursa, and subdeltoid bursa, causing impingement and disruption of normal glenohumeral motion [8].
- In proximal humeral fractures, the subdeltoid and subacromial bursae can become thickened and fibrotic, forming adhesions that can limit normal glenohumeral motion [8].
- Early range of motion exercises after a fracture have been hypothesized to decrease the formation of such adhesions [8].
- The rotator cuff muscles serve as depressors of the humeral head to allow the deltoid to efficiently abduct the humerus [9].
- The infraspinatus and teres minor are external rotators, while the subscapularis is an internal rotator of the humerus [9].
- The glenoid cavity is a shallow socket, approximately one third the size of the humeral head [9].
- Stability of the glenohumeral joint depends on capsule, ligament, and muscle [9].
- A redundant capsule allows for motion in the glenohumeral joint [9].
- The pathogenesis of shoulder stiffness is still elusive, but ongoing basic science research has provided insight into the cellular and biochemical pathways that result in shoulder stiffness [6].
- No treatment for a stiff shoulder has proved to be definitive [6].
- The literature supports many forms of treatment for a stiff shoulder, both operative and nonoperative [6].
- The treatment approach for a stiff shoulder should be tailored to each individual patient to ensure the best possible outcome [6].
Classification
- In appropriately selected patients, in-office needle arthroscopy of the shoulder with subacromial decompression can be performed [1].
- Computer image-guided precise acromioplasty is an alternative approach to reduce a large critical shoulder angle to the desired range, especially for patients with rotator cuff tears combined with preoperative critical shoulder angle greater than 35 degrees [3].
- The arthroscopic technique described allows for a minimally invasive, reproducible, and reliable approach for acromioclavicular cyst decompression [5].
Clinical Presentation
- Computer image-guided precise acromioplasty is an alternative approach to reduce a large critical shoulder angle to the desired range [3].
- Computer image-guided precise acromioplasty is especially for patients with rotator cuff tears combined with preoperative critical shoulder angle greater than 35 degrees [3].
- Surgeons continue to perform acromioplasty with rotator cuff repair in most of the cases throughout all subcategorizations analyzed [4].
- Clinical Practice Guidelines recommend the nonroutine use of acromioplasty [4].
Investigations
Plain Radiography
- The purpose of shoulder imaging is to help establish the diagnosis, determine the severity of the pathoanatomy, assist in surgical planning, and enable the surgeon to illustrate the condition of the shoulder to the patient [7].
- Unless a specific research protocol is in place, the temptation to “overimage” should be resisted, obtaining only the scans or reconstructions that are necessary for the care of the patient [7].
- Standardized plain films are almost always sufficient to garner the information needed for shoulder evaluation [7].
- Proper radiographic technique is as important as proper surgical technique to achieve the desired outcome [7].
- The first key radiographic view is the anteroposterior (AP) view taken in the plane of the scapula such that the x-ray beam passes through the glenohumeral joint [7].
- The AP view in the plane of the scapula shows the superoinferior position of the humeral head relative to the glenoid, the presence of osteophytes on the humeral head and glenoid, narrowing of the joint space, and the degree of medial displacement of the humerus in relation to the lateral acromial line [7].
- The AP view also shows the quality of the humeral and glenoid bone, the presence of loose bodies, and whether there is humeral head collapse or deformity [7].
- The second key radiographic view is the axillary view taken with the arm in the functional position of elevation in the plane of the scapula [7].
- The axillary view is oriented so that both the spinoglenoid notch and the scapular neck are visible [7].
- The axillary view shows a different perspective of the humeral anatomy, the amount of glenoid bone, the shape of the glenoid, its version in relation to the plane of the scapula, and the relationship of the humeral head to the glenoid fossa [7].
- The standardized axillary view is referred to as the “truth view” because it demonstrates the glenohumeral relationships in the functional position of elevation [7].
- CT scans have the disadvantage of being taken with the arm in the adducted position, unlike the axillary truth view which is taken in elevation [7].
- When taken properly, standardized anteroposterior and axillary views indicate the thickness of the cartilage space between the humerus and the glenoid, relative positions of the humeral head and glenoid, presence of osteophytes, degree of osteopenia, and extent of bony deformity and erosion [7].
- Joint space narrowing is most evident on the axillary truth view as opposed to images made with the arm at the side [7].
- The axillary truth view shows posterior subluxation or “functional decentering” that is not evident in images taken with the arm at the side [7].
- The degree of posterior subluxation can be measured as the position of the center of the humeral head in relation to the plane of the scapula [7].
- The degree of posterior subluxation can be measured as the position of the center of the humeral head in relation to the glenoid face [7].
- The degree of posterior subluxation can be measured as the point of contact of the humeral articular surface on the glenoid articular surface [7].
- The point of contact of the humeral articular surface on the glenoid articular surface reflects the degree of centering of the net humeral joint reaction force on the glenoid [7].
- Malcentering of the joint reaction force leads to posterior instability, posterior glenoid wear, and “rocking horse” loosening of prosthetic glenoid components [7].
- At least two X-ray views should be obtained: an anteroposterior in the plane of the glenoid and an axillary projection with the arm in abduction to show the relationship of the humeral head to the glenoid [16].
Computed Tomography
- CT scans may offer a few degrees of increased precision in the measurement of glenoid version [7].
- Increased precision in glenoid version measurement via CT does not necessarily improve the quality of the surgery or the clinical outcome [7].
- Three-dimensional reconstructions can reveal fine details of the shoulder anatomy, but this additional information rarely changes the planning or conduct of the arthroplasty [7].
- Computed tomography (CT) is helpful for planning fracture surgery and shoulder joint replacement [16].
Magnetic Resonance Imaging
- Magnetic resonance imaging (MRI) is useful to identify osteonecrosis of the humeral head, or a bone tumour [16].
- MRI can identify labral tears and rotator cuff tears [16].
- The accuracy of MRI for identifying labral tears and rotator cuff tears is enhanced by combining the scan with arthrography [16].
Ultrasonography
- Ultrasonography is a simple and accurate test for identifying rotator cuff tears and calcific tendinitis [16].
- Ultrasonography can be useful in guiding injections or barbotage (aspirating calcific deposits in the rotator cuff) [16].
- The most commonly performed joint examination using ultrasonography is the shoulder examination [14].
- Accuracy of shoulder ultrasonography depends on the skill of the scanner operator and an awareness of pitfalls that are encountered [14].
Arthroscopy
- Arthroscopy is useful for diagnosing and treating subacromial impingement, intra-articular lesions, detachment of the glenoid labrum and rotator cuff tears [16].
- The arthroscopic technique for acromioclavicular joint cyst decompression allows for a minimally invasive, reproducible, and reliable approach [5].
General Imaging Principles
- The shoulder is a three-dimensional structure that cannot be represented by a single planar view [18].
- Critical relationships—such as the degree of centering of the humeral head—change with the position of the arm [18].
- Shoulder pathology may be found in a large number of different bones and soft tissues [18].
- Overlying and superimposed structures as well as metallic implants may complicate imaging the structures of interest [18].
- Surgeons need to develop a judicious approach to imaging that yields the information necessary to treat the patient while avoiding the tendency to "over-image" [18].
Treatment
- Computer image-guided precise acromioplasty provides an alternative approach to reduce a large critical shoulder angle (CSA) to the desired range, especially for patients with rotator cuff tears combined with preoperative CSA greater than 35 degrees [3].
Complications
- Further studies and clinical trials are needed to evaluate functional results of the biplanar acromioplasty technique [2].
- Computer image-guided precise acromioplasty is considered an alternative approach to reduce a large critical shoulder angle to the desired range, especially for patients with rotator cuff tears combined with preoperative CSA greater than 35 degrees [3].
Recovery
- Computer image-guided precise acromioplasty is believed to provide an alternative approach to reduce a large critical shoulder angle to the desired range, especially for patients with rotator cuff tears combined with preoperative CSA greater than 35 degrees [3].
Key Evidence
- [L5] In appropriately selected patients, in-office needle arthroscopy of the shoulder with subacromial decompression can be performed by this simple technique. [1] (10.1016/j.eats.2023.04.012)
- [L5] Further studies and clinical trials are needed to evaluate functional results of this technique. [2] (10.1016/j.eats.2023.04.006)
- [L5] They believe that the introduction of this technique will provide an alternative approach to reduce a large CSA to the desired range, especially for patients with rotator cuff tears combined with preoperative CSA greater than 35 degrees. [3] (10.1016/j.eats.2022.06.026)
- [L4] Despite Clinical Practice Guidelines recommending the nonroutine use of acromioplasty, surgeons continue to perform acromioplasty with rotator cuff repair in most of the cases throughout all subcategorizations analyzed. [4] (10.5435/jaaosglobal-d-22-00075)
- [L5] The arthroscopic technique described allows for a minimally invasive, reproducible, and reliable approach for AC cyst decompression. [5] (10.1016/j.eats.2025.103680)
References
[1] In‐Office Nano‐Arthroscopy of the Shoulder with Acromioplasty. Arthroscopy Techniques. 2023. DOI: 10.1016/j.eats.2023.04.012
[2] Biplanar Acromioplasty: An Arthroscopic Spur Removal Technique Based on Original Bony Landmarks. Arthroscopy Techniques. 2023. DOI: 10.1016/j.eats.2023.04.006
[3] Computer Image‐Guided Precise Acromioplasty for Reducing the Critical Shoulder Angle. Arthroscopy Techniques. 2022. DOI: 10.1016/j.eats.2022.06.026
[4] Trends in Acromioplasty Utilization During Arthroscopic Rotator Cuff Repair: An Epidemiological Study of 139,586 Patients. JAAOS: Global Research and Reviews. 2022. DOI: 10.5435/jaaosglobal-d-22-00075
[5] Arthroscopic Decompression of Acromioclavicular Joint Cysts. Arthroscopy Techniques. 2025. DOI: 10.1016/j.eats.2025.103680
[6] Rockwood And Matsen S The Shoulder. Arthroscopic Management of Prearthritic and Arthritic Conditions of the Shoulder and the Postarthroplasty Shoulder > SUMMARY.
[7] Rockwood And Matsen S The Shoulder. Arthroscopic Management of Prearthritic and Arthritic Conditions of the Shoulder and the Postarthroplasty Shoulder > Radiographic Evaluation.
[8] Rockwood And Matsen S The Shoulder. Shoulder and Elbow Specialty Clinic Workers’ Survey > ANATOMY.
[9] A Lange Medical Book Current Diagnosis Treatment In Orthopedics Fifth Edition. 2Musculoskeletal Trauma Surgery > SHOULDER AND ARM INJURIES.
[10] Rockwood And Green S Fractures In Adults. 29: Principles of Nonunion and Bone Defect Treatment > Applied Anatomy Related to Scapular Fractures.
[11] Aaos Comprehensive Orthopaedic Review 3. Anatomy of the Shoulder, Arm, and Elbow > I. Shoulder.
[12] Rockwood And Matsen S The Shoulder. Developmental Anatomy of the Shoulder and Anatomy of the Glenohumeral Joint > Bursae.
[14] Orthopaedic Knowledge Update Sports Medicine 6. Diagnostic Ultrasonography and Ultrasonography-Guided Procedures > Annotated References.
[16] Apley And Solomon S Concise System Of Orthopaedics And Trauma. INVESTIGATION.
[18] Rockwood And Matsen S The Shoulder. Developmental Anatomy of the Shoulder and Anatomy of the Glenohumeral Joint > SENIOR EDITOR COMMENTARY.




