Patients › Shoulder
Pinzamiento subacromial y bursitis
Subacromial impingement — causes of shoulder pain with overhead activity, diagnosis, and treatment options.
Qué está sintiendo¶
El dolor se localiza en la parte externa o superior del hombro, y aparece con ciertos movimientos, no en todo momento. Estirar el brazo hacia arriba, levantarlo hacia el costado o elevarlo frente a usted pueden desencadenarlo. Muchas personas notan una zona de dolor a mitad del movimiento: el brazo está bien cuando está pegado al cuerpo, duele al levantarlo y vuelve a sentirse bien una vez que está en alto. El hombro puede moverse aún dentro de su rango completo, aunque duela durante el movimiento.
Existen ciertos patrones que suelen repetirse. El dolor suele intensificarse después de realizar actividad física; además, muchas personas lo perciben peor por la noche o al despertar. Acostarse sobre ese hombro puede resultar incómodo. Las tareas cotidianas que requieren usar las manos por encima de la altura del hombro se vuelven difíciles: colgar la ropa, alcanzar un estante alto, levantar una tetera o un secador de pelo, o ponerse un abrigo.
El dolor se origina porque los tendones del manguito rotador, esos pequeños músculos que mantienen unido el hombro, quedan comprimidos contra el hueso situado encima de ellos al moverse. Esa compresión es lo que los médicos denominan “pinzamiento”. La almohadilla llena de líquido que se encuentra junto a los tendones puede irritarse e inflamarse; esto corresponde a la parte de “bursitis” del nombre de la afección.
No todo el dolor de hombro se comporta de esta manera, y existen otras afecciones que pueden presentar síntomas similares; por ello, su cirujano analizará el patrón de su dolor y examinará su hombro antes de determinar qué está ocurriendo.
¿Qué está ocurriendo realmente?¶
El hombro está formado por una “bola” ósea que se encuentra en una cavidad poco profunda; ambos elementos se mantienen unidos por un grupo de cuatro tendones llamados manguito rotador. Por encima de esos tendones hay un arco óseo formado por una proyección ósea denominada acromion y un ligamento que lo conecta con otra protuberancia ósea situada en la parte delantera. Entre dicho arco y los tendones se encuentra un pequeño cojín lleno de líquido, similar a un globo de agua diminuto, que permite que los tendones se deslicen sin problemas al mover el brazo.
Cuando levantas el brazo, los tendones se deslizan por debajo de ese arco. Si el espacio es reducido, los tendones y el cojín quedan comprimidos entre el arco y la estructura ósea. El cojín se irrita y se inflama, por lo que ocupa más espacio y queda aún más comprimido. Esa inflamación es la bursitis, y la compresión recibe el nombre de pinzamiento. El dolor se siente precisamente en esa zona, razón por la cual levantar el brazo o apoyarse sobre el hombro resulta doloroso: cada movimiento comprime el mismo tejido sensible.
El pinzamiento suele producirse porque el espacio situado bajo el arco se ha ido reduciendo con el tiempo, debido al uso que haces del hombro, a la forma de tus huesos o simplemente al desgaste natural. En ocasiones, un pequeño fragmento óseo en la punta del acromion no se unió correctamente durante el desarrollo, lo que reduce aún más ese espacio.
La buena noticia es que este problema a menudo mejora sin necesidad de cirugía. La fisioterapia, los ejercicios y el paso del tiempo reducen la inflamación y reeducan los músculos, de modo que los tendones se deslicen con menos compresión. La intervención quirúrgica que consiste en limar un poco de hueso para ampliar dicho espacio se denomina descompresión subacromial; generalmente se reserva para aquellos casos en los que el dolor persiste a pesar de haber aplicado los tratamientos menos invasivos. Tu cirujano te explicará si tu hombro se incluye en esa categoría.
¿Qué podemos hacer al respecto?¶
El Dr. Kieran Hirpara, cirujano de extremidades superiores en el Mater Private Hospital Rockhampton, comienza con las opciones menos invasivas que se adapten a su condición. Por lo general, los pacientes son derivados a nuestra clínica por su médico de cabecera; si un fisioterapeuta le ha sugerido que nos consulte, igualmente necesitará una derivación de su médico de cabecera para poder acceder al reembolso de Medicare. Para determinar el problema, realizamos una historia clínica detallada, un examen físico y, cuando es necesario, estudios por imágenes. En el caso de problemas que se desarrollan con el tiempo, normalmente probamos primero tratamientos no quirúrgicos y solo consideramos la cirugía si estos no logran mejorar los síntomas.
El primer paso es algo que usted mismo puede iniciar: modificar la forma en que utiliza el hombro, reducir las actividades por encima de la cabeza que agravan el dolor y darle tiempo a los tejidos para que se calmen. La fisioterapia busca disminuir la inflamación y reeducar los músculos circundantes al hombro, de modo que los tendones deslicen sin fricción bajo el arco acromial. Esto requiere paciencia: conviene seguir el tratamiento durante un período prolongado en lugar de solo unas pocas semanas, ya que este problema suele resolverse sin necesidad de cirugía.
Si estas medidas sencillas no son suficientes, los analgésicos y antiinflamatorios pueden ayudar a aliviar el dolor mientras usted realiza los ejercicios. Estos medicamentos tratan los síntomas, no la compresión de los tendones, por lo que funcionan mejor en combinación con la fisioterapia y no como sustituto de ella.
La cirugía se contempla cuando un tratamiento adecuado con estas opciones más simples no logra controlar el dolor. La intervención se denomina descompresión subacromial y, por lo general, se realiza mediante pequeñas incisiones y el uso de una cámara; este método se conoce como cirugía artroscópica. El cirujano extirpa el tejido inflamado, la bolsa sinovial y elimina cualquier espolón óseo bajo el acromion para ampliar el espacio por donde se deslizan los tendones. Esta cirugía se reserva para aquellos casos en que el hombro sigue doliendo a pesar de haber seguido los pasos anteriores; a veces se realiza junto con otros procedimientos de reparación del hombro, si estos resultan necesarios. Decidir si la cirugía es adecuada para usted es una decisión que tomamos conjuntamente, una vez analizados sus síntomas, los resultados de sus estudios por imágenes y sus expectativas respecto al hombro.
Qué esperar¶
En la mayoría de las personas, este problema se resuelve con el tiempo y con los ejercicios adecuados. La hinchazón alrededor de los tendones disminuye, los músculos aprenden a mover el brazo sin causar tanta presión, y el dolor desaparece. Muchos hombros mejoran sin necesidad de cirugía alguna. El requisito clave es la paciencia: se trata de un cambio lento que se mide en semanas y meses, no en días.
La recuperación tras la cirugía sigue un patrón similar. La mayoría de las personas vuelven a conducir en un plazo de 4 semanas y retoman sus actividades laborales en unas 6 semanas después de una descompresión subacromial artroscópica. La recuperación completa de la sensación y el funcionamiento del hombro suele tardar unos 3 meses en promedio. Algunas personas notan la mejoría de inmediato, una vez que el tejido inflamado se calma; además, un programa de ejercicios de seis semanas también puede mejorar la activación de los músculos del hombro.
La cirugía ayuda a muchos pacientes, pero no a todos. Es eficaz en aproximadamente el 70% al 75% de los casos, lo que significa que alrededor de una de cada cuatro personas sigue experimentando dolor después de la operación. Existe además un debate médico sobre cuánto aporta la cirugía por encima de una buena terapia de ejercicios; por eso su cirujano solo la recomendará cuando los tratamientos más sencillos hayan fracasado realmente y los estudios de imagen confirmen la presencia de pinzamiento.
Si no se trata el problema, no siempre empeora, pero tampoco siempre mejora. Algunas personas sufren brotes de dolor tras realizar actividades físicas y noches de molestias durante mucho tiempo. Abordarlo a tiempo, modificando la forma en que se utiliza el brazo y siguiendo un programa adecuado de fisioterapia, le brinda la mejor oportunidad de evitar esa situación.
Su cirujano le explicará en qué punto se encuentra su hombro dentro de este contexto: cuánto tiempo lleva el dolor, qué tratamientos ha intentado ya y qué funciones debe desempeñar su brazo. A partir de ahí, podrá decidir si continuar con los ejercicios o si vale la pena considerar la cirugía.
¿Cuándo consultar a un especialista?¶
Acuda a su médico de cabecera si lleva varias semanas con dolor en el hombro que no mejora con el reposo ni con cambios sencillos, o si el dolor le despierta por la noche. Solicite una evaluación especializada si seguir levantando el brazo le resulta doloroso en un rango específico de movimiento, si el hombro se va debilitando, o si un tratamiento adecuado de fisioterapia no ha surtido efecto. Su médico de cabecera también puede descartar otras causas de dolor en el hombro que presenten síntomas similares. Acuda a urgencias si, tras una cirugía reciente en el hombro, de repente le cuesta respirar o presenta dolor torácico, ya que requiere evaluación inmediata.
En mayor profundidad¶
Esta sección va más allá de lo necesario para que usted tome sus propias decisiones terapéuticas. La compresión subacromial merece una lectura adicional, ya que es la patología del hombro para la cual se han realizado dos ensayos aleatorizados a gran escala comparando la cirugía con una operación placebo; los resultados de dichos ensayos modificaron la práctica médica en todo el mundo.
Dos ensayos que compararon la operación con una simulación de la misma¶
La mayoría de las pruebas quirúrgicas comparan una operación con otra, o con la ausencia de tratamiento. En muy pocas ocasiones, un ensayo compara una operación con un procedimiento simulado: el paciente recibe anestesia, se introduce el artroscopio, pero no se realiza ninguna descompresión; ni el paciente ni el evaluador saben qué procedimiento se aplicó. Este diseño elimina el efecto placebo derivado de haberse sometido a cirugía, el cual es considerable.
En el ensayo CSAW se randomizaron 313 pacientes en tres grupos: descompresión subacromial artroscópica, artroscopia puramente diagnóstica, y ausencia de tratamiento. Ambos grupos quirúrgicos obtuvieron mejores resultados que el grupo sin tratamiento; sin embargo, la diferencia no fue clínicamente significativa, y la descompresión no aportó ningún beneficio adicional respecto a la artroscopia sola [1].
El ensayo FIMPACT llegó a la misma conclusión de forma independiente. En pacientes con síndrome de pinzamiento, la descompresión subacromial artroscópica no proporcionó ningún beneficio adicional respecto a la artroscopia diagnóstica a los 24 meses [2].
Dos ensayos bien realizados, en dos países distintos, con el mismo resultado: la parte de la operación que consiste en eliminar hueso no es la que genera la mejoría. Cualquier beneficio percibido por los pacientes se debe a algo que también se lograba mediante el procedimiento simulado.
Qué significa y qué no significa¶
No significa que el dolor sea imaginario ni que nada sirva para aliviarlo. Significa que la explicación mecánica —según la cual un espolón óseo roza el tendón y lo desgasta, resolviendo así el problema— no se considera el mecanismo real por el cual se produce el alivio.
Esto tiene consecuencias en la forma en que se conceptualiza esta afección. El término “pinzamiento” en sí mismo implica esa teoría mecánica; por eso gran parte de la literatura médica ha pasado a utilizar el término “síndrome de dolor subacromial”: una descripción del lugar donde duele, en lugar de una afirmación no comprobada sobre las causas del problema.
¿Qué queda, entonces?¶
El tratamiento no quirúrgico ocupa un lugar central, y las evidencias comparativas son lo suficientemente contradictorias como para merecer una lectura detallada. En un análisis de red que incluyó a 3,643 pacientes, la descompresión artroscópica con acromioplastia y la fisioterapia arrojaron mejores resultados en cuanto al dolor, las medidas autoevaluadas por los pacientes y el rango de movimiento; en cambio, las inyecciones de corticoides presentaron resultados deficientes en los tres ámbitos, por lo que los autores recomiendan la fisioterapia para pacientes con síntomas significativos [3].
En comparación con los ensayos controlados con placebo, la conclusión razonable es que el ejercicio estructurado constituye el tratamiento fundamental; las inyecciones pueden aliviar el dolor a corto plazo, pero no demuestran eficacia a largo plazo; y la cirugía no ha demostrado aportar beneficios adicionales más allá de los que se obtienen simplemente mediante la inserción de una cámara.
En qué casos sigue siendo útil la cirugía¶
Nada de lo anterior se aplica a un desgarro real y reparable del manguito rotador, que constituye un diagnóstico distinto con evidencia propia; este se aborda en la página dedicada al manguito rotador. Los ensayos mencionados se refieren a hombros con dolor atribuido al síndrome de pinzamiento, no a hombros con tendones desgarrados. Distinguir entre ambos casos es la razón por la cual una evaluación cuidadosa resulta más importante aquí que la elección del procedimiento quirúrgico.
Referencias¶
[1] Beard DJ, Rees JL, Cook JA, Rombach I, Cooper C, Merritt N, et al. Decompresión subacromial artroscópica para el dolor shoulder subacromial (CSAW): un ensayo quirúrgico aleatorizado, multicéntrico, pragmático, de grupos paralelos, controlado con placebo y con tres grupos. Lancet. 2018;391(10118):329-38. https://doi.org/10.1016/S0140-6736(17)32457-1
[2] Paavola M, Malmivaara A, Taimela S, Kanto K, Inkinen J, Kalske J, et al. Decompresión subacromial frente a artroscopia diagnóstica para el síndrome de pinzamiento del hombro: ensayo clínico aleatorizado controlado con cirugía placebo. BMJ. 2018;362:k2860. https://doi.org/10.1136/bmj.k2860
[3] Lavoie-Gagne O, Farah G, Lu Y, Mehta N, Parvaresh KC, Forsythe B. La fisioterapia combinada con inyección de cortisona subacromial constituye un tratamiento de primera línea; en cambio, la acromioplastia junto con fisioterapia es la mejor opción si el tratamiento conservador fracasa en el síndrome de pinzamiento: una revisión sistemática y metaanálisis de red. Arthroscopy. 2022;38(8):2511-24. https://doi.org/10.1016/j.arthro.2022.02.008
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¶
- Management of subacromial impingement syndrome includes physical therapy, injections, and surgery for some patients [1].
- There remains a need for high-quality studies of the pathology, etiology, and management of subacromial impingement syndrome [1].
- Current randomized, controlled trial evidence shows no difference in outcomes of shoulder function or pain between surgical and conservative treatment for subacromial impingement syndrome [3].
- Ultrasound guidance is not superior in subacromial bursa injections in pain or function [4].
- Ultrasound guidance is not superior in glenohumeral joint injections in pain or function [4].
- Subacromial pain syndrome should preferably be treated non-operatively [7].
- Subacromial injection with corticosteroids is indicated for persistent or recurrent symptoms of subacromial pain syndrome [7].
- Arthroscopic subacromial decompression provided no benefit over diagnostic arthroscopy at 24 months in patients with shoulder impingement syndrome [11].
- Arthroscopic subacromial decompression provided no benefit over diagnostic arthroscopy or exercise therapy at 5 years for patients with shoulder impingement syndrome [12].
- Arthroscopic subacromial decompression in the treatment of subacromial impingement yields good long-term results [13].
- Arthroscopic subacromial decompression provided no benefit over diagnostic arthroscopy or exercise therapy on return to work in patients with shoulder impingement syndrome [14].
- Adding a large dose of shoulder strengthening to current nonoperative care for patients with subacromial impingement did not result in superior shoulder-specific patient-reported outcomes [15].
- For patients who have a long-term disease course, operative treatments may be considered [16].
- Standard ASD surgery is preferred over arthroscopic bursectomy and the open surgical technique for subacromial decompression [16].
- Preserving the subacromial bursa during rotator cuff surgery may lead to better rotator cuff healing when secondary pain is manageable [22].
- Arthroscopic subacromial decompression is a valid treatment, reducing pain and improving quality of life for patients selected for surgery according to the Danish national guidelines [29].
Anatomy & Pathophysiology¶
Bony Anatomy¶
- The proximal humerus comprises the humeral head, greater tuberosity, lesser tuberosity, and humeral shaft [35].
- The articular head of the humerus is spherical with a diameter of 37 to 57 mm [35].
- The most superior portion of the articular surface of the humeral head averages 8 mm above the greater tuberosity [35].
- Humeral version averages 29.8 degrees, with a range of 10 to 55 degrees [35].
- The humeral head is inclined approximately 130 degrees with respect to the humeral shaft [35].
- The bicipital groove lies between the greater and lesser tuberosities and serves as a pathway for the long head of the biceps tendon [35].
- The distal aspect of the bicipital groove is internally rotated with respect to the proximal portion [35].
- The anatomic neck of the proximal humerus is located at the junction of the articular surface and the tuberosities [35].
- The surgical neck represents an indistinct region below the tuberosities but above the humeral shaft [35].
- The greater tuberosity is located in a posterior-superior location with respect to the humeral shaft and serves as the attachment site for the supraspinatus, infraspinatus, and teres minor tendons [35].
- The lesser tuberosity is located on the anterior aspect of the proximal humerus and serves as the attachment site for the subscapularis tendon [35].
- The glenoid is a convex structure of shallow depth shaped like an inverted pear [35].
- The glenoid cavity is a shallow socket, approximately one third the size of the humeral head [36].
- The neck-shaft angle measures an average of 135 degrees [36].
- The humeral head is retroverted an average of 30 degrees [36].
- The scapula is attached to the axial skeleton by the acromioclavicular and sternoclavicular joints [37].
- The scapular body is triangular when viewed anteroposteriorly, with its base situated superiorly and its apex inferiorly [37].
- The glenoid is connected with the flat body of the scapula by the scapular neck [37].
- The coracoid process curves forwards from the superior surface of the scapular neck [37].
- The acromion is a flattened bony process that curves forwards from the scapular spine [37].
- The lateral pillar connects the inferior border of the glenoid with the inferior angle of the scapula [37].
- The spinal pillar arises from the central part of the glenoid and continues medially to become part of the base of the scapular spine [37].
- The weakest bone in the scapula is located primarily in the central part of the biomechanical body, specifically in the infraspinous fossa [37].
- The weakest area of the circumference of the biomechanical body of the scapula is the spinomedial angle [37].
- The acromion has three ossification centers: the metacromion (base), the mesoacromion (middle), and the preacromion (tip) [38].
- Failure of fusion of the acromial ossification centers results in os acromiale [38].
- The glenoid averages 5° of retroversion in relation to the axis of the scapular body [38].
- The humeral head averages 19° of retroversion and 41° of inclination (neck-shaft angle) [38].
Soft Tissue Anatomy¶
- The rotator cuff consists of the subscapularis, supraspinatus, infraspinatus, and teres minor muscles [36].
- The teres major is not a rotator cuff muscle [36].
- The rotator cuff muscles serve as depressors of the humeral head to allow the deltoid to efficiently abduct the humerus [36].
- The infraspinatus and teres minor are external rotators of the humerus [36].
- The subscapularis is an internal rotator of the humerus [36].
- The acromion, coracoacromial ligament, and coracoid process form the coracoacromial arch [35].
- The rotator cuff, subacromial bursa, and subdeltoid bursa pass underneath the coracoacromial arch [35].
- The subscapular bursa lies between the subscapularis tendon and the neck of the scapula [39].
- The subscapular bursa communicates with the joint cavity between the superior and middle glenohumeral ligaments [39].
- The subscapular bursa is linked to the coracoid process by a suspensory ligament [39].
- In 28% of dissected specimens, the subscapular bursae merged with the subcoracoid bursae, forming a unique wide bursa [39].
- The rotator interval is defined medially by the base of the coracoid, superiorly by the supraspinatus tendon, and inferiorly by the subscapularis tendon [38].
- The rotator interval contains the coracohumeral ligament, the superior glenohumeral ligament, and the intra-articular portion of the long head of the biceps tendon [38].
- The glenoid labrum provides concavity and up to 50% of marginal glenoid socket depth [38].
- The superior glenohumeral ligament is a primary static restraint against anterior translation with the arm at the side [38].
- The coracohumeral ligament restricts external rotation in adduction and is a static restraint to inferior and posterior translation in adduction and external rotation [38].
- The middle glenohumeral ligament is a primary static restraint against anterior translation with the arm in external rotation and 45° of abduction [38].
- The anterior band of the inferior glenohumeral ligament is a primary static restraint against anterior-inferior dislocation of the glenohumeral joint in 90° of abduction and external rotation [38].
- The posterior band of the inferior glenohumeral ligament is a primary static restraint against posterior-inferior translation in internal rotation and adduction [38].
Vascular Anatomy¶
- The proximal humerus receives its blood supply from the anterior and posterior humeral circumflex branches from the third division of the axillary artery [35].
- 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 [35].
- The anterior humeral circumflex artery arises from the axillary artery at the inferior border of the subscapularis [35].
- 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 or arcuate artery [35].
- 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 [35].
- Injury to the arcuate artery may result in osteonecrosis of the humeral head [35].
- Additional extraosseous collateral branches can permit humeral head perfusion despite complete ligation of the arcuate artery [35].
- 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 [36].
- The anterolateral ascending branch of the anterior humeral circumflex artery provides the primary blood supply to the humeral head [38].
- The terminal intraosseous portion of the anterior humeral circumflex artery enters at the proximal aspect of the intertubercular groove as the arcuate artery [38].
Pathophysiology¶
- The pathophysiology of impingement syndrome may have both extrinsic and intrinsic components [31].
- The extrinsic theory of impingement is mechanical and related to the anatomy of the coracoacromial arch [31].
- Patients with a flat (type-I) acromion had better results than those with a curved (type-II) or hooked (type-III) acromion in non-operative treatment [31].
- In a population of patients with rotator cuff lesions, there was a decreased prevalence of type-I acromial morphology and an increased prevalence of type-III acromial morphology [31].
- The outcome for patients with a type-II acromion was not significantly different than that for patients with a type-III acromion [31].
- Neer divided the impingement process into three stages [31].
- Stage I of impingement is characterized by acute bursitis with subacromial edema and hemorrhage and is usually observed in patients who are thirty years old or less [31].
- Stage II of impingement is characterized by inflammation of the rotator cuff and possible partial-thickness tears, resulting from the subacromial bursa losing its ability to lubricate and protect the underlying rotator cuff [31].
- Stage III of impingement results in a full-thickness tear of the rotator cuff due to wear of the anterior aspect of the acromion on the greater tuberosity and supraspinatus tendon [31].
- The progressive process of impingement can be interrupted with an acromioplasty [31].
- The term 'subacromial impingement syndrome' as a useful diagnosis is increasingly questioned in the literature [54].
- There is an emerging consensus that symptoms ascribed to subacromial impingement syndrome may arise from a number of shoulder pathologies associated with the soft tissues occupying the subacromial space [54].
- Traditionally, extrinsic factors were proposed as causing compression and abrasion of the bursal side of the rotator cuff, mechanically encroached between the acromion (or coracoid) and humeral head [54].
- The traditional extrinsic model is being challenged with intrinsic rotator cuff pathology suggested as more causative of symptoms [54].
- Cadaver studies have demonstrated that rotator cuff pathology occurs more frequently within the internal substance or on the joint side of the tendon [54].
- Internal impingement syndrome is a painful shoulder condition related to the impingement of soft tissue, including the rotator cuff, joint capsule, long head of the biceps tendon, and glenoid labrum [25].
- Two types of internal impingement syndrome can be differentiated: posterior-superior impingement and anterior-superior impingement [25].
- The aetiology of anterior-superior internal impingement appears to be related to the pulley lesion and instability of the long head of the biceps tendon [25].
- Anterior-superior internal impingement can be caused by trauma or degenerative factors [25].
- Anterior-superior internal impingement produces anterior shoulder pain in middle-aged patients, particularly when performing overhead activities [25].
- Anterior-superior internal impingement is probably more frequent than previously reported [25].
- There is no evidence to prove the efficacy of a specific treatment for anterior-superior internal impingement [25].
- Imaging abnormalities of the acromioclavicular joint and subacromial space are common in asymptomatic shoulders [8].
- Due to low certainty of evidence and significant variation among study populations, further research is needed to clarify prevalence estimates of imaging abnormalities in asymptomatic shoulders [8].
- There was no between group difference in acromiohumeral distance in neutral shoulder position, shoulder abduction at 45° or 60° in adults with subacromial pain syndrome [18].
- Subacromial notching following reverse shoulder arthroplasty is not associated with functional outcomes or range of motion at short-term follow-up [19].
- 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 [35].
- In proximal humeral fractures, the subdeltoid and subacromial bursae can become thickened and fibrotic, forming adhesions that can limit normal glenohumeral motion [35].
- Early range of motion exercises after a fracture have been hypothesized to decrease the formation of bursal adhesions [35].
- The pathogenesis of shoulder stiffness is still elusive, but ongoing basic science research has provided insight into cellular and biochemical pathways that result in shoulder stiffness [23].
Classification¶
- Patients presenting with signs and symptoms of subacromial pain syndrome have a high prevalence of conflicting and concomitant diagnoses [2].
- A comprehensive classification of individualized impingements occurring around the anterior aspect of the shoulder has been proposed to address conflicting theories and improve understanding of etiologic factors, diagnosis, and treatment [6].
- Subacromial osteolysis following hook plate fixation for acromioclavicular dislocation has a relatively high and variable incidence [17].
- The primary factor influencing the reported incidence of subacromial osteolysis following hook plate fixation is the radiological assessment method [17].
- In a cohort of 138 patients with calcium deposits, 46.4% had bilateral deposits, with calcium visible in a total of 202 shoulders [66].
- Among patients with unilateral calcium deposits, the right shoulder was involved twice as often as the left [66].
- 51.5% of involved shoulders had calcium in the supraspinatus portion of the cuff [66].
- 44.5% of involved shoulders had calcium in the infraspinatus portion of the cuff [66].
- 23.3% of involved shoulders had calcium in the teres minor portion of the cuff [66].
- Only 5 shoulders showed calcium in the subscapularis [66].
- Calcium was visible in the subacromial bursa in 25 shoulders [66].
- There were 41 shoulders with an acute attack of bursitis in the cohort described by [66] [66].
Clinical Presentation¶
- Night pain is a common complaint of patients presenting with impingement of the shoulder [51].
- Night pain cannot be used in isolation as a diagnostic predictor for the presence of a rotator cuff tear [51].
- Women aged between 30 and 60 years with subacromial pain syndrome and a calcific deposit of >1.5 cm in length have the highest chance of suffering from symptomatic calcific tendinopathy of the rotator cuff [20].
- Examination of the cervical spine in patients with subacromial shoulder pain is variable in randomized controlled trials [27].
Investigations¶
Diagnostic Challenges and Clinical Assessment¶
- The history and physical examination are paramount in the diagnosis of a stiff shoulder, with ancillary studies helpful in certain circumstances [23].
- A Cochrane review includes 33 studies evaluating a total of 4002 shoulders in 3852 patients regarding physical tests for shoulder impingements and local lesions [5].
Radiography¶
- 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 [43].
- Standardized plain films are almost always sufficient to garner the information needed for shoulder evaluation [24].
- The anteroposterior view in the plane of the scapula shows the superoinferior position of the humeral head relative to the glenoid, presence of osteophytes, narrowing of the joint space, and degree of medial displacement of the humerus [24].
- The axillary view taken with the arm in the functional position of elevation is referred to as the "truth view" because it demonstrates glenohumeral relationships in the functional position [24].
- The standardized axillary view enables the measurement of posterior subluxation or "functional decentering" that is not evident in images taken with the arm at the side [24].
- Due to the low certainty of evidence and significant variation among study populations, further research is needed to clarify prevalence estimates of imaging abnormalities in asymptomatic shoulders [8].
Magnetic Resonance Imaging¶
- Magnetic resonance imaging is useful to identify osteonecrosis of the humeral head, bone tumours, labral tears, and rotator cuff tears [43].
- The accuracy of MRI for identifying labral tears and rotator cuff tears is enhanced by combining the scan with arthrography [43].
- The acromiohumeral distance is significantly smaller in MRI compared to AP radiographs in shoulders with an intact rotator cuff [70].
- The acromiohumeral distance should not be used as a decision criterion on MRI to assess glenohumeral centering or subacromial space width in shoulders with an intact rotator cuff [70].
- Diagnostic and therapeutic practices regarding internal impingement of the shoulder differ between surgeons, with international surgeons favoring MRI [62].
Ultrasound¶
- Ultrasound is a simple and accurate test for identifying rotator cuff tears and calcific tendinitis [43].
- Ultrasound can be useful in guiding injections or barbotage [43].
- Ultrasound guidance is not superior in subacromial bursa and glenohumeral joint injections in pain or function [4].
- The subacromial space width is smaller in nearly all rotator cuff pathologies and becomes even smaller as the severity of the condition increases [74].
- The subacromial space width is smaller in the case of a complete cuff tear [74].
- Machine learning-based ultrasomics may be helpful in the preliminary screening of shoulder pain for subacromial impingement syndrome stages [73].
Computed Tomography and Arthroscopy¶
- Computed tomography is helpful for planning fracture surgery and shoulder joint replacement [43].
- French surgeons rely more on CT-arthrography for internal impingement of the shoulder compared to international surgeons [62].
- Arthroscopy is useful for diagnosing and treating subacromial impingement, intra-articular lesions, detachment of the glenoid labrum, and rotator cuff tears [43].
- CT scans may offer increased precision in the measurement of glenoid version, but this precision does not necessarily improve the quality of surgery or clinical outcome [24].
Treatment¶
Non-Operative Management¶
- Management of subacromial impingement syndrome includes physical therapy and injections [1].
- Most management regimes for subacromial impingement employ a minimum period of 12 weeks of conservative management incorporating physiotherapy and at least 2 subacromial steroid injections [10].
- There is little reproducible evidence to support the efficacy of subacromial corticosteroid injection in managing rotator cuff disease [58].
Injections¶
- Ultrasound guidance is not superior in subacromial bursa and glenohumeral joint injections regarding pain or function [4].
Operative Management¶
- Arthroscopic subacromial decompression provided no benefit over diagnostic arthroscopy at 24 months for patients with shoulder impingement syndrome [11].
- For patients who have a long-term disease course, operative treatments may be considered, with standard ASD surgery preferred over arthroscopic bursectomy and the open surgical technique for subacromial decompression [16].
- Five randomized trials found that formal subacromial decompression does not result in improved clinical outcomes up to 2 years after rotator cuff repair [30].
- ASD in the treatment of subacromial impingement yields good long-term results [13].
- There is no evidence from the available RCTs for differences in outcome in pain and shoulder function between conservatively and surgically treated patients with subacromial impingement syndrome [32].
- No clinically meaningful differences in pain or function were found between surgery plus physiotherapy and physiotherapy alone at 3-, 6-months, 1-, 2-, 5- or ≥10-years follow up [47].
- The evidence on effectiveness of surgical or conservative treatment of shoulder impingement was found to be limited based on the review of seven RCTs [49].
Complications¶
Post-operative Outcomes and Long-term Effects¶
- Arthroscopic subacromial decompression yields good long-term results in the treatment of subacromial impingement [13].
- Major improvements in pain and function were observed at mid- to long-term follow-up after isolated arthroscopic subacromial decompression and combined decompression with rotator cuff repair [28].
- There was no evidence of progression of intrinsic rotator cuff pathologic conditions at a mean follow-up of 4.5 years following acromioplasty without repair for partial-thickness rotator cuff tears [34].
Surgical Complications and Anatomical Changes¶
- Subacromial osteolysis has a relatively high and variable incidence following hook plate fixation for acromioclavicular dislocation, with the primary factor influencing reported incidence being the radiological assessment method [17].
- Subacromial notching is not associated with functional outcomes or range of motion at short-term follow-up when it occurs following reverse shoulder arthroplasty with a 135° inlay humeral component and a lateralized glenoid [19].
Diagnostic and Pathological Complications¶
- Synovitis in the subacromial space was milder and not associated with any clinical parameters in patients with rotator cuff tears [9].
Recovery¶
Non-Operative Management¶
- Variation exists in the management regimes offered to patients with subacromial impingement, but most employ a minimum period of 12 weeks of conservative management incorporating physiotherapy and at least 2 subacromial steroid injections [10].
- Adding a large dose of shoulder strengthening exercises to nonoperative care for 16 weeks did not significantly improve long-term outcomes in terms of shoulder disability, health-related quality of life, sick leave, or surgery rates at 1 year [33].
- More than half of patients diagnosed with subacromial pain syndrome in specialist care settings do not adhere to recommendations regarding duration of exercise-therapy, but this is not related to symptom improvement [26].
Operative Management¶
- Major improvements in pain/function were seen at mid- to long-term after isolated arthroscopic subacromial decompression and combined decompression/rotator cuff repair [28].
Diagnostic and Anatomical Considerations¶
- Synovitis in the subacromial space was milder and not associated with any clinical parameters [9].
- There was no between group difference in acromiohumeral distance (AHD) in neutral shoulder position, shoulder abduction at 45° or 60° [18].
Key Evidence¶
- [L5] Management of subacromial impingement syndrome includes physical therapy, injections, and surgery for some patients, but there remains a need for high-quality studies of the pathology, etiology, and management of the condition. [1] (10.5435/00124635-201111000-00006)
- [L3] Patients presenting with signs and symptoms of subacromial pain syndrome have a high prevalence of conflicting and concomitant diagnoses. [2] (10.1177/23259671251332942)
- [L1] Current randomized, controlled trial evidence shows no difference in outcomes of shoulder function or pain between surgical and conservative treatment for subacromial impingement syndrome. [3] (10.2106/jbjs.9202.ebo579)
- [L1] Ultrasound guidance is not superior in the subacromial bursa and glenohumeral joint injections in pain or function. [4] (10.1016/j.arthro.2021.12.013)
- [L1] The review includes 33 studies evaluating a total of 4002 shoulders in 3852 patients. [5] (10.1002/14651858.cd007427.pub2)
- [L4] The article proposes a comprehensive classification of all individualized impingements occurring around the anterior aspect of the shoulder, including newly described entities, to address conflicting theories and improve understanding of their etiologic factors, diagnosis, and treatment. [6] (10.1007/s00264-017-3515-1)
- [Paper] SAPS should preferably be treated non-operatively, with subacromial injection with corticosteroids indicated for persistent or recurrent symptoms. [7] (10.3109/17453674.2014.920991)
- [L2] Due to the low certainty of evidence and significant variation among study populations, further research is needed to clarify these prevalence estimates and to guide evidence-based management of shoulder abnormalities. [8] (10.1186/s13018-024-05378-4)
- [L4] Synovitis in the subacromial space was milder and not associated with any clinical parameters. [9] (10.1177/23259671231207818)
- [L4] Variation exists in the management regimes offered to patients with subacromial impingement, but most employ a minimum period of 12 weeks of conservative management incorporating physiotherapy and at least 2 subacromial steroid injections. [10] (10.1177/1758573215571010)
- [L1] In this controlled trial involving patients with a shoulder impingement syndrome, arthroscopic subacromial decompression provided no benefit over diagnostic arthroscopy at 24 months. [11] (10.1136/bmj.k2860)
- [L1] Arthroscopic subacromial decompression provided no benefit over diagnostic arthroscopy or exercise therapy at 5 years for patients with shoulder impingement syndrome. [12] (10.1136/bjsports-2020-102216)
- [L3] ASD in the treatment of subacromial impingement yields good long-term results. [13] (10.1016/j.jse.2007.06.020)
- [L1] Arthroscopic subacromial decompression provided no benefit over diagnostic arthroscopy or exercise therapy on return to work in patients with shoulder impingement syndrome. [14] (10.1186/s12891-021-04768-7)
- [L1] Adding a large dose of shoulder strengthening to current nonoperative care for patients with subacromial impingement did not result in superior shoulder-specific patient-reported outcomes. [15] (10.1177/03635465211016008)
- [L1] For patients who have a long-term disease course, operative treatments may be considered, with standard ASD surgery preferred over arthroscopic bursectomy and the open surgical technique for subacromial decompression. [16] (10.1097/md.0000000000000510)
- [L1] Subacromial osteolysis has a relatively high and variable incidence, and the primary factor influencing the reported incidence is the radiological assessment method. [17] (10.1016/j.jse.2024.03.018)
- [L1] There was no between group difference in acromiohumeral distance (AHD) in neutral shoulder position, shoulder abduction at 45° or 60°. [18] (10.1038/s41598-020-76704-z)
- [L3] When subacromial notching occurs, it is not associated with functional outcomes or range of motion at short-term follow-up. [19] (10.1016/j.jseint.2024.01.009)
- [L3] This study demonstrates that women aged between 30 and 60 years with subacromial pain syndrome and a calcific deposit of >1.5 cm in length have the highest chance of suffering from symptomatic calcific tendinopathy of the rotator cuff. [20] (10.1016/j.jse.2015.02.024)
- [L5] Preserving the subacromial bursa during rotator cuff surgery may lead to better rotator cuff healing when secondary pain is manageable. [22] (10.1530/eor-2024-0183)
- [L4] [25] (10.1007/s00167-010-1232-z)
- [L3] More than half of patients diagnosed with subacromial pain syndrome in specialist care settings do not adhere to recommendations regarding duration of exercise-therapy, but this is not related to symptom improvement. [26] (10.1016/j.msksp.2021.102322)
- [L1] Examination of the cervical spine in patients with subacromial shoulder pain is variable in randomized controlled trials. [27] (10.1177/1758573218798023)
- [L3] Major improvements in pain/function were seen at mid- to long-term after isolated arthroscopic subacromial decompression and combined decompression/rotator cuff repair. [28] (10.1016/j.jor.2018.03.004)
- [L4] Arthroscopic subacromial decompression is a valid treatment, reducing pain and improving quality of life for patients selected for surgery according to the Danish national guidelines. [29] (10.1016/j.jse.2017.03.028)
- [L1] Five randomized trials found that formal subacromial decompression does not result in improved clinical outcomes up to 2 years after rotator cuff repair. [30] (10.1016/j.arthro.2012.06.003)
- [L3] [31] (10.2106/00004623-199705000-00013)
- [L1] According to the best-evidence synthesis, there is no evidence from the available RCTs for differences in outcome in pain and shoulder function between conservatively and surgically treated patients with SIS. [32] (10.1016/j.jse.2009.01.010)
- [L1] Adding a large dose of shoulder strengthening exercises to nonoperative care for 16 weeks did not significantly improve long-term outcomes in terms of shoulder disability, health-related quality of life, sick leave, or surgery rates at 1 year. [33] (10.1177/23259671251374314)
- [L4] There was no evidence of progression of intrinsic rotator cuff pathologic conditions at a mean follow-up of 4.5 years. [34] (10.1177/03635465020300021801)
- [L1] [47] (10.1371/journal.pone.0216961)
- [L1] Based on the review of seven RCTs, the evidence on effectiveness of surgical or conservative treatment of shoulder impingement was found to be limited. [49] (10.3109/09638288.2014.907364)
- [L3] Night pain is a common complaint of patients presenting with impingement of the shoulder but cannot be used in isolation as a diagnostic predictor for the presence of a rotator cuff tear. [51] (10.1111/j.1758-5740.2011.00133.x)
- [L1] [54] (10.1177/1758573216660038)
- [L1] This systematic review of the available literature indicates that there is little reproducible evidence to support the efficacy of subacromial corticosteroid injection in managing rotator cuff disease. [58] (10.5435/00124635-200701000-00002)
- [L4] Diagnostic and therapeutic practices regarding internal impingement of the shoulder differ between surgeons in France and in other countries, with French surgeons relying more on CT-arthrography and intra-articular injections, while international surgeons favor MRI and physical therapy. [62] (10.1016/j.otsr.2019.09.007)
- [L4] [66] (10.1001/jama.1941.02820220019004)
- [L4] The acromiohumeral distance is significantly smaller in the MRI in comparison to AP radiographs in shoulders with an intact rotator cuff and should not be used as a decision criterion on MRI to assess glenohumeral centering or subacromial space width. [70] (10.1007/s00167-020-06090-6)
- [L4] This noninvasive and low-cost approach may be helpful in the preliminary screening of shoulder pain. [73] (10.1002/jum.15914)
- [L4] The subacromial space width is smaller in nearly all rotator cuff pathologies, but becomes even smaller as the severity of the condition increases and is smaller in the case of a complete cuff tear. [74] (10.1016/j.ultras.2003.11.015)
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