scholarly journals Postoperative pectoral swelling after shoulder arthroscopy

Joints ◽  
2015 ◽  
Vol 03 (03) ◽  
pp. 158-160 ◽  
Author(s):  
Ersin Ercin ◽  
Mustafa Bilgili ◽  
Halil Ones ◽  
Cemal Kural

Fluid extravasation is possibly the most common complication of shoulder arthroscopy. Shoulder arthroscopy can lead to major increases in the compartment pressure of adjacent muscles and this phenomenon is significant when an infusion pump is used. This article describes a case of pectoral swelling due to fluid extravasation after shoulder arthroscopy. A 24-year-old male underwent an arthroscopic Bankart repair for recurrent shoulder dislocation. The surgery was performed in the beach chair position and lasted two hours. At the end of the procedure, the patient was found to have left pectoral swelling. A chest radiography showed no abnormality. Pectoral swelling due to fluid extravasation after shoulder arthroscopy has not previously been documented.

2011 ◽  
Vol 27 (10) ◽  
pp. e200-e201
Author(s):  
Junji Ide ◽  
Kenshi Kikukawa ◽  
Hiroki Irie ◽  
Kei Senba ◽  
Keishi Uezono ◽  
...  

2019 ◽  
Vol 7 (11_suppl6) ◽  
pp. 2325967119S0048
Author(s):  
Andri Lubis ◽  
Prima Rizky Oktari

Objectives: Recurrent shoulder dislocation after arthroscopic Bankart repair (ABR) is still a matter of discussion. The recurrence rate varies between four to fourteen percent in the general population. Re-injury timing, large anatomical defect, and anchor techniques are the factors contributing to re-dislocation after ABR, yet there was still no consensual algorithm for Bankart revision. Case presentation: We presented a case of 27 years old woman with recurrent anterior dislocation after seven years of arthroscopic Bankart repair. Seven years ago, we did Bankart repair using a 2.8 mm fiber-wire anchor (FASTak® (Arthrex, Karsfield Germany)). Now we decided to do arthroscopic revision using all suture anchor technique (Y-Knot® Flex All-Suture Anchor, 1.3mm – One strand of #2 Hi-Fi® (Conmed, New York)). Results: From preoperative and intraoperative assessment, we found that the mechanism of injury, Hill’s-Sachs lesion, Bankart lesion and the number of anchors contributed to re-dislocation. Four months postoperative follow up showed that the patient could gain a normal range of movement. No early or late complications were observed. Conclusion: The success of arthroscopic Bankart repair greatly depended on the preoperative assessment. The arthroscopic revision will do many benefits to the patient since it is less invasive and not compromising the post-operative range of motion of the shoulder.


2021 ◽  
Vol 11 (2) ◽  
Author(s):  
Đình Bằng Cao ◽  

Abstract Introduction: This study aims to assess the results of patients with recurrent shoulder dislocation treated with arthroscopic Bankart repair. Patients and Method: 31 patients (26 males and 5 females, with an average age of 28.7) were treated with arthroscopic Bankart repair from 2017 to 2018. Those with multidirectional instability, posterior shoulder instability and more-than-25% Hill-Sachs defects, along with those who had prior shoulder surgeries were excluded. Average follow-up time after surgery is 15.13 months. Frequency of pre-operative dislocation, post-operative dislocation, functional status and daily activity performance were evaluated. The results were assessed using CONSTANT score. Results: One patient had post-operative dislocation (3.23%). One patient had post-operative joint adhesion (3.23%). Assessment using CONSTANT score showed an excellent result in 67.4%, good in 12.9%, moderate in 12.9% and average in 6.46%. There was no case with poor result. One patient had post-operative dislocation due to a sport injury. Conclusions: Arthroscopic repair is a modern technology, and is being used widely in diagnosing and treating shoulder lesions. This study shows that arthroscopic repair for recurrent shoulder dislocation may bring good result for patients. Keywords: Shoulder instability, arthroscopy, Bankart.


Author(s):  
I. G. N. Wien Aryana ◽  
Rizki Zainuraditya

Arthroscopic Bankart Repair (ABR) provides acceptable results for recurrent anterior shoulder dislocation. However, recent studies have shown recurrent rates of 4-19% or even up to 35-40% in patients aged <25 years, and the results tend to get worse after long-term follow-up. The Latarjet procedure can improve anterior stability by multiple mechanisms, not only can the Bankart lesion be repaired and provide stability, but the transfer of the coracoid process extends the bony articular arc of the glenoid, and the addition of the conjoint tendon may provide dynamic stability as well. The Latarjet procedure for correcting recurrent anterior shoulder dislocation led to good and excellent results in 82.7% of the cases. The Latarjet procedure had the lowest re-dislocation rate, which was significantly lower than the arthroscopic Bankart repair. Latarjet procedure is effective in terms of restoring anteroinferior glenohumeral stability and good option for failed arthroscopic Bankart repair. Recurrence rates of instability are acceptable and re-operation rates were low.


Author(s):  
YB Tan ◽  
KL Puah ◽  
RWW Chong ◽  
KL Ong ◽  
YJ Lim ◽  
...  

Introduction: Arthroscopic Bankart repair is a widely accepted procedure to treat recurrent shoulder dislocation. This study aims to describe our experience with arthroscopic Bankart repair and its functional outcome. Methods: 107 patients who underwent arthroscopic Bankart repair from 2008 to 2013 were followed up for a minimum of three years and reviewed by an independent observer. 80 consented to being interviewed using the Oxford Shoulder Instability Score (OSIS) and Simple Shoulder Test. Results: 82 shoulders (two bilateral) were studied. Mean age at first dislocation was 19.4 ± 3.4 (12.0–31.0) years. Mean follow-up was 4.4 ± 1.3 (3.0–9.0) years and 2.5 ± 3.0 (0.1–15.4) years elapsed from first dislocation to surgery. 41 (50.0%) patients played overhead or contact sports and 44 (53.7%) played competitive sports before injury; 8 (9.8%) patients reported recurrence of dislocation, which was significantly associated with playing competitive sports before injury (p < 0.039), 5 (6.1%) underwent revision surgery and 22 (26.8%) reported residual instability after surgery. 49 (59.8%) patients returned to playing sports, 75 (91.5%) were satisfied with their surgery and 79 (96.3%) were willing to undergo the surgery again. 74 (90.2%) patients had two-year good/excellent OSIS, which was significantly associated with playing competitive sports before injury (p = 0.039), self-reported stability after surgery (p = 0.017), satisfaction with surgery (p = 0.018) and willingness to undergo surgery again (p = 0.024). Conclusion: Arthroscopic Bankart repair yields good functional outcomes and is associated with high patient satisfaction, although not all patients return to sports.


2021 ◽  
pp. 036354652199638
Author(s):  
Cécile Pougès ◽  
Alexandre Hardy ◽  
Thomas Vervoort ◽  
Thomas Amouyel ◽  
Pauline Duriez ◽  
...  

Background: The risk of recurrence after the first episode of anterior shoulder dislocation is high with nonoperative treatment in younger patients. Purpose/Hypothesis: The aim of this study was to compare the results of arthroscopic Bankart repair and nonoperative treatment for shoulder dislocation in patients younger than 25 years, with a minimum of 2 years of follow-up. The hypothesis was that surgery would decrease the risk of recurrence. Study design: Randomized controlled trial; Level of evidence, 1. Methods: We included patients aged between 18 and 25 years after a first episode of anterior shoulder dislocation and divided them into 2 groups. The first group was treated surgically with an arthroscopic Bankart repair within 2 weeks after the dislocation; the second group was treated nonoperatively. Both groups were immobilized for 3 weeks in internal rotation and followed the same physical therapy protocol. Standard radiography and computed tomography were performed immediately after reduction of the dislocation, and follow-up was performed at 3, 6, 12, and 24 months. The primary outcome measure was instability recurrence, defined as another anterior shoulder dislocation requiring closed reduction by another person (the patient was unable to reduce the dislocated joint themselves), a subluxation, or a positive apprehension test. Secondary outcome measures included range of motion, return to sport, and functional scores such as the short version of the Disabilities of the Arm, Shoulder and Hand score the Walch-Duplay score, and the Western Ontario Shoulder Instability Index (WOSI). Results: A total of 20 patients were included in each group. The mean ± SD age was 21 ± 1.8 years, and there were 33 men (82.5%) and 7 women (17.5%) in the total sample. Recurrence of instability was significantly decreased in the surgical treatment group compared with the nonoperative group (2 [10%] vs 14 [70%], respectively; P = .0001). Fewer patients in the surgical treatment group versus the nonoperative group had another episode of dislocation (0 vs 6 [30%], respectively), subluxation (2 [10%] vs 13 [65%], respectively; P = .003), or a positive apprehension test (1 [5%] vs 11 [58%], respectively; P = .0005). The Walch-Duplay score (88.4 vs 70.3 points; P = .046) and WOSI (11.5 vs 17.7 points; P = .035) were significantly better in the surgical group versus the nonoperative group after a 2-year follow-up. Level of sport was the same or better in 89% of the surgical treatment group vs 53% of the nonoperative treatment group ( P = .012). No surgical complication was recorded. We did not find any significant difference in range of motion. Conclusion: In patients with first-time shoulder dislocations, arthroscopic labral repair (Bankart procedure) reduced the risk of secondary shoulder dislocation and improved functional outcome versus nonoperative treatment after a 2-year follow-up. Surgical treatment after a first episode of shoulder dislocation could be offered as a primary treatment option in a younger population if these results are confirmed by larger studies with a longer follow-up. Registration: NCT03315819 (ClinicalTrials.gov identifier)


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