CLINICAL RESEARCH
Functional
Outcomes in Patients with Acromioclavicular
Dislocation Treated with
Coracoclavicular Stabilization and Acromioclavicular Cerclage
Fernando M. Lossada Finol,
Julio Carruyo Avila
Orthopaedic and Trauma Surgery
Service, Hospital Coromoto de Maracaibo, Venezuela
ABSTRACT
Introduction: The treatment
of acromioclavicular dislocations using a coracoclavicular stabilization system
with high-strength sutures achieves reduction of the dislocation and maintains
acromioclavicular joint stability. However,
some modifications incorporate additional surgical techniques, such as
acromioclavicular cerclage, to provide stabilization in
different planes. Objective: To evaluate
functional outcomes, functional scores, and complications in patients with acromioclavicular dislocations treated with
coracoclavicular stabilization and acromioclavicular cerclage.
Materials and Methods: Forty-two patients
with traumatic type IIIb, IV, or V acromioclavicular dislocations of less than 2 weeks’ duration were prospectively evaluated. Patients with associated fractures or glenohumeral instability were excluded. The Visual Analog
Scale and the Constant-Murley score
were used. Results: The
mean
age was 31.26 ± 10.7 years, and
most patients were female (54.8%). After surgery, 71.4% of patients went from
experiencing severe pain (7-10 points) to no pain (0 points).
The Constant-Murley score improved from 1.17 ± 0.37 before
treatment to 3.88 ± 0.32 after treatment, reflecting an improvement in the patients’ clinical condition. Conclusions: Coracoclavicular stabilization with acromioclavicular cerclage is a valid
treatment option that provides good functional outcomes
and improved scores
in patients with acute type IIIb,
IV, or V acromioclavicular dislocations.
Keywords: Acromioclavicular dislocation; functional scores; coracoclavicular stabilization; acromioclavicular cerclage.
Level of Evidence: IV
Resultados funcionales en pacientes con luxación acromioclavicular tratada con estabilización coracoclavicular
y cerclaje acromioclavicular
RESUMEN
Introducción: El tratamiento de las luxaciones acromioclaviculares con un sistema de estabilización coracoclavicular con suturas de alta resistencia logra reducir la luxación y mantener estable la articulación acromioclavicular, aunque
existen modificaciones que suman otras técnicas quirúrgicas (cerclaje acromioclavicular) para estabilizar en diferentes planos. Objetivo: Evaluar los resultados funcionales, las escalas funcionales y las complicaciones en pacientes con luxaciones acromioclaviculares tratadas con estabilización
coracoclavicular y cerclaje acromioclavicular. Materiales y Métodos: Se evaluó prospectivamente a 42 pacientes con luxación acromioclavicular tipos IIIb, IV y V, con menos de 2 semanas de evolución y traumáticas. Se excluyó a pacientes con fracturas asociadas e inestabilidad glenohumeral. Se utilizaron la escala analógica visual y la escala de Constant-Murley. Resultados: La edad de los pacientes era de 31.26 ± 10.7 años, y predominaba el sexo femenino (54,8%). El 71,4% pasó de tener dolor intenso (7-10 puntos)
a no sentir dolor (0 punto) después del procedimiento quirúrgico. El puntaje de la escala de Constant-Murley (1,17 ± 0,37) antes y
(3,88 ± 0,32) después del tratamiento
mejoro la condición clínica del paciente. Conclusiones: La
técnica de estabilización
coracoclavicular con cerclaje acromioclavicular se considera una opción
válida que permite obtener buenos resultados funcionales en pacientes con luxaciones acromioclaviculares tipos IIIb, IV y V agudas, con mejoría de los puntajes.
Palabras clave: Luxación acromioclavicular; puntajes funcionales; estabilización coracoclavicular; cerclaje acromioclavicular.
Nivel de Evidencia: IV
The ability
to classify acromioclavicular dislocations, identify the structures involved, and characterize the different patterns
of displacement makes it possible
to select the appropriate surgical
treatment to reduce and control vertical, horizontal, and
rotational instability.1,2 The various surgical techniques used to treat
acromioclavicular dislocations have proven effective and provide stable
reduction.3-6
Surgical
treatment of this condition aims to achieve anatomic reduction of the
acromioclavicular dislocation and repair the injured structures. For type IIIb (ISAKOS
Upper Extremity Committee) and types IV, V, and VI (Rockwood classification)
dislocations,1 dynamic stabilization techniques
for the acromioclavicular joint are used, involving sutures, grafts, tapes,
screws, anchors, or suture buttons. These procedures may be performed
arthroscopically and provide reliable stabilization.3–6
The addition
of shoulder arthroscopy to acromioclavicular dislocation repair allows associated glenohumeral joint pathology to be identified and treated.7–9 Coracoclavicular
stabilization with high-strength sutures can reduce the dislocation and
maintain acromioclavicular joint stability, although some modifications
incorporate additional surgical techniques (acromioclavicular cerclage) to
provide multiplanar stabilization.3,8,10
One of
the surgical alternatives proposed for the management of patients with
acromioclavicular dislocation is coracoclavicular stabilization combined with acromioclavicular cerclage.
This technique has yielded good results
in type IIIb,
IV, and V dislocations by providing vertical,
horizontal, and rotational stability and reducing
the risk of instability and
loss of reduction.3,8,11,12
The
objective of this study was to evaluate functional outcomes, scores, and
complications in patients with acromioclavicular dislocations treated with
coracoclavicular stabilization and acromioclavicular cerclage.
A prospective explanatory study was conducted. Patients
with acromioclavicular dislocation underwent coraco-clavicular stabilization combined with
acromioclavicular cerclage. The sample consisted of 42 patients. Diagnostic
shoulder arthroscopy was performed in all cases. All patients with type IIIb, IV, or V acromioclavicular dislocations resulting
from a traumatic event were included. Two patients were excluded because of
associated fractures, glenohumeral instability, and incomplete clinical and radiographic evaluations at the end of follow-up.
This study was approved by the hospital’s ethics committee.
Patients
were evaluated before and after surgery. During history taking, data were
collected on age, sex, sports activity, acromioclavicular dislocation
classification, and complications. On physical examination, patients had
shoulder pain and a positive piano key sign for acromioclavicular dislocation. The diagnosis was confirmed with
anteroposterior shoulder radiographs and Alexander
views. The rotator cuff and long head of the biceps
tendon were evaluated by ultrasound to identify associated lesions. The Visual
Analog Scale (VAS)
and Constant-Murley score
were also administered.
The
patients provided informed consent. They were placed in the beach-chair
position. Aseptic and antiseptic
preparation was performed, and sterile drapes were applied. Then, they
underwent ultrasound-guided interscalene brachial plexus block and general
anesthesia.
The
procedure was performed by a shoulder surgeon. Diagnostic shoulder arthroscopy
was performed to identify associated lesions.
The coracoid process
was then skeletonized from lateral to medial, preserving the conjoint tendon,
and a 2-mm-wide, high-strength polyethylene tape was passed through the subcoracoid region from medial to lateral.
A
superior shoulder approach of approximately 4 cm was performed over the acromioclavicular
joint. Two 2.7-mm clavicular tunnels
were created in an anteroposterior direction under direct visualization, at 2
and 4 cm from the lateral margin of the clavicle, respectively. The medial end of the tape was retrieved
through the lateral clavicular tunnel and the lateral
end through the medial clavicular tunnel, creating a figure-of-eight configuration. The acromioclavicular
dislocation was manually overreduced through the
supraclavicular approach, with fluoroscopic confirmation, and the tape was tied
over the posterior aspect of the clavicle (Figure).
The
acromion was then tunneled from lateral to medial under fluoroscopic guidance.
One end of the tape was passed from medial
to lateral using
a PDS suture and then tied, achieving acromioclavicular stabilization (Figure).
The wound was closed in layers. Patients
were immobilized in a sling for 21 days and then began passive exercises, which continued until the sixth
week.
Postoperatively,
VAS scores were <3, and Constant-Murley scores were >80 points,
indicating excellent outcomes, at 3, 6, 9, 12, and 24 months. Radiographic
follow-up with anteroposterior shoulder views was also performed at 3, 6, 9,
12, and 24 months, with no loss of reduction.
The
data were summarized in statistical tables using absolute and relative
frequencies, the latter expressed as percentages. Descriptive statistics were
used, with means and standard deviations calculated for scale variables.
Inferential statistics were used to test the research hypothesis, using the paired Student’s t-test and 99% confidence intervals. Statistical analyses
were performed using SPSS version 25 and Excel for Windows.
Table 1 shows the general characteristics of patients with acromioclavicular dislocation who underwent coraco-clavicular stabilization and acromioclavicular cerclage. This type of injury was more common
in women (54.8%) and among patients who
participated in sports (cycling, 40.5%; soccer, 9.5%).
The
most common type of acromioclavicular dislocation was type V (54.8%). All patients underwent open reduction with coracoclavicular stabilization and acromioclavicular cerclage
assisted by shoulder
arthroscopy (Table 2). Most patients
(88.1%) had no complications. Suture dehiscence occurred
in 9.5% and surgical site infection in 2.4%.
Before surgery,
83.3% of patients
had a Constant-Murley score <50 (poor), whereas
after surgery, 88.1% had a score of 88-100 (excellent). Of note,
71.4% improved from <50 points (poor) to 88-100 points (excellent), with
follow-up assessments at 3, 6, 9, 12, and 24 months (Table
3).
Surgical treatment
resulted in a change in clinical assessment based on the Constant-Murley scale, from 1.17 ± 0.37 before treatment
to 3.88 ± 0.32 at 3, 6, 9, 12, and 24 months after surgery. Analysis
of this change showed that surgical treatment significantly
improved the patients’ clinical condition (p <0.001) (Table 4).
Another
outcome measure used to evaluate the
effectiveness of surgical treatment was the VAS. Pain intensity was compared
before and after treatment. Before treatment, severe pain (7–10 points) was predominant, occurring in 83.3% of patients, whereas
after treatment, one patient reported no pain. Of note, 71.4% of patients
improved from severe pain (7–10 points) to no pain (0 points) during follow-up
at 3, 6, 9, 12, and 24 months (Table 5).
A change
in pain intensity before (1.12 ± 0.32) and after (3.38
± 0.37) surgical
treatment was demonstrated using the VAS to
assess changes in pain over the 24-month postoperative period (Table 6).
In
this study, the mean patient age was 31.26 ± 10.7 years, with a predominance of
women (54.8%) and patients who participated in cycling. Type V acromioclavicular dislocation was the
most common (54.8%). These results differ from those reported by Boström et
al., who included 124 patients with a mean age of 40 years (range, 18–64), 91%
of whom were men; 61 patients had an acromioclavicular dislocation.13 These findings
indicate that acromioclavicular dislocations can occur in both male and female
adults.
In
this study, all patients were treated with open reduction, coracoclavicular
stabilization, and acromioclavicular cerclage assisted by shoulder arthroscopy.
Complications included suture dehiscence (9.5%) and surgical site infection (2.4%). Saier et al.
biomechanically demonstrated that only combined acromioclavicular and
coracoclavicular reconstruction could adequately restore physiological
horizontal stability of the acromioclavicular joint, which is consistent with
the technique used in our study.4 In contrast, Gaytán et
al. reported no complications when using a double-button fixation system for
acromioclavicular dislocations. The complications observed in our study may
have been related to some patients not attending postoperative wound-care visits as scheduled.14
In a
study by Natera-Cisneros et al., 10 patients with acromioclavicular dislocation
were evaluated, and significant improvements from preoperative values were
observed in the VAS (from 5.2 ± 2.40 to 1.7 ± 2.07) and Constant-Murley scores
(95.6 ± 3.28 and 9.2 ± 0.67, respectively).9
Similarly,
Pan et al. analyzed 179 patients and found that the use of tape was associated
with a significantly lower VAS pain score, with no significant differences in
Constant-Murley scores.15 This
is consistent with the findings of our study, in which 71.4% of patients
improved from severe pain (7-10 points) to no pain (0 points) after surgery,
while 71.4% improved from a Constant-Murley score of <50 points (poor) to
88-100 points (excellent).
The limitations
of this study include the short follow-up period and the lack of a control
group treated with a different surgical technique for comparison.
Coracoclavicular
stabilization with acromioclavicular cerclage is a valid treatment option that
provides good functional outcomes and improved scores in patients with acute
type IIIb, IV, and
V acromioclavicular dislocations.
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J. Carruyo Avila ORCID ID:
https://orcid.org/0000-0002-6995-6292
Received on May 22nd, 2024. Accepted after
evaluation on March
24th, 2026 • Dr. FERNANDO M. LOSSADA FINOL • fmlf73@gmail.com • https://orcid.org/0000-0003-0828-2164
How to cite this article: Lossada Finol FM, Carruyo
Avila J. Functional Outcomes in Patients with Acromioclavicular Dislocation
Treated with Coracoclavicular Stabilization and Acromioclavicular Cerclage. Rev Asoc Argent Ortop
Traumatol 2026;91(4):299-305. https://doi.org/10.15417/issn.1852-7434.2026.91.4.1968
Article
Info
Identification:
https://doi.org/10.15417/issn.1852-7434.2026.91.4.1968
Published: Agosto, 2026
Conflict
of interests: The authors declare
no conflicts of interest.
Copyright: © 2026, Revista de la Asociación Argentina de Ortopedia y
Traumatología.
License: This article is under Attribution-NonCommertial-ShareAlike 4.0 International Creative Commons License
(CC-BY-NC-SA 4.0).