Pag-aayos ng Bali sa Clavicle Impormasyon Pahintulot
Bakit iminungkahi ang operasyong ito
Si Dr Kieran Hirpara, isang upper-limb surgeon sa Mater Private Hospital Rockhampton, ay itinutugma ang paggamot sa iyong partikular na pinsala. 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 isang pagbisita sa klinika, kinukuha namin ang iyong history, sinusuri ka, at nagsasaayos ng imaging kung kinakailangan. Karaniwang ipinapakita ng mga X-ray kung saan nabali ang collarbone at kung gaano kalayo ang paggalaw ng mga piraso nito.
Ang collarbone (clavicle) ay maaaring mabali sa middle third nito o mas malapit sa alinman sa mga dulo. Marami sa mga fracture na ito ang gumagaling nang maayos nang walang operasyon, kaya karaniwan naming sinisimulan sa non-operative care tulad ng pahinga sa isang sling at physiotherapy. Para sa mga matatanda, isinasaalang-alang namin ang operasyon kapag ang bali ay signipikanteng displaced, halimbawa ay pinaikli ng 2 cm, ganap na naalis sa puwesto, o nabali sa ilang piraso. Maaari ring imungkahi ang operasyon kung ang fracture ay nabigong gumaling, o gumaling sa maling posisyon. Sa mga adolescent, karamihan ng mga collarbone fracture ay ginagamot nang walang operasyon. Layunin ng operasyon na panatilihing matatag ang buto upang ito ay magdugtong, bawasan ang sakit, at ibalik ang lakas at paggalaw ng balikat.
Bago ang operasyon
Sa mga araw bago ang operasyon, kumpirmado namin ang plano sa iyo at sasagutin ang anumang mga katanungan. Kakailanganin mong itigil ang pagkain at pag-inom pitong oras bago ang iyong operasyon. Humihingi kami ng mas mahabang pag-aayuno kaysa sa ibang mga ospital upang ang iyong operasyon ay maaaring iurong nang mas maaga kung ang theatre list ay tumakbo nang maaga. Kung ikaw ay may regular na mga gamot, magdala ng nakasulat na listahan ng mga ito at sasabihin namin sa iyo kung alin ang mga dapat itigil muna. Karamihan sa mga tao ay hindi nangangailangan ng anumang espesyal na pagsusuri bago ang operasyong ito. Kung ikaw ay may iba pang mga kondisyong medikal, maaaring kailanganin mo ng mga blood test o pagsusuri kasama ang anaesthetist. Mag-ayos ng isang taong maghahatid sa iyo pauwi pagkatapos, dahil hindi mo kayang magmaneho nang mag-isa. Magsuot ng maluwag at komportableng damit na madaling hubarin.
Sa araw ng operasyon
Pupunta kayo sa surgical admissions unit ng ospital, kung saan kayo ay i-che-check in at ihahanda para sa theatre. Makikilala ninyo ang anaesthetist, isang doktor na mag-aalaga sa inyong pagtulog at kontrol sa sakit habang isinasagawa ang operasyon. Ang operasyong ito ay ginagawa sa ilalim ng general anaesthetic. Kayo ay tuluyang makakatulog para sa operasyon. Ang ilang pasyente ay maaaring sumailalim din sa regional nerve block para sa pagpapaginhawa ng sakit pagkatapos ng operasyon; ang anaesthetist ang magdedesisyon sa araw na iyon base sa inyong indibidwal na kalagayan. Pagkatapos ay dadalhin kayo sa operating theatre, kung saan isasagawa ang operasyon.
Kapag natapos na ang operasyon, magigising kayo sa recovery area. Mananatili ang mga nurse sa inyong tabi at babantayan kayo habang nawawala ang bisa ng anaesthetic. Kapag kayo ay stable na, maaaring ilipat kayo sa ward o uuwi sa araw ding iyon, depende sa procedure at kung paano ang takbo ng inyong recovery. Kung kayo ay uuwi, ang taong inayos ninyong magmamaneho para sa inyo ang maghahatid sa inyo doon.
Ano ang kinapapalooban ng operasyon
Ito ay isang open operation na ginagawa sa pamamagitan ng isang hiwa sa bahagi ng collarbone (kulyat) na nabali. Ipupuwesto ka sa isang semi-sitting, beach-chair style na posisyon sa operating table, na may maliit na pad sa likod ng iyong balikat upang bahagya itong maiangat. Nagbibigay ito sa iyong surgeon ng malinaw na paningin at malayang daan upang magtrabaho sa buto.
Ibabalik ng iyong surgeon ang mga nabaling piraso sa kanilang normal na posisyon at pananatilihin ang mga ito doon gamit ang isang plate at mga screw. Ang plate ay hinubog upang sumunod sa natural na S-shaped curve ng collarbone, kaya ito ay lapat na lapat sa buto. Ang maliliit na screw ay dumadaan sa plate at papasok sa buto sa bawat panig ng bali upang mapanatiling matatag ang lahat habang ito ay gumagaling. Kung ang buto ay nabali sa ilang piraso, maaaring gumamit ng isang maliit na screw upang hilahin ang isang maluwag na fragment pabalik sa linya bago ikabit ang plate.
Kung ang fracture ay malapit sa outer end ng collarbone, maaaring magdagdag ang iyong surgeon ng matitibay na stitched supports na tumatakbo sa pagitan ng collarbone at ng isang kalapit na buto ng balikat. Nakatutulong ang mga ito upang mapanatiling matatag ang outer fragment habang ito ay nagdurugtong. Kung ang fracture ay nabigong gumaling noon, maaaring maglagay din ang iyong surgeon ng ilang extra bone graft material sa paligid ng bali upang hikayatin itong magdugtong.
Kapag matatag na ang pagkakahawak sa buto, susuriin ng iyong surgeon kung stable ang lahat at pagkatapos ay sasarahan ang hiwa gamit ang mga tahi. Lalagyan ng dressing ang sugat bago ka lumabas ng theatre. Ang buong operasyon ay pinaplano nang maaga gamit ang mga X-ray ng iyong collarbone, na nagpapakita kung gaano kalayo ang naigagalaw ng mga piraso at kung ilan ang mga ito.
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 sa ward kapag ikaw ay stable na. Ang iyong braso ay itatala sa isang simpleng sling para sa iyong ginhawa, na tinatanggal para sa mga ehersisyo at paghuhugas. Regular na susuriin ng mga nars ang iyong sakit at bibigyan ka ng gamot upang mapanatili itong kontrolado. Dapat may kasama ka sa unang 24 oras pagkatapos mong umuwi. Panatilihing nakasuot ang sling kapag ikaw ay nakatayo at kumikilos, at gumalaw-galaw sa loob ng bahay sa maiikling sandali sa halip na manatiling hindi gumagalaw. Hinahayaan naming nakalagay 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.
Paggaling
Sa unang ilang araw, sasakit ang iyong balikat at mamamaga ang bahagi sa ibabaw ng iyong collarbone at maaaring magkaroon ng pasa. Normal na bahagi ito ng paggaling. Ang pagpapahinga, pagpapanatili ng iyong braso sa sling, at pag-inom ng iyong gamot sa sakit ayon sa itinagubilin ay makakatulong upang maibsan ito. Karamihan sa mga tao ay napapansin na unti-unting nababawasan ang sakit sa unang dalawang linggo habang humuhupa ang pamamaga.
Ang iyong braso ay nakapahinga sa isang simpleng sling para sa ginhawa, na tinatanggal para sa iyong mga ehersisyo at para sa paghuhugas. Gagabayan ka ng iyong physiotherapist sa mga banayad na paggalaw sa simula, pagkatapos ay palalakasin ang iyong lakas at range of motion habang naghihilom ang buto. Sa loob ng bahay, maaari kang gumawa ng mga magaang gawain gamit ang iyong kabilang kamay, ngunit iwasan ang pagbubuhat gamit ang masakit na braso, pag-abot sa itaas ng ulo, o pagsandal dito hanggang sa masabihan kang ligtas na itong gawin. Ang pagtulog na nakasandal sa ilang unan ay madalas na mas komportable sa simula.
Habang humuhupa ang pamamaga at bumabalik ang paggalaw, nagiging mas madali ang pang-araw-araw na buhay. Magagawa mo nang bihisan ang iyong sarili, magsulat, at gumamit ng keyboard bago ka pa makabuhat ng anumang mabigat. Kapag pinayagan ka na ng iyong surgeon na magmaneho, karaniwan sa six-week review, maaari ka nang bumalik sa pagmamaneho; ang aming gabay sa driving after upper-limb surgery ay nagpapaliwanag ng mga kailangang isaalang-alang. Ang pagbabalik sa trabaho at sports ay depende sa kung ano ang kinapapalooban ng iyong trabaho o sports, at tatalakayin ito ng iyong surgeon habang ikaw ay gumagaling.
Ang bawat tao ay gumagaling sa sarili nilang bilis, kaya maaaring magkaiba ang iyong timeline. Gagabayan ka ng iyong surgeon at physiotherapist sa bawat review at ia-adjust ang plano base sa iyong kalagayan.
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.
Impeksyon ang pangunahing binabantayan namin pagkatapos ng operasyon. Maaari kayong makaramdam ng malalim at tumitibok na sakit na hindi nawawala sa mga simpleng painkiller, pamumula na kumakalat mula sa sugat, o may likidong lumalabas dito. Minsan ay nakakaramdam kayo ng lagnat at panginginig. Ipaalam agad sa amin kung makikita ang alinman sa mga palatandaang ito, dahil ang impeksyon ay nangangailangan ng agarang gamutan.
Ang plate at mga screw ay nakalagay malapit sa balat sa ibabaw ng collarbone, kaya maaari itong maramdaman sa pamamagitan nito. Para sa ilang tao, nararamdaman nilang kumikiskis o sumasabit ang metal, lalo na kapag nakahiga sa panig na iyon o may dalang strap ng bag sa balikat. Kung ang iritasyong ito ay nagiging nakakaabala, ang hardware ay maaaring tanggalin sa isang susunod na operasyon. Banggitin ito sa inyong review sa halip na tiisin ito.
Karaniwan ang pamamanhid malapit sa peklat. Ang maliliit na nerve ng balat sa paligid ng collarbone ay madalas na nababanat habang nag-o-operasyon, na nag-iiwan ng bahaging manhid o nakakaramdam ng tingling sa ibaba ng incision. Karaniwan itong isang bagay na napapansin niyo lamang kaysa sa isang bagay na naglilimita sa inyo, ngunit banggitin ito sa inyong susunod na appointment upang maitala ito.
Bihira, ngunit maaaring maapektuhan ng operasyon ang mas malalaking nerve o blood vessel sa ilalim ng collarbone. Ang mga warning sign ay kinabibilangan ng biglaang panghihina o pakiramdam na tila tinutusok ng mga karayom (pins and needles) sa buong braso, o ang braso ay mukhang maputla, malamig, o namamagâ. Ang mga ito ay nangangailangan ng urgent na atensyon, kaya pumunta sa emergency department kung mangyari ang mga ito.
Ang buto mismo ay maaaring hindi magdugtong, o magdugtong sa posisyong hindi gaanong mainam kaysa sa inaasahan. Mapapansin ninyo ang patuloy na sakit at panghihina sa bahagi ng fracture na hindi bumubuti gaya ng inaasahan. Ipaalam sa amin sa review kung ang balikat ay hindi gumagaling sa paraang ating napag-usapan.
Maaaring mangyari ang mga problema sa sugat gaya ng pagbukas (gapping), makapal o maselang peklat, at ang pagkolekta ng dugo sa ilalim ng sugat ay maaaring magdulot ng biglaang pamamaga sa mga unang araw. Makipag-ugnayan sa klinika tungkol sa anumang alalahanin sa sugat.
Ang complications table sa pahinang ito ay naglilista ng mga tipikal na rate kung nais ninyo ang mga detalye.
Kailan dapat tumawag sa amin
Tumawag sa amin kung kayo ay may lagnat, o kung ang balat sa paligid ng inyong sugat ay lalong namumula, namamaga, o nagsisimulang maglabas ng likido. Tumawag sa amin kung ang inyong sakit ay biglang lumala o hindi nababawasan ng inyong gamot sa sakit. Pumunta sa emergency kung may pananakit o pamamaga ng binti, o kung nahihirapang huminga, dahil ang mga ito ay maaaring mga senyales ng blood clot. Pumunta sa emergency kung ang inyong braso ay namamanhid, malamig ang pakiramdam o maputla, o kung hindi niyo ito maigalaw. Kung mayroon kayong anumang inaalala, tumawag sa klinika. Mas gusto naming malaman ito nang maaga.
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 Clavicle Fracture.
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
Clavicle Anatomy
- The clavicle is the first bone to ossify, occurring in the fifth week of gestation [6].
- The clavicle is the only long bone to ossify by intramembranous ossification [6].
- The medial (sternal) epiphysis of the clavicle is the last ossification center to fuse, occurring at age 20 to 25 years [6].
- The primary blood supply to the clavicle is periosteal, and no nutrient artery is present [6].
Shoulder Girdle Architecture
- The scapula is attached to the axial skeleton by the clavicle, specifically via the acromioclavicular (AC) and sternoclavicular (SC) joints [5].
- The scapula is separated from the chest wall by thin gliding fibro-fatty tissue, allowing smooth excursion over the chest wall [5].
- The scapula has only one true diarthrodial articulation, the acromioclavicular (AC) joint [6].
- Normal shoulder motion is approximately two-thirds glenohumeral and one-third scapulothoracic [6].
- The scapular spine is an osseous ridge that separates the supraspinatus and infraspinatus fossae [6].
- The acromion has three ossification centers: the metacromion (base), the mesoacromion (middle), and the preacromion (tip) [6].
- Failure of fusion of the acromial ossification centers results in os acromiale [6].
- The coracobrachialis muscle and the short head of the biceps tendon originate from the coracoid process [6].
- The pectoralis minor muscle inserts onto the medial coracoid process [6].
- The subchondral bone of the glenoid is relatively flat, with articular concavity augmented by cartilage and a circumferential labrum [6].
- The glenoid averages 5° of retroversion in relation to the axis of the scapular body [6].
- The superior shoulder suspensory complex (SSSC) provides a stable connection between the scapula and the axial skeleton [6].
- The SSSC is composed of the glenoid, the coracoid process, the coracoclavicular ligaments, the distal clavicle, the AC joint, and the acromion [6].
- The superior strut of the SSSC comprises the middle clavicle [6].
- The inferior strut of the SSSC comprises the lateral scapular border and spine of the scapula [6].
- The basic part of the scapula is the body, which is triangular when viewed anteroposteriorly with its base situated superiorly and its apex inferiorly [5].
- The glenoid is connected with the flat body of the scapula by the scapular neck [5].
- The hook-shaped coracoid process curves forwards from the superior surface of the scapular neck [5].
- The scapular spine ends in a flattened bony process, the acromion, which curves forwards [5].
- 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 [5].
- Two bony pillars transmit compressive forces from the glenoid fossa: the lateral pillar and the spinal pillar [5].
- The lateral pillar connects the inferior border of the glenoid with the inferior angle [5].
- The spinal pillar arises from the central part of the glenoid and continues medially to become part of the base of the scapular spine [5].
- The two pillars, connected by a markedly thinner medial border of the scapular body, form the basic load-bearing structure known as the biomechanical body of the scapula [5].
- The weakest bone in the scapula is located primarily in the central part of the biomechanical body, specifically in the infraspinous fossa [5].
- The weakest area of the circumference of the biomechanical body is the spinomedial angle, which is the connection of the scapular spine and the medial border of the scapula [5].
- In most scapular body fractures, one of the main fracture lines passes through the spinomedial angle [5].
Proximal Humerus Anatomy
- The proximal humerus anatomy comprises four main parts: the humeral head, greater tuberosity (GT), lesser tuberosity (LT), and humeral shaft [3].
- The articular head of the humerus is spherical and has a diameter of 37 to 57 mm [3].
- The most superior portion of the articular surface of the humeral head averages 8 mm above the greater tuberosity [3].
- Humeral version averages 29.8 degrees, with a range of 10 to 55 degrees [3].
- The humeral head is inclined approximately 130 degrees with respect to the humeral shaft [3].
- The neck-shaft angle measures an average of 135 degrees [4].
- The humeral head is retroverted an average of 30 degrees [4].
- The humeral head averages 19° of retroversion and 41° of inclination (neck-shaft angle) [6].
- The bicipital groove lies between the greater and lesser tuberosities and serves as a pathway for the long head of the biceps [3].
- The distal aspect of the bicipital groove is internally rotated with respect to the proximal portion [3].
- The anatomic neck of the proximal humerus is located at the junction of the articular surface and the tuberosities [3].
- The surgical neck represents an indistinct region (metadiaphyseal junction) below the tuberosities but above the humeral shaft [3].
- The greater tuberosity is located in a posterior-superior location with respect to the humeral shaft [3].
- The greater tuberosity serves as the attachment site for the supraspinatus, infraspinatus, and teres minor tendons of the rotator cuff [3].
- The lesser tuberosity is located on the anterior aspect of the proximal humerus [3].
- The lesser tuberosity serves as the attachment site for the subscapularis tendon [3].
- The glenoid is a convex structure of shallow depth shaped like an inverted pear [3].
- The glenoid cavity is a shallow socket, approximately one-third the size of the humeral head [4].
- The acromion, the coracoacromial ligament, and the coracoid process form the coracoacromial arch [3].
- The coracoacromial arch is a rigid bony-ligamentous structure that imparts stability to the shoulder girdle [3].
- The rotator cuff, subacromial bursa, and subdeltoid bursa pass underneath the coracoacromial arch [3].
- The proximal humerus has three centers of ossification: the humeral head (4 to 6 months), the greater tuberosity (1 to 3 years), and the lesser tuberosity (3 to 5 years) [6].
- The ossification centers of the proximal humerus fuse to the shaft at age 17 to 20 years [6].
Vascular Supply
- The proximal humerus receives its blood supply from the anterior and posterior humeral circumflex branches from the third division of the axillary artery [3].
- The posterior humeral circumflex artery travels with the axillary nerve, enters the quadrilateral space posteriorly, and anastomoses with a branch of the anterior circumflex to supply the posterior cuff [3].
- The anterior humeral circumflex artery (AHCA) arises from the axillary artery at the inferior border of the subscapularis [3].
- The AHCA 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) [3].
- The ascending branch of the AHCA 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 [3].
- The major blood supply to the humeral head is through the ascending branch of the anterior humeral circumflex artery, which penetrates the head at the bicipital groove and becomes the arcuate artery [4].
- The anterolateral ascending branch of the anterior humeral circumflex artery provides the primary blood supply to the humeral head [6].
- The anterolateral ascending branch of the anterior humeral circumflex artery travels proximally in the lateral aspect of the intertubercular groove [6].
- The terminal intraosseous portion of the anterior humeral circumflex artery enters at the proximal aspect of the intertubercular groove as the arcuate artery [6].
- Injury to the arcuate artery may result in osteonecrosis of the humeral head [3].
- Additional extraosseous collateral branches can permit humeral head perfusion despite complete ligation of the arcuate artery [3].
Joints and Ligaments
- The sternoclavicular (SC) joint is the only true diarthrodial articulation between the upper appendicular and axial skeletons [6].
- The posterior SC joint capsule and ligaments are the primary stabilizers to anterior and posterior translation of the medial clavicle [6].
- The AC joint is a small diarthrodial joint with an interposed fibrocartilaginous disk [6].
- The superior and posterior AC ligaments are the primary stabilizers to anterior and posterior (horizontal) translation of the clavicle [6].
- The coracoclavicular ligaments (conoid: medial; trapezoid: lateral) are the primary stabilizers to superior (vertical) translation of the distal clavicle [6].
- The rotator cuff stabilizes the glenohumeral joint via joint compression [6].
- Static stabilizers of the glenohumeral joint include articular congruity, the glenoid labrum, concavity-compression, negative intra-articular pressure, and the glenohumeral capsule and ligaments [6].
- The glenoid labrum provides concavity and up to 50% of marginal glenoid socket depth [6].
- The rotator interval is defined medially by the base of the coracoid, superiorly by the supraspinatus tendon, and inferiorly by the subscapularis tendon [6].
- 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 [6].
- Laxity of the rotator interval results in inferior laxity (the sulcus sign) [6].
- Contracture of the rotator interval is seen with adhesive capsulitis [6].
- The CH ligament restricts external rotation in adduction and is a static restraint to inferior and posterior translation in adduction and external rotation [6].
- The SGHL is a primary static restraint against anterior translation with the arm at the side [6].
- With the CH ligament, the SGHL forms a pulley that provides restraint against medial subluxation of the long head of the biceps tendon [6].
- The middle glenohumeral ligament (MGHL) is a primary static restraint against anterior translation with the arm in external rotation and 45° of abduction [6].
- 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 [6].
- The posterior band of the IGHL (PB-IGHL) is a primary static restraint against posterior-inferior translation in internal rotation and adduction [6].
- The superior transverse scapular ligament arises from the medial base of the coracoid overlying the suprascapular notch [6].
- The suprascapular artery runs superior to the superior transverse scapular ligament, and the nerve runs deep to the ligament [6].
- Entrapment of the suprascapular nerve at the superior transverse scapular ligament causes denervation of both the supraspinatus and the infraspinatus [6].
- The spinoglenoid ligament overlies the suprascapular nerve at the spinoglenoid notch [6].
- Entrapment, traction, or compression of the suprascapular nerve at the spinoglenoid notch causes denervation of the infraspinatus [6].
Muscular Mechanics and Fracture Displacement
- External loads transferred to the shoulder girdle are initially offset by joint surface anatomy, joint volume, atmospheric pressure, and joint fluid cohesion and adhesion [3].
- Moderate and large loads are counterbalanced by the deltoid and rotator cuff and by the capsulolabral and bone structures, respectively [3].
- Following a fracture of the proximal humerus, displacement of each part occurs in a predictable manner based on deforming forces created by tendinous insertions [3].
- The subscapularis inserts on the lesser tuberosity and causes medial displacement [3].
- The supraspinatus and infraspinatus insert on the greater tuberosity and cause superior and posterior displacement [3].
- The pectoralis major inserts on the humeral shaft and displaces it medially [3].
- The rotator cuff consists of four muscles: the subscapularis, supraspinatus, infraspinatus, and teres minor [4].
- The teres major is not a rotator cuff muscle [4].
- The rotator cuff muscles serve as depressors of the humeral head to allow the deltoid to efficiently abduct the humerus [4].
- The infraspinatus and teres minor are external rotators, while the subscapularis is an internal rotator of the humerus [4].
- The deltoid and pectoralis major muscles, along with the rotator cuff, cause predictable displacement of fractures around the proximal humerus [4].
- Fractures of the anatomic neck have a poor prognosis because of complete disruption of the blood supply to the head [4].
- Surgical neck fractures are common, and with these, the blood supply to the head is preserved [4].
- A fracture involving the anatomic neck is 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 [3].
Bursae and Synovial Structures
- The subacromial bursa and the subscapular bursa are two bursae in the shoulder region with particular clinical importance [7].
- The subscapular bursa lies between the subscapularis tendon and the neck of the scapula [7].
- The subscapular bursa communicates with the joint cavity between the superior and middle glenohumeral ligaments [7].
- 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 [7].
- The subscapular bursa is linked to the coracoid process by a suspensory ligament [7].
- In 28% of specimens dissected by Colas and colleagues, the subscapular bursae merged with the subcoracoid bursae, forming a unique wide bursa [7].
- The subscapular bursa often houses loose bodies in the shoulder [7].
- 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 [7].
- A bursa may be present between the infraspinatus muscle and the capsule, which is uncommon and not in communication with the joint cavity [7].
- DePalma and colleagues described six common variations or types of recesses in the anterior capsule [7].
- Type 1 recesses (30.2%) have one synovial recess above the middle glenohumeral ligament [7].
- Type 2 recesses (2.0%) have one synovial recess below the middle glenohumeral ligament [7].
- Type 3 recesses (40.6%) have one recess above and one below the middle glenohumeral ligament [7].
- Type 4 recesses (9.0%) have one large recess above the inferior ligament, with the middle glenohumeral ligament being absent [7].
- Type 5 recesses (5.1%) have the middle glenohumeral ligament manifested as two small synovial folds [7].
- Type 6 recesses (11.4%) have no synovial recesses, although all the ligaments are well defined [7].
- DePalma believed that if the capsule arises at the labrum or glenoid border of the scapula, few, if any, recesses would be present [7].
- DePalma believed that if the capsule begins farther medially on the scapula or glenoid neck, the synovial recesses are larger and more numerous [7].
- DePalma believed that the end result of such recesses was a thin, weakened anterior capsule that could predispose the shoulder to instability [7].
- Plancher and colleagues found the average area of the rotator interval to be 20.96 mm [7].
- Dynamic testing has shown that the subscapularis and supraspinatus dimensions as well as the total area of the rotator interval decrease significantly with internal rotation and open with external rotation [7].
- Imbrication procedures are performed with the arm in a neutral position to avoid loss of motion or insufficient tightening [7
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 [2].
- Standardized plain films are almost always sufficient to garner the information needed for shoulder care [2].
- Proper radiographic technique is as important as proper surgical technique to achieve the desired outcome [2].
- 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 [2].
- 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 [2].
- 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 [2].
- 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 [2].
- The axillary view is oriented so that both the spinoglenoid notch and the scapular neck are visible [2].
- The axillary view demonstrates a different perspective of 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 [2].
- The axillary view is referred to as the “truth view” because it demonstrates the glenohumeral relationships in the functional position of elevation [2].
- CT scans have the disadvantage of being taken with the arm in the adducted position, unlike the axillary truth view [2].
- Many “axillary views” sent for consultation are taken without standardization, making it impossible to determine important features of the glenohumeral joint [2].
- 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 the glenoid, presence of osteophytes, degree of osteopenia, and extent of bony deformity and erosion [2].
- Joint space narrowing is most evident on the axillary truth view as opposed to images made with the arm at the side [2].
- The axillary truth view can show posterior subluxation or “functional decentering” that is not evident in images taken with the arm at the side [2].
- 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 [2].
- The degree of posterior subluxation can be measured as the position of the center of the humeral head in relation to the glenoid face [2].
- The degree of posterior subluxation can be measured as the point of contact of the humeral articular surface on the glenoid articular surface [2].
- 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 [2].
- Malcentering of the joint reaction force leads to posterior instability, posterior glenoid wear, and “rocking horse” loosening of prosthetic glenoid components [2].
- At least two X-ray views should be obtained for shoulder imaging: 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 [11].
Computed Tomography
- CT scans may offer a few degrees of increased precision in the measurement of glenoid version [2].
- The precision offered by CT scans for measuring glenoid version does not improve the quality of the surgery or the clinical outcome [2].
- Three-dimensional reconstructions can reveal fine details of the shoulder anatomy, but this additional information rarely changes the planning or conduct of the arthroplasty [2].
- Computed tomography (CT) is helpful for planning fracture surgery and shoulder joint replacement [11].
Magnetic Resonance Imaging
- Magnetic resonance imaging (MRI) is useful to identify osteonecrosis of the humeral head, or a bone tumour [11].
- MRI can identify labral tears and rotator cuff tears [11].
- The accuracy of MRI for identifying labral tears and rotator cuff tears is enhanced by combining the scan with arthrography [11].
Ultrasound
- Ultrasound is a simple and accurate test for identifying rotator cuff tears and calcific tendinitis [11].
- Ultrasound can be useful in guiding injections or barbotage (aspirating calcific deposits in the rotator cuff) [11].
- The most commonly performed joint examination using ultrasonography is the shoulder examination [9].
- The accuracy of shoulder ultrasonography depends on the skill of the scanner operator and an awareness of pitfalls that are encountered [9].
General Imaging Principles
- The shoulder is a three-dimensional structure that cannot be represented by a single planar view [13].
- Critical relationships, such as the degree of centering of the humeral head, change with the position of the arm [13].
- Shoulder pathology may be found in a large number of different bones and soft tissues [13].
- Overlying and superimposed structures as well as metallic implants may complicate imaging the structures of interest [13].
- 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" [13].
- 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 [2].
References
[2] Rockwood And Matsen S The Shoulder. Arthroscopic Management of Prearthritic and Arthritic Conditions of the Shoulder and the Postarthroplasty Shoulder > Radiographic Evaluation.
[3] Rockwood And Matsen S The Shoulder. Shoulder and Elbow Specialty Clinic Workers’ Survey > ANATOMY.
[4] A Lange Medical Book Current Diagnosis Treatment In Orthopedics Fifth Edition. 2Musculoskeletal Trauma Surgery > SHOULDER AND ARM INJURIES.
[5] Rockwood And Green S Fractures In Adults. 29: Principles of Nonunion and Bone Defect Treatment > Applied Anatomy Related to Scapular Fractures.
[6] Aaos Comprehensive Orthopaedic Review 3. Anatomy of the Shoulder, Arm, and Elbow > I. Shoulder.
[7] Rockwood And Matsen S The Shoulder. Developmental Anatomy of the Shoulder and Anatomy of the Glenohumeral Joint > Bursae.
[9] Orthopaedic Knowledge Update Sports Medicine 6. Diagnostic Ultrasonography and Ultrasonography-Guided Procedures > Annotated References.
[11] Apley And Solomon S Concise System Of Orthopaedics And Trauma. INVESTIGATION.
[13] Rockwood And Matsen S The Shoulder. Developmental Anatomy of the Shoulder and Anatomy of the Glenohumeral Joint > SENIOR EDITOR COMMENTARY.




